CWDM 10G XFP Optical Module

CWDM 10G XFP Optical Module

USD $100 - $150 /Unit

Min.Order:1 Unit

Supply Ability:
100 Unit / Units per Month
Port:
shanghai
Payment Terms:
T/T L/C D/P D/A PayPal
Delivery Detail:
1 days

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Brand Name:
Baudcom
Place of Origin:
China
Model Number:
BXC-47192-08C

Shanghai Baudcom Communication Device Co.,Ltd

Business Type: Manufacturer
Main Products: 10/100M Managed Media Converter

Product Details

Description

Baudcom CWDM XFP Transceiver exhibits excellent wavelength stability, supporting operation at 100 GHz channel, cost effective module. It is designed for 10G CWDM SDH, 10GBASE-ZR and 10G Fiber- Channel applications.

The transceiver consists of two sections: The transmitter section incorporates a colded EML laser. And the receiver section consists of a APD photodiode integrated with a TIA. All modules satisfy class I laser safety requirements. Baudcom 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.

Features

¨        Wavelength selectable to ITU-T standards covering CWDM grid

¨        XFP MSA Rev 4.5 Compliant

¨        Data rate from 9.95Gbps to 11.1Gbps

¨        No Reference Clock required

¨        Cooled EML and APD receiver

¨        Maximum link length up to 80km (1600ps/nm@G652 fiber)

¨        Low Power Dissipation 3.5W Maximum

¨        XFI and lineside loopback Mode Supported

¨        -5oC to 70oC Operating Case Temperature

¨        Diagnostic Performance Monitoring of module temperature,

Supply Voltages, laser bias current, transmit optical power, and receive optical power

¨        RoHS6 compliant (lead free)

 

Applications

¨        SONET OC-192& SDH STM 64

¨        CWDM 80km 10G Ethernet

¨        CWDM 80km 10G Fiber Channel

¨        CWDM Networks

¨        CWDM 80km 10G Ethernet with FEC

Specification

Transmitter Specifications – Optical

Parameter

Symbol

Min

Typical

Max

Unit

Center Wavelength

c






nm

Center wavelength stability


D



c



nm

Optical Transmit Power

Po

0

+3

dBm

Optical Transmit Power (disabled)

PTX_DIS

-30

dBm

Extinction Ratio

ER

8.2

dB

Jitter Generation(P-P)

JG P-P

0.1

UI

Jitter Generation(RMS)

JG RMS

0.01

UI

Spectral Width (-20dB)

Δλ20

0.3

nm

Side Mode Suppression Ratio

SMSR

30

dB

Dispersion penalty(1600ps/nm) [2]

DP

3

dB

Relative Intensity Noise

RIN

-130

dB/Hz

Eye Mask

Compliant with ITU-T G.691 STM-64 eye mask

Note

1.      Wavelength stability is achieved within 60 seconds (max) of power up.

2.       BER=10^-12; PRBS 2^31-1@10.3125Gbps

 

Transmitter Specifications – Electrical

 

Parameter

Symbol

Min

Typical

Max

Unit

Input differential impedance

Rim

100

Ω

Differential data Input

VtxDIFF

120

850

mV

Transmit Disable Voltage

VD

2.0

Vcc3+0.3

V

Transmit Enable Voltage

Ven

0

+0.8

V

Transmit Disable Assert Time

Vn

10

us

 

 Receiver Specifications – Optical

Parameter

Symbol

Min

Typical

Max

Unit

Maximum Input Power

RX-overload

-7

dBm

Input Operating Wavelength

λ





nm

Reflectance

Rrx

-27

dB

Loss of Signal Asserted

LOS_A

-34

dBm

LOS De-Asserted

LOS_D

-24

dBm

LOS Hysteresis

LOS_H

0.5

dB

Receiver Sensitivity

Data rate (Gb/s)

BER

Dispersion (ps/nm)

Sensitivity back-to-back at OSNR>30dB (dBm)

Power Penalty at OSNR>30dB (dB)

9.95 ~10.3125

1e-12

-500 to 1450

-24

2

10.7 ~11.1

1e-4

-500 to 1300

-27

2

OSNR Performance

Data rate (Gb/s)

BER

Dispersion (ps/nm)

Min OSNR Back-to-back at Power: -7 to -16dBm (dB)

Max OSNR Penalty at Power:-7 to -16dBm (dB)

9.95 ~10.3125

1e-12

-500 to 1450

24

4

10.7 ~11.1

1e-4

-500 to 1300

16

4


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