lbx-gs3sx0035 seeerrri iiees - vitex

12
3G 3G 3G 3G Video Video Video Video SFP SFP SFP SFP Transceiver Transceiver Transceiver Transceiver Serie Serie Serie Series V1. V1. V1. V1.k P Pag age 1 of 12 LBX-GS3SX0035 Serie ies 3G Video SFP Transceiver (Not Compliant With SFP MSA) RoHS6 Compliant Features Features Features Features Compliant with SMPTE 297-2006 Supports video pathological patterns for SD-SDI, HD-SDI and 3G-SDI Robust error free transmission of signals from 50Mbps to 3Gbps with up to 45km single-mode fiber Maximum distance of 35km under worst-case conditions and 3Gbps video pathological signals Digital Diagnostic Monitoring Interface SFP package Single 3.3V supply Low Power Consumption, typical 650mW Die Cast Metal Housing Pb-free and RoHS compliant Operating Case Temperature 0°C ~+70°C Ordering Ordering Ordering Ordering Information Information Information Information Note1: The distance is under worst-case conditions, with 3Gbps video pathological signals. Part Part Part Part No. No. No. No. Data Data Data Data Rate Rate Rate Rate λ Distance Distance Distance Distance* 1 Laser Laser Laser Laser Temp. Temp. Temp. Temp. DDMI DDMI DDMI DDMI LBX-GS3SX0035 270M~2.97Gbps 1310nm 35km DFB 0°C~+70°C YES Applications Applications Applications Applications SMPTE 297-2006 Compliant Electrical-to-Optical Interfaces 3G Video System

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Page 1: LBX-GS3SX0035 Seeerrri iiees - Vitex

3G3G3G3G VideoVideoVideoVideo SFPSFPSFPSFP TransceiverTransceiverTransceiverTransceiver SerieSerieSerieSeriessss

V1.V1.V1.V1.kkkkPP

PPaaaggaggeeee 1111 ooooffff 11112222

LBX-GS3SX0035 Seeeerrrriiieeieessss3333GGGG VVVViiiiddddeeeeoooo SSSSFFFFPPPP TTTTrrrraaaannnnsssscccceeeeiiiivvvveeeerrrr((((NNNNooootttt CCCCoooommmmpppplllliiiiaaaannnntttt WWWWiiiitttthhhh SSSSFFFFPPPP MMMMSSSSAAAA)))) RRRRooooHHHHSSSS6666 CCCCoooommmmpppplllliiiiaaaannnntttt

FeaturesFeaturesFeaturesFeatures

� Compliant with SMPTE 297-2006

� Supports video pathological patterns for SD-SDI,

HD-SDI and 3G-SDI

� Robust error free transmission of signals from

50Mbps to 3Gbps with up to 45km single-mode fiber

� Maximum distance of 35km under worst-case

conditions and 3Gbps video pathological signals

� Digital Diagnostic Monitoring Interface

� SFP package

� Single 3.3V supply

� Low Power Consumption, typical 650mW

� Die Cast Metal Housing

� Pb-free and RoHS compliant

� Operating Case Temperature 0°C ~+70°C

OrderingOrderingOrderingOrdering InformationInformationInformationInformation

Note1: The distance is under worst-case conditions, with 3Gbps video pathological signals.

PartPartPartPart No.No.No.No. DataDataDataData RateRateRateRate λλλλ DistanceDistanceDistanceDistance*1 LaserLaserLaserLaser Temp.Temp.Temp.Temp. DDMIDDMIDDMIDDMILBX-GS3SX0035 270M~2.97Gbps 1310nm 35km DFB 0°C~+70°C YES

ApplicationsApplicationsApplicationsApplications

� SMPTE 297-2006 Compliant

Electrical-to-Optical Interfaces

� 3G Video System

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3G3G3G3G VideoVideoVideoVideo SFPSFPSFPSFP TransceiverTransceiverTransceiverTransceiver SerieSerieSerieSeriessss

V1.V1.V1.V1.kkkkPagePagePagePage 2222 ofofofof 12121212

RegulatoryRegulatoryRegulatoryRegulatory ComplianceComplianceComplianceCompliance

Note2: For update of the equipments and strict control of raw materials,LightBolt has the ability to supply the

customized products since Jan 1, 2007, which meet the requirements of RoHS6 (Restrictions on use of

certain Hazardous Substances) of European Union.

In light of item 5 in RoHS exemption list of RoHS Directive 2002/95/EC, Item 5: Lead in glass of cathode ray

tubes, electronic components and fluorescent tubes.

In light of item 7 in RoHS exemption list of RoHS Directive 2005/747/EC, Item7: Lead in high melting temperature

type solders (i.e. lead-based alloys containing 85% by weight or more lead). Lead in solder for servers, storage

and storage array systems, network infrastructure equipment for switching, signaling, transmission as well as

network management for telecommunications. Lead in electronic ceramic parts (e.g. piezoelectronic devices).

In light of item 13 in RoHS exemption list of RoHS Directive 2005/747/EC, Item13: Lead and cadmium in

optical and filter glass. The three exemptions are being concerned for LightBolt’s transceivers, because

LightBolt’s transceivers use glass, which may contain Pb, for components such as lenses, windows,

isolators, and other electronic components.

FeatureFeatureFeatureFeature StandardStandardStandardStandard PerformancePerformancePerformancePerformanceElectrostatic Discharge

(ESD) to theElectrical Pins

MIL-STD-883GMethod 3015.7

Class 1C (>1000 V)

Electrostatic Dischargeto the enclosure

EN 55024:1998+A1+A2IEC-61000-4-2GR-1089-CORE

Compatible with standards

ElectromagneticInterference (EMI)

FCC Part 15 Class BEN55022:2006

CISPR 22B :2006VCCI Class B

Compatible with standardsNoise frequency range:30MHz to 6GHz. Goodsystem EMI design practicerequired to achieve Class Bmargins.System margins aredependent on customer hostboard and chassis design.

ImmunityEN 55024:1998+A1+A2

IEC 61000-4-3

Compatible with standards.1KHz sine-wave, 80% AM,from 80MHz to 1GHz. Noeffect on transmitter/receiverperformance is detectablebetween these limits.

Component Recognition UL and CUL UL file E317337

RoHS62002/95/EC 4.1&4.22005/747/EC 5&7&13

Compliant with standards*note2

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3G3G3G3G VideoVideoVideoVideo SFPSFPSFPSFP TransceiverTransceiverTransceiverTransceiver SerieSerieSerieSeriessss

V1.V1.V1.V1.kkkkPP PPaaaggaggeeee 3333 ooooffff 11112222

PPPPrrrroooodddduuuucccctttt DDDDeeeessssccccrrrriiiippppttttiiiioooonnnnThe LBX-GS3SX0035 series transceivers are high performance modules for duplex video transmission application over single mode fiber. These transceivers are designed to transmit/receive data rates from 270Mbps to 2.97Gbps, which are compliant with the following standards:

� SMPTE 424M/297M (1080p -- 2.97Gbps)� SMPTE 292M/297M (HDTV -- 1.485Gbps)� SMPTE 259M/297M (SDTV -- 270/360Mbps)

The transmitter section of LBX-GS3SX0035 is a Class 1 Laser compliant with FDA Radiation Performance Standards, 21 CFR Subchapter J, which is also Class 1 Laser compliant according to International Safety Standard IEC60825. With an internal facing angle polished fiber stub, standard single mode optical patch cord with Standard Polished Connector (SPC) is required.

The receiver section of LBX-GS3SX0035 is provided with an internal facing angle polished fiber stub. Standard single mode optical patch cord with Standard Polished Connector (SPC) is required.

The LBX-GS3SX0035 transceiver is hot pluggable with the SFP 20-pin connector.

The LBX-GS3SX0035 transceiver provides extensive operational status monitoring through an I2C interface.

AAAAbbbbssssoooolllluuuutttteeee MMMMaaaaxxxxiiiimmmmuuuummmm RRRRaaaattttiiiinnnnggggssss****

*Note3: Exceeding any one of these values may destroy the device permanently.

RecommendedRecommendedRecommendedRecommended OperatingOperatingOperatingOperating ConditionsConditionsConditionsConditions

PerformancePerformancePerformancePerformance SpecificationsSpecificationsSpecificationsSpecifications –––– ElectricalElectricalElectricalElectrical (0(0(0(0ººººC<Tc<+70C<Tc<+70C<Tc<+70C<Tc<+70ººººC;C;C;C; +3.15<Vcc<+3.45V)+3.15<Vcc<+3.45V)+3.15<Vcc<+3.45V)+3.15<Vcc<+3.45V)

ParameterParameterParameterParameter SymbolSymbolSymbolSymbol Min.Min.Min.Min. Max.Max.Max.Max. UnitUnitUnitUnitStorage Temperature TS -40 +85 °C

Operating Case Temperature - -20 80 °CSupply Voltage VCC -0.5 4 V

Operating Relative Humidity - - 95 %

ParameterParameterParameterParameter SymbolSymbolSymbolSymbol Min.Min.Min.Min. TypicalTypicalTypicalTypical Max.Max.Max.Max. UnitUnitUnitUnitOperating Case Temp. TA 0 - +70 °C

Power Supply Voltage VCC 3.15 3.3 3.45 V

Power Supply Current ICC - - 350 mADate Rate 50 - 3000 Mbps

PARAMETERPARAMETERPARAMETERPARAMETER SYMBOLSYMBOLSYMBOLSYMBOL MINMINMINMIN TYPTYPTYPTYP MAXMAXMAXMAX UNITSUNITSUNITSUNITS NOTESNOTESNOTESNOTES

Supply Current (Note 4) lcc - 170210 mA Tc = 25ºC, Vcc = +3.3V

275 mA0ºC<Tc<+70ºC,

+3.15V< Vcc <+3.45V

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3G3G3G3G VideoVideoVideoVideo SFPSFPSFPSFP TransceiverTransceiverTransceiverTransceiver SerieSerieSerieSeriessss

V1.V1.V1.V1.kkkkLBX-GS3SX0035 PPPPaaaggaggeeee 4444 ooooffff 11112222

Note 4: Outside the specified range, performance is not guaranteed.

PPPPeeeerrrrffffoooorrrrmmmmaaaannnncccceeee SSSSppppeeeecccciiiiffffiiiiccccaaaattttiiiioooonnnnssss –––– OOOOppppttttiiiiccccaaaallllLBX-GS3SX0035 (((11(1133331111000nn0nmmnmm DDDDFFFBBFBB LLLLaaaasssseeeerrrr///PP/PPIIINNINN RRRReeeecccceeeeiiivvivveeeerrrr))))

Power Consumption - 650 900 mW -

Surge Current Isurge - - 30 mASurge above steady

state value

Serial ID Clock Ratef_serial_cl

ock- - 400 kHz -

Tx_Disable AssertTime

T_off - - 10 μs

Time from rising edgeof Tx_Disable to whenthe optical output fallsbelow 10% of nominal.

Tx_Disable NegateTime

T_on - - 1 ms

Time from falling edgeof Tx_Disable to whenthe modulated opticaloutput rises above 90%

of nominal.

Rx_LOS Assert Time t_los_on - - 10 msTime from Rx_LOS

state to Rx_LOS assert.

Rx_LOS De-assertTime

t_los_off - - 10 msTime from non-Rx_LOSstate to Rx_LOS de-

assert.

I2C CLK, I2C DATAVoH 2.5 -

Vcc+0.3

V -

VoL 0 - 0.5 V -TRANSMITTERTRANSMITTERTRANSMITTERTRANSMITTER

CML/LVPECL Inputs(Differential)

400 - 2000 mVpp AC coupled inputs

Input Impedance(Differential)

Zin 95 100 105 ohm Rin > 100 kohm @ DC

TX_DISABLE InputVoltage -High

ViH 2 - 3.45 V -

TX_DISABLE InputVoltage -Low

ViL 0 - 0.8 V -

RECEIVERRECEIVERRECEIVERRECEIVERCML Outputs(Differential)

400 800 950 mVpp AC Coupled Outputs

Maximum BackReflection

-27 dB -

PARAMETERPARAMETERPARAMETERPARAMETER SYMBOLSYMBOLSYMBOLSYMBOL MINMINMINMIN TYPTYPTYPTYP MAXMAXMAXMAX UNITSUNITSUNITSUNITS NOTESNOTESNOTESNOTESDistance L 35 - - km @ 2.97Gbps

TRANSMITTERTRANSMITTERTRANSMITTERTRANSMITTER

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V1.V1.V1.V1.kkkkLBX-GS3SX0035 Paaaggaggeeee 5555 ooooffff 11112222

Optical CenterWavelength

λC 1290 1310 1330 nm Tcase = +25ºC

Spectral Width Δλ - - 1 nm -20dBSide Mode

Suppression RatioSMSR 30 40 - dB -

Optical TransmitPower

Po 0 - 3 dBm @ 25ºC

Extinction Ratio ER 5 7.5 - dB P1/P0Relative Intensity

NoiseRIN - - -117 dB/Hz -

Total Jitter (Pk-Pk) TJ

- - 60 psMeasured with

Pathological Test MatrixPattern @ 2970 Mbps

- - 135 psMeasured with

Pathological Test MatrixPattern @ 1485 Mbps

- - 180 psMeasured with

Pathological Test MatrixPattern @ 360/270Mbps

Output Rise Time(20~80%)

tR

- 105 165 ps 2970Mbps- 170 270 ps 1485Mbps- 300 800 ps 270Mbps

Output Fall Time(20~80%)

tF

- 120 180 ps 2970Mbps- 180 270 ps 1485Mbps- 300 800 ps 270Mbps

RECEIVERRECEIVERRECEIVERRECEIVEROptical InputWavelength

λ 1260 - 1620 nm -

Min. Optical InputPower with

Pathological TestMatrix Pattern

(Note 5)

Pmin

- -24 -22 dBmPathological, SMPTE259M, 143~360Mbps,

(Note 6)

- -24 -22 dBmPRBS 223-1, SMPTE 259M,

143~360Mbps

- -23 -22 dBmPathological, SMPTE

344M, 540Mbps, (Note 6)

- -24 -22 dBmPRBS 223-1, SMPTE 344M,

540Mbps

- -21 -20 dBmPathological, SMPTE

292M, 1.485Gbps, (Note 6)- -24 -22 dBm PRBS 223-1, SMPTE 292M,

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3G3G3G3G VideoVideoVideoVideo SFPSFPSFPSFP TransceiverTransceiverTransceiverTransceiver SerieSerieSerieSeriessss

V1.V1.V1.V1.kkkkLBX-GS3SX0035 PPPPaaaggaggeeee 6666 ooooffff 11112222

Note 5: Measured at the BER less than 1E-12.

Note 6: BER less than 1E-12 against SDI matrix check field signals for video applications; BER less than 1E-12

against PRBS 223-1 for datacom applications.

FunctionalFunctionalFunctionalFunctional DescriptionDescriptionDescriptionDescription ofofofof TransceiverTransceiverTransceiverTransceiver

1.485Gbps

- -19 -18 dBmPathological, SMPTE

424M, 2.97Gbps, (Note 6)

- -21 -20 dBmPRBS 223-1, SMPTE 424M,

2.97GbpsOverload (Note 6) Pmax 0 - - dBm -Maximum Back

Refelction- - -27 dB -

RX_LOS ---Asserted

LOSA -30 - -25 dBmNo Signal Pins Designated

for RX_LOS.Assert/Deassert Levelscan be Monitored viaDigital Diagnostics

Interface.

RX_LOS ---Deasserted

LOSD -26 - -19 dBm

RX_LOS ---Hysteresis

1 3 5 dB

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3G3G3G3G VideoVideoVideoVideo SFPSFPSFPSFP TransceiverTransceiverTransceiverTransceiver SerieSerieSerieSeriessss

V1.V1.V1.V1.kkkkLBX-GS3SX0035 PPPPaaaggaggeeee 7777 ooooffff 11112222

SFPSFPSFPSFP TransceiverTransceiverTransceiverTransceiver ElectricalElectricalElectricalElectrical PadPadPadPad LayoutLayoutLayoutLayout

PinPinPinPin FunctionFunctionFunctionFunction DefinitionsDefinitionsDefinitionsDefinitionsPinPinPinPinNum.Num.Num.Num. NameNameNameName FunctionFunctionFunctionFunction NotesNotesNotesNotes

1 VEE Ground Connect to GND.

2 TX_FAULTTransmitter Fault

IndicationTransmitter fault indicator. Active high, open-drain.

3 NC No Connect No Connection.4 VEE Ground Connect to GND.5 I2C CLK I2C clock I2C Clock line.6 I2C DATA I2C data I2C Data line.7 VEE Ground Connect to GND.

8 RX_LOS Loss of SignalReceiver loss of signal indicator. Active high, open-

drain.9 NC No Connect No Connection.10 NC No Connect No Connection.11 VEE Ground Connect to GND.

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3G3G3G3G VideoVideoVideoVideo SFPSFPSFPSFP TransceiverTransceiverTransceiverTransceiver SerieSerieSerieSeriessss

V1.V1.V1.V1.kkkkLBX-GS3SX0035 Paaaggaggeeee 8888 ooooffff 11112222

HHHHoooosssstttt BBBBooooaaaarrrrdddd PPPPoooowwwweeeerrrr SSSSuuuuppppppppllllyyyy RRRReeeeqqqquuuuiiiirrrreeeemmmmeeeennnnttttssss

The host board is required to provide a regulated/filtered power supply of 3.3 +/- 5% V for the LBX-GS3SX0035 via the on board SFP connector. The following figure shows the recommended board supply filtering.

The serial interface uses the 2-wire serial CMOS EEPROM protocol defined for the ATMELAT24C02/04 family of components. When the serial protocol is activated, the host generates theserial clock signal (SCL). The positive edge clocks data into those segments of the EEPROM thatare not writing protected within the SFP transceiver. The negative edge clocks data from the SFPtransceiver. The serial data signal (SDA) is bi-directional for serial data transfer. The host usesSDA in conjunction with SCL to mark the start and end of serial protocol activation. The memoriesare organized as a series of 8-bit data words that can be addressed individually or sequentially.

The Module provides diagnostic information about the present operating conditions. Thetransceiver generates this diagnostic data by digitization of internal analog signals. Calibration andalarm/warning threshold data is written during device manufacture. Received power monitoring,transmitted power monitoring, bias current monitoring, supply voltage monitoring and temperaturemonitoring all are implemented. The digital diagnostic memory map specific data field defined asfollowing.

12 RD-Inv. ReceivedData Out

Negative differential input. AC-coupled internally.

13 RD+Received Data

OutPositive differential output. AC-coupled internally.

14 VEE Ground Connect to GND.15 VCC_RX Power Receiver power supply.16 VCC_TX Power Transmitter power supply17 VEE Ground Connect to GND.18 TD+ Transmit Data In Positive differential input. AC-coupled internally.

19 TD-Inv. Transmit

Data InNegative differential input. AC-coupled internally.

20 TX_DISTransmitterDisable.

Transmitter Disable. The bias current and modulationcurrent are turned off if TX_Dis = HIGH. Internal 6kΩ

pull-up.

EEPROMEEPROMEEPROMEEPROM

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V1.V1.V1.V1.kkkkLBX-GS3SX0035 Paaaggaggeeee 9999 ooooffff 11112222

0

9 5

1 2 7

5 5

0

9 5

1 2 7

Special ID Defined by SFP MSA (9 6 b y tes )

2 wire address 1010000 X(A0h)

Vendor Specific (3 2 b y tes )

Alarm and Warning Thresholds (5 6 b y tes )

2 wire address 1010001 X(A2h)

Vendor Specific (3 2 b y tes )

Cal Constants (4 0 b y tes )

EEETT

EEEEEPPPRRPROOROMMOMM SSSSeeeerrrriiiaaiaallll IIIDDIDD MMMMeeemmemmoooorrryyryy CCCCoooonnnnttteetennenntttsstss (((22(22---WW-WWiiirrireeree AAAAddddddddrrreereessssssss AAAA000HH0HH))))TThhhheeee fffoofoollllllloolowwowwiiinninngggg ddddiiiaaiaggaggnnnnoooossssttttiiiccicc iiinninnfffoofoorrrmmrmmaaaattttiiiooioonnnn iiississ aaaacccccccoocoorrrddrddiiinninngggg tttootoo ttthhthheeee LBX-GS3SX0035 SSSSeeeerrrriiieeieessss....

AddressAddressAddressAddress NameNameNameName ofofofof FieldFieldFieldField HexHexHexHex DescriptionDescriptionDescriptionDescriptionBaseBaseBaseBase IDIDIDID FieldsFieldsFieldsFields

00 Identifier 85 Type of serial transceiver01 Ext. Identifier 04 Serial ID module supported02 Connector 07 LC Connector

03 Standard compliant 41For SMPTE259M/344M/292M/424M and

SMPTE 297M.04-10 Transceiver Codes 00 -11 Encoding 03 Compliant with NRZ encoding code

12 BR, Nominal 1ENominal 3000Mbps; units of 100MBits/sec

(indicate transmitter data rate)13 Reserved XX -14 Length (9um)-km 2D 45km @9/125um fiber15 Length (9um)-100m 00 -

16-18 Length for MMF 00 -19 Reserved XX -

20-35 Vendor Name XX Note36 Reserved XX -

37~39 Vendor OUI XX Note40-55 Vendor P/N XX Note56-59 Vendor P/N Rev. XX Note60-61 Laser Wavelength 05 1E Wavelength 1310nm62 Reserved XX -63 CC_BASE XX Check sum of byte 0-62

ExtendedExtendedExtendedExtended IDIDIDID FieldsFieldsFieldsFields

64-65 Options 00 1AIndicates which optional SFP with OM signals

are implemented.66 BR, Max. 05 Upper BR margin (5%)67 BR, Min. 5F Lower BR margin (95%)

68-83 Vendor SN XXVendor serial number in ASCII character,

Note

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3G3G3G3G VideoVideoVideoVideo SFPSFPSFPSFP TransceiverTransceiverTransceiverTransceiver SerieSerieSerieSeriessss

V1.V1.V1.V1.kkkkLBX-GS3SX0035 Paaaggaggeeee 11110000 ooooffff 11112222

Note: The “XX” byte should be filled in according to practical case.

EEEEEEEEPPPPRRRROOOOMMMM SSSSeeeerrrriiiiaaaallll IIIIDDDD MMMMeeeemmmmoooorrrryyyy CCCCoooonnnntttteeeennnnttttssss ((((2222----WWWWiiiirrrreeee AAAAddddddddrrrreeeessssssss AAAA2222HHHH))))

The interface uses the two wire serial bus address 1010001X (A2H) to provide diagnostic monitoring information about the module’s present operating conditions as defined in SFF-8472 MSA, the monitoring range, accuracy and calibration method is as following table.

(((

MMM

TT(TThhhheeee fffoofoollllllloolowwowwiiinninngggg ddddiiiaaiaggaggnnnnoooossssttttiiiccicc iiinninnfffoofoorrrmmrmmaaaattttiiiooioonnnn iiississ aaaacccccccoocoorrrddrddiiinninngggg tttootoo ttthhthheeee LBX-GS3SX0035 SSSSeeeerrrriiieeieessss...)).))

Moooonnnniiittitootoorrrriiinninngggg SSSSppppeeeecccciiiffiffiiicciccaaaattttiiiooioonnnn

RecommendRecommendRecommendRecommend CircuitCircuitCircuitCircuit SchematicSchematicSchematicSchematic

84-91 Date Code XX Vendor date code in ASCII character, Note

92Diagnostic Monitoring

Type68

Implemented with internal calibrationcalibrated average input power

93 Enhanced options B0Alarm/Warning flags monitor are

implemented94 SFF-8472 compliant XX Note95 CC_EXT XX Check sum of bytes 64-94

VendorVendorVendorVendor SpecificSpecificSpecificSpecific IDIDIDID FieldsFieldsFieldsFields96-127 Vendor Specific 00 Vendor specific EEPROM128-256 Reserved 00 Reserved for future use

ParameterParameterParameterParameter RangeRangeRangeRange AccuracyAccuracyAccuracyAccuracy CalibrationCalibrationCalibrationCalibration

Temperature 0 to 70℃ ± 3℃ InternalVoltage 3.0 to 3.6V ± 3% Internal

Bias Current 0 to 90mA ±10% InternalTX Power -2 to +5dBm ± 3dB InternalRX Power -20 to 2dBm ± 3dB Internal

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V1.V1.V1.V1.kkkk PPaaaggaggeeee 11111111 ooooffff 11112222

MechanicalMechanicalMechanicalMechanical SpecificationsSpecificationsSpecificationsSpecifications

RRRReeeevvvviiiissssiiiioooonnnn HHHHiiiissssttttoooorrrryyyy

Revision Initiated Reviewed Approved DCNDCNDCNDCN Release Date

V1.e Released. May 15, 2009

V1.f Correct Add93 Jun 12, 2009

V1.gCorrect the jitterparameters

July 6,2009

V1.hRevised the Rxsensitivity.

Dec 10, 2009

V1.iCorrect EEPROM

map.Mar 15, 2010

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V1.V1.V1.V1.kkkkLightBolt PPPPaaaaggggeeee 11112222 ooooffff 11112222

NNNNoooottttiiiicccceeee::::LightBolt reserves the right to make changes to or discontinue any optical link product or service identified in this publication, without notice, in order to improve design and/or performance. Applications that are described herein for any of the optical link products are for illustrative purposes only. LightBolt makes no representation or warranty that such applications will be suitable for the specified use without further testing or modification.

CCCCoooonnnnttttaaaacccctttt::::

Vitex LLC210 Sylvan Ave, Suite 25 Englewood Cliffs, NJ 07632 (201) [email protected]

V1.j Update the PN. Apr 30, 2010

V1.k

Update the valueof receiveroverload andmonitoringspecification.

May 18, 2010