© 2015 eaton. all rights reserved.. power xpert 9395 high performance ups (675-1100 kw/kva)
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© 2015 Eaton. All Rights Reserved..
Power Xpert 9395 high performance UPS
(675-1100 kW/kVA)
2© 2015 Eaton. All Rights Reserved..
Power XpertTM 9395 high performance UPS
What’s new:
• Three-level converter topology
• Extremely low total-cost-of-ownership through high double-conversion efficiency (96.7%) and Eaton energy saving technologies (99% in ESS)
• 33% less heat
• 10% more power in the same footprint
• Previously 250 kW/power module
• Now 275 kW
3© 2015 Eaton. All Rights Reserved..
Building on excellence
• Launched in 2007, the 9395 was the first transformerless >250 kW power range UPS in the market
• Proven reliability and long experience
• Global installed base of 9395 >5 GVA
• Total installations worldwide - >9300 units
• Successful Eaton technologies include Energy Saver System (ESS), Variable Module Management System (VMMS), HotSync, ABM and Easy Capacity Test (ECT)
4© 2015 Eaton. All Rights Reserved..
Highest power rating in the Eaton portfolio
93PM400: 100-400kW
Power Xpert 9395 high performance UPS
675 kW/kVA - 1100 kW/kVA
Po
rtfo
lio
PDU/RPP93PM: 30-200 kW 9395: 225-1100 kVA
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9395 applications
Ideal for:• Large data centers• Colocation data centers• Large infrastucture projects• Finance and banking• Large (light) industrial• Healthcare• Process control• Telecommunication
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9395 high performance UPS product range
675 kW
750 kW
825 kW
1000 kW
1100 kW
Single units
(RT)
675 kW
..
..
4400 kW
Distributed bypass
Product range
2015
675 kW
..
..
8800 kW
Centralized
systems
4 units in
parallel
Unity Power Factor
RT units available in August 2015 and parallel available in Q4 2015
8 units in
parallel
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Three-level inverter technology
• High efficiency and more power
• Changes limited to the power chain
Inverter, rectifier, battery converter
→ 3 level IGBT topology
Inductors
Fans
• When comparing to latest 9395 firmware, the biggest changes are in the UPM controls due to the changed topology
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Two-level vs. three-level inverter
2 level, +E and -E
3-level: +E, 0, -E
The Pulse Width Modulation (PWM) with the three-level design makes it “easier” to filter
to a smooth sinewave, which requires smaller filter components
Higher component count creates higher conduction losses but the dramatic
reduction in switching losses results in an overall better efficiency for the system
Pulse Width Modulation (PWM) Efficiency: conduction losses and switching losses are much less with a 3- level inverter
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Three-level inverter benefits
• Light load efficiency (96% vs 90% at 25% load)
• Smaller, lighter and quieter circuitry
• Lower heat, fewer and quieter fans
• Less stress on each component (better reliability)
• More precise control of the output waveform, which is sent to the critical load
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Inside the 9395 high performance UPS
ISBM Section UPM Section
X-Slot communications
UPM SectionBase with
inter-unit cabling
Top- or bottom- entry
Input circuit breaker option
Static bypassContinuous Duty
Power Xpert Web Card
Contactor output
Redundant fans
Behind Panel
Redundant power supplies
Double-conversion topology / inverter
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9395 high performance key benefits
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Enjoy lower total cost of ownership (TCO)
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Significantly lower total cost of ownership
Category Benefit
Industry-leading efficiency
Ultimate savings achieved with ESS >99% efficiency – producing 66% less heat than a traditional UPS and paying for itself in 3 years
Industry-leading double conversion efficiency
Successful implementation of 3 level IGBT technology resulting in >33% less heat than 2 level IGBT UPS and greatly reducing operating and cooling costs
More power, same footprint
Achieved through improved power density (275 kW per power module) – 10% more power allows you to power 10% more IT racks = $3000-$52,000 savings/month*
Variable Module Management System (VMMS)
Maximized efficiency in double conversion mode - Not less than 96% efficiency at loads down to 15% of UPS capacity when using VMMS
Easy Capacity Test (ECT)
Eliminates the cost of renting load banks and minimizing energy costs for burn-in testing
*quantified by determining the value of a server in a rack (or revenue per server)
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Lower total cost of ownership
Market leading efficiency• 99% efficient with ESS• > 96.7% efficient in double
conversion• Optimizing efficiency below
25% load with VMMS
Higher efficiency also means less BTU from UPS = less cooling needed
No inverter center point wire needed on output of UPS = lower installation costs
0% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100%70%
75%
80%
85%
90%
95%
100%
9395 Double conversion 9395 VMMS 9395 ESS
Percent Load
Syst
em E
ffici
ency
0% 10% 20% 30% 40%80%
85%
90%
95%
100%
Percent Load
Syst
em E
ffici
ency
15© 2015 Eaton. All Rights Reserved..
ESS: How is it different than “Eco” mode?
Fastest transfer times:• ESS offers < 2ms transition times for an
outage condition (vs. up to 12ms for Eco Mode).
Inherent surge protection:• Transformer-less ESS topology offers non-
degenerative filtering for lighting strikes.
Load fault detection and clearing:• ESS determines if the fault is at the source
or load. For load faults, the UPS maximizes its fault clearing current not only by turning the inverter on but also leaving the source engaged with the critical load (providing the maximum fault clearing current).
Did you know? The Green Grid strongly recommends that the typical data center should move to a high efficiency UPS operating mode by 2016.
The Green Grid, “Data Center Maturity Model” (2011)
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Root Data Center ESS success story
• Montreal, Quebec
• Power Xpert 9395 UPS
• Energy Saver System
• Remote Power Panels
• Services
“When aggressively targeting high efficiency in a colocation facility, you need advanced power distribution and management solutions that can adapt to customer needs….It’s great to have double conversion online technology with upwards of 98 percent efficiency.” – Founder and CEO
Access the story.
© 2015 Eaton. All Rights Reserved.. 17
“ESS is a great system, and it’s one of the main reasons we decided to go with this solution. If we are going to keep these units for 10-plus years, a few percentage points in efficiency really add up.... [They] allow me to be more competitive in terms of being able to sell colocation.” – Director of infrastructure
Success story
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Energy saving technologies: VMMS
• Variable Module Management System (VMMS) brings up efficiency and optimizes load levels of power modules by suspending extra UPS capacity
• Optimized for 50% load level peak efficiency/module
• All control logic is active, suspended modules are synchronized all the time, and ready to go online instantly when required
SUSPEN
D
SUSPEN
D
ON-LINE
SUSPEN
D
AMODULELOADING
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Energy saving technologies: Easy Capacity TestAn Eaton field technician applies full load, tests & calibrates:• Rectifier • Inverter • Battery – with option to
perform full battery discharge test
• BIB
• RIB • Static bypass switch• Fuses • Contactors • Conductors
AC/DCRectifier
DC/ACInverter
BYPASS
100%105%
BIB
RIB
5%
FACILITY
No output connection & load bank needed
Additional thermal imaging tests are possible on UPS, input cables and switchgear
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Superior battery management
• Flexible design allows for both common battery and distributed battery configuration
• Increase reliability with battery redundancy: Each UPM can have its own battery string(s)
• Many customers now consider VRLA batteries, in 275 kW increments in lieu of wet cells
• Features ABM® technology
• Extends battery service life
• Monitors battery health and remaining lifetime
• Provides advance notification for preventive maintenance
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The Eaton 9395 high performance UPS offers higher levels of resiliency and reliability
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Same proven reliability of 9395
What’s the same as the previous 9395?
• ISBM hardware
• Power Supplies
• Control boards
• AC and DC capacitors
• Communication interfaces
• Most of the firmware is the same when comparing to latest 9395 firmware
• Features like ESS, VMMS, ECT, Hot Sync, ABM are exactly the same
Highly reliable UPS• Proven, >7 years field experience• Same concept as current 9395 and mostly
existing components and firmware• Power and overload ratings at 40ºC
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Proven reliability with ESS
• No mechanical switching is required and since ESS involves fewer active electronic components (88% reduction in fans), reliability is enhanced and MTBF is improved 2-3 times
• No EMI noise and less audible noise avoids issues with electrical interference or FCC compliance; allows flexibility in UPS location
• Dual source ESS UPS can operate indefinitely with either of its sources failed providing enhanced availability
• Better stability with high inrush loadslike transformers, motors, pumps, lasers and medical imaging devices
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Inherent redundancy
• Data center efficiency surveys reveal that UPSs are often under loaded at 50% or lower
• End users purchasing a 9395 with more than one UPM can choose the inherent—or built-in—redundancy option: anytime the load is below 67 % capacity for 825 (75% for 1100), it is automatically redundant
REDUNDANT UPMs
INTEGRATED SBM (ISBM)
ISBM UPM 1 UPM 2
Allows you redundancy without adding a costly second UPS. It may be the single most important feature that saves you from a dropped load.
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Hot Sync
No single-point failure• Units synchronize to utility or load bus independently
• Units load share within 5% independently
• Units “selective trip” instantaneously
• All without depending on inter module wiring!
Above is accomplished without “master/slave” configuration• No Master “sync” or “load control signal” needed
• Enhanced reliability and simpler installation
• Easier and quicker to troubleshoot
• Tie cabinet (ISBM) is simple/reliable in concept and in implementation
HotSync is a patented algorithm for parallel operation of static converters without communication or load share signals
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Hot Sync: Inherent load sharing
”Go To Bypass/Normal”, Redundancy Level, Parallel System Overload, VMMS, ESS, etc.
pn = VnIn
fn = fN-K1×Δpn-K2×pn
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Reliable 9395 system bypass design
• One static switch per UPS
• Full bypass capacity on day one, power modules added as load grows
• Ensures selective fault co-ordination as the bypass capacity is sized according to the design load
• Combines benefits of traditional distributed and centralized bypass designs
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Design allows for scalability and future expansion
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Flexible, scalable, upgradeable
825 kW/ kVA Redundant!On-site upgrade
• Add another 275 kVA/kW in the field for redundancy, or for capacity • Simply choose an ISBM sized for future growth• Leave space on the left side
• Enables flexibility for future changes in load demands, and new requirements for higher reliability
• Full bypass capacity from day one
Modular design simplifies the system expansion:
• No need to expand the surrounding power distribution
• No additional external signal wiring or BMS configuration
Alternative layout designs: • L-shaped• Back-to-back
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Ease of management
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Ease of management through HMI designs
Human Machine Interface (HMI) custom options• Windows based, easy operation
• Interfaces with: UPS, SBM, switchgear, breakers, static switches, ATS, contact closures
• Flexible system interface configuration (10 inches to more than 40 inches)
• Centralized monitoring of connected equipment
• Metering data monitoring of more than 200 protocols
• Custom controls via defined sequences of operation
• Touch screen controls available
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HMI design levelsHMI with SCADA controls
LCD monitor display with remote
Level 1 Level 2
Level 3
Basic SBM HMI (customized)
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Options• NOAA weather interface to virtually monitor your area and shift
your system from ESS mode to double conversion based on weather predictions and alerts
• IR onboard monitoring on critical buss points, eliminating the need for periodic IR scanning (next page visual)
• Profile capabilities to help users determine the best operational models for the overall system
• LED lights for at a glance recognition of UPM status
IR camera
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IR advantages
• Continuous 24x7 monitoring of critical equipment to identify problems early
• Measure, view, log and trend min, max, Delta, and Isotherm measurements (for SCADA System)
• All parameters and alarms accessible by building monitoring system
• Remotely monitor temperatures and Live IR video feed from anywhere in the world
• Measures temperature range from -10C to 150C• Eaton provides fully automated SCADA solution
that monitors equipment for failures of switchgear bus, cable terminations/joints, bus duct and transformers
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IR SCADA monitoring and FLIR screenEaton’s IR SCADA Monitoring
FLIR Screen
Temperature icons
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Overview: Prefabricated Power Solutions
Connected Centralized Contained
• Up to four UPS modules and switchgear
• Up to 5000 amps• Customizable• Used in gray space of
traditionally constructed buildings
• UPS, batteries and switchboard on a skid
• Up to 550 kVA• Used in gray space
of traditionally constructed buildings and warehouse environments
• UPS, batteries, switchgear, HVAC units, and fire and safety equipment in a container
• 825 and 1100 kVA• Used in warehouse
environments, disaster situations, outdoors and more—a data center critical power system in a box
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Benefits summary
TCO >99% efficient in ESS modeUp to 97% efficient in double conversion mode(Provides the highest energy cost savings across the entire operating load range)
Scalability allows the user to defer upfront capital expense and pay as they grow
Energy Saving Technologies: VMMS, ECT
Internal redundancy reduces the need for additional UPSs
Same foot print, 10% more power
Resiliency & reliability Builds on proven experience and platform of the 9395
Hot Sync+ ABM
Inherent redundancy could save you from a dropped load
Scalability Modular design simplifies the system expansion
Number of modules can be specified so capacity can flex to match the data center’s growth
Ease of management HMI Designs
Touch screen
Optional LED for at a glance status
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For more information
Eaton.com/9395
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