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1000base LX / LH SFP Optical Transceiver Module Cisco Compatible 1310nm Wavelength

E-link China Technology Co., Ltd.

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Contact name:Michael Guo

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1000base LX / LH SFP Optical Transceiver Module Cisco Compatible 1310nm Wavelength

Country/Region china
City & Province shenzhen guangdong
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Product Details

1000 BASE-LX/LH , LC , Dual fiber 1310nm , SM , 20km , SFP Optical Transceiver Module

 

Features

  • Data-rate of 1.25Gbps/1.063Gbps operation
  • 1310nm FP laser and PIN photodetector for 20km transmission
  • Compliant with SFP MSA and SFF-8472 with duplex LC receptacle
  • Digital Diagnostic Monitoring:

Internal Calibration or External Calibration

  • Compatible with SONET OC-24-LR-1
  • Compatible with RoHS
  • +3.3V single power supply
  • Operating case temperature:

Commercial : 0 to +70°C

Industrial : -40 to +85°C

 

Applications

  • Gigabit Ethernet
  • Fiber Channel
  • Switch to Switch interface
  • Switched backplane applications
  • Router/Server interface
  • Other optical transmission systems

 

Description

The SFP transceivers are high performance, cost effective modules supporting 1.25Gbps/1.0625Gbps data-rate and 20km transmission distance with SMF.

 

The transceiver consists of three sections: a VCSEL laser transmitter, a PIN photodiode integrated with a trans-impedance preamplifier (TIA) and MCU control unit. All modules satisfy class I laser safety requirements.

 

The transceivers are compatible with SFP Multi-Source Agreement (MSA) and SFF-8472. For further information, please refer to SFP MSA.

 

 

 

Absolute Maximum Ratings

Table 1 - Absolute Maximum Ratings

ParameterSymbolMinMaxUnit
Supply VoltageVcc-0.54.5V
Storage TemperatureTs-40+85°C
Operating Humidity-585%
 

 

 

Recommended Operating Conditions

Table 2 - Recommended Operating Conditions

ParameterSymbolMinTypicalMaxUnit
Operating Case TemperatureCommercialTc0 +70°C
Industrial-40 +85°C
Power Supply VoltageVcc3.133.33.47V
Power Supply CurrentIcc  300mA
Data RateGigabit Ethernet  1.25 Gbps
Fiber Channel  1.063 
        
 

 

 

 

Optical and Electrical Characteristics

Table 3 - Optical and Electrical Characteristics

ParameterSymbolMinTypicalMaxUnitNotes
Transmitter
Centre Wavelengthλc126013101360nm 
Spectral Width (RMS)σ  4nm 
Average Output PowerPout-9 -3dBm1
Extinction RatioER9  dB 
Optical Rise/Fall Timetr/tf  0.26ns 
Data Input Swing DifferentialVIN400 1800mV2
Input Differential ImpedanceZIN90100110Ω 
TX DisableDisable 2.0 VccV 
Enable 0 0.8V 
TX FaultFault 2.0 VccV 
Normal 0 0.8V 
Receiver
Centre Wavelengthλc1260 1580nm 
Receiver Sensitivity   -23dBm3
Receiver Overload -3  dBm3
LOS De-AssertLOSD  -24dBm 
LOS AssertLOSA-35  dBm 
LOS Hysteresis 1 4dB 
Data Output Swing DifferentialVout400 1800mV4
LOSHigh2.0 VccV 
Low0 0.8V 
         
 

Notes:

1. The optical power is launched into SMF.

2. PECL input, internally AC-coupled and terminated.

3. Measured with a PRBS 27-1 test pattern @1250Mbps, BER ≤1×10-12

4. Internally AC-coupled.

 

 

 

Timing and Electrical

Table 4 - Timing and Electrical

ParameterSymbolMinTypicalMaxUnit
Tx Disable Negate Timet_on  1ms
Tx Disable Assert Timet_off  10µs
Time To Initialize, including Reset of Tx Faultt_init  300ms
Tx Fault Assert Timet_fault  100µs
Tx Disable To Resett_reset10  µs
LOS Assert Timet_loss_on  100µs
LOS De-assert Timet_loss_off  100µs
Serial ID Clock Ratef_serial_clock  400KHz
MOD_DEF (0:2)-HighVH2 VccV
MOD_DEF (0:2)-LowVL  0.8V
 

 

 

Diagnostics

Table 5 – Diagnostics Specification

ParameterRangeUnitAccuracyCalibration
Temperature0 to +70°C±3°CInternal / External
-40 to +85
Voltage3.0 to 3.6V±3%Internal / External
Bias Current0 to 100mA±10%Internal / External
TX Power-9 to -3dBm±3dBInternal / External
RX Power-23 to 0dBm±3dBInternal / External
 

 

 

Digital Diagnostic Memory Map

The transceivers provide serial ID memory contents and diagnostic information about the present operating conditions by the 2-wire serial interface (SCL, SDA).

 

The diagnostic information with internal calibration or external calibration all are implemented, including received power monitoring, transmitted power monitoring, bias current monitoring, supply voltage monitoring and temperature monitoring.

 

The digital diagnostic memory map specific data field defines as following.

 

 

 

Pin Descriptions

PinSignal NameDescriptionPlug Seq.Notes
1VEETTransmitter Ground1 
2TX FAULTTransmitter Fault Indication3Note 1
3TX DISABLETransmitter Disable3Note 2
4MOD_DEF(2)SDA Serial Data Signal3Note 3
5MOD_DEF(1)SCL Serial Clock Signal3Note 3
6MOD_DEF(0)TTL Low3Note 3
7Rate SelectNot Connected3 
8LOSLoss of Signal3Note 4
9VEERReceiver ground1 
10VEERReceiver ground1 
11VEERReceiver ground1 
12RD-Inv. Received Data Out3Note 5
13RD+Received Data Out3Note 5
14VEERReceiver ground1 
15VCCRReceiver Power Supply2 
16VCCTTransmitter Power Supply2 
17VEETTransmitter Ground1 
18TD+Transmit Data In3Note 6
19TD-Inv. Transmit Data In3Note 6
20VEETTransmitter Ground1 
 

Notes:

Plug Seq.: Pin engagement sequence during hot plugging.

1) TX Fault is an open collector output, which should be pulled up with a 4.7k~10kΩ resistor on the host board to a voltage between 2.0V and Vcc+0.3V. Logic 0 indicates normal operation; Logic 1 indicates a laser fault of some kind. In the low state, the output will be pulled to less than 0.8V.

2) TX Disable is an input that is used to shut down the transmitter optical output. It is pulled up within the module with a 4.7k~10kΩ resistor. Its states are:

Low (0 to 0.8V): Transmitter on

(>0.8V, < 2.0V): Undefined

High (2.0 to 3.465V): Transmitter Disabled

Open: Transmitter Disabled

3) Mod-Def 0,1,2. These are the module definition pins. They should be pulled up with a 4.7k~10kΩ resistor on the host board. The pull-up voltage shall be VccT or VccR.

Mod-Def 0 is grounded by the module to indicate that the module is present

Mod-Def 1 is the clock line of two wire serial interface for serial ID

Mod-Def 2 is the data line of two wire serial interface for serial ID

4) LOS is an open collector output, which should be pulled up with a 4.7k~10kΩ resistor. Pull up voltage between 2.0V and Vcc+0.3V. Logic 1 indicates loss of signal; Logic 0 indicates normal operation. In the low state, the output will be pulled to less than 0.8V.

5) RD-/+: These are the differential receiver outputs. They are internally AC-coupled 100 differential lines which should be terminated with 100Ω (differential) at the user SERDES.

6) TD-/+: These are the differential transmitter inputs. They are internally AC-coupled, differential lines with 100Ω differential termination inside the module.

 

 

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