df5, dv5 df6, dv6 - klockner moeller
TRANSCRIPT
1Moeller NK8230-1060GB
Contents
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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ers
DF5, DV5
PageOverview 2
Basic information 4
Conversion of technical units
13
System overview 14
DescriptionDF5 frequency inverter 16DV5 vector frequency inverter 17
EngineeringAssigned switching and protective elements for DF5
18
Assigned switching and protective elements for DV5
19
Wiring examples 20DF5 frequency inverter 24
DV5 vector frequency inverter 25
Technical DataDF5-322-... frequency inverter 26DF5-340 frequency inverter 30DV5-322 vector frequency inverter 34DV5-340 vector frequency inverter 38
Dimensions 89
DF6, DV6
PageOverview 3
Basic information 4
Conversion of technical units
13
System overview 42
DescriptionDF6 frequency inverter 44DV6 vector frequency inverter 45
EngineeringAssigned switching and protective elements for DF6
46
Assigned switching and protective elements for DV6
47
Wiring examples 48DF6 frequency inverter 50
DV6 vector frequency inverter 51
Technical DataDF6 frequency inverter 52DV6 vector frequency inverter 60
Dimensions 89
Accessories
PageDescription 14
DE.-LZ... RFI filters 16DE5-KEY-RO3 keypad 74DE5-CBL-...-ICL connection cable 74DEX-KEY-10 keypad 75DEX-CBL-...-ICS connection cable 75DE6-IOM-DIGdigital input module
76
DE6-NET-DPPROFIBUS DP interface
77
DE6-IOM-ENCencoder connection module
78
DEX-CBL-2M0-PC PC interface 79DE4-B... Braking Units 80DE4-LN... mains chokes 81DE4-BR1... braking resistor 82MK-.K.., PR... potentiometer 83
DE.-LZ... RFI filters 69
Accessories 84
Technical DataDE.-LZ... RFI filters 70Mains chokes 88
DimensionsDE5-... RFI filters 90DE6-... RFI filters 91Mains chokes 92Braking units 92Braking resistors 93Potentiometer 93
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Moeller NK8230-1060GB
Overview
DF5
, DF6
Fre
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cy In
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DV5
, DV6
Vec
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Freq
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Frequency inverter Vector frequency inverter
DF5 DV5
System overview a Page 14 a Page 14
Ordering information a Page 24 a Page 25
Mains supply 1 x 230 V, 50/60 Hz3 x 230 V, 50/60 Hz3 x 400 V, 50/60 Hz
1 x 230 V, 50/60 Hz3 x 230 V, 50/60 Hz3 x 400 V, 50/60 Hz
Power range 0.18 kW to 2.2 kW (at 230 V)0.37 kW to 7.5 kW (at 400 V)
0.18 kW to 2.2 kW (at 230 V)0.37 kW to 7.5 kW (at 400 V)
Applications • Fans• Pumps• Material transport and conveyor belts• Drive systems
• Pumps and fans• Material transport and conveyor belts• Drive systems• Drilling and milling machines• Mixers and agitators• Extruders• Elevator and hoisting systems• Cranes and hoists
Field of application • Speed control of three-phase motors up to 7.5 kW• General pump and fan applications in the fields of building and
industrial systems• Standard drives for machine tools as well as for processing and
packaging machines in the foodstuffs and beverages industry
• Speed control of three-phase motors up to 7.5 kW• Numerous fields of application in the textile, paper and printing
industry• Processing machines in the metal industries• Conveyor systems as well as cranes and elevators
Features • V/f predetermined control from 0.5 Hz to 360 Hz with motor current monitoring and automatic voltage control
• Starting torque factor of 1.5 for 60 s every 600 s• Parameter definition of the digital and analog inputs and
outputs• Relay/changeover contact
• Sensorless vector control• Autotuning (motor parameter)• Full torque availability from 0.5 Hz to 360 Hz• Starting torque factor of 1.5 for 60 s every 600 s• Starting torque approx. 200 %• Intergral braking transistor• Parameter definition of the digital and analog inputs and
outputs• Relay/changeover contact
Peculiarities • Integrated keypad with potentiometer• PID closed-loop controller• RS-422 interface• PROFIBUS DP field bus interface connection (external option)• Global standards (CE, UL, c-UL, CSA, cTick)
• Integrated keypad with potentiometer• PID closed-loop controller• RS-422 interface• PROFIBUS DP field bus interface connection (external option)• Global standards (CE, UL, c-UL, CSA, cTick)
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3Moeller NK8230-1060GB
Overview
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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Frequency inverter Vector frequency inverter
DF6 DV6
System overview a Page 42 a Page 42
Ordering information a Page 50 a Page 51
Mains supply 3 x 400 V, 50/60 Hz 3 x 400 V, 50/60 Hz
Power range 11 kW to 132 kW (at 400 V)) 0.75 kW to 132 kW (at 400 V))
Applications • Fans• Pumps• Material transport and conveyor belts
• Pumps and fans• Material transport and conveyor belts• Drive systems• Drilling and milling machines• Mixers and agitators• Extruders• Elevator and hoisting systems• Cranes and hoists
Field of application • Speed control of three-phase motors up to 132 kW• General pump and fan applications (quadratic load
characteristic curve)• Flow regulation in process control
• Speed and torque control of three-phase motors up to 132 kW• Numerous fields of application in the textile, paper and printing
industry• Machine tools• Processing machines in the metal industries• Conveyor systems as well as cranes and elevators
Features • V/f predetermined control from 0.1 Hz to 360 Hz with motor current monitoring and automatic voltage control
• Starting torque factor of 1.2 for 60 s every 600 s• Intergral braking transistor (up to 15 kW)• Parameter definition of the digital and analog inputs and
outputs• Three relays (changeover contacts)• Thermistor input (PTC)
• Sensorless vector control• Autotuning (motor parameter)• 32 Bit processor• Full torque available at almost 0 Hz (open loop)• Starting torque factor of 1.5 for 60 s every 600 s• Starting torque approx. 200 %• Intergral braking transistor (up to 11 kW)• Parameter definition of the digital and analog inputs and
outputs• One relay (changeover contact)• Thermistor input (PTC)
Peculiarities • Plug-in keypad with potentiometer• PID closed-loop controller• RS 485 and RS 422 interface• PROFIBUS-DP field bus interfacing
(internal mountable option)• User macro memory• Auto energy saving mode• Global standards (CE, UL, c-UL, CSA, cTick)
• Plug-in keypad with potentiometer• PI and PID closed loop control• RS 485 and RS 422 interface• PROFIBUS-DP field bus interfacing
(internal mountable option)• User macro memory• Speed and synchro control (option can be installed)• Multiple motor operation• Global standards (CE, UL, c-UL, CSA, cTick)
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Moeller NK8230-1060GB
Fundamentals
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, DF6
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, DV6
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The technical information supplied here does not claim to be complete and is not a substitute for knowledge of the fundamentals of electrical engineering or professional design of a drive system. It is chiefly intended to answer the most frequently asked questions in the field of drive engineering which are: “What do I need, what do I have to take into consideration and which standards have a direct influence on the engineering design?” The minimum requirements indicated here may be superceded by local standards or by customer requirements in individual details. For this reason, all details and statements are of a general nature, and in particular, examine the devices from this catalogue for three-phase drives.
The three-phase motor is the most important and most used electric motor world-wide. It is highly valued due to its robust construction and enhanced degree of protection at an economically viable price. The various designs and versions such as e.g., slipring motor, synchronous motor or pole-changing motor will not be examined here, but rather the fundamental features using the example of a three-phase asynchronous motor will be examined.
Specialist catalogueExplosion-Proof High and Low Voltage Three-Phase Motors, Moeller FK0207+0051-1032GB
The power transfer with a three-phase motor occurs without contact from the stator to the rotor. The speed is determined by the quotient of the frequency and number of pole pairs present [n ~ f/p].
MA= starting torqueMS= pull-up torqueMK= breakdown torqueMN= rated-load torquenN = rated speednS = synchronous speedMM= motor torque (on the shaft) = MB + MLMB= accelerating torqueML= load torqueIA = starting current with direct startIN = rated current according to nameplate
The response of the characteristic curve is determined by three factors, the starting torque, pull-up torque and breakdown torque. The influence attributed to these factors and the response of the characteristic curve depends on the respective motor. During operation with the nominal frequency, the rated speed (nN) of the machine is achieved with rated-load torque (MN). The rated values which apply for this operating point are documented on the rating plate of the motor (nameplate).
Contents
Three-phase drives
M, I IA
MA
Mk
Ms
MM
MB
ML
MN
IN
nN nS n
0
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5Moeller NK8230-1060GB
Fundamentals
DF5
, DF6
Fre
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, DV6
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With the invention of the three-phase motor – in 1888 by the russian electrical engineer Michail O. Doliwo-Dobrowolsky – and the introduction of alternating current grids (1892), the technological concept of “an individual drive unit for each machine” has established itself. This drive concept can be viewed today as standard; regardless of if the driving motor is only started or if the speed control is steplessly variable.
The desire for solutions related to a satisfactory start behaviour and safe motor protection came into being in parallel with the spread of the three-phase motor on the market. Moeller has been fulfilling these demands for more than 100 years with components for switching, protection and control of motors. A complete core range from classical electro-mechanical switchgear to innovative control devices enable individual and economically viable solutions in machines and systems.
Various fields of application pose differing demands on the electrical drive and necessitate a wide-ranging offer of functions. A solution which is suitable for all applications is impossible to introduce onto the market for price reasons.
An overview of the differing electrical starting methods for the three-phase motor are presented on the following pages. The behaviour of the individual start solutions is evident when the simplified current and torque characteristic curves are observed.
Evolution of the motor
M3~
M3~
M3~
M3~
Switching
Power distribution
ProtectionShort-circuit,
overloadShort-circuit,
semi-conductor
Frequencyconverter
Motor protection
Electronicstarter
Short-circuit,overload,
semi-conductor
ElectronicElectro
mechanicalElectro
mechanicalElectro
mechanical
Short-circuit,overload,
semi-conductor
Switching
Control
Frequent and
silent switching
Softstarting
Speed control
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Moeller NK8230-1060GB
Fundamentals
DF5
, DF6
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, DV6
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In the simplest case and particularly with smaller power applications (up to approx. 2.2 kW), the three-phase motor is started directly on the mains voltage. This occurs in most cases with an electromechanical contactor. In this mode – connected to the mains supply with fixed voltage and frequency – the speed of the asynchronous motor is only slightly less than the synchronous speed [nd ~ f]. The operating speed [n] deviates because the rotor slips with respect to the rotating field: [n = nd x (1 – s)], with the slip [s = (nd – n)/nd]. During start (s = 1), a higher starting current occurs – which is up to ten times the rated current Ie.
Features of the direct-on-line start• for three-phase motors with a small and medium rating• three connection cables (Circuit type: star or delta)• high level of starting torque• very high mechanical load• high current peaks• voltage dips• simple switchgear
If the customer requires frequent or silent switching, or if aggressive ambient conditions only allow limited usage of electromechanical switching elements, electronic semiconductor contactors1) are necessary. For example in the field of building automation: as a reversing drive unit with elevator doors, for starting coolers and with conveyor belts at a check-out, or in applications with critical atmospheres (Ex): for control of pump motors in petrol pumps at filling stations or where paints and chemical colours are processed. Further applications result in the field of non-motor-driven loads such as heater bands in extruders or ovens, and the control of lighting systems.
Starting of three-phase motors in a star-delta-circuit diagram is the most known and popular variant.
Moeller offers a comfortable motor control solution with the SDAINL star-delta combination which is fully wired ex-works. The customer saves expensive wiring and assembly time and eliminates a source of possible errors.
Features of the star-delta switch• for three-phase motors with small to high ratings• reduced starting current• six connection cables• reduced starting torque• current peak with switch-over from star to delta• mechanical loading with switch-over from star to delta
1) Note: With a semiconductor contactor, the short-circuit and overload protection as well as protection of the semiconductor with a superfast fuse must be considered. According to IEC/EN 60 947, a superfast semiconductor fuse is required for classification type 2. With classification type 1 – which is the case in most applications – a superfast semiconductor fuse is not required.
ContactorDILM up to 450 kW (400 V)
Semiconductor contactorDS4 up to 2.2 kW (400 V)
Direct-on-line start
2
3
4
5
6
7
I/Ie
n/nN
I/Ie: 6...10
1
0.25 0.5 0.75 1
1
2
ML
M/M
N
M/MN: 0.25...2.5
n/nN
0.25 0.5 0.75 1
Ready to use SDAINL star-delta-motor starter up to 110 kW (400 V)
Motor start with star-delta
star connection delta connection
V1 W2
U2
V2
W1
U1
L3
L2
ULN
ILN
L1
V1
U2
V2
W1
W2
U1
L3
L2
ULN
ILN
L1
ULN 3 UW×= ILN IW= ULN UW= ILN 3 IW×=
U1 V1 W1
W2 U2 V2
U1 V1 W1
W2 U2 V2
2
3
4
5
6
7
I/Ie
I/Ie: 1.5...2.5
n/nN
1
0.25 0.5 0.75 1
1
2
ML
M/M
N
M/MN: 0.5
n/nN
0.25 0.5 0.75 1
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7Moeller NK8230-1060GB
Fundamentals
DF5
, DF6
Fre
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DV5
, DV6
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Three-phase motors and cables must be protected against short-circuit and overload. As early as 1932, Moeller (Klöckner-Moeller) introduced the first overload relay, whose type designation became a trademark synonymous with motor protection: the PKZ (...).
Since then, new Moeller developments have continuously defined the trends in the field of motor protection. The latest example is the ZEV electronic motor protective relay, which consists of a ring-type transformer and a trip unit with display. With this principle, it is no longer necessary to electrically integrate the motor protection in the load circuit. The current measurement is undertaken with sensor belts – which function according to the Rogovski principle – which are placed around the motor cables. In addition to indirect motor current measurement, the trip unit enables the measurement of the temperature in the motor windings via the integrated thermistors (PTC) as well as detection of phase failure, current unbalance and earth-fault monitoring.
Note: Further information concerning electromechanical switchgear and protection devices can be found in the Industrial Switchgear main catalogue.
Motor starters are a combination of contactor, motor protection and line protection. With the KLAS motor-starter combination, Moeller offers a completely wired and immediately connectable direct-on-line and reversing motor starter. It can also be interfaced to the AS-interface and is available ready to install in an enclosure with IP65 degree of protection. A successful combination for varying applications.
PKZ1 up to 15 A(5.5 kW, 380 V)
PKZM0 up to 25 A(11 kW, 400 V) or PKZM4 up to 63 A (30 kW, 400 V)
Motor protection
Q1
>I >I >I
Motor starters
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Moeller NK8230-1060GB
Fundamentals
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, DF6
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, DV6
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The characteristic curves for direct-on-line and star-delta starters show current and torque peaks which have particularly negative effects with medium and high motor output ratings:• high level of mechanical loading on the machine • increased wear• higher service costs• higher standing charges from the power utility companies (peak load tariffs)• high loading of the mains and generator• voltage dips which have negative effects for other consumers.
A surge free development of torque and a targeted reduction of current in the starting phase are desired. This is facilitated by the electronic soft starter. It controls the supply voltage of the three-phase motor in the start phase. In this manner, the three-phase motor is matched to the behaviour of the machine load and accelerated accordingly. Mechanical impacts and jolts are avoided, current peaks are suppressed and the classic star-delta functions are not required.
Soft starter features• low to high ratings with three-phase motors• no current peaks• maintenance free• reduced adjustable starting torque
High quality soft starters such as the DM4, can be easily matched to the respective application, and enable operation of transport and conveyor systems, compressors, circular saws and ribbon saws, agitators and mixers and even heavy starting duty with mills and crushers as well as typical pump and fan applications. Factory preset parameters for ten typical applications have already been implemented, and can be easily selected using a selector switch.
Additional system specific parameter settings can be individually programmed using the optional keypad.For example, the three-phase a.c. power controller mode: In this mode, three-phase resistive and inductive loads – heating, lighting, transformers – can be operated with the DM4, and can be regulated using actual value feedback in a closed-loop control circuit.
Intelligent interfaces can be plugged-in in place of the keypad:• an RS 232/RS 485 serial interface (parameterization via PC software)• Suconet K field bus interface connection (interface on every Moeller PLC)• PROFIBUS-DP field bus interface connection
DM4 series soft starters enable soft starting in its most convenient form. It is possible to dispense with additional external components such as overload relays. Phase failure monitoring and the internal motor current measurement are evaluated in addition to the temperature measurement in the motor winding via the integrated thermistor input. The DM4 conforms to the IEC/EN 60 947-4-2 product standard.
With a soft starter, lowering of the voltage leads to a reduction of the high starting currents with a three-phase motor; however, the torque is reduced accordingly: [Istart ~ U] and [M ~ U2]. Furthermore, the motor has achieved the rated speed printed on the rating plate after a successful start with all presented solutions. A frequency inverter is required to start a motor with the rated-load torque and/or operate with speeds independent of the mains frequency.
Soft starter DM4 up to 900 kW
Soft starter (electronic motor start)
2
3
4
5
6
7
I/Ie
I/Ie: 1...5
n/nN
1
0.25 0.5 0.75 1
1
2
ML
M/MN: 0.15...1
M/M
N
n/nN
0.25 0.5 0.75 1
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9Moeller NK8230-1060GB
Fundamentals
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, DF6
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The general growth in the field automation has also led to development of intelligent distributed drive modules in the area of drive engineering which can be interfaced to field bus systems. The purely mechanical speed adjustment features (e.g. gearing) and the step by step method (e.g. multi-speed pole changing with asynchronous motors) are losing in significance even when electronically started. Variable, adjustable speed drive solutions characterize the innovations in all areas of drive engineering.
The frequency inverter converts the constant voltage and frequency of the incoming supply to a DC voltage. The frequency inverter uses this DC voltage to generate a new three-phase supply for the three-phase motor with a variable voltage and variable frequency. Thereby, the frequency inverter effectively takes only active power (cos v ~ 1) from the mains supply – the reactive power for the motor operation is supplied by the DC link. Therefore, mains cos v-power factor correction equipment is not required.
Frequency inverter features (general)• for three-phase motors up to 132 kW• high level of starting torque• constant torque in the nominal range of the motor• no current peaks• stepless speed control via voltage/frequency control (V/f)• maintenance free • EMC-measures (Options: radio interference filter, screened motor cables)
Additional sensorless vector control features• stepless torque regulation, even at zero speed• minimal torque regulation time• excellent smooth running and speed stability• speed control (Options: speed control module, pulse generator)
The DF5, DF6 and DV5, DV6 series frequency inverters are set in the factory with the assigned motor rating. The user can immediately start the drive after it has been installed. Individual settings can be made with the internal keypad. Various operating modes can be selected and parameterized on differing levels. For example, frequency control via V/f characteristic curve, for simple applications with linear and quadratic load characteristics as well as a high level of synchronism of multiple motors during parallel operation on the output. Or the field-orientated vector control as a frequency or torque regulator for very dynamic drives or high loads with the DV5 and DV6 series frequency inverters. An internal PID-closed loop controller which can be set to suit the system specific requirements is available on all units for applications with pressure and flow control.
A further advantage of the frequency inverter is the absence of additional external components for monitoring and motor protection. All that is required is a fuse or a circuit-breaker (PKZ) on the mains incomer for cable and short-circuit protection. The frequency inverter inputs and outputs are monitored internally by measurement and control loops for, e.g. overtemperature, earth fault, short-circuit, motor overload, motor blockage and V-belt monitoring. Even the temperature monitoring in the motor windings can be integrated into the monitoring circuit of the frequency inverter via the thermistor input.
DV5 vector frequency inverter up to 7.5 kW
DF6 frequency inverter up to 132 kW
Frequency inverter
M, nU, f, IU, f, (I)
F
vm
J
M
3~
~I M
~f nPel = U x I x √3 x y M x n
PL = 9550
Energy flow
VariableConstant
Mains Electronic actuator Motor Load
2
3
4
5
6
7
I/Ie
I/Ie: 0...1.8
n/nN
1
0.25 0.5 0.75 1
1
2
ML
M/M
N
M/MN: 0.1...1.5
n/nN
0.25 0.5 0.75 1
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Moeller NK8230-1060GB
Fundamentals
DF5
, DF6
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, DV6
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Today, the frequency controlled three-phase motor is a standard element for stepless speed and torque control. It is energy-efficient, economic and has a role as an individual drive or as part of an automated system. The possibilities for individual or system-specific assignment is determined by the instance of the power inverter and the modulation method.
Modulation method of the power inverterThe power inverter is composed in principle of six electronic switches which currently consists of IGBT’s (Insulated Gate Bipolar Transistor). The control circuit switches these IGBT's on and off, according to varying principles (modulation process), thus altering the output frequency of the frequency inverter.
Sensorless vector control The control algorithm dictates the PWM (Pulse Width Modulation) switching pattern for the power inverter. With the voltage vector control method, the amplitude and frequency of the voltage vector is controlled in dependance on the slip and load current. It enables a wide speed setting range and a high level of speed accuracy without the need for speed feedback. This control method (V/f-control) is preferred with the parallel operation of multiple motors on a single frequency inverter.
With flux-regulated vector control, the effective components and reactive components are extrapolated from the measured motor currents; they are then compared to the values for the motor model, and corrected if necessary. The amplitude, frequency and effective angle of the voltage vector are controlled directly. This method enables operation at the current limit, a wide speed setting range and high level of speed accuracy. The dynamic performance of the drive is impressive, particularly at low speeds, e.g. hoisting gear, winders.
The greatest advantage of sensorless vector technology is in the regulation of the motor flux to a value which corresponds to the rated flux of the motor. Thereby, a dynamic torque regulation as with DC motors is possible also with three-phase asynchronous motors.
Simplified equivalent circuit diagram of an asynchronous motor and the respective current vectors i1 = stator current (phase current)iµ = flux developing current component iw = torque developing current component R’2/s = slip dependent rotor resistance
With sensorless vector control, the flux developing factor iµ and the torque developing factor iw are determined from the measured stator voltage u1 and stator current i1. The calculation is performed in a dynamic motor model (electrical equivalent circuit diagram of the three-phase motor) with adaptive current regulators, taking the saturation of the magnetizing field and iron losses into consideration. Both of the current components are placed according to their magnitude and phase in a rotating coordinate system (o) with respect to the fixed stator reference system (a, b). The physical motor data required for the model is comprised of the input and measured (self tuning) parameters.
Method of function
L1, L1
IGBT
L2, N
L3
M3~
Rectifier
Closed-/open-loop-control
InverterInternal DC link
R1 X'2 R'2 / sX1
i1
i1
iw
iw
u1 Xhim
im
im
ia
ibV~
b o
Stator Rotor
Aligned with rotor flux
Aligned with stator
Air gap
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11Moeller NK8230-1060GB
Fundamentals
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, DF6
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, DV6
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EMC (Electro Magnetic Compatibility) describes the ability of a device to withstand electrical interference (immunity). At the same time, it describes the ability of the device not to cause similar interference (emission) to its surroundings. The IEC/EN 61 800-3 EMC product standard describes the limit values and test procedure for emitted interference and noise immunity for variable speed electrical drives. Thereby, a typical drive system is examined as a functional entity and not as individual components.
EMC compliant installation and connection is described in detail in the respective device manuals (AWB).
An EMC compliant installation is achieved when the following information is observed. Electrical and magnetic disturbance fields can be limited to the required levels. The necessary measures are only effective when combined and should be taken into consideration in the engineering design phase. Retrospective consideration of the necessary EMC measures is only possible with considerable additional effort and high costs.
1 Earthing measuresThey are an absolute necessity in order to comply with the legal standards and a prerequisite for the effective usage of further measures such as filters and screening. All conducting metallic enclosure sections must be electrically connected to the earth potential. For EMC measures, the cable cross-section is not the decisive factor, but rather the surface on which the high frequency currents can flow to earth. All earthing points must have a low impedance and excellent conductive properties and lead directly to the central earthing point (potential equalisation bar, star-shaped earthing system). The contact points must be free of paints and rust (use galvanized mounting plates and materials).
2 Screening measuresThey reduce the emission of radiated interference (noise immunity of neighbouring systems and devices against external influences). Cables between the frequency inverter and the motor must be screened when laid. The screen may not replace the PE-cable. Four wire motor cables are recommended (three phases and PE). The screen must be connected on both ends and connected to the earth potential with as large a contact surface as possible (PES). The screen may not be connected via connecting wires (Pig-Tails). Breaks and interruptions in the screen, e.g. with terminals, contactors, chokes, etc. must have a low impedance and be bridged with as large a contact area as possible. Control and signal lines must be twisted and double screening can be used. The internal screen should be connected to the voltage source on one end and the external screen on both ends. The motor cable must be laid separately from the control and signal lines (>10 cm) and should not be laid parallel to power cables.
Screening of control and signal lines
Example: DF5 frequency inverter, setpoint value potentiometer R1 (M22-4K7) and ZB4-102-KS1 installation accessories
3 Filter measuresRadio interference filters and line filters (combination of radio interference filter and mains choke) are intended to protect against high frequency cable related interference (noise immunity), and to reduce the high frequency interference from the frequency inverter, which is transmitted by the mains cable or radiated from the mains cable, and which is to be limited to a prescribed or legal level (emitted interference).The filter should be installed directly in the vicinty (beside it if possible) of the frequency inverter in order to keep the length of the connection cable between the frequency inverter and filter to an absolute minimum. Cable lengths exceeding 30 cm must be screened. Filters have leakage currents, which can be significantly higher than the nominal values in the event of a fault (phase failure, load unbalance). The filters must be earthed to avoid dangerous voltages. As the leakage currents are high frequency sources of interference, the earthing measures must be low impedance and with as large a contact surface area as possible. With leakage currents f 3.5 mA, the protective conductor F 10 mm2 or it must be monitored to ensure that it is not open circuit according to the VDE 0160 or EN 60 335.
EMC measures
Netz
Leitungsschutz
Schalten
Netzdrossel
Entstörfilter
Frequenzumrichter
Motorleitung
MotorM3~
3~
Notes for correct installation of frequency inverters
Measures for EMC compliant installation
2 1 P24H O L
ZB4-102-KS115
M4PE
2Cu 2.5 mmPES
PES
1 2
3
M
R1 REV FWD
4K7M
F 2
0 m
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Moeller NK8230-1060GB
Fundamentals
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor F
requ
ency
Inve
rter
s
12
4 ChokesChokes on the input side of the frequency inverter reduce the current dependant disturbances in the mains supply and improve the power factor. The current harmonics are reduced and the mains quality is improved. Use of mains chokes is recommendable particularly with the connection of multiple frequency inverters to a mains supply point when other electronic devices are connected to this mains supply. A reduction of the mains current interference is also achieved by the installation of CD chokes in the DC link of the frequency inverter. Chokes are used on the output of the frequency inverter with long motor cables and when multiple motors are connected in parallel to the output. They enhance the protection of the power semiconductors with an earth fault and short-circuit, and they protect the motors from excessive voltage rise rates (> 500 V/µs), which can result from high pulse frequencies.
PE
PESPES
PES
W2 U2 V2
U1 V1 W1
PE
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Conversion of Technical Unitsto SI Units (Système International d'Unités)
Moeller NK8230-1060GB 13
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor F
requ
ency
Inve
rter
s
Power1 kW = 1.36 PS = 102 kpm/s = 1000 Nm/s1 PS = 0.736 kW = 75 kpm/s = 736 Nm/s
Work1 kWh = 3.6 x 106 J = 3.6 x 106 Nm
= 0.367 x 106 kpm1 Ws = 1 J = 1 Nm = 0.102 kpm
Force1 N = 0.102 kp1 kp = 9.81 N
Torque1 Nm = 0.102 kpm = 1 Ws1 kpm = 9.81 Nm = 9.81 Ws
Pressure1 Pa = 1 N/m2
1 bar = 105 Pa1 mm water column = 9.81 Pa
Moment of inertia1 kgm2 = 1 Ws3 = 1 Nms2 = 0.102 kpms2
Power (three-phase motors)P1 = U x I x cos v x x 10-3
P2 = P1 x hP1 = power consumption [kW]P2 = output power [kW]U = voltage [V]I = current [A]c = power factorh = efficiency
Power requirement of some machinesHoisting motion
x 10-3 [kW]
Rotary motion
[kW]
Fan drives
x 10-3 [kW]
Pump drives
P = x 10-3 [kW]
P = power [kW]F = force [N]v = speed [m/s]h = efficiencyM = torque [Nm]n = RPM [1/min]V = delivery rate [m3/s]p = total counter-pressure to be
overcome [N/m2]
TorqueTorque from motor rating
M = 9550 [Nm]
P2 = motor rating [kW]n = RPM [1/min]
Conversion of torque with step up or step down transmission ratios
M2 =
n1 = motor speed [1/min]M1 = motor torque [Nm]n2 = operating speed [1/min]M2 = torque with n2 [Nm]
Moment of inertiaRelationship to the flywheel effect
J =
J = moment of inertia [kgm2]GD2 = flywheel effect [kpm2]
Moment of inertia for mass moved in a straight line with respect to motor speed
J = 91.2 x m [kgm2]
m = mass [kg]v = speed [m/s]n = motor speed [1/min]
Conversion of moment of inertia to another speed with step up or step down transmission ratios
J2 = J1
n1 = motor speedJ1 = moment of inertia with n1n2 = operating speedJ2 = moment of inertia with n2
Inertia factor
Fl =
Jmot= motor moment of inertiaJzus = machine moment of inertia
Start-up time
ta = [s]
Macc = Mmot – Mcount [Nm]Fl = inertia factorJmot = motor moment of inertia [kgm2]n = motor speed [1/min]Macc = accelerating torque [Nm]Mmot = motor torque in acceleration phase (averaged)Mcount = counter torque in acceleration phase (averaged)
Sound pressure level
Lp = 20 log [dB]
Reference sound pressure
po = 2 x 10-5
Sound power level
Lw = 10 log [dB]
Reference sound powerPo = 10-12 [W]
Sound power
P = A [W]
Sound characteristic impedance
a x c = 408at 1000 mbarand 20°C
Level of measuring surface
Ls = 10 log
Lw = Lp + Ls
Lp = sound pressure level [dB]p = sound pressurepo = reference sound pressureLw = sound power level [dB]P = sound power [W]Po = reference sound power [W]A = sound radiating surface [m2]
a x c = sound characteristic impedanceAo = reference surface = 1 m2
Ls = level of measuring surface [dB]
Formulae from the field of drive engineering
3
PF p×
η-----------=
PM n×
9550 h×---------------------=
PV p×
η------------=
V p×h
------------
P2
n-----
M1 n1×n2
------------------
GD2
4---------
vn--
2
n1
n2-----
2
Jmot Jzus+
Jmot------------------------
Fl Jmot n××9,55 Mb×
-----------------------------
Formulae from the field of acoustics
ppo-----
N
m2------
P
Po-----
p2
a c×------------
N s⋅m3
----------
A
Ao-----
N
m2------
N s⋅m3
----------
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Moeller NK8230-1060GB
System OverviewDF5 Frequency Inverter, DV5 Vector Frequency Inverter
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
14
COPY
POWER
RUNPRG
REVFWD
ALARM
READCOPY
ENTERPRG
MNT
RMT
POWER
3
5
3
4
5
2
2
1
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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ers
15Moeller NK8230-1060GB
System OverviewDF5 Frequency Inverter, DV5 Vector Frequency Inverter
Basic units
Frequency inverter 1DF5-322-...
Mains: single-phase/three-phase 230 VMotor rating from 0.18 to 2.2 kW (230 V)
a Page 24
Frequency inverter 1DF5-340-...
Mains: three-phase 400 VMotor rating from 0.37 to 7.5 kW (400 V)
a Page 24
Vector frequency inverter 1DV5-322-...
Mains: single-phase/three-phase 230 VMotor rating from 0.18 to 2.2 kW (230 V)
a Page 25
Vector frequency inverter 1DV5-340-...
Mains: three-phase 400 VMotor rating from 0.37 to 7.5 kW (400 V)
a Page 25
System accessories
Keypads 5
DE5-KEY-RO3
External display unit
DEX-KEY-10
External keypad with memory function
DE...-CBL-...
Connection cable for external display and operating units
a Page 84
Communication modules 4
DE5-NET-DP
PROFIBUS-DP interface
a Page 84
Accessories
Radio interference filter 2DE5-LZ...
a Page 69
Mains chokes 2DE4-LN...
a Page 86
Braking module 3DE4-BM...Braking unit with integral braking resistor
a Page 85
Braking resistor 3DE4-BR1-...High-capacity resistors with a thermostat in the enclosure (IP20) for connection to the braking transistor of the DV5
a Page 87
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Moeller NK8230-1060GB
DescriptionDF5 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
16
Application Function
Frequency inverters of the DF5 series enable stepless speed control of three-phase motors. They are particularly suitable for applications where operating and economic efficiency play a central role.
The assigned perfomance range for four pole three-phase asynchronous motors ranges from• 0.18 kW to 2.2 kW at 230 Vand from• 0.37 kW to 7.5 kW at 400 V.•The DF5 can also be used as an individual drive (stand-alone) and can be integrated into automation systems. The U/f -predetermined control (voltage/frequency) enables a wide application spectrum from simple pumps and fan drive systems to flexible standard drives in packaging machine, foodstuffs and beverage industries.
A comprehensive range of protection features guarantee safe operation as well as protection of the frequency inverter and motor:• overcurrent, earth fault• overload, electronic motor protection• overtemperature• overvoltage, undervoltage
Further operating functions:• PID closed-loop controller• automatic voltage control (Boost)• restart inhibit• min./max. frequency limitation• frequency jumps (skip frequencies)
Features Documentation
• Compact construction due to highly-integrated module technology• Integrated keypad with four character 7 segment display, 6 function keys and
setpoint value potentiometer.• Serial interface (RS 422) for the:
– external display and operating unit– data transfer via an external PROFIBUS-DP module– data transfer to a PC
• Five digital inputs (24 V DC)• Two digital outputs (24 V DC)• Two analog inputs (0...+10 V, 4...20 mA)• One relay (changeover contact: 24 V DC/230 V AC)• Thermistor input• Two voltage categories:• 230 V (180 V -0 % to 252 V +0 %), single or three-phase supply connection• 400 V (342 V -0 % to 506 V +0 %), three-phase supply connection.• Globale standards conforming to CE, UL, c-UL, CSA and cTick
Each DF5 series frequency inverter is supplied with a mounting and connection instruction sheet (AWA) and a CD. The AWA is a short description with illustrations and indicates correct handling, installation and electrical connection of the device. The text information supplied is printed in 7 languages (D, GB, F, I, E, RUS, PRC). The CD contains detailed descriptions and the operating manuals as well as a parameter definition software with help text.
Note: The CD runs on PC's with WINDOWS operating systems (95, 98, NT, 2000). The DEX-CBL-2M0-PC connection cable is required for connection of the PC (RS 232) and DF5 frequency inverter (RS 422).
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
17Moeller NK8230-1060GB
DescriptionDV5 Frequency Inverters
Application Function
Frequency inverters of the DV5 series offer superior levels of torque for demanding applications with sensorless vector control.The assigned perfomance range for four pole three-phase asynchronous motors ranges from• 0.18 kW to 2.2 kW at 230 Vand from • 0.37 kW to 7.5 kW at 400 V.
The DV5 can also be used as an individual drive (stand-alone) and can be integrated into automation systems. Sensorless vector control offers wide-ranging usage in the textiles industry, paper and printing industries as well as in all areas of the metal-working industry, and in the areas of hoisting and material handling systems.
A comprehensive range of protection features guarantee safe operation as well as protection of the frequency inverter and motor:• overcurrent, earth fault• overload, electronic motor protection• overtemperature• overvoltage, undervoltage
Further operating functions:• 200 % start torque• internal braking transistor• PID closed-loop controller• automatic voltage control (Boost)• restart inhibit• min./max. frequency limitation• frequency jumps (skip frequencies)
Features Documentation
• Compact construction due to highly-integrated module technology• Integrated keypad with four character 7 segment display, 6 function keys and
setpoint value potentiometer.• Serial interface (RS 422) for the:
– external display and operating unit– data transfer via an external PROFIBUS-DP module– data transfer to a PC
• Six digital inputs (24 V DC)• Two digital outputs (24 V DC)• Two analog inputs (0...+10 V, 4...20 mA)• One relay (changeover contact: 24 V DC/230 V AC)• Thermistor input• Two voltage categories:• 230 V (180 V -0 % to 252 V +0 %), single or three-phase supply connection• 400 V (342 V -0 % to 506 V +0 %), three-phase supply connection.• Globale standards conforming to CE, UL, c-UL, CSA and cTick
Each DV5 frequency inverter is supplied with a mounting and connection instruction sheet (AWA) and a CD.The AWA is a short description with illustrations and indicates correct handling, installation and electrical connection of the device. The text information supplied is printed in 7 languages (German, English, French, Italian, Russian, Chinese).The CD contains a detailed manual (German, English) and parameter definition software with help text.
Note: The CD runs on PC's with WINDOWS operating systems (95, 98, NT, 2000). The DEX-CBL-2M0-PC connection cable is required for connection of the PC (RS 232) and DV5 frequency inverter (RS 422).
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
EngineeringAssigned Switching and Protective Elements for DF5
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
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y In
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18
Motor Frequency inverter Mains supply
Assigned motor rating
Mains currentRatedoperational current
Without mains choke or line filter
Mains fuse Mains contactor Mains choke 1) Radio interference filter
PkW
IeA
INA
DF5 frequency invertersingle-phase mains connection (1 x 230 V AC)DF5-322-018 0.18 1.4 3.1 FAZ-1N-B10 DILEEM DE4-LN1-037 DE5-LZ1-007-V2DF5-322-037 0.37 2.6 5.8 FAZ-1N-B10 DILEEM DE4-LN1-037 DE5-LZ1-007-V2DF5-322-055 0.55 3 6.7 FAZ-1N-B10 DILEEM DE4-LN1-075 DE5-LZ1-012-V2DF5-322-075 0.75 4 9 FAZ-1N-B16 DILEEM DE4-LN1-1K5 DE5-LZ1-012-V2DF5-322-1K1 1.1 5 11.2 FAZ-1N-B16 DILEEM DE4-LN1-1K5 DE5-LZ1-024-V2DF5-322-1K5 1.5 7.1 16 FAZ-1N-B25 DIL00M DE4-LN1-2K2 DE5-LZ1-024-V2DF5-322-2K2 2.2 10 22.5 FAZ-1N-B40 DIL0M DEK0,1-9,2 DE5-LZ1-024-V2
DF5 frequency inverterthree-phase mains connection (3 x 230 V AC)DF5-322-018 0.18 1.4 1.8 PKM0-10 DILEEM DE4-LN3-075 – 2) DF5-322-037 0.37 2.6 3.4 PKM0-10 DILEEM DE4-LN3-1K5 – 2) DF5-322-055 0.55 3 3.9 PKM0-10 DILEEM DE4-LN3-1K5 – 2) DF5-322-075 0.75 4 5.2 PKM0-16 DILEEM DE4-LN3-2K2 – 2) DF5-322-1K1 1.1 5 6.5 PKM0-20 DILEEM DE4-LN3-3K0 – 2) DF5-322-1K5 1.5 7.1 9.3 PKM0-16 DILEEM DE4-LN3-4K0 – 2) DF5-322-2K2 2.2 10 13 PKM0-25 DIL00M DE4-LN3-7K5 – 2)
DF5 frequency inverterthree-phase mains connection (3 x 400 V AC)DF5-340-037 0.37 1.5 2 PKM0-10 DILEEM DE4-LN3-075 DE5-LZ3-007-V4DF5-340-075 0.75 2.5 3.3 PKM0-10 DILEEM DE4-LN3-1K5 DE5-LZ3-007-V4DF5-340-1K5 1.5 3.8 5 PKM0-10 DILEEM DE4-LN3-2K2 DE5-LZ3-007-V4DF5-340-2K2 2.2 5.5 7 PKM0-10 DILEEM DE4-LN3-3K0 DE5-LZ3-011-V4DF5-340-3K0 3 7.8 10 PKM0-16 DILEEM DE4-LN3-5K5 DE5-LZ3-011-V4DF5-340-4K0 4 8.6 11 PKM0-16 DIL00M DE4-LN3-5K5 DE5-LZ3-011-V4DF5-340-5K5 5.5 13 16.5 PKM0-25 DIL0M DE4-LN3-11K DE5-LZ3-020-V4DF5-340-7K5 7.5 16 20 PKM0-25 DIL0M DE4-LN3-11K DE5-LZ3-020-V4
Notes 1) Mains chokes reduce the mains current by up to 30% and increase the lifespan of the frequency inverter. 2) Device not yet assigned.
Mains fuse with FAZ a Main Catalogue 2001/2002, Industrial Switchgear, Section 12Mains fuse with PKM a Main Catalogue 2001/2002, Industrial Switchgear, Section 08DIL mains contactor a Main Catalogue 2001/2002, Industrial Switchgear, Section 05DE4-LN-... mains choke a Page 86
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
19Moeller NK8230-1060GB
EngineeringAssigned Switching and Protective Elements for DV5
Motor Frequency inverter Mains supply
Assigned motor rating
Mains currentRatedoperational current
Without mains choke or line filter
Mains fuse Mains contactor Mains choke 1) Radio interference filter
PkW
IeA
INA
DV5 frequency invertersingle-phase mains connection (1 x 230 V AC)DV5-322-018 0.18 1.4 3.5 FAZ-1N-B10 DILEEM DE4-LN1-037 DE5-LZ1-007-V2DV5-322-037 0.37 2.6 5.8 FAZ-1N-B10 DILEEM DE4-LN1-037 DE5-LZ1-007-V2DV5-322-055 0.55 3 6.7 FAZ-1N-B10 DILEEM DE4-LN1-075 DE5-LZ1-007-V2DV5-322-075 0.75 4 9 FAZ-1N-B16 DILEEM DE4-LN1-1K5 DE5-LZ1-012-V2DV5-322-1K1 1.1 5 11.2 FAZ-1N-B16 DILEEM DE4-LN1-1K5 DE5-LZ1-012-V2DV5-322-1K5 1.5 8 17.5 FAZ-1N-B25 DIL00M DE4-LN1-2K2 DE5-LZ1-024-V2DV5-322-2K2 2.2 11 24 FAZ-1N-B40 DIL0M DEK0,1-9,2 DE5-LZ1-024-V2
DV5 frequency inverterthree-phase mains connection (3 x 230 V AC)DV5-322-018 0.18 1.4 2 PKM0-10 DILEEM DE4-LN3-075 – 2)
DV5-322-037 0.37 2.6 3.4 PKM0-10 DILEEM DE4-LN3-1K5 – 2)
DV5-322-055 0.55 3 3.9 PKM0-10 DILEEM DE4-LN3-1K5 – 2)
DV5-322-075 0.75 4 5.2 PKM0-16 DILEEM DE4-LN3-2K2 – 2)
DV5-322-1K1 1.1 5 6.5 PKM0-20 DILEEM DE4-LN3-3K0 – 2)
DV5-322-1K5 1.5 8 10 PKM0-16 DILEEM DE4-LN3-4K0 – 2)
DV5-322-2K2 2.2 11 14 PKM0-25 DIL00M DE4-LN3-7K5 – 2)
DV5 frequency inverterthree-phase mains connection (3 x 400 V AC)DV5-340-037 0.37 1.5 2 PKM0-10 DILEEM DE4-LN3-075 DE5-LZ3-007-V4DV5-340-075 0.75 2.5 3.3 PKM0-10 DILEEM DE4-LN3-1K5 DE5-LZ3-007-V4DV5-340-1K5 1.5 3.8 5 PKM0-10 DILEEM DE4-LN3-2K2 DE5-LZ3-007-V4DV5-340-2K2 2.2 5.5 7 PKM0-10 DILEEM DE4-LN3-3K0 DE5-LZ3-007-V4DV5-340-3K0 3 7.8 10 PKM0-16 DIL00M DE4-LN3-5K5 DE5-LZ3-011-V4DV5-340-4K0 4 8.6 11 PKM0-16 DIL00M DE4-LN3-5K5 DE5-LZ3-011-V4DV5-340-5K5 5.5 13 16.5 PKM0-25 DIL0M DE4-LN3-11K DE5-LZ3-020-V4DV5-340-7K5 7.5 16 20 PKM0-25 DIL0M DE4-LN3-11K DE5-LZ3-020-V4
Notes 1) Mains chokes reduce the mains current by up to 30% and increase the lifespan of the frequency inverter. 2) Device not yet assigned.
Mains fuse with FAZ a Main Catalogue 2001/2002, Industrial Switchgear, Section 12Mains fuse with PKM a Main Catalogue 2001/2002, Industrial Switchgear, Section 08DIL mains contactor a Main Catalogue 2001/2002, Industrial Switchgear, Section 05DE4-LN-... mains choke a Page 86
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Moeller NK8230-1060GB
EngineeringDF5 Wiring Examples
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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ers
20
DF5-322-... frequency inverter
Actuation Example 1
Reference value preset via R1 potentiometerEnable (START/STOP) and change direction of rotation via terminal 1 and 2 with internal control voltage
EMERGENCY-STOP circuitS1:S2:K1M:F1:PES:M1:
OFFONMains contactorLine protectionPE-connection of the cable screenMotor three-phase 230 V
Note: In order to assure an EMC compliant mains connection, radio interference suppression measures conforming to the IEC/EN 61800-3 standard are necessary.
Wiring
FWD:REV:
clockwise rotating field enableanticlockwise rotating field enable
K1M
S2
S1
K1M
G1 DC+ DC–L+ U V W PE O LH 2 1 P24
PES
PES
PE
PES
PES
MM1
X1
3 ~
e R1
4K7
PE
LNPE
1 h 230 V, 50/60 Hz
L N
K1M
PEF1
M
REVR1
PES
M
FWD
FWD
f
REV
M
M
t
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
21Moeller NK8230-1060GB
EngineeringDF5 Wiring Examples
DF5-340-... frequency inverter with EMC compliant connection
Actuation Example 2
Setpoint definition via potentiometer R1 (fs) and fixed frequency (f1, f2, f3) via terminals 3 and 4 with internal control voltageEnable (START/STOP) and selection of a direction of rotation via terminal 1
EMERGENCY-STOP circuit
S1:S2:K1M:L1:Z1:Q1:M1:
FWD:FF1:FF2:FF1+FF2:
OFFONMains contactorMains chokeRadio interference filterLine protectionMotor three-phase 400 V
Clockwise rotating field, setpoint value fSFixed frequency f1Fixed frequency f2Fixed frequency f3
Wiring
K1M
S2
Q1
S1
K1M
3 h 400 V, 50/60 Hz
G1
W2
L1 L2 L3 PE
L1L2L3PE
K1M
Q1
V2U2
L1 L2 L3
W1V1U1
L1
Z1
PE
PE
DC+ DC–L+ U V W PE O LH 4 3 1 P24
PES
PES
PE
PES
PES
MM1
X1
3 ~
PEIII
e
FF2
FF1
FWD
R1
fs = 0 to fmax FF1
FF2
FWD
f1f2
f3fs
f
t
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Moeller NK8230-1060GB
EngineeringDF5, DV5 Wiring Examples
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
22
Motor: P = 0.75 kWMains supply:
3/N/PE 400 V 50/60 Hz
EMC compliant connection examples: power section
PE
LNPE
2
L N
1
L1
PE
PE
1 h 230 V, 50/60 Hz
Variante A
L
Z1
G1
N
K1M
DC+ DC–L+ U V W PE
PES
PES
PES
PES
MM1
X1
3 ~
F1FAZ-1N-B16
DE4-LN1-1K5
DE5-LZ1-012-V2
DF5-322-075DV5-322-075
230 V4 A
0.75 kW
DILEEM+P1DILEM
e
U1 V1 W1
W2 U2 V2
/ 400 V230 4.0 / 2.30,75S1 0.67ϕcoskW
rpm1410 50 Hz
A
3 h 400 V, 50/60 Hz
W2
L1 L2 L3 PE
L1L2L3PE
K1M
Q1
V2U2
L1 L2 L3
W1V1U1
L1
Z1
PE
PE
III
U1 V1 W1
W2 U2 V2
Variante B
G1 DC+ DC–L+ U V W PE
PES
PES
PES
PES
MM1
X1
3 ~
PKM0-10
DE4-LN3-1K5
DE5-LZ3-007-V4
DF5-340-075DV5-340-075
400 V2.3 A
0.75 kW
DILEEM
e
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
23Moeller NK8230-1060GB
EngineeringDV5 Wiring Examples
DV5-340-... vector frequency inverter with EMC compliant connection
Actuation Example
Setpoint definition via potentiometer R1 (fs) and fixed frequency (f1, f2, f3) via terminals 3 and 4 with internal control voltageEnable (START/STOP) and selection of a direction of rotation via terminal 1
EMERGENCY-STOP circuit
S1:S2:K1M:Z1:Q1:M1:
FWD:FF1:FF2:FF1+FF2:
OFFONMains contactorRadio interference filterLine protectionMotor three-phase 400 V
Clockwise rotating field, setpoint value fSFixed frequency f1Fixed frequency f2Fixed frequency f3
Wiring
K1M
S2
Q1
S1
K1M
3 h 400 V, 50/60 Hz
G1
L1 L2 L3 PE
L1L2L3PE
K1M
Q1
L1 L2 L3
Z1 PE
DC+ DC–L+ U V W PE O LH 4 3 1 P24
PES
PES
PE
PES
PES
MM1
X1
3 ~
PEIII
e
FF2
FF1
FWD
R1
BR
fs = 0 to fmaxFF1
FF2
FWD
f1f2
f3fs
f
t
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Moeller NK8230-1060GB
DF5 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
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Freq
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24
Rated voltage Max. rated operational current
Rated power for motors TypeArticle no.
PriceSee Price List
Std. pack
at 230 V 3-phase AC
at 400 V 3-phase AC
Ue Ie P P
V A kW kW
Frequency inverter 0.18 kW to 2.2 kW at 230 V1 AC 180 – 252 V g %3 AC 180 – 252 V g 0 %
1.4 0.18 – DF5-322-018231349
1 off
2.6 0.37 – DF5-322-037231350
1 off
3 0.55 – DF5-322-055231351
1 off
4 0.75 – DF5-322-075231352
1 off
5 1.1 – DF5-322-1K1231353
1 off
7.1 1.5 – DF5-322-1K5231354
1 off
10 2.2 – DF5-322-2K2231355
1 off
Frequency inverter 0.37 kW to 7.5 kW at 400 V3 AC 342 – 506 V g 0 % 1.5 – 0.37 DF5-340-037
2313561 off
2.5 – 0.75 DF5-340-075231357
1 off
3.8 – 1.5 DF5-340-1K5231358
1 off
5.5 – 2.2 DF5-340-2K2231359
1 off
7.8 – 3 DF5-340-3K0231360
1 off
8.6 – 4 DF5-340-4K0231362
1 off
13 – 5.5 DF5-340-5K5231364
1 off
16 – 7.5 DF5-340-7K5231365
1 off
Notes Rated operational current with an operating frequency of 5 kHz and an ambient temperature of +40 °C.
For Immediate Delivery call KMParts.com at (866) 595-9616
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
25Moeller NK8230-1060GB
DV5 Vector Frequency Inverters
Rated voltage Max. rated operational current
Rated power for motors TypeArticle no.
PriceSee Price List
Std. pack
at 230 V 3-phase AC
at 400 V 3-phase AC
Ue Ie P P
V A kW kW
Vector frequency inverter 0.18 kW to 2.2 kW at 230 V1 AC 180 – 252 V g 0 %3 AC 180 – 252 V g 0 %
1.4 0.18 – DV5-322-018231366
1 off
2.6 0.37 – DV5-322-037231367
1 off
3 0.55 – DV5-322-055231368
1 off
4 0.75 – DV5-322-075231369
1 off
5 1.1 – DV5-322-1K1231370
1 off
8 1.5 – DV5-322-1K5231371
1 off
11 2.2 – DV5-322-2K2231372
1 off
Vector frequency inverter 0.37 kW to 7.5 kW at 400 V3 AC 342 – 506 V g0 % 1.5 – 0.37 DV5-340-037
2313731 off
2.5 – 0.75 DV5-340-075231374
1 off
3.8 – 1.5 DV5-340-1K5231375
1 off
5.5 – 2.2 DV5-340-2K2231376
1 off
7.8 – 3 DV5-340-3K0231380
1 off
8.6 – 4 DV5-340-4K0231381
1 off
13 – 5.5 DV5-340-5K5231382
1 off
16 – 7.5 DV5-340-7K5231383
1 off
Notes Rated operational current with an operating frequency of 5 kHz and an ambient temperature of +40 °C.
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDF5 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDF5 Frequency Inverters
DF5-322-018 DF5-322-037 DF5-322-055 DF5-322-075 DF5-322-1K1 DF5-322-1K5 DF5-322-2K2
AllgemeinesStandards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61800-3, EN 61800-3 incl. A11Ambient temperature
Operating temperature 1) °C -10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
-10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
Storage, transport °C -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70Shock resistance Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 Hz Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 HzPollution degree VDE 0110 Part 2, pollution degree 2 VDE 0110 Part 2, pollution degree 2Climatic proofing Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %) Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %)Altitude m 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea levelMounting position Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspendedFree surrounding areas 100 mm above and below device 100 mm above and below deviceEmitted interference IEC/EN 61800-3 (EN 55011 group 1 class B) IEC/EN 61800-3 (EN 55011 group 1 class B)Noise immunity IEC/EN 61800-3, industrial environment IEC/EN 61800-3, industrial environmentInsulation resistance Overvoltage category III according to VDE 0110 Overvoltage category III according to VDE 0110Leakage current to PE mA > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178)Degree of protection IP20 IP20 IP20 IP20 IP20 IP20 IP20Protection against direct contact Finger and back-of-hand proof (VGB 4) Finger and back-of-hand proof (VGB 4)Protective isolation against switching circuitry
Safe isolation from the mains. Double basic isolation (according to DIN 50178) Safe isolation from the mains. Double basic isolation (according to DIN 50178)
Protective measures Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Heat dissipation at rated operational current Ie
W 17 29 32 41 51 70 97
Dimensions (B x H x T) mm 88.5 x 126 x 117 88.5 x 126 x 117 118 x 136 x 140 118 x 136 x 140 140 x 184.5 x 164 140 x 184.5 x 164 140 x 184.5 x 175Weight kg 0.85 0.85 1.3 1.3 2.2 2.2 2.8
Power sectionRated operational voltage V AC 230 230 230 230 230 230 230Rated voltage Ue V 1 AC 180 – 252 V g0 %
3 AC 180 – 252 V g0 %1 AC 180 – 252 V g0 %3 AC 180 – 252 V g0 %
Mains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %)Mains current 2)
Ui = 1-phase 230 V AC I A 3.1 5.8 6.7 9 11.2 16 22.5Ui = 3-phase 230 V AC I A 1.8 3.4 3.9 5.2 6.5 9.3 13
Alternative DC supply UDC V DC 200 – 365 200 – 365 200 – 365 200 – 365 200 – 365 200 – 365 200 – 365Modulation method Pulse width modulation (PWM), V/f-predetermined control Pulse width modulation (PWM), V/f-predetermined controlSwitching frequency 5 kHz, can be selected between 0.5 and 16 kHz 5 kHz, can be selected between 0.5 and 16 kHzOutput voltage V 3 AC Ue 3 AC Ue 3 AC Ue 3 AC Ue 3 AC Ue 3 AC Ue 3 AC Ue
Output frequency Hz 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360Frequency resolution kHz 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint values 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint valuesFrequency error limit at 20 °C g10 K g0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency
with analog setpoint valuesg0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency with analog setpoint values
Max. rated operational current Ie A 1.4 2.6 3 4 5 7.1 10Permissible overcurrent 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 sTorque during start From 6 Hz 100 % or higher with torque boost activated From 6 Hz 100 % or higher with torque boost activatedApparent power at 240 V kVA 0.5 1 1.2 1.6 2 2.9 4.1Standard operation with 150 % overload. Assigned motor rating (4-pole asynchronous motor)
230 V kW 0.18 0.37 0.55 0.75 1.1 1.5 2.2240 V HP k m o 1 1 m 2 3
Note 1)
2)
If the frequency inverter is to be installed in a control panel, enclosure or similar installation, the prevalent ambient within these enclosures or control panels is considered to be the ambient temperature Ta.All rating data of the power section are based on a switching frequency of 5 kHz (default setting) and an ambient temperature of +40 °C, with operation of a four pole three-phase asynchronous motor.
26 27
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDF5 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
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cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDF5 Frequency Inverters
Control circuitRelay 1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive
load/3 A resistive load1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive load/3 A resistive load
Control voltageOutput setpoint voltage V +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mAOutput control voltage V +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA
Parameterization 1 parameter set (online/offline parameterization), parameter protection (programmable) 1 parameter set (online/offline parameterization), parameter protection (programmable)Inputs
digital (parameters can be defined) 5 x +24 V DC 5 x +24 V DC 5 x +24 V DC 5 x +24 V DC 5 x +24 V DC 5 x +24 V DC 5 x +24 V DCanalog 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 250 Ω) 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 250 Ω)
Outputsdigital 2 x 24 V DC transistor (open collector, parameters can be defined) 2 x 24 V DC transistor (open collector, parameters can be defined)analog (parameters can be defined) 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA
Connection terminal capacityPower cables
mm2 1.5 1.5 1.5 2.5 2.5 4 4AWG 16 16 16 14 14 12 12
Relay connectionmm2 1.5 1.5 1.5 1.5 1.5 1.5 1.5AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6
Control circuitmm2 1.5 1.5 1.5 1.5 1.5 1.5 1.5AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6
Note 1) Amplifier module ETS4-VS3 Page 05/047, Main Catalogue 0211-2001/2002, Industrial Switchgear
DF5-322-018 DF5-322-037 DF5-322-055 DF5-322-075 DF5-322-1K1 DF5-322-1K5 DF5-322-2K2
28 29
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDF5 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDF5 Frequency Inverters
DF5-340-037 DF5-340-075 DF5-340-1K5 DF5-340-2K2 DF5-340-3K0 DF5-340-4K0 DF5-340-5K5 DF5-340-7K5
GeneralStandards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61800-3, EN 61800-3 incl. A11Ambient temperature
Operating temperature1) °C -10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
-10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
Storage, transport °C -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70Shock resistance Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 Hz Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 HzPollution degree VDE 0110 Part 2, pollution degree 2 VDE 0110 Part 2, pollution degree 2Climatic proofing Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %) Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %)Altitude m 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea levelMounting position Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspendedFree surrounding areas 100 mm above and below device 100 mm above and below deviceEmitted interference IEC/EN 61800-3 (EN 55011 group 1 class B) IEC/EN 61800-3 (EN 55011 group 1 class B)Noise immunity IEC/EN 61800-3, industrial environment IEC/EN 61800-3, industrial environmentInsulation resistance Overvoltage category III according to VDE 0110 Overvoltage category III according to VDE 0110Leakage current to PE mA > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178)Degree of protection IP20 IP20 IP20 IP20 IP20 IP20 IP20 IP20Protection against direct contact Finger and back-of-hand proof (VGB 4) Finger and back-of-hand proof (VGB 4)Protective isolation against switching circuitry
Safe isolation from the mains. Double basic isolation (according to DIN 50178) Safe isolation from the mains. Double basic isolation (according to DIN 50178)
Protective measures Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Heat dissipation with rated operational current Ie
W 32 44 65 92 138 151 219 261
Dimensions (B × H × T) mm 118 x 136 x 140 118 × 136 × 167 118 × 136 × 167 140 x 184.5 x 175 140 x 184.5 x 175 140 x 184.5 x 175 182 x 260 x 177 182 x 260 x 177Weight kg 1.3 1.7 1.7 2.8 2.8 2.8 5.5 5.7
Power sectionRated operational voltage V AC 400 400 400 400 400 400 400 400Rated voltage Ue V 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 %Mains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %)Mains current 2)
Ii = 3-phase, 400 V AC I A 2 3.3 5 7 10 11 16.5 20Alternative DC supply UDC V DC 415 – 730 415 – 730 415 – 730 415 – 730 415 – 730 415 – 730 415 – 730 415 – 730Modulation method Pulse width modulation (PWM), U/f-predetermined control Pulse width modulation (PWM), U/f-predetermined controlSwitching frequency 5 kHz, can be selected between 0.5 and 16 kHz 5 kHz, can be selected between 0.5 and 16 kHzOutput voltage V 3 AC Ue 3 AC Ue 3 AC Ue 3 AC Ue 3 AC Ue 3 AC Ue 3 AC Ue 3 AC Ue
Output frequency Hz 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360Frequency resolution Hz 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint values 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint valuesFrequency error limit at 20 °C g10 K g0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency
with analog setpoint valuesg0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency with analog setpoint values
Max. rated operational current Ie A 1.5 2.5 3.8 5.5 7.8 8.6 13 16Permissible overcurrent 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 sTorque during start From 6 Hz 100 % or higher with torque boost activated From 6 Hz 100 % or higher with torque boost activatedApparent power at 460 V kVA 1.1 1.9 3 4.3 6.2 6.8 10.3 12.7Standard operation with 150 % overload. Assigned motor rating (4-pole asynchronous motor)
400 V kW 0.37 0.75 1.5 2.2 3 4 5.5 7.5460 V HP m 1 2 3 4 5 7 m 10
Note 1)
2)
If the frequency inverter is to be installed in a control panel, enclosure or similar installation, the prevalent ambient within these enclosuresor control panels is considered to be the ambient temperature Ta.All rating data of the power section are based on a switching frequency of 5 kHz (default setting) and an ambient temperature of +40 C, with operation of a four pole three-phase asynchronous motor.
30 31
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDF5 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDF5 Frequency Inverters
Control circuitRelay 1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive
load/3 A resistive load1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive load/3 A resistive load
Control voltageoutput setpoint voltage V +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mAoutput control voltage V +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA
Parameterization 1 parameter set (online/offline parameterization), parameter protection (programmable) 1 parameter set (online/offline parameterization), parameter protection (programmable)Inputs
digital (parameters can be defined) 5 x +24 V DC 5 x +24 V DC 5 x +24 V DC 5 x +24 V DC 5 x +24 V DC 5 x +24 V DC 5 x +24 V DC 5 x +24 V DCanalog Amount 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 250 Ω) 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 250 Ω)
Outputsdigital 1) 2 x 24 V DC transistor (open collector, parameters can be defined) 2 x 24 V DC transistor (open collector, parameters can be defined)analog (parameters can be defined) 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA
Connection terminal capacityPower cables
mm2 1.5 1.5 1.5 2.5 2.5 4 4 4
AWG 16 16 16 14 14 12 12 12Relay connection
mm2 1.5 1.5 1.5 1.5 1.5 1.5 1.5 1.5
AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6Control circuit
mm2 1.5 1.5 1.5 1.5 1.5 1.5 1.5 1.5
AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6
Note
1) Amplifier module ETS4-VS3 Page 05/047, Main Catalogue 0211-2001/2002, Industrial Switchgear
DF5-340-037 DF5-340-075 DF5-340-1K5 DF5-340-2K2 DF5-340-3K0 DF5-340-4K0 DF5-340-5K5 DF5-340-7K5
32 33
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDV5 Vector Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDV5 Vector Frequency Inverters
DV5-322-018 DV5-322-037 DV5-322-055 DV5-322-075 DV5-322-1K1 DV5-322-1K5 DV5-322-2K2
General technical dataStandards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61800-3, EN 61800-3 incl. A11Ambient temperature
Operating temperature 1) °C -10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
-10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
Storage, transport °C -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70Shock resistance Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 Hz Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 HzPollution degree VDE 0110 Part 2, pollution degree 2 VDE 0110 Part 2, pollution degree 2Climatic proofing Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %) Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %)Altitude m 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea levelMounting position Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspendedFree surrounding areas 100 mm above and below device 100 mm above and below deviceEmitted interference IEC/EN 61800-3 (EN 55011 group 1 class B) IEC/EN 61800-3 (EN 55011 group 1 class B)Noise immunity IEC/EN 61800-3, industrial environment IEC/EN 61800-3, industrial environmentInsulation resistance Overvoltage category III according to VDE 0110 Overvoltage category III according to VDE 0110Leakage current to PE mA > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178)Degree of protection IP20 IP20 IP20 IP20 IP20 IP20 IP20Protection against direct contact Finger and back-of-hand proof (VGB 4) Finger and back-of-hand proof (VGB 4)Protective isolation against switching circuitry
Safe isolation from the mains. Double basic isolation (according to DIN 50178) Safe isolation from the mains. Double basic isolation (according to DIN 50178)
Protective measures Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Heat dissipation with rated operational current Ie
W 19 29 32 41 51 79 107
Dimensions (B × H × T) mm 88.5 x 136 x 103 88.5 x 136 x 117 118 x 136 x 117 118 × 136 × 140 118 × 136 × 140 140 × 184.5 × 175 140 × 184.5 × 175Weight kg 0.7 0.8 1.3 1.3 1.3 2.2 2.8
Power sectionRated operational voltage V AC 230 230 230 230 230 230 230Rated voltage Ue V 1 x AC 180 – 252 V g0 %
3 x AC 180 – 252 V g0 %1 x AC 180 – 252 V g0 %3 x AC 180 – 252 V g0 %
Mains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %)Mains current 2)
Ui = 3-phase, 230 V AC I A 1.8 3.4 3.9 5.2 6.5 10 14Ui = 1-phase, 230 V AC I A 3.5 5.8 6.7 9 11.2 17.5 24
Alternative DC supply UDC V DC 200 – 365 200 – 365 200 – 365 200 – 365 200 – 365 200 – 365 200 – 365Modulation method Sensorless vector control, pulse width modulation (PWM) Sensorless vector control, pulse width modulation (PWM)Switching frequency 5 kHz, can be selected between 0.5 and 16 kHz 5 kHz, can be selected between 0.5 and 16 kHzOutput voltage V 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue
Output frequency Hz 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360Frequency resolution Hz 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint values 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint valuesFrequency error limit at 20 °C g10 K g0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency
with analog setpoint valuesg0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency with analog setpoint values
Max. rated operational current Ie A 1.4 2.6 3 4 5 8 11Permissible overcurrent 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 sTorque during start From 1 Hz 200 % with sensorless vector control From 1 Hz 200 % with sensorless vector controlApparent power at 240 V kVA 0.6 1 1.2 1.6 2 3.3 4.5Standard operation with 150 % overload. Assigned motor rating (4-pole asynchronous motor)
230 V kW 0.18 0.37 0.55 0.75 1.1 1.5 2.2240 V HP k m o 1 1 m 2 3
Brake transistorSwitching threshold UDC V DC 370 370 370 370 370 370 370Resistor RB at 100 % c.d.f. R O 130 130 130 90 90 50 35Lowest impedance RB O 100 100 100 35 35 35 35Max. duty factor (c.d.f.) with smallest resistance RB
% c.d.f. 80 80 80 39 39 70 100
Note
If the frequency inverter is to be installed in a control panel, enclosure or similar installation, the prevalent ambient within these enclosures or control panels is considered to be the ambient temperature Ta.All rating data of the power section are based on a switching frequency of 5 kHz (default setting) and an ambient temperature of +40 C, with operation of a four pole three-phase asynchronous motor.
34 35
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDV5 Vector Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDV5 Vector Frequency Inverters
Control circuitRelay 1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive
load/3 A resistive load1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive load/3 A resistive load
Control voltageOutput setpoint voltage V +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mAOutput control voltage V +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA
Parameterization 2 parameter sets (online/offline parameterization), parameter protection (programmable) 2 parameter sets (online/offline parameterization), parameter protection (programmable)Inputs
digital (parameters can be defined) 6 x +24 V DC 6 x +24 V DC 6 x +24 V DC 6 x +24 V DC 6 x +24 V DC 6 x +24 V DC 6 x +24 V DCanalog 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 250 Ω) 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 250 Ω)
Outputsdigital 1) 2 x 24 V DC transistor (open collector, parameters can be defined) 2 x 24 V DC transistor (open collector, parameters can be defined)analog (parameters can be defined) 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA
Connection terminal capacityPower cables
mm2 1.5 1.5 1.5 2.5 2.5 4 4
AWG 16 16 16 14 14 12 12Relay connection
mm2 1.5 1.5 1.5 1.5 1.5 1.5 1.5
AWG 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1Control circuit
mm2 1.5 1.5 1.5 1.5 1.5 1.5 1.5
AWG 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1
Note 1) Amplifier module ETS4-VS3 Page 05/047, Main Catalogue 0211-2001/2002, Industrial Switchgear
DV5-322-018 DV5-322-037 DV5-322-055 DV5-322-075 DV5-322-1K1 DV5-322-1K5 DV5-322-2K2
36 37
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDV5 Vector Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDV5 Vector Frequency Inverters
DV5-340-037 DV5-340-075 DV5-340-1K5 DV5-340-2K2 DV5-340-3K0 DV5-340-4K0 DV5-340-5K5 DV5-340-7K5
GeneralStandards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61 800-3, EN 61 800-3 incl. A11Ambient temperature
Operating temperature 1) °C -10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
-10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
Storage °C -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70Shock resistance Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 Hz Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 HzPollution degree VDE 0110 Part 2, pollution degree 2 VDE 0110 Part 2, pollution degree 2Climatic proofing Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %) Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %)Altitude m 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea levelMounting position Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspendedFree surrounding areas 100 mm above and below device 100 mm above and below deviceEmitted interference IEC/EN 61800-3 (EN 55011 group 1 class B) IEC/EN 61800-3 (EN 55011 group 1 class B)Noise immunity IEC/EN 61800-3, industrial environment IEC/EN 61800-3, industrial environmentInsulation resistance Overvoltage category III according to VDE 0110 Overvoltage category III according to VDE 0110Leakage current to PE mA > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178)Degree of protection IP20 IP20 IP20 IP20 IP20 IP20 IP20 IP20Protection against direct contact Finger and back-of-hand proof (VGB 4) Finger and back-of-hand proof (VGB 4)Protective isolation against switching cir-cuitry
Safe isolation from the mains. Double basic isolation (according to DIN 50178) Safe isolation from the mains. Double basic isolation (according to DIN 50178)
Protective measures Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor pro-tection: J monitoring and PTC input (thermistor or thermostat)
Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Heat dissipation with rated operational current Ie
W 32 44 65 92 138 151 219 261
Dimensions (B × H × T) mm 118 x 136 x 140 118 x 136 x 140 118 x 136 x 140 118 x 136 x 140 140 x 184.5 x 175 140 x 184.5 x 175 182 × 260 × 177 182 × 260 × 177Weight kg 1.3 1.7 1.7 1.7 2.8 2.8 5.5 5.7
Power sectionRated operational voltage V AC 400 400 400 400 400 400 400 400Rated voltage Ue V 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 % 3 x AC 342 – 506 V g0 %Mains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %)Mains current 2)
Ui = 3-phase, 400 V AC I A 2 3.3 5 7 10 11 16.5 20Alternative DC supply UDC V DC 415 – 730 415 – 730 415 – 730 415 – 730 415 – 730 415 – 730 415 – 730 415 – 730Modulation method Sensorless vector control, pulse width modulation (PWM) Sensorless vector control, pulse width modulation (PWM)Switching frequency 5 kHz, can be selected between 0.5 and 16 kHz 5 kHz, can be selected between 0.5 and 16 kHzOutput voltage V 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue
Output frequency Hz 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360 0.5 – 50, max. 360Frequency resolution Hz 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint values 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint valuesFrequency error limit at 20 °C g10 K g0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency
with analog setpoint valuesg0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency with analog setpoint values
Max. rated operational current Ie A 1.5 2.5 3.8 5.5 7.8 8.6 13 16Permissible overcurrent 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 s 150 % for 60 s, every 600 sTorque during start From 1 Hz 200 % with sensorless vector control From 1 Hz 200 % with sensorless vector controlApparent power at 460 V kVA 1.1 1.9 2.9 4.2 6.2 6.6 9.9 12.2Standard operation with 150 % overload. Assigned motor rating (4-pole asynchronous motor)
400 V kW 0.37 0.75 1.5 2.2 3 4 5.5 7.5460 V HP m 1 2 3 4 5 7 m 10
Brake transistorSwitching threshold UDC V DC 740 740 740 740 740 740 740 740Resistor RB at 100 % c.d.f. R O 500 300 200 150 100 100 70 70Lowest impedance RB O 180 180 180 100 100 100 50 50Max. duty factor (c.d.f.) with smallest resistance RB
% c.d.f. 36 60 90 67 100 100 70 70
Note 1)
2)
If the frequency inverter is to be installed in a control panel, enclosure or similar installation, the prevalent ambient within these enclosuresor control panels is considered to be the ambient temperature Ta.All rating data of the power section are based on a switching frequency of 5 kHz (default setting) and an ambient temperature of +40 C, with operation of a four pole three-phase asynchronous motor.
38 39
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDV5 Vector Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDV5 Vector Frequency Inverters
Control circuitRelay 1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive
load/3 A resistive load1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive load/3 A resistive load
Control voltageoutput setpoint voltage V +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mA +10 DC, 10 mAoutput control voltage V +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA +24 DC, 30 mA
Parameterization 2 parameter sets (online/offline parameterization), parameter protection (programmable) 2 parameter sets (online/offline parameterization), parameter protection (programmable)Inputs
digital (parameters can be defined) 6 x +24 V DC 6 x +24 V DC 6 x +24 V DC 6 x +24 V DC 6 x +24 V DC 6 x +24 V DC 6 x +24 V DC 6 x +24 V DCanalog 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 250 Ω) 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 250 Ω)
Outputsdigital 1) 2 x 24 V DC transistor (open collector, parameters can be defined) 2 x 24 V DC transistor (open collector, parameters can be defined)analog (parameters can be defined) 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA 1 x 0 – +10 V DC, 1 mA
Connection terminal capacityPower cables
mm2 1.5 1.5 1.5 2.5 2.5 4 4 4
AWG 16 16 16 14 14 12 12 12Relay connection
mm2 1.5 1.5 1.5 1.5 1.5 1.5 1.5 1.5
AWG 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1Control circuit
mm2 1.5 1.5 1.5 1.5 1.5 1.5 1.5 1.5
AWG 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1 6 – 1
Note
1) Amplifier module ETS4-VS3 Page 05/047, Main Catalogue 0211-2001/2002, Industrial Switchgear
DV5-340-037 DV5-340-075 DV5-340-1K5 DV5-340-2K2 DV5-340-3K0 DV5-340-4K0 DV5-340-5K5 DV5-340-7K5
40 41
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
System overviewDF6 Frequency Inverter, DV6 Vector Frequency Inverter
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
42
COPY
POWER
RUNPRG
REVFWD
ALARM
READCOPY
ENTERPRG
MNT
RMT
1A
C
D
TM2
TM12
8 ABD
F
C
E021
35
7 9
4
6
SEQ
CMB
CMB
B
3
5
4
2
2
For Immediate Delivery call KMParts.com at (866) 595-9616
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
43Moeller NK8230-1060GB
System overviewDF6 Frequency Inverter, DV6 Vector Frequency Inverter
Basic units
Frequency inverter 1DF6-340-...
Mains: three-phase 400 VMotor rating from 11 to 132 kW (400 V)
a Page 50
Vector frequency inverter 1DV6-340-...
Mains: three-phase 400 VMotor rating from 0.75 to 132 kW (400 V)
a Page 51
System accessories
Keypads 5
DEX-KEY-10
External keypad with memory function
DE...-CBL-...
Connection cable for external display and operating units
a Page 84
Communication modules 4
DE6-NET-DP
PROFIBUS-DP interface
DE6-IOM-ENC
Encoder interface module
a Page 84
Accessories
Radio interference filter 2DE6-LZ3...
a Page 69
Mains chokes 2DE4-LN3...
a Page 86
Braking resistor 3DE4-BR1-...High-capacity resistors with a thermostat in the enclosure (IP20) for connection to the braking transistor of the DV6
a Page 87
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Moeller NK8230-1060GB
DescriptionDF6 Freqeuncy Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
44
Application Function
Frequency inverters of the DF6 series enable economic speed control of three-phase motors in standard applications with quadratic load characteristics (pumps, fans).
The assigned performance range for four pole three-phase asynchronous motors ranges from 11 kW to 132 kW at 400 V.
The DF6 can also be used as an individual drive (stand-alone) and can be integrated into automation systems. The V/f predetermined control (voltage/frequency) enables a wide application spectrum in pump and fan applications, with heating and air conditioning systems as well as in all areas of process control with flow rate regulation.
A comprehensive range of protection features guarantee safe operation as well as protection of the frequency inverter and motor:• overcurrent, earth fault• overload, electronic motor protection• overtemperature• overvoltage, undervoltage• phase failure
Two parameter sets with a comprehensive functions:• PID closed-loop controller• automatic energy saving mode• motor synchronization and flying restart circuit• user macro storage• automatic restart after a power failure• electronic motor potentiometer function• 16 fixed frequencies• min./max. frequency limitation
Features Documentation
• Compact construction• Plug-in keypad (external installation possible) with four character 7 segment
display, 6 function keys and setpoint value potentiometer• RS 485 and RS 422 serial interface• Six digital inputs (24 V DC)• Two analog inputs (0...+10 V, 4...20 mA)• Three relays (a changeover contact, two make contacts: 24 V DC/230 V AC)• Thermistor input• Bus interface (PROFIBUS-DP) can be integrated• Terminal extension (analog/digital) can be integrated• Global standards conforming to CE, UL, c-UL, CSA and cTick
Each DF6 frequency inverter is supplied with a mounting and connection instruction sheet (AWA) and a CD.The AWA is a short description with illustrations and indicates correct handling, installation and electrical connection of the device. The text information supplied is printed in 7 languages (German, English, French, Italian, Russian, Chinese).The CD contains a detailed manual (German, English) and parameter definition software with help text.
Note: The CD runs on PC's with WINDOWS operating systems (95, 98, NT, 2000). The DEX-CBL-2M0-PC connection cable is required for connection of the PC (RS 232) and DF6 frequency inverter (RS 422).
For Immediate Delivery call KMParts.com at (866) 595-9616
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
45Moeller NK8230-1060GB
DescriptionDV6 Vector Frequency Inverters
Application Function
The DV6 is the most powerful vector control frequency inverter of its class, with more than 200 % starting torque and practically full static torque without feedback (sensorless). It guarantees the highest levels of smooth operation and is particularly suited to highly-dynamic applications in the pakkaging, printing and textile industries as well as for machine tools, and with material handling with elevator systems and hoist applications.The DV6 can also be used as an individual drive (stand-alone) and can be integrated into automation systems.The assigned performance range for four pole three-phase asynchronous motors ranges from 0,75 kW to 132 kW at 400 V.
A comprehensive range of protection features guarantee safe operation as well as protection of the frequency inverter and motor:• overcurrent, earth fault• overload, electronic motor protection• overtemperature• overvoltage, undervoltage• phase failure• Configurable delay with emergency-off and voltage failure
Three parameter sets with comprehensive functions:• P/PI controler and PID closed loop controller• automatic voltage regulation• motor synchronization and flying restart circuit• rapid stop function• user macro storage• electronic motor potentiometer function• 16 fixed frequencies (bit/binary)• min./max. frequency limitation
Features Documentation
• Sensorles vector control (closed / open loop)• Motor autotuning (online/offline)• Internal brake transistor (DV6-340-075 to DV6-340-11K)• 32 bit processor• Plug-in keypad (external installation possible) with four character 7 segment
display, 6 function keys and setpoint value potentiometer• RS 485 and RS 422 serial interface• 9 digital inputs (24 V DC)• Three analog inputs (0...+10 V, 10, 4...20 mA)• Thermistor input• Five digital outputs (24 V DC)• Two analog outputs (0...+10 V, 4...20 mA)• Relay (changeover contact: 24 V DC/230 V AC)• Bus interface (PROFIBUS-DP) can be integrated• Terminal extension (analog/digital) can be integrated• Globale standards conforming to CE, UL, c-UL, CSA and cTick
Each DV6 frequency inverter is supplied with a mounting and connection instruction sheet (AWA) and a CD. The AWA is a short description with illustrations and indicates correct handling, installation and electrical connection of the device. The text information supplied is printed in 7 languages (German, English, French, Italian, Russian, Chinese).The CD contains a detailed manual (German, English) and parameter definition software with help text.
Note:The CD runs on PC's with Windows operating systems (95, 98, NT, 2000). The DEX-CBL-2M0-PC connection cable is required for connection of the PC (RS 232) and DV6 frequency inverter (RS 422).
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
EngineeringAssigned Switching and Protective Elements for DF6
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
46
Motor Frequency inverter Mains supply
Assigned motor rating
Mains currentRatedoperational current
Without mains choke or line filter
Mains fuse Mains contactor Mains choke 1) Radio interference filter
PkW
IeA
INA
DF6 frequency inverterthree-phase mains connection (3 x 400 V AC)DF6-340-11K 11 22 24 PKM0-25 DIL0M DE4-LN3-15K DE6-LZ3-032-V4DF6-340-15K 15 29 32 PKM4-40 DIL0M DE4-LN3-15K DE6-LZ3-032-V4DF6-340-18K5 18.5 37 41 PKM4-50 DIL1M DE4-LN3-22K DE6-LZ3-064-V4DF6-340-22K 22 43 47 PKM4-50 DIL1M DE4-LN3-30K DE6-LZ3-064-V4DF6-340-30K 30 57 63 PKM4-63 DIL2M DE4-LN3-45K DE6-LZ3-064-V4DF6-340-37K 37 70 77 NZM7-80N-OBI DIL2M DE4-LN3-45K DE6-LZ3-080-V4DF6-340-45K 45 85 94 NZM7-100N-OBI DIL3M80 DE4-LN3-55K DE6-LZ3-115-V4DF6-340-55K 55 105 116 NZM7-125N-OBI DIL4M115 DE4-LN3-75K DE6-LZ3-115-V4DF6-340-75K 75 135 149 NZM7-160N-OBI DIL4M115 DE4-LN3-90K DE6-LZ3-150-V4DF6-340-90K 90 160 176 NZM7-200N-OBI DILM185 DDK2,5-9,2 DE6-LZ3-220-V4DF6-340-110K 110 195 215 NZM7-250N-OBI DILM185 DDK3,2-9,2 DE6-LZ3-220-V4DF6-340-132K 132 230 253 NZM7-250N-OBI DILM250 DDK4,0-9,2 DE6-LZ3-260-V4
Notes 1) Mains chokes reduce the mains current by up to 30% and increase the lifespan of the frequency inverter.
Mains fuse with FAZ a Main Catalogue 2001/2002, Industrial Switchgear, Section 12Mains fuse with PKZa Main Catalogue 2001/2002, Industrial Switchgear, Section 08DIL mains contactor a Main Catalogue 2001/2002, Industrial Switchgear, Section 05DE4-LN-... mains chokea Page 86
For Immediate Delivery call KMParts.com at (866) 595-9616
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
47Moeller NK8230-1060GB
EngineeringAssigned Switching and Protective Elements for DV6
Motor Frequency inverter Mains supply
Assigned motor rating
Mains currentRatedoperational current
Without mains choke or line filter
Mains fuse Mains contactor Mains choke 1) Radio interference filter
PkW
IeA
INA
DV6 frequency inverterthree-phase mains connection (3 x 400 V AC)DV6-340-075 0.75 2.5 2.8 PKM0-6,3 DILEEM DE4-LN3-075 DE6-LZ3-013-V4DV6-340-1K5 1.5 3.8 4.2 PKM0-6,3 DILEEM DE4-LN3-2K2 DE6-LZ3-013-V4DV6-340-2K2 2.2 5.3 5.8 PKM0-10 DILEEM DE4-LN3-3K0 DE6-LZ3-013-V4DV6-340-4K0 4 8.6 9.5 PKM0-10 DIL00M DE4-LN3-4K0 DE6-LZ3-013-V4DV6-340-5K5 5.5 12 13 PKM0-16 DIL00M DE4-LN3-7K5 DE6-LZ3-013-V4DV6-340-7K5 7.5 16 18 PKM0-20 DIL00M DE4-LN3-11K DE6-LZ3-032-V4DV6-340-11K 11 23 25 PKZM4-40 DIL0M DE4-LN3-15K DE6-LZ3-032-V4DV6-340-15K 15 32 35 PKZM4-40 DIL0M DE4-LN3-15K DE6-LZ3-064-V4DV6-340-18K5 18.5 38 42 PKZM4-50 DIL1M DE4-LN3-22K DE6-LZ3-064-V4DV6-340-22K 22 48 53 PKZM4-58 DIL1M DE4-LN3-30K DE6-LZ3-064-V4DV6-340-30K 30 58 63 NZM7-80N-OBI DIL2M DE4-LN3-45K DE6-LZ3-080-V4DV6-340-37K 37 75 83 NZM7-100N-OBI DIL2M DE4-LN3-45K DE6-LZ3-115-V4DV6-340-45K 45 90 99 NZM7-100N-OBI DIL3M80 DE4-LN3-55K DE6-LZ3-115-V4DV6-340-55K 55 110 121 NZM7-125N-OBI DIL4M115 DE4-LN3-75K DE6-LZ3-125-V4DV6-340-75K 75 149 164 NZM7-160N-OBI DIL4M115 DE4-LN3-90K DE6-LZ3-220-V4DV6-340-90K 90 176 194 NZM7-200N-OBI DILM185 DDK3,2-9,2 DE6-LZ3-220-V4DV6-340-110K 110 217 239 NZM7-250N-OBI DILM225 DDK4,0-9,2 DE6-LZ3-260-V4DV6-340-132K 132 260 286 NZM10-400N/ZM400 DILM250 DDK4,0-9,2 DE6-LZ3-260-V4
Notes 1) Mains chokes reduce the mains current by up to 30% and increase the lifespan of the frequency inverter.
Mains fuse with FAZ a Main Catalogue 2001/2002, Industrial Switchgear, Section 12Mains fuse with PKZa Main Catalogue 2001/2002, Industrial Switchgear, Section 08DIL mains contactor a Main Catalogue 2001/2002, Industrial Switchgear, Section 05DE4-LN-... mains chokea Page 86
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Moeller NK8230-1060GB
EngineeringDF6 Wiring Examples
DF5
, DF6
Fre
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ers
DV5
, DV6
Vec
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Freq
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48
DF6-340-... frequency inverter
Actuation Example
Ventilation system temperature regulation.When the room temperature increases, the fan must increase its speed. The required temperature is set via potentiometer R1 (e.g. 20 °C)
EMERGENCY-STOP circuit
S1:S2:K1M:Q1:Z1:
OFFONMains contactorLine protectionRadio interference filter
Wiring
K1M
S2
Q1
S1
K1M
3 h 400 V, 50/60 Hz
G1
L1 L2 L3 PE
L1L2L3PE
K1M
Q1
L1 L2 L3
Z1 PE
DC+ DC–L+ U V W PE HOI
PID
O L FW P24
PES
PES
PE4...20 mA
PES
PES
MM1
X1
3 ~
PEIII
e
4K7
R1
PES
M
FWD
P1i
50 ˚C
20 ˚C
100 %
20 mA4 mA
40 %
10.4 mA
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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49Moeller NK8230-1060GB
EngineeringDV6 Wiring Examples
DV6-340-... vector frequency inverterwith integrated encoder module (DE6-IOM-ENC) and external braking resistor (DE4-BR1-...)
Actuation Example
Hoist with speed regulation, control and monitoring via PLCMotor with thermistor (PTC resistor)
EMERGENCY-STOP circuit
S1:S2:Q1:K1M:K2:RB:B1:Y1:
OFFONLine protectionMains contactorControl contactor enableBraking resistorEncoder, 3 channelHolding brake
Wiring
K2 Y1
S2
S1
K1M
K1M
K1M G1
TI
K12
T2
K11
SPS K2
FreigabeK3
Q1
RB
3 h 400 V, 50/60 Hz
G1RB
L1 L2 L3 PE
L1L2L3PE
K1M
Q1
L1 L2 L3
Z1 PE
DC+ DC– BRL+ U V W PE Th CM1 CM2 11 12 13
PES
PES
M3 ~
III
e
i
2 3 81 FW P24
CM2
B1
M1
I..
EncoderStörung...Temp.
Y1
m
Steuerung (SPS)
n1 n2 n3 REV FWD
I.. I.. Q.. Q.. Q.. Q.. Q.. P24
EP5
DE6-IOM-ENC
EG5 EAPEAN EBP EBN EZP EZN
T1 T2 PE
21
DE4-BR1...
i
PES PES
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Moeller NK8230-1060GB
DF6 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
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ers
DV5
, DV6
Vec
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Freq
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50
Rated voltage Max. rated operational current
Rated power for motors
TypeArticle no.
PriceSee Price List
Std. pack
at 400 V 3-phase AC
Ue Ie P
V A kW
Frequency inverter 11 kW to 132 kW at 400 V3 AC 342 – 528 V g 0 % 22 11 DF6-340-11K
2313841 off
29 15 DF6-340-15K231385
37 18.5 DF6-340-18K5231386
43 22 DF6-340-22K231387
57 30 DF6-340-30K231388
70 37 DF6-340-37K231389
85 45 DF6-340-45K231390
105 55 DF6-340-55K231391
135 75 DF6-340-75K231392
160 90 DF6-340-90K231393
195 110 DF6-340-110K231394
230 132 DF6-340-132K231395
Notes Rated operational current with an operating frequency of 5 kHz and an ambient temperature of +40 °C.
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
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y In
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51Moeller NK8230-1060GB
DV6 Vector Frequency Inverters
Rated voltage Max. rated operational current
Rated power for motors
TypeArticle no.
PriceSee Price List
Std. pack
at 400 V 3-phase AC
Ue Ie P
V A kW
Vector frequency inverter 0.75 kW to 132 kW at 400 V3 AC 342 – 528 V g 0 % 2.5 0.75 DV6-340-075
2313961 off
3.8 1.5 DV6-340-1K5231397
5.3 2.2 DV6-340-2K2231398
8.6 4 DV6-340-4K0231399
12 5.5 DV6-340-5K5231400
16 7.5 DV6-340-7K5231401
23 11 DV6-340-11K231402
32 15 DV6-340-15K231403
38 18.5 DV6-340-18K5231404
48 22 DV6-340-22K231405
58 30 DV6-340-30K231406
75 37 DV6-340-37K231407
90 45 DV6-340-45K231408
110 55 DV6-340-55K231409
149 75 DV6-340-75K231410
176 90 DV6-340-90K231411
217 110 DV6-340-110K231412
260 132 DV6-340-132K231413
Notes Rated operational current with an operating frequency of 5 kHz and an ambient temperature of +40 °C.
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Moeller NK8230-1060GB
Technical DataDF6 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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DF5
, DF6
Fre
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DV5
, DV6
Vec
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Freq
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y In
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Moeller NK8230-1060GB
Technical DataDF6 Frequency Inverters
DF6-340-11K DF6-340-15K DF6-340-18K5 DF6-340-22K DF6-340-30K DF6-340-37K
GeneralStandards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61800-3, EN 61800-3 incl. A11Ambient temperature
Operating temperature 1) °C -10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
-10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
Storage °C -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70Shock resistance Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 Hz Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 Hz Vibrations and shaking, maximum
2.94 m/s2 (0.3 g) at 10 to 55 HzPollution degree VDE 0110 Part 2, pollution degree 2 VDE 0110 Part 2, pollution degree 2Climatic proofing Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %) Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %)Altitude m 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea levelMounting position Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspendedFree surrounding areas 100 mm above and below device 100 mm above and below deviceEmitted interference IEC/EN 61800-3 (EN 55011 group 1 class B) IEC/EN 61800-3 (EN 55011 group 1 class B)Noise immunity IEC/EN 61800-3, industrial environment IEC/EN 61800-3, industrial environmentInsulation resistance Overvoltage category III according to VDE 0110 Overvoltage category III according to VDE 0110Leakage current to PE mA > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178)Degree of protection IP20 IP20 IP20 IP20 IP20 IP20Protection against direct contact Finger and back-of-hand proof (VGB 4) Finger and back-of-hand proof (VGB 4)Protective isolation against switching circuitry
Safe isolation from the mains. Double basic isolation (according to DIN 50178) Safe isolation from the mains. Double basic isolation (according to DIN 50178)
Protective measures Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Heat dissipation with rated operational current Ie
W 600 800 975 1150 1550 1900
Dimensions (B × H × T) mm 216 x 266 x 190.5 216 x 266 x 190.5 256 x 396 x 210.5 256 x 396 x 210.5 256 x 396 x 210.5 316 × 546 × 215.5Weight kg 5 5 12 12 12 20
Power sectionRated operational voltage V AC 400 400 400 400 400 400Rated voltage Ue V 3 x AC 342 – 528 V g 0 % 3 x AC 342 – 528 V g 0 % 3 x AC 342 – 528 V g 0 % 3 x AC 342 – 528 V g 0 % 3 x AC 342 – 528 V g 0 % 3 x AC 342 – 528 V g 0 %Mains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %)Mains current 2)
Ui = 3-phase, 400 V AC I A 24 32 41 47 63 77Alternative DC supply UDC V DC 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760Modulation method Pulse width modulation V/f-predetermined control Pulse width modulation (PWM), V/f-predetermined controlSwitching frequency 5 kHz, can be selected between 0.5 and 12 kHz 5 kHz, can be selected between 0.5 and 12 kHzOutput voltage V 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue 3 x AC Ue
Output frequency Hz 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400Frequency resolution Hz 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint values 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint valuesFrequency error limit at 20 °C g10 K g0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency
with analog setpoint valuesg0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency with analog setpoint values
Max. rated operational current Ie A 22 29 37 43 57 70Permissible overcurrent 120 % for 60 s/150 % for 0.5 s, every 600 s 120 % for 60 s/150 % for 0.5 s, every 600 sTorque during start Quadratic, linear load characteristic (base frequency 30 – 400 Hz) Quadratic, linear load characteristic (base frequency 30 – 400 Hz)Apparent power at 400 V kVA 15.2 20 25.6 29.7 39.4 48.4Apparent power at 480 V kVA 18.2 24.1 30 35.7 47.3 58.1Standard operation with 120 % overload. Assigned motor rating (4-pole asynchronous motor)
400 V kW 11 15 18.5 22 30 37460 V HP 15 20 25 30 40 50
Brake transistorSwitching threshold UDC V DC 740 740 – – – –Resistor RB at 100 % c.d.f. R O 150 150 – – – –Lowest impedance RB O 50 50 – – – –Max. duty factor (c.d.f.) with smallest resistance RB
% c.d.f. 10 10 – – – –
Note 1) If the frequency inverter is to be installed in a control panel, enclosure or similar installation, the prevalent ambient within these enclosuresor control panels is considered to be the ambient temperature Ta.
1) All rating data of the power section are based on a switching frequency of 5 kHz (default setting) and an ambient temperature of +40 C, with operation of a four pole three-phase asynchronous motor.
52 53
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Moeller NK8230-1060GB
Technical DataDF6 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
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DF5
, DF6
Fre
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cy In
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DV5
, DV6
Vec
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Freq
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y In
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Moeller NK8230-1060GB
Technical DataDF6 Frequency Inverters
Control circuitThermistor input 1 x PTC thermistor, temperature switch 1 x PTC thermistor, temperature switchRelay 1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or
24 V DC/0.7 A inductive load/3 A resistive load2 x make contacts, 230 V AC/1 A inductive load/5 A resistive load or24 V DC/1 A inductive load/5 A resistive load
1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or24 V DC/0.7 A inductive load/3 A resistive load2 x make contacts, 230 V AC/1 A inductive load/5 A resistive load or24 V DC/1 A inductive load/5 A resistive load
Serial interface RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485Control voltage
output setpoint voltage V +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mAoutput control voltage V +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA
Parameterization 2 parameter sets (online/offline parameterization), parameter protection (programmable) 2 parameter sets (online/offline parameterization), parameter protection (programmable)Inputs
digital (parameters can be defined) 6 x +24 V DC (5 x parameters can be defined, 1 x FWD) 6 x +24 V DC (5 x parameters can be defined, 1 x FWD)analog, 8 bit resolution Amount 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 100 Ω) 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 100 Ω)
Outputsanalog (parameters can be defined), 8 bit resolution
1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA4 – 20 mA (load impedance max. 250 O) 4 – 20 mA (load impedance max. 250 O)
PWM (parameters can be defined) 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA
Connection terminal capacityPower cables
mm2 6 10 16 25 25 35AWG 8 6 6 4 3 1
Relay connectionmm2 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6
Control circuitmm2 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6
DF6-340-11K DF6-340-15K DF6-340-18K5 DF6-340-22K DF6-340-30K DF6-340-37K
54 55
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDF6 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
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cy In
vert
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DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDF6 Frequency Inverters
DF6-340-45K DF6-340-55K DF6-340-75K DF6-340-90K DF6-340-110K DF6-340-132K
GeneralStandards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61800-3, EN 61800-3 incl. A11Ambient temperature
Operating temperature 1) °C -10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
-10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
Storage, transport °C -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70Shock resistance Vibrations and shaking, maximum 2.94 m/s2 (0.3 g) at 10 to 55 Hz Vibrations and shaking, maximum 2.94 m/s2 (0.3 g) at 10 to 55 HzPollution degree VDE 0110 Part 2, pollution degree 2 VDE 0110 Part 2, pollution degree 2Climatic proofing Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %) Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %)Altitude m 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea levelMounting position Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspendedFree surrounding areas 100 mm above and below device 100 mm above and below deviceEmitted interference IEC/EN 61800-3 (EN 55011 group 1 class B) IEC/EN 61800-3 (EN 55011 group 1 class B)Noise immunity IEC/EN 61800-3, industrial environment IEC/EN 61800-3, industrial environmentInsulation resistance Overvoltage category III according to VDE 0110 Overvoltage category III according to VDE 0110Leakage current to PE mA > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178) > 3.5 (according to EN 50178)Degree of protection IP20 IP20 IP20 IP20 IP20 IP20Protection against direct contact Finger and back-of-hand proof (VGB 4) Finger and back-of-hand proof (VGB 4)Protective isolation against switching circuitry
Safe isolation from the mains. Double basic isolation (according to DIN 50178) Safe isolation from the mains. Double basic isolation (according to DIN 50178)
Protective measures Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Heat dissipation with rated operational current Ie
W 2300 2800 3750 4500 5500 6500
Dimensions (B × H × T) mm 396 × 556 × 270.5 396 × 556 × 270.5 396 x 556 x 270.5 396 × 706 × 290.5 396 × 706 × 290.5 486 × 746 × 282Weight kg 30 30 30 60 60 80
Power sectionRated operational voltage V AC 400 400 400 400 400 400Rated voltage Ue V 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 %Mains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %)Mains current 2)
Ui = 3-phase, 400 V AC I A 94 116 149 176 215 253Alternative DC supply UDC V DC 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760Modulation method Pulse width modulation (PWM), V/f-predetermined control Pulse width modulation (PWM), V/f-predetermined controlSwitching frequency 5 kHz, can be selected between 0.5 and 12 kHz 5 kHz, can be selected between 0.5 and 8 kHzOutput voltage V 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue
Output frequency Hz 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 360 0.5 – 50, max. 360Frequency resolution Hz 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint values 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint valuesFrequency error limit at 20 °C g10 K g0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency
with analog setpoint valuesg0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency with analog setpoint values
Max. rated operational current Ie A 85 105 135 160 195 230Permissible overcurrent 120 % for 60 s/150 % for 0.5 s, every 600 s 120 % for 60 s/150 % for 0.5 s, every 600 sTorque during start Quadratic, linear load characteristic (base frequency 30 – 400 Hz) Quadratic, linear load characteristic (base frequency 30 – 400 Hz)Apparent power at 400 V kVA 58.8 72.7 93.5 111 135 159Apparent power at 480 V kVA 70.1 87.1 112 133 162 191Standard operation with 120 % overload. Assigned motor rating (4-pole asynchronous motor)
400 V kW 45 55 75 90 110 132460 V HP 60 75 100 125 150 175
Notes 1)
2)
If the frequency inverter is to be installed in a control panel, enclosure or similar installation, the prevalent ambient within these enclosuresor control panels is considered to be the ambient temperature Ta.All rating data of the power section are based on a switching frequency of 5 kHz (default setting) and an ambient temperature of +40 C, with operation of a four pole three-phase asynchronous motor.
56 57
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDF6 Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDF6 Frequency Inverters
Control circuitThermistor input 1 x PTC thermistor, temperature switch 1 x PTC thermistor, temperature switchRelay 1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or
24 V DC/0.7 A inductive load/3 A resistive load2 x make contacts, 230 V AC/1 A inductive load/5 A resistive load or24 V DC/1 A inductive load/5 A resistive load
1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or24 V DC/0.7 A inductive load/3 A resistive load2 x make contacts, 230 V AC/1 A inductive load/5 A resistive load or24 V DC/1 A inductive load/5 A resistive load
Serial interface RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485Control voltage
output setpoint voltage V +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mAoutput control voltage V +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA
Parameterization 2 parameter sets (online/offline parameterization), parameter protection (programmable) 2 parameter sets (online/offline parameterization), parameter protection (programmable)Inputs
digital (parameters can be defined) 6 x +24 V DC (5 x parameters can be defined, 1 x FWD) 6 x +24 V DC (5 x parameters can be defined, 1 x FWD)analog, 8 bit resolution 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 100 Ω) 2 x 0 – +10 V DC (input impedance 10 kΩ, 4 – 20 mA (load impedance 100 Ω)
Outputsanalog (parameters can be defined), 8 bit resolution
1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA 1 x 0 – +10 V DC, 2 mA4 – 20 mA (load impedance max. 250 O) 4 – 20 mA (load impedance max. 250 O)
PWM (parameters can be defined) 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA 0 – 10 V, max. 1.2 mA
Connection terminal capacityPower cables
mm2 35 50 2 x 35 2 x 35 2 x 50 2 x 70AWG 1 1/0 2 x 1 2 x 1 2 x 1/0 2 x 1/0
Relay connectionmm2 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6
Control circuitmm2 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6
DF6-340-45K DF6-340-55K DF6-340-75K DF6-340-90K DF6-340-110K DF6-340-132K
58 59
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDV6 Vector Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDV6 Vector Frequency Inverters
DV6-340-075 DV6-340-1K5 DV6-340-2K2 DV6-340-4K0 DV6-340-5K5 DV6-340-7K5 DV6-340-11K DV6-340-15K DV6-340-18K5
GeneralStandards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61800-3, EN 61800-3 incl. A11Ambient temperature
Operating temperature 1) °C -10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
-10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
Storage, transport °C -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70Shock resistance Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 Hz Vibrations and shaking, maximum 5.9 m/s2 (0.6 g) at 10 to 55 HzPollution degree VDE 0110 Part 2, pollution degree 2 VDE 0110 Part 2, pollution degree 2Climatic proofing Class 3K3 according to EN501-78
(non-condensing, average relative humidity 20 to 90 %)Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %)
Altitude m 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea levelMounting position Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspendedFree surrounding areas 100 mm above and below, 50 mm on each side 100 mm above and below, 50 mm on each sideEmitted interference IEC/EN 61800-3 (EN 55011 group 1 class B) IEC/EN 61800-3 (EN 55011 group 1 class B)Noise immunity IEC/EN 61800-3, industrial environment IEC/EN 61800-3, industrial environmentInsulation resistance Overvoltage category III according to VDE 0110 Overvoltage category III according to VDE 0110Leakage current to PE mA > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178)Degree of protection IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1)Protection against direct contact Finger and back-of-hand proof (VGB 4) Finger and back-of-hand proof (VGB 4)Protective isolation against switching circuitry Safe isolation from the mains. Double basic isolation (according to DIN 50178) Safe isolation from the mains. Double basic isolation (according to DIN 50178)Protective measures Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature,
electronic motor protection: J monitoring and PTC input (thermistor or thermostat)Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Heat dissipation with rated operational current Ie W 88 125 160 235 325 425 600 800 975Dimensions (B × H × T) mm 159 × 260.5 × 152 159 × 260.5 × 152 159 × 260.5 × 152 159 × 260.5 × 152 159 × 260.5 × 152 216 x 266 x 182 216 x 266 x 182 256 ×396 × 210 256 ×396 × 210Weight kg 3.5 3.5 3.5 3.5 3.5 5 5 12 12
Power sectionRated operational voltage V AC 400 400 400 400 400 400 400 400 400Rated voltage Ue V 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 % 3 × AC 342 – 528 V g0 %Mains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60
(47 -0 % to 63 +0 %)50/60(47 -0 % to 63 +0 %)
50/60(47 -0 % to 63 +0 %)
50/60(47 -0 % to 63 +0 %)
50/60(47 -0 % to 63 +0 %)
50/60(47 -0 % to 63 +0 %)
Mains current 2)
Ui = 3-phase, 400 V AC I A 2.8 4.2 5.8 9.5 13 18 25 35 42Alternative DC supply UDC V DC 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760Modulation method Sensorless vector control, pulse width modulation (PWM) Sensorless vector control, pulse width modulation (PWM) Switching frequency 5 kHz, can be selected between 0.5 and 15 kHz 5 kHz, can be selected between 0.5 and 15 kHzOutput voltage V 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue
Output frequency Hz 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400Frequency resolution Hz 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint values 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint valuesFrequency error limit at 20 °C g10 K g0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the
maximum frequency with analog setpoint valuesg0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency with analog setpoint values
Max. rated operational current Ie A 2.5 3.8 5.3 8.6 12 16 23 32 38Apparent power at 400 V kVA 1.7 2.6 3.6 5.9 8.3 11 15.9 22.1 26.3Apparent power at 480 V kVA 2 3.1 4.4 7.1 9.9 13.3 19.1 26.6 31.5Standard operation with 150 % overload. Assigned motor rating (4-pole asynchronous motor)
400 V kW 0.75 1.5 2.2 4 5.5 7.5 11 15 18.5460 V HP 1 2 3 5 7,5 10 15 20 25
Torque during start 200 % at 0.5 Hz (sensorless vector control mode) 200 % at 0.5 Hz (sensorless vector control mode)Brake transistor
Switching threshold UDC V DC 740 740 740 740 740 740 740 – –Resistor RB at 100 % c.d.f. R O 300 300 300 200 200 150 150 – –Lowest impedance RB O 100 100 100 70 70 50 50 – –Max. duty factor (c.d.f.) with smallest resistance RB
% c.d.f. 10 10 10 10 10 10 10 – –
Note 1)
2)
If the frequency inverter is to be installed in a control panel, enclosure or similar installation, the prevalent ambient within these enclosures or control panels is considered to be the ambient temperature Ta. All rating data of the power section are based on a switching frequency of 5 kHz (default setting) and an ambient temperature of +40 C, with operation of a four pole three-phase asynchronous motor.
60 61
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDV6 Vector Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDV6 Vector Frequency Inverters
Control circuitRelay 1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/
0.7 A inductive load/3 A resistive load1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive load/3 A resistive load
Serial interface RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485Control voltage
output setpoint voltage V +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mAoutput control voltage V +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA
Parameterization 3 parameter sets (online/offline parameterization), parameter protection (programmable)
3 parameter sets (online/offline parameterization), parameter protection (programmable)
Inputsthermistor input 1 x PTC thermistor, temperature switch 1 x PTC thermistor, temperature switchclockwise rotating field enable 1 x +24 V DC (input impedance 4.7 kO) 1 x +24 V DC (input impedance 4.7 kO)digital (parameters can be defined) 8 x +24 V DC (input impedance 4.7 kO) 8 x +24 V DC (input impedance 4.7 kO)analog, 12 bit resolution 3 x 0 – +10 V DC, g10 V DC (input impedance 10 kΩ), 4 – 20 mA (load impedance 100
Ω)3 x 0 – +10 V DC, g10 V DC (input impedance 10 kΩ), 4 – 20 mA (load impedance 100 Ω)
Outputsdigital 1) 5 x 24 V DC transistor (open collector, max. 50 mA per output, parameters can be
defined)5 x 24 V DC transistor (open collector, max. 50 mA per output, parameters can be defined)
analog (parameters can be defined), 8 bit resolution
3 x 0 – +10 V DC (max. 2 mA), 4 – 20 mA (max. load impedance 250O) 3 x 0 – +10 V DC (max. 2 mA), 4 – 20 mA (max. load impedance 250O)
PWM (parameters can be defined) 1 x 0 – 10 V, max. 1.2 mA 1 x 0 – 10 V, max. 1.2 mA 1 x 0 – 10 V, max. 1.2 mA 1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
Connection terminal capacityPower cables
mm2 1.5 2.5 2.5 2.5 2.5 4 6 10 16
AWG 20 18 16 14 12 10 8 6 6Relay connection
mm2 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5
AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6Control circuit
mm2 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5
AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6
Note 1) Recommended amplifier module ETS4-VS3 for the digital outputs (open collector) Page 05/047, Main Catalogue 0211-2001/2002, Industrial Switchgear
DV6-340-075 DV6-340-1K5 DV6-340-2K2 DV6-340-4K0 DV6-340-5K5 DV6-340-7K5 DV6-340-11K DV6-340-15K DV6-340-18K5
62 63
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDV6 Vector Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDV6 Vector Frequency Inverters
DV6-340-22K DV6-340-30K DV6-340-37K DV6-340-45K DV6-340-55K DV6-340-75K DV6-340-90K DV6-340-110K DV6-340-132K
General Standards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61800-3, EN 61800-3 incl. A11Ambient temperature
Operating temperature 1) °C -10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
-10 – +40 with rated current Ie without derating, up to 50 with a reduced pulse frequency of 2 kHz and reduced output current to 80 % Ie
Storage, transport °C -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70 -25 – +70Shock resistance Vibrations and shaking,
maximum 5.9 m/s2 (0.6 g) at 10 to 55 Hz
Vibrations and shaking, maximum 2.94 m/s2 (0.3 g) at 10 to 55 Hz
Vibrations and shaking, maximum 2.94 m/s2 (0.3 g) at 10 to 55 Hz
Pollution degree VDE 0110 Part 2, pollution degree 2 VDE 0110 Part 2, pollution degree 2Climatic proofing Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90
%)Class 3K3 according to EN 50178 (non-condensing, average relative humidity 20 to 90 %)
Altitude m 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea level 0 – 1000 above sea levelMounting position Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspended Vertically suspendedFree surrounding areas 100 mm above and below, 50 mm on each side 100 mm above and below, 50 mm on each sideEmitted interference IEC/EN 61800-3 (EN 55011 group 1 class B) IEC/EN 61800-3 (EN 55011 group 1 class B)Noise immunity IEC/EN 61800-3, industrial environment IEC/EN 61800-3, industrial environmentInsulation resistance Overvoltage category III according to VDE 0110 Overvoltage category III according to VDE 0110Leakage current to PE mA > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178) > 3.5 (acc. to EN 50178)Degree of protection IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1) IP20 (NEMA 1)Protection against direct contact Finger and back-of-hand proof (VGB 4) Finger and back-of-hand proof (VGB 4)Protective isolation against switching circuitry Safe isolation from the mains. Double basic isolation (according to DIN 50178) Safe isolation from the mains. Double basic isolation (according to DIN 50178)Protective measures Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature,
electronic motor protection: J monitoring and PTC input (thermistor or thermostat)Overcurrent, earth fault, overvoltage, undervoltage, overload, overtemperature, electronic motor protection: J monitoring and PTC input (thermistor or thermostat)
Heat dissipation with rated operational current Ie W 115 1550 1900 2300 2800 3750 4500 5500 6500Dimensions (B × H × T) mm 256 ×396 × 210 310 × 540 × 202.2 390 × 550 × 255.2 390 × 550 × 255.2 390 × 550 × 255.2 390 × 700 × 275.2 390 × 700 × 275.2 480 × 740 × 293.2 480 × 740 × 293.2Weight kg 12 20 30 30 30 60 60 80 80
Power sectionRated operational voltage V AC 400 400 400 400 400 400 400 400 400Rated voltage Ue V 3 × AC 342 – 528 V g 0 % 3 × AC 342 – 528 V g 0 % 3 × AC 342 – 528 V g 0 % 3 × AC 342 – 528 V g 0
%3 × AC 342 – 528 V g 0 %
3 × AC 342 – 528 V g 0 %
3 × AC 342 – 528 V g 0 %
3 × AC 342 – 528 V g 0 %
3 × AC 342 – 528 V g 0 %
Mains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60(47 -0 % to 63 +0 %)
50/60(47 -0 % to 63 +0 %)
50/60(47 -0 % to 63 +0 %)
50/60(47 -0 % to 63 +0 %)
50/60(47 -0 % to 63 +0 %)
50/60(47 -0 % to 63 +0 %)
Mains current 2)
Ui = 3-phase, 400 V AC I A 53 63 83 99 121 164 194 239 286Alternative DC supply UDC V DC 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760 420 – 760Modulation method Sensorless vector control, pulse width modulation (PWM) Sensorless vector control, pulse width modulation (PWM) Switching frequency 5 kHz, can be selected between 0.5 and 15 kHz 5 kHz, can be selected between 0.5 and 15 kHzOutput voltage V 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue 3 × AC Ue
Output frequency Hz 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400 0.5 – 50, max. 400Frequency resolution Hz 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint values 0.1, with digital setpoint values/maximum frequency/1000 with analog setpoint
valuesFrequency error limit at 20 °C g10 K g0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the
maximum frequency with analog setpoint valuesg0.01 % of the maximum frequency with digital setpoint values, g0.2 % of the maximum frequency with analog setpoint values
Max. rated operational current Ie A 48 58 75 90 110 149 176 217 260Permissible overcurrent 150 % for 60 s/200 % for 0.5 s, every 600 s 150 % for 60 s/200 % for 0.5 s, every 600 sTorque during start 200 % at 0.5 Hz (sensorless vector control mode) 200 % at 0.5 Hz (sensorless vector control mode)Apparent power at 400 V kVA 33.2 40.1 51.9 62.3 76.2 103.2 121.9 150.3 180.1Apparent power at 480 V kVA 39.9 48.2 62.3 74.8 91.4 123.8 146.3 180.4 216.1Standard operation with 150 % overload. Assigned motor rating (4-pole asynchronous motor)
400 V kW 22 30 37 45 55 75 90 110 132460 V HP 30 40 50 60 75 100 125 150 175
Note 1)
2)
If the frequency inverter is to be installed in a control panel, enclosure or similar installation, the prevalent ambient within these enclosures or control panels is considered to be the ambient temperature Ta. All rating data of the power section are based on a switching frequency of 5 kHz (default setting) and an ambient temperature of +40 C, with operation of a four pole three-phase asynchronous motor.
64 65
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
Technical DataDV6 Vector Frequency Inverters
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDV6 Vector Frequency Inverters
Control circuitRelay 1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/
0.7 A inductive load/3 A resistive load1 x changeover contact, 230 V AC/0.2 A inductive load/2.5 A resistive load or 24 V DC/0.7 A inductive load/3 A resistive load
Serial interface RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485 RS 422, RS 485Control voltage
output setpoint voltage V +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mA +10 DC, 20 mAoutput control voltage V +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA +24 DC, 100 mA
Parameterization 3 parameter sets (online/offline parameterization), parameter protection (programmable)
3 parameter sets (online/offline parameterization), parameter protection (programmable)
Inputsthermistor input 1 x PTC thermistor, temperature switch 1 x PTC thermistor, temperature switchclockwise rotating field enable 1 x +24 V DC (input impedance 4.7 kO) 1 x +24 V DC (input impedance 4.7 kO)digital (parameters can be defined) 8 x +24 V DC (input impedance 4.7 kO) 8 x +24 V DC (input impedance 4.7 kO)analog, 12 bit resolution 3 x 0 – +10 V DC, g10 V DC (input impedance 10 kΩ),
4 – 20 mA (load impedance 100 Ω)3 x 0 g10 V DC, g10 V DC (input impedance 10 kΩ), 4 – 20 mA (load impedance 100 Ω)
Outputsdigital 1) 5 x 24 V DC transistor (open collector, max. 50 mA per output, parameters can be
defined)5 x 24 V DC transistor (open collector, max. 50 mA per output, parameters can be defined)
analog (parameters can be defined), 8 bit resolution
3 x 0 – +10 V DC (max. 2 mA), 4 – 20 mA (max. load impedance 250O) 3 x 0 – +10 V DC (max. 2 mA), 4 – 20 mA (max. load impedance 250O)
PWM (parameters can be defined) 1 x 0 – 10 V, max. 1.2 mA 1 x 0 – 10 V, max. 1.2 mA 1 x 0 – 10 V, max. 1.2 mA 1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
1 x 0 – 10 V, max. 1.2 mA
Connection terminal capacityPower cables
mm2 16 25 35 35 2 x 35 2 x 35 2 x 50 2 x 70 2 x 70
AWG 4 3 1 1 1/0 2 x 1 2 x 1 2 x 1/0 2 x 2/0Relay connection
mm2 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5
AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6Control circuit
mm2 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5 0.14 – 1.5
AWG 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6 16 – 6
Note 1) Recommended amplifier module ETS4-VS3 for the digital outputs (open collector) Page 05/047, Main Catalogue 0211-2001/2002, Industrial Switchgear
DV6-340-22K DV6-340-30K DV6-340-37K DV6-340-45K DV6-340-55K DV6-340-75K DV6-340-90K DV6-340-110K DV6-340-132K
66 67
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
DescriptionDE.-LZ... Radio Frequency Suppression Filter
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
68
Application Function
When frequency inverters are operated in countries which are members of the European Union (EU), conformance to EMC-guideline 89/336/EEC is mandatory. The IEC/EN 61 800-3 product standard which applies for speed controlled drives considers a typical drive system principally as the sum of its parts, which is the combination of frequency inverter, cable and motor.The frequency inverters of the DF5, DV5, DF6 and DV6 series in conjunction with the radio frequency interference filters assigned here, conform with the requirements of the EMC product standard in industrial environments (second environment) and the more stringent limits for domestic environments (first environment).
Radio interference suppression filters protect against high frequency performance related interference (noise immunity) and reduce the high frequency interference of a device, which is transmitted via the mains cable or which is emitted from the mains cable, and which is to be limited to a prescribed level (emitted interference).Radio interference suppression filters must be installed in the immediate vicinity of the frequency inverter.Filters have leakage currents to earth. In the event of a malfunction (phase failure, load unbalance) they can be significantly higher than the nominal values. The filters must be earthed before they are switched on in order to avoid dangerous voltages. With leakage currents exceeding 3.5 mA, the following is stipulated by VDE 0160 or EN 60335:
• the protective conductor must be f 10 mm2 or• the protective conductor must be monitored to ensure that it is not open circuit or• an additional second conductor must be installed.
As the leakage currents are high frequency related interferences, the earthing measures must be low impedence and implemented on a large area.
Features Documentation
• Ready to connect with terminals and prefabricated connection cables for the assigned frequency inverter of the DF5, DV5, DF6 and DV6 series.
• Book type design for side installation beside the frequency inverter. The filter can also be installed underneath the frequency inverter (footprint) up to 64 A (DE6-LZ3-064-V4).
• EMC conformity for the frequency inverters of the DF5, DV5, DF6 and DV6 series:– Emitted interference, IEC/EN 61800-3 (EN 55011 group 1, class B)– Noise immunity, IEC/EN 61800-3, industrial environment
Each filter is supplied with installation and connection instructions (AWA).Notes concerning EMC compliant installation should be taken from the manuals of the respective frequency inverters.
1) Up to 50 m (according to the IEC/EN 61800-3 product standard, frequency inverters are products with limited availability). These products can cause radio frequency interference (public mains system, first environment) in domestic environments. It is necessary for the user to provide respective measures for interference suppression.
Generally available Limited availabilityFirst environment (public grid)
Up to 10 m motor cable length with a maximum pulse frequency of 16 kHz
Up to 50 m 1)
Up to 20 m motor cable length with a maximum pulse frequency of 5 kHz
Second environment (industrial)
Up to 50 m Up to 50 m
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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ers
69Moeller NK8230-1060GB
AccessoriesDE5..., DE6... Radio Frequency Interference Suppression Filter
Rated voltage Assigned frequency inverter TypeArticle no.
PriceSee Price List
Std. pack
Ue DF5 DF6 DV5 DV6V
Radio frequency interference suppression filter180 – 252 V g 0 % 1-phase AC
DF5-322-018DF5-322-037
– DE5-LZ1-007-V2232352
1 off
DF5-322-055DF5-322-075
– DE5-LZ1-012-V2232353
DF5-322-1K1DF5-322-1K5DF5-322-2K2
– DE5-LZ1-024-V2232354
342 – 506 V g 0 % 3-phase AC
DF5-340-037DF5-340-075DF5-340-1K5
– DE5-LZ3-007-V4232355
1 off
DF5-340-2K2DF5-340-3K0DF5-340-4K0
– DE5-LZ3-011-V4232356
DF5-340-5K5DF5-340-7K5
– DE5-LZ3-020-V4232357
342 – 528 V 0 % 3-phase AC
– – DE6-LZ3-013-V4232358
1 off
DF6-340-11KDF6-340-15K
– DE6-LZ3-032-V4232359
DF6-340-18K5DF6-340-22KDF6-340-30K
– DE6-LZ3-064-V4232360
1) 342 – 528 V g 0 %3-phase AC
DF6-340-37K – DE6-LZ3-080-V4232361
1 off
DF6-340-45KDF6-340-55K
– DE6-LZ3-115-V4232362
– – DE6-LZ3-125-V4232363
DF6-340-75K – DE6-LZ3-150-V4233181
DF6-340-90KDF6-340-110K
– DE6-LZ3-220-V4233182
DF6-340-132K – DE6-LZ3-260-V4233183
Notes 1) Only side mounting beside the frequency inverter possible
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Moeller NK8230-1060GB
Technical DataDE5 Radio Interference Suppression Filter
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDE5 Radio Interference Suppression Filter
DE5-LZ1-007-V2 DE5-LZ1-012-V2 DE5-LZ1-024-V2 DE5-LZ3-007-V4 DE5-LZ3-011-V4 DE5-LZ3-020-V4
GeneralStandards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61800-3, EN 61800-3 incl. A11Environmental conditions
Operating temperature °C -25 – +85 -25 – +85 -25 – +85 -25 – +85 -25 – +85 -25 – +85Altitude m 0 – 1000 above sea level, derating factor for 1000 or more above sea level: Ie –2 %/1000 m 0 – 1000 above sea level, derating factor for 1000 or more above sea level: Ie –2 %/1000 mMounting position As required, vertically suspended preferred As required, vertically suspended preferredFree surrounding areas In connection area (cable, terminals): 100 mm In connection area (cable, terminals): 100 mmHumidity class C C C C C C
Degree of protection IP20 (terminal) IP20 (terminal) IP20 (terminal) IP20 (terminal) IP20 (terminal) IP20 (terminal)Dimensions (B x H x T) mm 80 x 155 x 27 110 x 165 x 27 140 x 215 x 29 110 x 160 x 27 140 x 210 x 31 182 x 287 x 35Weight kg 0.5 0.7 1 0.8 1.1 2.4
Electrical dataTest voltage in V DC, 2 s
Phase/Phase V 1400 1400 1400 1978 1978 1978Phase/PE V 2800 2800 1400 2800 2800 1978
Leakage current to PEPhase/50 Hz/Ui mA < 3.5 < 3.5 < 15 < 3.5 < 3.5 < 10Phase/50 Hz/Ui = 460 V, (failure of two phases, Worst case)
mA – – – 32 62 120
Rated operational voltage V AC 230 230 230 400 400 400Rated voltage Ue V 180 – 252 V g0 % 1-phase AC 180 – 252 V g0 % 1-phase AC 180 – 252 V g0 % 1-phase AC 342 – 506 V g0 % 3-phase AC 342 – 506 V g0 % 3-phase AC 342 – 506 V g0 % 3-phase ACMains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %)Rated operational current 1)
Ui = 1-phase, 230 V AC I A 7 12 24 – – –Ui = 3-phase, 400 V AC I A – – – 7 11 20
Permissible overcurrent 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutesHeat dissipation with rated operational current Ie
W 6 7 9 7 10 14
Connection terminal capacitySolid mm2 4 4 4 4 4 4
Flexible mm2 4 4 4 4 4 4
Cables to frequency inverter mm2 2 × 1.5 2 × 1.5 2 × 2.5 3 × 1.5 3 × 2.5 3 × 2.5
PE stud M5 M5 M5 M5 M5 M5
Note 1) All rating data is based on an ambient temperature of +40°C.
00
0.2
0.4
0.6
0.8
1.0
1.2
20 40 60 80 100
IBIN
i[°C]
70 71
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Moeller NK8230-1060GB
Technical DataDE6 Radio Frequency Suppression Filter
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
Moeller NK8230-1060GB
Technical DataDE6 Radio Frequency Suppression Filter
DE6-LZ3-013-V4 DE6-LZ3-032-V4 DE6-LZ3-064-V4 DE6-LZ3-080-V4 DE6-LZ3-115-V4 DE6-LZ3-125-V4 DE6-LZ3-150-V4 DE6-LZ3-220-V4 DE6-LZ3-260-V4
GeneralStandards and specifications EN 50178, IEC 61800-3, EN 61800-3 incl. A11 EN 50178, IEC 61800-3, EN 61800-3 incl. A11Environmental conditions
Operating temperature °C -25 – +85 -25 – +85 -25 – +85 -25 – +85 -25 – +85 -25 – +85 -25 – +85 -25 – +85 -25 – +85Altitude m 0 – 1000 above sea level, derating factor for 1000 or more above sea level: Ie –2 %/1000 m 0 – 1000 above sea level, derating factor for 1000 or more above sea level: Ie –2 %/1000 mMounting position As required, vertically suspended preferred As required, vertically suspended preferredFree surrounding areas In connection area (cable, terminals): 100 mm In connection area (cable, terminals): 100 mmHumidity class C C C C C C C C C
Degree of protection IP20 (terminal) IP20 (terminal) IP20 (terminal) IP20 (terminal) IP20 (terminal) IP20 (terminal) IP20 (terminal) IP20 (terminal) IP20 (terminal)Dimensions (B × H × T) mm 143 x 255 x 29 203 x 260 x 43 244 x 390 x 45 60 x 400 x 87 70 x 440 x 110 70 x 440 x 110 130 x 525 x 94 130 x 525 x 94 142 x 620 x 116Weight kg 1.4 2.5 4.5 4.3 6.4 6.7 8.8 9.3 13.7
Electrical dataTest voltage in V DC, 2 s
Phase/Phase V 2064 2064 2064 2064 2064 2064 2064 2064 2064Phase/PE V 2064 2064 2064 2064 2064 2064 2064 2064 2064
Leakage current to PEPhase/50 Hz/Ui mA < 30 < 30 < 30 < 30 < 30 < 30 < 30 < 30 < 30Phase/50 Hz/Ui = 460 V, (failure of two phases, Worst case)
mA 180 280 550 690 750 750 380 380 600
Rated operational voltage V AC 400 400 400 400 400 400 400 400 400Rated voltage Ue V 342– 528 V g0 %
3-phase AC342 – 528 V g0 % 3-phase AC
342 – 528 V g0 % 3-phase AC
342 – 528 V g0 % 3-phase AC
342 – 528 V g0 % 3-phase AC
342 – 528 V g0 % 3-phase AC
342 – 528 V g0 % 3-phase AC
342 – 528 V g0 % 3-phase AC
342 – 528 V g0 % 3-phase AC
Mains frequency Hz 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %) 50/60 (47 -0 % to 63 +0 %)
50/60 (47 -0 % to 63 +0 %)
50/60 (47 -0 % to 63 +0 %)
50/60 (47 -0 % to 63 +0 %)
50/60 (47 -0 % to 63 +0 %)
50/60 (47 -0 % to 63 +0 %)
Rated operational current 1)
Ui = 3-phase, 400 V AC I A 13 32 64 80 115 125 150 220 260Permissible overcurrent 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutes 150 % for 10 minutesHeat dissipation with rated operational current Ie W 12 14 36 32 38 45 45 35 45
Connection terminal capacitySolid mm2 4 10 25 35 50 50 95 95 95
Flexible mm2 4 6 16 25 50 50 95 95 95
Cables to frequency inverter mm2 3 × 2.5 3 × 6 3 × 16 3 × 16 3 × 35 3 × 35 3 x 50 3 x 70 3 x 95
PE stud M5 M5 M8 M8 M10 M10 M10 M10 M12
Note 1) All rating data is based on an ambient temperature of +40°C.
00
0.2
0.4
0.6
0.8
1.0
1.2
20 40 60 80 100
IBIN
i[°C]
72 73
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Moeller NK8230-1060GB
DescriptionDE5-KEY-RO3 Keypad, DE5-CBL-...-ICL Connection Cable
DF5
, DF6
Fre
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cy In
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ers
DV5
, DV6
Vec
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Freq
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ers
74
Type overview Type overview
DEX-KEY-RO3 DE5-CBL-0M5-ICLDE5-CBL-1M0-ICL
External display unit for DF5 and DV5 Connection cable for the DE5-KEY-RO3 display unit
Application Application
External display unit for the DF5 and DV5 series frequency inverers.DE5-KEY-RO3 can be installed on a control panel enclosure. It is connected to the frequency inverter via the RS-422 interface.
Note:The connectors may only be plugged in and out under no voltage conditions.
Accessories required: DE5-CBL-...-ICL connection cable
Prefabricated connection cable for direct connection of DF5 frequency inverters or DV5 vector frequency inverters and the DE5-KEY-RO3 external display unit.
Features Features
• 14 mm high, three-character 7-segment LED display• POWER display• STOP key• IP54 degree of protection (Front)
• 50 cm cable length: DE5-CBL-0M5-ICL• 1 m cable length: DE5-CBL-1M0-ICL
Function Function
The value displayed on the DE5-KEY-RO3 corresponds to the value on the display (Keypad) of the frequency inverter. In the default setting, this is the output frequency of the frequency inverter in Hz. The display can be switched over via the keypad on the frequency inverter, e.g.: motor current (Parameters PNU d01 to d09).The function of the STOP key can be deactivated under Parameter PNU b87.The POWER LED indicates when the respective frequency inverter is supplied with voltage.
Connection via RS 422 interface
Note:The connectors may only be plugged in and out under no voltage conditions.
Documentation
Every display unit is accompanied by installation instructions (AWA). Information concerning the parameterization of the display should be taken from the operating manual which accompanies the respective frequency inverter.
For Immediate Delivery call KMParts.com at (866) 595-9616
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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ers
75Moeller NK8230-1060GB
DescriptionDEX-KEY-10 Keypad, DEX-CBL-...-ICS Cable
Type overview Type overview
DEX-KEY-10 DEX-CBL-1M0-ICSDEX-CBL-3M0-ICS
External keypad with parameter memory Connection cable for keypads
Application Application
Optional keypad with non-volatile parameter memory for the DF5, DV5, DF6 and DV6 series frequency inverters.The DEX-KEY-10 can be installed on a control panel enclosure or can be plugged in to replace the standard keypad on the DF6 and DV6 series frequency inverters.It is connected to the frequency inverter via the RS-422 interface.
Note:The connectors may only be plugged in and out under no voltage conditions.
For external use, a connection cable with RJ45 plugs (DEX-CBL-...-ICS) is required.
Prefabricated connection cable with RJ45 plugs for direction connection of: • frequency inverters of the DF6 and DV6 series , with offset configuration (external
installation) of the plugged-in keypad• the external DEX-KEY-10 keypad with frequency inverters of the DF5, DV5, DF6
and DV6 series
Features Features
• Two line, back lit LCD display• LED function indications• Plain text display with the DF6 and DV6 in 6 languages (English, French, German,
Italian, Spanish, Portuguese), and with the DF5 and DV5 in GB.
• START/STOP and parameter definition keys• Degree of protection: operating side (Front) IP54, NEMA 12
• 1 m cable length: DEX-CBL-1M0-ICS• 3 m cable length: DEX-CBL-3M0-ICS• RJ45 with protection against direct contact
Function Function
The DEX-KEY-10 keypad enables setting of all parameters. They can be saved and transferred to frequency inverters which are of the same type (Copy function, non-volatile memory).The parameter display of setpoint and actual values occur on frequency inverters of the DF5 and DV5 series frequency inverters on a single line in English. With the DF6 and DV6 series devices, the display is on two lines. The display language can be selected from the available languages.
Connection via RS 422 interface.
Note:The connectors may only be plugged in and out under no voltage conditions.
Documentation
Every keypad is accompanied by installation instructions (AWA).Information concerning the parameterization can be found in the manual AWB 8240-1416. It is included on the CD which accompanies every frequency inverter of the DF5, DF6 and DV5, DV6 series.The documentation is also available for download on the Internet at:ftp://ftp.moeller.net/DRIVES/index.html.
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Moeller NK8230-1060GB
DescriptionDE6-IOM-DIG Digital Input Card
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
76
Type overview
DE6-IOM-DIG
Input card for binary and binary coded decimal (BCD) values
Application
With frequency inverters for the DF6 and DV6 series, the DE6-IOM-DIG allows the binary and binary coded decimal (BCD) setting of the following:
• Frequency• Acceleration and deceleration time• Torque limitation• Speed ratio• End position, reference positioning and position
Note:With speed ratio, end position, reference positioning and position control, the DV6 requires feedback signals (Encoder), i.e. DE6-IOM-ENC.
Features
• Installation in a slot on the frequency inverter (DF6, DV6)
Note:The card may only be plugged in and out under no voltage conditions.
• Intelligent card with its own processor .• Resolution and divider ratio can be set via rotary switch.
Documentation
Every DE6-IOM-DIG is accompanied by installation instructions (AWA8240-1956). Information concerning the parameterization can be found in the manual AWB8240-1432. It is included on the CD which accompanies every frequency inverter of the DF6 and DV6 series. The documentation is also available for download on the Internet at:ftp://ftp.moeller.net/DRIVES/index.html.
24 V50 mA
SEQCMB D15 . . .
. . .
D1 D0 STRB P24B PLCB CM1
–+
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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77Moeller NK8230-1060GB
DescriptionDE6-IOM-ENC Encoder Interface Card
Type overview
DE6-IOM-ENC
Encoder card for DV6
Application
The DE6-IOM-ENC card can be used in vector frequency inverters of the DV6 series and enables speed control of three-phase motors with fitted encoders.Further application features are:
– synchro control and ratio control,– motor standstill recognition– torque regulation.
Features
• Simply plugs into a slot in the DV6 frequency inverter
Note: The card may only be plugged in and out when the power supply is switched off.
• Parameterization via the menu of the DV6 series frequency inverter.• Encoder connection via screw terminals
FunctionEncoder
• Output voltage (power supply) for encoder: 5 V DC, 150 mA.• Max. number of input impulses: 65.000• Input: two TTL signals out of phase by 90° (5 V DC, RS-422 standard) with index
signal and inverted signals.
Documentation
Installation and connection instructions (AWA) are included with each encoder card. The manual for the encoder card (AWB8240-1431) is stored on the CD which accompanies each DV6 series frequency inverter.The documentation can be downloaded on the Internet at:ftp://ftp.moeller.net/DRIVES/index.html.
DV6
DE6-IOM-ENC
M3 h
Speed control
DV6 DV6
DE6-IOM-ENC DE6-IOM-ENC
M3 h
M3 h
Main drive Subdrive
EAN
EBP
EBN
EZP
M
90°
EZN
EAP
Synchronization/ratio control M1: M2 = 5 : 1
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Moeller NK8230-1060GB
DescriptionDE6-NET-DP PROFIBUS-DP Interface
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
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ers
78
Type overview
DE6-NET-DP
Interface for PROFIBUS-DP networks
Application
DE6-NET-DP enables interfacing (Slave) of frequency inverters of the DF6 and DV6 series to systems and networks with the standardized PROFIBUS-DP field bus. Features
• Installation in frequency inverters (DF6, DV6) at slot 2• Intelligent card with its own processor and electrical isolation• RS 485 interface (9-pole, D-Sub socket)• Device address can be set via two rotary switches• Data transfer rate: 9.6 kBit/s (at 1.200 m) to 12 MBit/s (at 100 m) with automatic
baud rate recognition• PROFIDrive profile, drive engineering version 2 Documentation
Every DE6-NET-DP PROFIBUS-DP card is accompanied by installation instructions (AWA8240-1942). Information concerning the parameterization should be taken from the operating manual AWB8240-1418. It is included on the CD which accompanies every frequency inverter of the DF6 and DV6 series. The documentation is also available for download on the Internet at:ftp://ftp.moeller.net/DRIVES/index.html
For Immediate Delivery call KMParts.com at (866) 595-9616
DescriptionDEX-CBL-2M0-PC PC Interface
Moeller NK8230-1060GB 79
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor F
requ
ency
Inve
rter
s
Type overview
DEX-CBL-2M0-PC
Connection cable with interface converter
Application
Prefabricated connection cable with interface converter (RS 232/RS 422) for the connection from the PC to a frequency inverter of the DF5, DV5, DF6 or DV6 series.
Note:The plug connectors may only be plugged in and out when the power supply is switched off.
Features
• Cable length 2 m• RS 232 (9 pole Sub-D socket)• RS 422 (RJ45-plug)• Point-to-point connection
Function
DEX-CBL-2M0-PC connection cable enables direct interfacing of a PC to the frequency inverters of the DF5, DV5, DF6 and DV6 series.The parameter definition software (supplied with the frequency inverter) enables simple access to all parameters. Prerequisite: Windows operating system (95, 98, ME, 2000, NT). Documentation
Installation and connection instructions (AWA) are included with each display unit.Notes concerning the parameterization can be found in the manual of the respective frequency inverters or the help texts of the Drives-Soft.
Note:Drives-Soft is a component of the CD, which accompanies each frequency inverter of the DF5, DV5, DF6 and DV6 series.
RS 232/RS 422
RJ45
2 m
DF6/DV6
DF5/DV5
PC
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Moeller NK8230-1060GB
DescriptionDE4-BM..., DE4-BU... Braking Units
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor F
requ
ency
Inve
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s
80
Braking modules are used for accelerating the braking of frequency-controlled three-phase motors. The braking module already has an integral braking resistor.
• Braking transistor with automatic actuation• Two series devices matched to the mains supply voltage (230 V/400 V) of the
frequency inverter• Integrated braking resistor• Temperature monitoring with potential free signalling contact
(break contact, 230 V, 1 A, AC-1)• IP20 degree of protection• Continuous braking rating max. 70 W• Peak braking power 2 kW for 15 s and an off interval time of 300 s
With short braking times, the frequency controlled motor operates in regenerative (oversynchronous) mode. In this mode, it feeds power into the DC link of the frequency inverter, which results in an increase of the DC bus voltage. If the voltage exceeds the permitted limit value, the frequency inverter control circuitry disables the power inverter of the frequency inverter and the motor coasts to a stop. If a braking unit is connected in parallel to the DC link, the recovered energy is diverted to the braking resistor and converted to heat.
see ftp://ftp.moeller.net/DRIVES/index.html
Braking units with assigned braking resistors are used for accelerating the braking of frequency-controlled three-phase motors.The DE4-BU... enables the parallel operation of multiple braking units, e.g. with high loads (hoisting gear), using the integrated synchronization.
• Braking transistor with automatic control (adjustable response value)• Braking resistors are not an inherent component of the device (DE4-BR1...
corresponding to the assigned power). Lowest permissible resistance value: 18 O
• Synchronization for the parallel operation of multiple DE4-BU... units with high braking performances.
• Continuous braking rating max. 18 kW• Peak braking power 30 kW for 15 s and an off interval time of 150 s
With short braking times, the frequency controlled motor operates in regenerative (oversynchronous) mode. In this mode, it feeds power into the DC link of the frequency inverter, which results in an increase of the DC bus voltage. If the voltage exceeds the permitted limit value, the frequency inverter control circuitry disables the power inverter of the frequency inverter and the motor coasts to a stop. If one or more braking units are connected in parallel to the DC link, the recovered energy is diverted to the assigned braking resistors and converted to heat.
see ftp://ftp.moeller.net/DRIVES/index.html
Type overview
DE4-BM... Brake module
Braking unit with an integral braking resistor
Application
Features
Function
Documentation
Type overview
DE4-BU... Brake module
Braking unit for actuation of external braking resistors
Application
Features
Function
Documentation
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DescriptionDE4-BR1... Braking Resistors
Moeller NK8230-1060GB 81
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor F
requ
ency
Inve
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s
An external braking resistor is required when braking large moments of inertia or when operating in extended regenerative mode. It converts the mechanical braking energy to heat.
The integral braking transistor of the frequency inverter automatically diverts energy to the connected braking resistor when the threshold value of the DC bus voltage is exceeded. In this manner, overvoltages in the DC link which would otherwise cause an “overvoltage” fault message and activate the pulse inhibitor of the frequency inverter are prevented. The drive coasts to a stop.
• The resistors are enclosed in a perforated sheet metal enclosure and equipped with a thermal protection relay (break contact, 230 V, 1 A, AC-1).
• Enclosure: galvanized perforated sheet metal.• The enclosure is open at the base and conforms to IP20 degree of protection
when installed.
Each braking resistor is accompanied by installation instructions (AWA).
Type overview
DE4-BR1...
Braking resistors
Application
Function
Features
Documentation
2T1
T2
1
i
PE
RB
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Moeller NK8230-1060GB
DescriptionDE4-LN... Mains Choke
DF5
, DF6
Fre
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cy In
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ers
DV5
, DV6
Vec
tor F
requ
ency
Inve
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s
82
Mains chokes which are also referred to as commutating chokes, reduce the harmonic currents by up to 30 % and extend the lifespan of the frequency inverter.
Mains chokes also limit current peaks which occur. They are caused by potential distortion of the mains voltage (e.g. by reactive-power compensation equipment or earth faults) or by switching operations on the mains. The effectiveness of the mains chokes depends on ratio of mains short-circuit power to the installed drives apparent power. A ratio of > 33 : 1 (mains short-circuit power to apparent drive power) is recommended.
• Mains chokes of the DE4-LN... series can be used without limitations on 50 Hz and 60 Hz mains supplies. The maximum permissible mains supply voltages are – DE4-LN1... (single-phase) 260 V +0 %– DE4-LN3... (three-phase) 550 V +0 %
• Depending on the size of the mains choke, the uk value lies between 2 % and 6 % (uk: relative voltage drop in relation to mains voltage at rated current.)
• The DE4-LN1... to DE4-LN3-11K series devices are equipped with terminals.• The DE4-LN3-15K to DE4-LN3-90K series devices are equipped with tab
terminals (connection lug). Heat shrink can be used to insulate the tabs on the DE4-MNT-SS1 or DE4-MNT-SS2.
Type overview
DE4-LN...
Mains chokes
Application
Function
Features
For Immediate Delivery call KMParts.com at (866) 595-9616
DescriptionM22-.K.., PR... Potentiometers
Moeller NK8230-1060GB 83
DF5
, DF6
Fre
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cy In
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ers
DV5
, DV6
Vec
tor F
requ
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Inve
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Type overview
M22-.K.. potentiometers
Large potentiometers for setpoint values
“...K” Resistance values 1/4.7/10 [kΩ]
Angle of rotation 270° g 5°
Degree of protection IP66
Power max. 0.5 W
Linearity g 0.5 %
Voltage rating 250 V AC
Notes
Wiring of the M22-.K.. potentiometer:• The connection cables to the setpoint value potentiometers must be screened.• The cable screen should be connected at one end near the frequency inverter and
isolated at the setpoint value potentiometer (with a rubber grommet).• The setpoint potentiometer is connected via screw terminals
Type overview
PR10-... ten-turn potentiometer
Large potentimeter for setpoint values which require precise setting.
“...K” Resistance values 1/2/5/10 [kΩ]
Angle of rotation 360°
Degree of protection IP44
Power max. 8 W
Linearity g 0.25 %
Notes
Wiring of the PR10-.. potentiometer:• The connection cables to the ten-turn potentiometers must be screened.• The cable screen should be connected at one end near the frequency inverter and
isolated at the ten-turn potentiometer (with a rubber grommet).• The ten-turn potentiometer is connected via soldering tags. The rotary knob (PR10-DA = analog, PR10-DD = digital) is not supplied as standard with the potentiometer.
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Moeller NK8230-1060GB
AccessoriesKeypads, Connection Cables, Interface Modules
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
84
For use with Description TypeArticle no.
PriceSee Price List
Std. pack
KeypadsDF5-.../DV5-...RA-SP
External display DE5-KEY-RO3232372
1 off
DF5-...DF6-...DV5-...DV6-...RA-SP
Keypad with memory DEX-KEY-10231421
1 off
Connection cableDE5-KEY-R03 Connection cable (0.5 m) DE5-CBL-0M5-ICL
2323731 off
DE5-KEY-R03 Connection cable (1.0 m) DE5-CBL-1M0-ICL232374
DEX-KEY-10 Connection cable (1.0 m) DEX-CBL-1M0-ICS232375
DEX-KEY-10 Connection cable (3.0 m) DEX-CBL-3M0-ICS232376
PC interfacing Connection cable with convertor, RS 232/422 DEX-CBL-2M0-PC233184
Interface modules
–DF5-.../DV5-... External PROFIBUS-DP interfacing for DF5 frequency
inverter and DV5 vector frequency inverter DE5-NET-DP232377
1 off
DF6-.../DV6-... PROFIBUS-DP interfacing for DF6 frequency inverter and DV6 vector frequency inverter. The module is installed in the device.
DE6-NET-DP232369
DF6-.../DV6-... Digital input module DE6-IOM-DIG232364
DV6-... Encoder interfacing module DE6-IOM-ENC232365
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
85Moeller NK8230-1060GB
AccessoriesBraking Units, Documentation
Frequency inverter
Braking unit TypeArticle no.
PriceSee Price List
Std. pack
Mains voltage (45 - 65 Hz)
Minimum braking resistance
Maximum brake current
Continuous braking rating at ULN
Maximum braking rating
at 230 V at 400 V
ULN Rmin I P P Pmax
V O A DC W W kW
DE4-BM... braking module
for more rapid braking of frequency-controlled three-phase drives• integral braking resistor
230 70 (internal) 5.4 70 – 21) DE4-BM2-1085033
1 off
400 270 (internal) 2.7 – 70 21) DE4-BM4-1085034
1 off
Braking unit
for more rapid braking of frequency-controlled three-phase drives• setting of the braking rating via external braking resistancepossible via: • parallel operation of multiple braking units
400/460 18 (external) – 9000 18000 302) DE4-BU4-1085035
1 off
Notes 1) The stated rating applies for 15 s on time and a pause time of 300 s.2) The stated rating applies for 15 s on time and a pause time of 150 s.
Language TypeArticle no.
PriceSee Price List
Std. pack
Documentation
Documentation for the DF4 frequency inverters and the accessories must be ordered separately.DE4-BM braking module
German AWB823-1286-D088927
1 off
English AWB823-1286-GB088928
French AWB823-1286-F088929
DE4-BU 4-1 braking unitGerman AWB823-1291-D
0889301 off
English AWB823-1291-GB088931
French AWB823-1291-F088932
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Moeller NK8230-1060GB
AccessoriesDE4-LN... Mains chokes
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
86
Inductance Rated current
Maximum power loss
TypeArticle no.
PriceSee Price List
Std. pack Note
L I Pv
mH A W
Mains chokesSingle-phase mains choke• max. permissible mains voltage 260 V
+0%9 4 6.5 DE4-LN1-037
2105061 off Mains chokes reduce
current harmonics.• any mounting position• permissible
environmental conditions as for frequency inverters
5 8 17 DE4-LN1-075210507
3.5 13 18 DE4-LN1-1K5210508
1.6 17 23 DE4-LN1-2K2210509
Three-phase mains chokes• max. permissible mains voltage 550 V
+0%7 3 8 DE4-LN3-075
2105101 off Mains chokes reduce
current harmonics.• any mounting position• permissible
environmental conditions as for frequency inverters
4.5 4 12 DE4-LN3-1K5210511
3.5 5 12 DE4-LN3-2K2210512
2.5 7 17 DE4-LN3-3K0210513
1.6 9 29 DE4-LN3-4K0210514
1.6 12 31 DE4-LN3-5K5210515
1.2 15 39 DE4-LN3-7K5210516
1.2 21 45 DE4-LN3-11K210517
1.1 35 86 DE4-LN3-15K210518
0.8 45 102 DE4-LN3-22K210519
0.6 55 117 DE4-LN3-30K210520
0.4 85 137 DE4-LN3-45K210521
0.34 105 147 DE4-LN3-55K210522
0.25 130 162 DE4-LN3-75K210523
0.21 170 284 DE4-LN3-90K210524
For chokes TypeArticle no.
PriceSee Price List
Std. pack
Heat shrinkfor insulation of the connection lugs with DE4-LN3-15K to DE4-LN3-90K
1j x 70 mm DE4-LN3-15K bisDE4-LN3-55K
DE4-MNT-SS1211299
1 off Price: 1 Set = 6 off; Price applies per setfor chokes: rated data for DE4-LN1: 230 V, 50 Hz, DE4-LN3: 400 V, 50 Hz
1j x 100 mm DE4-LN3-75KDE4-LN3-90K
DE4-MNT-SS2211300
1 off
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
87Moeller NK8230-1060GB
AccessoriesDE4-LN... Braking Resistors, Potentiometers
Resistance Rated braking power
Peak braking power
TypeArticle no.
PriceSee Price List
Std. pack
R PDB PPeak
O W W
DE4-BR1... braking resistors82 245 1700 DE4-BR1-082-245
2194851 off The braking resistors are designed
for a load cycle of:• max. 15 s braking with peak
braking power• min. 150 s recovery time after
brakingThe resistors are built into a perforated sheet-metal enclosure and are fitted with an overtemperature protection switch (230 V, 1A, AC1).Enclosure: galvanized perforated sheet-metal, open base.Degree of protection IP20 achieved only when installed.
100 200 1400 DE4-BR1-100-200219489
200 100 700 DE4-BR1-200-100219490
240 285 2000 DE4-BR1-240-285219492
370 215 1500 DE4-BR1-370-215219494
470 50 300 DE4-BR1-470-050219495
470 140 1000 DE4-BR1-470-140219497
Resistance Rated power TypeArticle no.
PriceSee Price List
Std. pack
R P
kO W
Potentiometers, IP66– 1 0.5 M22-R1K
2294891 off
– 4.7 0.5 M22-R4K7229490
– 10 0.5 M22-R10K229491
Ten-turn potentiometerwithout scale drive 1 – PR10-1K
0648351 off
2 – PR10-2K067208
5 – PR10-5K069581
10 – PR10-10K062462
Analog scale drive – – PR10-DA071954
Digital scale drive – – PR10-DD074327
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Moeller NK8230-1060GB
Technical DataMains Chokes
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
88
Type Inductance Rated current
Inductivity Saturation current
Peak current
Power dissipation
Voltage drop
Mains voltage
Note
L I Lsat min Isat xsat PVCU uk Umax
mH A mH A A W % V
DE4-LN1-037 9 4 6.8 8 11.3 6.5 4.9 260 + 0% The following applies for inductivity:minimum value during saturation
The following applies for peak current: during saturation
The following applies with power dissipation:in the copper/winding
The following applies with voltage drop:relative to the mains voltage at rated current.DE-4-LN1: 230 V, 50 Hz,DE 4-LN3: 400 V, 50 Hz
The following applies with mains voltage:maximum permissible mains voltage
DE4-LN1-075 5 8 3.8 16 22.6 17 5.5 260 + 0%DE4-LN1-1K5 3.5 13 2.6 26 36.8 18 6.2 260 + 0%DE4-LN1-2K2 1.6 17 1.2 34 48.1 23 3.7 260 + 0%DE4-LN3-075 7 3 5.3 6 8.5 8 2.9 550 + 0%DE4-LN3-1K5 4.5 4 3.4 8 11.3 12 2.5 550 + 0%DE4-LN3-2K2 3.5 5 2.6 10 14.1 12 2.4 550 + 0%DE4-LN3-3K0 2.5 7 1.9 14 19.8 17 2.4 550 + 0%DE4-LN3-4K0 1.6 9 1.2 18 25.5 29 2 550 + 0%DE4-LN3-5K5 1.6 12 1.2 24 33.9 31 2.6 550 + 0%DE4-LN3-7K5 1.2 15 0.9 30 42.4 39 2.5 550 + 0%DE4-LN3-11K 1.2 21 0.9 42 59.4 45 3.4 550 + 0%DE4-LN3-15K 1.1 35 0.83 70 99 86 5.2 550 + 0%DE4-LN3-22K 0.8 45 0.6 90 127 102 4.9 550 + 0%DE4-LN3-30K 0.6 55 0.45 110 156 117 4.5 550 + 0%DE4-LN3-45K 0.4 85 0.3 170 240 137 5.6 550 + 0%DE4-LN3-55K 0.34 105 0.26 210 297 147 4.9 550 + 0%DE4-LN3-75K 0.25 130 0.19 260 368 162 4.4 550 + 0%DE4-LN3-90K 0.21 170 0.16 340 481 284 4.9 550 + 0%
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
89Moeller NK8230-1060GB
DimensionsDF5, DF6 Frequency Inverters, DV5, DV6 Vector Frequency Inverters
a1 c
b1 bb2
a
o
Type A a1 b b1 b2 c oDF5-322-018DF5-322-037
DV5-322-018DV5-322-037DV5-322-055
88.588.5
88.588.588.5
6767
676767
126126
136136136
110110
118118118
77
777
117117
103117117
55
555
a1 c
a
b1 bb2
o
Type A a1 b b1 b2 c oDF5-322-055DF5-322-075DF5-322-1K1DF5-322-1K5DF5-322-2K2
DF5-340-037DF5-340-075DF5-340-1K5DF5-340-2K2DF5-340-3K0DF5-340-4K0DF5-340-5K5DF5-340-7K5
DV5-322-075DV5-322-1K1DV5-322-1K5DV5-322-2K2DV5-340-037DV5-340-075DV5-340-1K5DV5-340-2K2DV5-340-3K0DV5-340-4K0DV5-340-5K5DV5-340-7K5
118118140140140
118118118140140140182182
118118140140118118118118140140182182
9898128128128
989898128128128160160
989812812898989898128128160160
136136184.5184.5184.5
136136136184.5184.5184.5260260
136136184.5184.5136136136136184.5184.5260260
118118168168168
118118118168168168236236
118118168168118118118118168168236236
7777–
7–––––1313
777–7–––––1313
140140164164175
140167167175175175177177
140140164175140167167167175175177177
55555
55555577
555555555577
a1
d
b1 b
a
c
Type A a1 b b1 c dDF6-340-11KDF6-340-15KDF6-340-18K5DF6-340-22KDF6-340-30KDF6-340-37KDF6-340-45KDF6-340-55KDF6-340-75KDF6-340-90KDF6-340-110KDF6-340-132K
DV6-340-075DV6-340-1K5DV6-340-2K2DV6-340-4K0DV6-340-5K5DV6-340-7K5DV6-340-11KDV6-340-15KDV6-340-18K5DV6-340-22KDV6-340-30KDV6-340-37KDV6-340-45KDV6-340-55KDV6-340-75KDV6-340-90KDV6-340-110KDV6-340-132K
216216256256256316396396396396396486
159159159159159159216216256256256310390390390390480480
189189229229229265300300300300300380
130130130130130189189229229229265300300300300300380380
266266396396396546556556556706706746
260.5260.5260.5260.5260.5266266396396396540550550550700700740740
246246376376376510520520520670670710
241241241241241246246376376376510520520520670670710710
190.5190.5210.5210.5210.5215.5270.5270.5270.5290.5290.5282
152152152152152190.5190.5210.5210.5210.5202255.5255.5255.5275.5275.5293.2293.2
7777710101010121212
66666777771010101012121212
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
DimensionsDE5-... RFI Filter
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
90
DE5-LZ1-007-V2DE5-LZ1-012-V2DE5-LZ1-024-V2
DE5-LZ3-007-V4DE5-LZ3-011-V4DE5-LZ3-020-V4
cd
a1
d1
b2b1
a
b
Type A a1 b b1 b2 c d d1DE5-LZ1-007-V2DE5-LZ1-012-V2DE5-LZ1-024-V2
80110140
6798128
155165215
145155205
110118168
272729
555
2 x 64 x 64 x 6
b2
c a1
a
d1
d
b1 b
Type A a1 b b1 b2 c d d1DE5-LZ3-007-V4DE5-LZ3-011-V4DE5-LZ3-020-V4
110140182
98128160
160210287
150200277
118168236
273135
555
4 x 64 x 64 x 7
For Immediate Delivery call KMParts.com at (866) 595-9616
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
91Moeller NK8230-1060GB
DimensionsDE6-... RFI Filters
DE6-LZ3-013-V4DE6-LZ3-032-V4DE6-LZ3-064-V4
DE6-LZ3-080-V4DE6-LZ3-115-V4DE6-LZ3-125-V4DE6-LZ3-150-V4DE6-LZ3-220-V4DE6-LZ3-260-V4
c a1
d
b1 b
a
PE Type A a1 b b1 c dDE6-LZ3-013-V4DE6-LZ3-032-V4DE6-LZ3-064-V4
143203244
130189229
255260390
241246376
294345
4 x 64 x 74 x 7
b1 b
c a1
PE
a
dType A a1 b b1 c d PEDE6-LZ3-080-V4DE6-LZ3-115-V4DE6-LZ3-125-V4DE6-LZ3-150-V4DE6-LZ3-220-V4DE6-LZ3-260-V4
607070130130142
405050105105120
400440440525525620
380420420505505600
871101109494116
4 x 8.54 x 8.54 x 8.54 x 94 x 94 x 9
M8 x 24M10 x 34M10 x 34M10 x 34M10 x 34M12 x 48
For Immediate Delivery call KMParts.com at (866) 595-9616
Moeller NK8230-1060GB
DimensionsMains Chokes, Braking Units
DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
92
`Mains chokes for DM4 frequency inverters
DE4-LN1-037...2K2
DE4-LN3-075...11K
DE4-LN3-15K...90K
Braking units
DE4-BM DE4-BU
Notes ∅: Dimensions for fixing screws
c ±
5
b ± 5
b2
b1 d
a
a1
PE
1 2
c1 ±
5
Type A a1 b b1 b2 c c1 d Weight [kg]
DE4-LN1-037
DE4-LN1-075DE4-LN1-1K5DE4-LN1-2K2
66
848484
50
646464
62
679067
44
477047
55
608360
80
909090
60
757575
4.8 × 8
4.8 × 84.8 × 84.8 × 8
0.7
1.52.31.5
a1
a
b1
b ± 5
b2
c ±
5
d
PE
W1W2V1 V2U1 U2
Type A a1 b b1 b2 c d Weight [kg]
DE4-LN3-075DE4-LN3-1K5
DE4-LN3-2K2DE4-LN3-3K0
DE4-LN3-4K0DE4-LN3-5K5
DE4-LN3-7K5DE4-LN3-11K
7777
105105
125125
155190
5050
8080
100100
130170
6565
9191
8696
97115
3838
5050
4555
56.557.5
5151
6666
6171
76.581.5
105105
128128
148148
168207
4.8 × 94.8 × 9
5 × 85 × 8
5 × 85 × 8
8 × 128 × 12
0.70.7
0.90.9
1.92.5
3.66.1
d b1a1
a b2
b ± 10
c ±
5
PEPEType A a1 b b1 b2 c d Weight
[kg]
DE4-LN3-15KDE4-LN3-22K
DE4-LN3-30KDE4-LN3-45KDE4-LN3-55KDE4-LN3-75K
DE4 LN3 90K
190190
240240240240
300
170170
185185185185
224
123123
122150160160
155
7878
7595105105
94
102102
97117127127
122
155155
208208208208
260
8 × 128 × 12
10 × 1810 × 1810 × 1810 × 18
10 × 18
8.98.9
16.222.426.126.1
31
170130
56
28
190
210
Type ∅ Weight[kg]
DE4-BM2-1DE4-BM4-1DE4-BU4-1
M6M6M6
1,31,31,2
30
52
6.5
26
186
350
365
384
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DF5
, DF6
Fre
quen
cy In
vert
ers
DV5
, DV6
Vec
tor
Freq
uenc
y In
vert
ers
93Moeller NK8230-1060GB
DimensionsBraking Resistors, Potentiometers
Braking resistors
DE4-BR1-...
PotentiometerM22-..K.. Ten-turn potentiometer
b1
b2
c
b1
o 4.5
b2
a1
a1
a
b3
b
6 x 15
Type A a1 b b1 b2 b3 c Weight [kg]
DE4-BR1-470-050DE4-BR1-200-100DE4-BR1-470-140DE4-BR1-240-285DE4-BR1-082-245DE4-BR1-100-200DE4-BR1-370-215
200300300400430430430
170270270370400400400
80808095959595
35353535353535
40404070707070
60606090909090
90909095959595
1.21.31.31.81.71.71.7
29.2 32.9
o 4
7
50PR10-... PR10-DA
~ 20
2 1 3
14.2
o 6
o 3
o 3
o 1
0.5
o 4
5
25
2 7 6
14PR10-DD
26
45
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