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    Phone: 905.853.0078
    Toll Free: 866.376.0078
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    BCP Broadband Communications Products / JDSU / JDS Uniphase 320A High Gain 3 GHz Optical Receiver, Model 320A-33ST

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    • BCP Broadband Communications Products / JDSU / JDS Uniphase 320A High Gain 3 GHz Optical Receiver, Model 320A-33ST

    BCP Broadband Communications Products / JDSU / JDS Uniphase 320A High Gain 3 GHz Optical Receiver, Model 320A-33ST


    Part Number: sku6568
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    Product Description

    Our unit is branded BCP.  JDSU acquired BCP and changed the name to JDS Uniphase

    The receiver detects and converts optical signals into electrical signals for the purpose of transmitter waveform analysis and testing, including error rate testing. It is optimized for analysis of high-speed, low-level optical signals from single-mode fiber sources. The high bandwidth (3 GHz) and high gain (2500 V/W) enable detection and analysis of up to 2.5 Gb/s signals at levels down to below -30 dBm. The receiver is also equipped with a high-level input port for direct connection of laser sources at power levels up to +3 dBm without overload.

    The Model 320A 3 GHz O/E Receiver is the one solution that provides users with a low-cost, high quality instrument for optical eye pattern analysis and testing at low to high power levels.

     

    The receiver consists of a 3 GHz bandwidth optical-to-electrical (O/E) converter (1100 to 1600 nm) and a 3 Gb/s limiting amplifier. The detector out port for the O/E converter is DC coupled and automatically nulled to <±100 μV DC. The nulling is automatically performed when the receiver does not have an optical input.


    FEATURES & SPECIFICATIONS:
    Detector bandwidth DC 3 GHz
    High O/E gain (2500 V/W)
    Limiting amplifier included
    No gain or offset adjustments needed
    Equipped with universal connectors
    High Power Optical Input: 1.0 mW (0 dBm) max
    Low Power Optical Input: 200 µW (-7 dBm) max
    Bandwidth (-3 dB): DC to 2.5 GHz minimum, 3.0 GHz typical
     

     

    Addiitonal specifications available upon request.

     
     

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