CWDM 10G XFP Optical Module - Baudcom ...

CWDM 10G XFP Optical Module

CWDM 10G XFP Optical Module

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Description Baudcom CWDM XFP Transceiver exhibits excellent wavelength stability, supporting operati…
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    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.


    ¨        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)


    ¨        SONET OC-192& SDH STM 64

    ¨        CWDM 80km 10G Ethernet

    ¨        CWDM 80km 10G Fiber Channel

    ¨        CWDM Networks

    ¨        CWDM 80km 10G Ethernet with FEC

    Transmitter Specifications – Optical

    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


    1. Wavelength stability is achieved within 60 seconds (max) of power up.
    2. BER=10^-12; PRBS 2^[email protected]

    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

    Order information
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