Optical Fiber RoHS Compliant 10GB /S XFP CWDM 40km Optical Transceiver

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Model NO.
GFC-OLXCxx1XL-C(I)D40
Delivery Time
3-7 Days
Warranty
3 Years
Distance
20km
Trademark
GFC
Transport Package
Antistatic Bag
Specification
10G
Origin
Zhejiang China
HS Code
8517706000
Model NO.
GFC-OLXCxx1XL-C(I)D40
Delivery Time
3-7 Days
Warranty
3 Years
Distance
20km
Trademark
GFC
Transport Package
Antistatic Bag
Specification
10G
Origin
Zhejiang China
HS Code
8517706000

Product Features

  • Supports 9.95 to 11.3Gb/s bit rates
  • Duplex LC connector
  • Hot-pluggable XFP footprint
  • Cooled 1470nm~1610nm EML transmitter, PIN photo-detector
  • Applicable for 40km SMF connection
  • Low power consumption, <2.0W
  • Digital Diagnostic Monitor Interface
  • XFP MSA Rev 4.5 Compliant
  • Operating case temperature:
Commerical:0 to 70 °C Industrial:-40 to 85°C

Applications
  • 10GBASE-ER at 10.3125Gbps
  • SONET OC-192&SDH STM 64
  • Other optical links


Product Descriptions
GFC-OLXCxx1XL-C(I)D40 is Transceiver exhibits excellent wavelength stability, cost effective module. It is designed for 10G CWDM SDH, 10GBASE-ER/EW and 10G Fiber- Channel applications. The transceiver consists of two sections: The transmitter section incorporates a cooled EML laser. And the receiver section consists of a PIN photodiode integrated with a TIA. All modules satisfy class I laser safety requirements. The CWDM XFP transceiver provides an enhanced monitoring interface, which allows real-time access to device operating parameters such as transceiver temperature, laser bias current, transmitted optical power, received optical power and transceiver supply voltage.

Functional Diagram

Optical Fiber RoHS Compliant 10GB/S XFP CWDM 40km Optical Transceiver
Absolute Maximum Ratings
 
ParameterSymbolMin.Max.UnitNote
Supply VoltageVcc-0.54.0V 
Storage TemperatureTS-4085°C 
Relative HumidityRH085% 

Note: Stress in excess of the maximum absolute ratings can cause permanent damage to the transceiver.


 

General Operating Characteristics

 
ParameterSymbolMin.TypMax.UnitNote
Data RateDR9.9510.312511.3Gb/s 
Supply VoltageVcc3.133.33.47V 
Supply CurrentIcc5  500mA 
Operating Case Temp.Tc0 70°C 
TI-40 85 


Electrical Characteristics (TOP(C) = 0 to 70 ºC, TOP(I) =-40 to 85 ºC,VCC = 3.13 to 3.47 V)
 
ParameterSymbolMin.TypMax.UnitNote
Transmitter
Differential data input swingVIN,PP120 820mVpp1
Tx Disable input_HighVIH2.0 Vcc+0.3V 
Tx Disable input_LowVIL0 0.8V 
Tx Fault output_HighVOH2.0 Vcc+0.3V2
Tx Fault output_LowVOL0 0.8V2
Input differential impedanceRin 100 Ω 
Receiver
Differential data output swingVout,pp340 800mVpp3
LOS assertedVLOS_FVCC-0.8 VccV2
LOS de-assertedVLOS_NVee Vee+0.8V2

Notes:

  1. TD+/- are internally AC coupled with 100Ω differential termination inside the module.
  2. Tx Fault and Rx LOS are open collector outputs, which should be pulled up with 4.7k to 10kΩ resistors on the host board. Pull up voltage between 3..0V and Vcc+0.3V.
Note 3) RD+/- outputs are internally AC coupled, and should be terminated with 100Ω (differential) at the user SERDES.



Optical Characteristics (TOP(C) = 0 to 70 ºC, TOP(I) =-40 to 85 ºC,VCC = 3.13 to 3.47 V)
 
ParameterSymbolMin.TypMax.UnitNote
Transmitter
Operating Wavelengthλλ-7.5nmλλ+7.5nmnm1
Ave. output power (Enabled)PAVE-1 2dBm2
Side-Mode Suppression RatioSMSR30  dB 
Extinction RatioER8.2  dB 
RMS spectral widthΔλ  0.45nm 
Rise/Fall time (20%~80%)Tr/Tf  45ps 
Dispersion penaltyTDP  3dB 
Relative Intensity NoiseRIN  -128dB/Hz 
Output Optical EyeCompliant with IEEE 0802.3ae
Receiver
Operating Wavelengthλ1260 1620nm 
Receiver SensitivityPSEN  -16dBm3
OverloadPAVE0.5  dBm 
LOS AssertPa-30  dBm 
LOS De-assertPd  -17dBm 
LOS HysteresisPd-Pa0.5  dB 

Notes:

  1. The wavelength λ =1470nm~1610nm, Total 8 wavelengths,20nm spacing
  2. Measured at 10.3125b/s with PRBS 231 - 1 NRZ test pattern.
  3. Under the ER worst =8.2, measured at 10.3125 Gb/s with PRBS 231 - 1 NRZ test pattern for BER < 1x10-12

Management Interface

The OLXCxx1XL-C(I)D40,incorporates an XFP-compliant, two-wire management interface which is used for serial ID, digital diagnostics, and certain control functions. It is modeled on the SFF-8472 specification modified to accommodate a single two-wire interface address. In addition to the basic I2C read/write functionality, the modules support packet error checking that, when enabled, allows the host system to confirm the validity of any read data. Details of the protocol and interface are explicitly described in the MSA. Please refer to the MSA for design reference.The digital diagnostic memory map specific data field defines as following:
Optical Fiber RoHS Compliant 10GB/S XFP CWDM 40km Optical Transceiver
 

Typical Interface Ciruit

Optical Fiber RoHS Compliant 10GB/S XFP CWDM 40km Optical Transceiver
Package Dimensions
Optical Fiber RoHS Compliant 10GB/S XFP CWDM 40km Optical Transceiver

Optical Fiber RoHS Compliant 10GB/S XFP CWDM 40km Optical Transceiver
Optical Fiber RoHS Compliant 10GB/S XFP CWDM 40km Optical Transceiver