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Multimode Fiber SFP Optical Transceiver Module 11.3Gbit/S Per Channel 300 Meter

Categories SFP Optical Transceiver Module
Brand Name: E-link China
Model Number: LNK-QSFP-eSR4
Certification: CE, RoHS, FCC
Place of Origin: Shenzhen, China
MOQ: 1 piece
Payment Terms: T/T, Western Union, MoneyGram, Paypal
Supply Ability: 1000000000pcs/Month
Delivery Time: 3-5 working days
Packaging Details: 10 piece in 1 carton box
Fiber: OM3 Multimode
Distance: 300 Meters
Data Rate: 11.3Gbit/s per channel
Hot Pluggable QSFP: Support
Digital diagnostic function: Built-in
Operating case temperature: 0°C to +70°C
Price: Negotiation
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Multimode Fiber SFP Optical Transceiver Module 11.3Gbit/S Per Channel 300 Meter

40Gb/s QSFP+ eSR4 OM3 Multimode Fiber 300 Meter Optical Transceiver Module


Features

●Up to 300m on OM3 Multimode Fiber (MMF)

●Four-channel full-duplex transceiver modules

●Transmission data rate up to 11.3Gbit/s per channel

●Low power consumption <1.5W

●Operating case temperature 0°C to +70°C

●3.3V power supply voltage

●RoHS 6 compliant

●Hot Pluggable QSFP form factor

●MPO connector receptacle

●Built-in digital diagnostic function


Applications

●InfiniBand QDR, DDR and SDR

●Proprietary High Speed Interconnections

●Data center


Description

The E-link LNK-QSFP-ISR4-100M is a Four-Channel, Pluggable, Parallel, Fiber-Optic QSFP+ Transceiver for InfiniBand QDR/DDR/SDR,12G/10G/8G/4G/2G fiber channel, PCIe and SAS Applications. The QSFP full-duplex optical module offers 4 independent transmit and receive channels, each capable of 11.3Gbps operation for an aggregate data rate of 45.2Gbps 300m using OM3 fiber. These modules are designed to operate over multimode fiber systems using 850nmVCSEL laser array.An optical fiber ribbon cable with an MPO/MTPTM connector can be plugged into the QSFP module receptacle. QSFP+ eSR4 is one kind of parallel transceiver which provides increased port density and total system cost savings.


Absolute Maximum Ratings

The operation in excess of any absolute maximum ratings might cause permanent damage to this module.

ParameterSymbolMinMaxUnitNote
Storage TemperatureTST-4085degC
Relative Humidity(non-condensing)RH085%
Operating Case TemperatureTOPC070degC
Supply VoltageVCC-0.33.6V
Input VoltageVin-0.3Vcc+0.3V

Recommended Operating Conditions and Supply Requirements

ParameterSymbolMinTypicalMaxUnit
Operating Case TemperatureTOPC070degC
Power Supply VoltageVCC3.133.33.47V
Power Consumption-1.5W
Data RateDR10.311.3Gbps
Data Speed Tolerance∆DR-100+100ppm
Link Distance with OM3 fiberD0300m

Optical Characteristics

All parameters are specified under the recommended operating conditions with PRBS31 data pattern unless otherwise specified.

ParameterSymbolMinTypicalMaxUnitNotes
Transmitter
Center WavelengthλC840850860nm1
RMS Spectral Widthλrms-0.4nm1
Average Launch Power, each lanePAVG-7-2.50dBm
Optical Modulation Amplitude (OMA)POMA-5-2.50dBm1
Difference in Launch Power between any two lanesPtx,diff4.0dB
Launch Power in OMA minus Transmitter and Dispersion Penalty (TDP), each LaneOMA-TDP3.5dB1
Rise/Fall TimeTr/Tf50ps
Extinction RatioER3.5dB
Transmitter Eye Mask MarginEMM10%2
Average Launch Power OFF Transmitter, each LanePoff-30dBm
Transmitter Eye Mask Definition {X1, X2, X3, Y1, Y2, Y3}{0.25, 0.4, 0.45, 0.25, 0.28, 0.4}

ParameterSymbolMinTypicalMaxUnitNotes
Receiver
Center WavelengthλC840850860nm
Damage ThresholdTHd+3dBm
Overload, each laneOVL+2.4dBm
Receiver Sensitivity in OMA, each LaneSEN-9.5dBm
Signal Loss Assert ThresholdLOSA-30dBm
Signal Loss Deassert ThresholdLOSD-9dBm
LOS HysteresisLOSH0.56dB
Optical Return LossORL-12dBm

Notes:

  1. Transmitter wavelength, RMS spectral width and power need to meet the OMA minus TDP specs to guarantee link performance.
  2. The eye diagram is tested with 1000 waveform.

Electrical Specifications

ParameterSymbolMinTypicalMaxUnit
Differential input impedanceZin90100110ohm
Differential Output impedanceZout90100110ohm
Differential input voltage amplitudeΔVin3001100mVp-p
Differential output voltage amplitudeΔVout500800mVp-p
Bit Error RateBRE-12
Input Logic Level HighVIH2.0VCCV
Input Logic Level LowVIL00.8V
Output Logic Level HighVOHVCC-0.5VCCV
Output Logic Level LowVOL00.4V

Pin Descriptions

PINLogicSymbolName/DescriptionNote
1GNDGround1
2CML-ITx2nTransmitter Inverted Data Input
3CML-ITx2pTransmitter Non-Inverted Data output
4GNDGround1
5CML-ITx4nTransmitter Inverted Data Input
6CML-ITx4pTransmitter Non-Inverted Data output
7GNDGround1
8LVTLL-IModSelLModule Select
9LVTLL-IResetLModule Reset
10VccRx﹢3.3V Power Supply Receiver2
11LVCMOS-I/OSCL2-Wire Serial Interface Clock
12LVCMOS-I/OSDA2-Wire Serial Interface Data
13GNDGround
14CML-ORx3pReceiver Non-Inverted Data Output
15CML-ORx3nReceiver Inverted Data Output
16GNDGround1
17CML-ORx1pReceiver Non-Inverted Data Output
18CML-ORx1nReceiver Inverted Data Output
19GNDGround1
20GNDGround1
21CML-ORx2nReceiver Inverted Data Output
22CML-ORx2pReceiver Non-Inverted Data Output
23GNDGround1
24CML-ORx4nReceiver Inverted Data Output1
25CML-ORx4pReceiver Non-Inverted Data Output
26GNDGround1
27LVTTL-OModPrsLModule Present
28LVTTL-OIntLInterrupt
29VccTx+3.3 V Power Supply transmitter2
30Vcc1+3.3 V Power Supply2
31LVTTL-ILPModeLow Power Mode
32GNDGround1
33CML-ITx3pTransmitter Non-Inverted Data Input
34CML-ITx3nTransmitter Inverted Data Output
35GNDGround1
36CML-ITx1pTransmitter Non-Inverted Data Input
37CML-ITx1nTransmitter Inverted Data Output
38GNDGround1

Notes:

1. Module circuit ground is isolated from module chassis ground within the module. GND is the symbol for signal and supply (power) common for QSFP modules.
2. The connector pins are each rated for a maximum current of 500mA.


ModSelL Pin

The ModSelL is an input pin. When held low by the host, the module responds to 2-wire serial communication commands. The ModSelL allows the use of multiple QSFP modules on a single 2-wire interface bus. When the ModSelL is “High”, the module will not respond to any 2-wire interface communication from the host. ModSelL has an internal pull-up in the module.


ResetL Pin

Reset. LPMode_Reset has an internal pull-up in the module. A low level on the ResetL pin for longer than the minimum pulse length (t_Reset_init) initiates a complete module reset, returning all user module settings to their default state. Module Reset Assert Time (t_init) starts on the rising edge after the low level on the ResetL pin is released. During the execution of a reset (t_init) the host shall disregard all status bits until the module indicates a completion of the reset interrupt. The module indicates this by posting an IntL signal with the Data_Not_Ready bit negated. Note that on power up (including hot insertion) the module will post this completion of reset interrupt without requiring a reset.


LPMode Pin

E-link QSFP+ eSR4 operate in the low power mode (less than 1.5 W power consumption) This pin active high will decrease power consumption to less than 1W.


ModPrsL Pin

ModPrsL is pulled up to Vcc on the host board and grounded in the module. The ModPrsL is asserted “Low” when the module is inserted and deasserted “High” when the module is physically absent from the host connector.


IntL Pin


IntL is an output pin. When “Low”, it indicates a possible module operational fault or a status critical to the host system. The host identifies the source of the interrupt by using the 2-wire serial interface. The IntL pin is an open collector output and must be pulled up to Vcc on the host board.


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