The design and realization of a monitoring platform for SFP optical transceiver module
Проектирование и реализация платформы мониторинга для оптического трансивера SFP
2009-09-01
SCID: 54.1/psrsf6b9
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SFP optical transceiver monitoring platformoptical link fault prediction and localizationpower supply and bias current measurementreal-time temperature monitoringtransmit power and receiver power monitoring
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Abstract (AI)
This paper proposes a design and realization of a monitoring platform for SFP optical transceiver module. With the adoption of this platform, the real-time temperature, power supply, bias current, transmit power and receiver power of optical transceiver module's monitoring can be realized. The measurement of these parameters will help to forecast the fault and find the fault position of optical link. With the forecast of the fault, the unit that may be faulted can be displaced early and the cost will be reduced. By malfunction orientation, the technical staff can find the fault position of optical link in a short time, the time of repairing becomes shorter. The use of this platform simplifies the maintenance work and enhances the reliability of communication system.
Key Findings
1
A monitoring platform for SFP optical transceiver modules was designed and implemented to enable real-time monitoring of temperature, power supply, bias current, transmit power, and receiver power.
2
Early detection via the platform allows potentially faulty units to be replaced before failure, reducing costs.
3
Fault localization capability shortens repair time for technical staff, simplifying maintenance.
4
Real-time measurement of these parameters enables fault forecasting and helps identify fault locations in optical links.
5
Using the platform enhances the reliability of the communication system.
Research Object
Monitoring platform for SFP optical transceiver modules
Research Subject
Real-time monitoring and measurement of module parameters (temperature, power supply, bias current, transmit power, receiver power) for fault prediction, fault localization, maintenance simplification and reliability enhancement of optical links
Publication Details
Publication Date
2009-09-01
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