1 Sales MIC-OR-860LH-1 series field unidirectional optical receiver,Manufacturer
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MIC-OR-860LH-1 series field unidirectional optical receiver for TV signal transmission

Product ID:HZGDglcsfp005

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Supply Ability:60 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberMIC-OR-860LH-1
    Brand NameSHANXIMAIKE
    Payment TermsT/T, paypal
    MIC-OR-860LH-1 series field unidirectional optical receiver
    Introduction:
    The MIC-OR-860LH series field-type two- or four-port optical receiver is a new model developed by Mike based on market demand and network development needs; it is optimized by combining module amplification circuit with GaAs MMIC amplifier circuit. The circuit design makes the output level remain unchanged when the input optical power is -6~+2dBm, so that the output of the machine has high performance index; the adjustable output attenuation and equalization make the CATV network engineering debugging become more convenient; Adapted to the current and future needs of CATV network development, it is the preferred model for building HFC and EPON network systems.
    Features:
    1. 1310nm and 1550nm dual window reception;
    2. Light control AGC function (-6 ~ +2dBm);
    3. Ten segments of LED display the input optical power level;
    4. The output is provided with adjustable attenuation and equalization for easy debugging;
    5. The output is a branch or a branch of the insert type for easy replacement and use;
    6. Each port is equipped with AC60V power supply LED indicator for easy use;
    7. Perfect surge suppression circuit can effectively prevent surge impact and lightning strike;
    8. With AC60V independent power supply port, it is easy to use;
    9. Internally, a network management responder conforming to the SNMP protocol can be configured, and the user can manage the device through the network management system;
    10. High-quality cast aluminum casing, dustproof, waterproof, shielding and heat dissipation performance, easy to install;
    11. High reliability switching power supply, low temperature rise, high conversion efficiency and wide voltage adaptation range.
    Technical Parameters:
    Product model: MIC-OR-860LH-1
    Received optical power dBm: -8~+2
    Light reflection loss dBm: ≥45
    Receiving light wavelength nm: 1290~1600
    AGC function: Light control AGC
    AGC range dBm: -6~+2 dBm
    Optical connector form: FC/APC or SC/APC (user specified)
    Optical link carrier-to-noise ratio C/N dB: ≥51 (-1dBm reception, 59-channel PAL-D)
    Carrier combination third-order beat ratio C/CTB dB: ≥65 (-1dBm reception, 59-channel PAL-D)
    Carrier combination second-order beat ratio C/CSO dB: ≥62 (-1dBm reception, 59-channel PAL-D)
    Frequency range MHz: 45~862/1000
    In-band flatness dB: ±0.75
    Maximum RF output level dBμV: 110
    RF output impedance Ω: 75
    Attenuation adjustment range dB: 0~20
    Balance adjustment range dB: 0~18
    Output reflection loss dB: ≥16
    RF output port: 2
    Power supply V: AC3590 or AC110265
    Network management configuration: Class II network management reserved
    Optical power display mode: Ten segments of LED display
    Working temperature °C: -40+65
    Storage temperature °C: -40+65
    Relative humidity %: Maximum 90% without condensation
    Machine power consumption W: 14 (Max)
    Dimensions mm: 240 × 150 × 110
     
  • Introduction:
    The MIC-OR-860LH series field-type two- or four-port optical receiver is a new model developed by Mike based on market demand and network development needs; it is optimized by combining module amplification circuit with GaAs MMIC amplifier circuit. The circuit design makes the output level remain unchanged when the input optical power is -6~+2dBm, so that the output of the machine has high performance index; the adjustable output attenuation and equalization make the CATV network engineering debugging become more convenient; Adapted to the current and future needs of CATV network development, it is the preferred model for building HFC and EPON network systems.
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