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Optical module testing system for optical communication

A technology of optical module testing and module testing, which is applied in the field of optical communication, can solve the problems of low test efficiency, error-proneness, and complicated operation of the test process, so as to reduce labor costs, reduce error rates and error rates, and reduce participation and operation. Effect

Inactive Publication Date: 2020-11-03
湖南中科光电有限公司
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Problems solved by technology

[0009] At present, domestic enterprises mainly use advanced testing equipment at home and abroad in the process of parameter testing of optical communication products. , watch the waveform or data on the instrument with human eyes; this not only makes the test process complicated and error-prone, but more importantly, the test efficiency is too low

Method used

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  • Optical module testing system for optical communication
  • Optical module testing system for optical communication

Examples

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Embodiment 1

[0046] The optical module testing system for optical communication in this embodiment includes an optical module receiving circuit, an optical module signal processing unit, an optical module testing instrument, a bit error transmitter, and an oscilloscope, and the optical module receiving circuit is externally connected to an optical line terminal. The optical module signal processing unit and the optical module receiving circuit perform data interaction through the communication module, and the optical module receiving circuit is also connected to the optical module testing instrument, and the optical module testing instrument is provided with a single-channel error bit The single-channel BER tester is connected to the OLT module, the BER sender is connected to the optical module signal processing unit through the optical module control system, and the oscilloscope is connected to the optical module testing instrument. The chip parameters of the optical module control system ...

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Abstract

The invention discloses an optical module test system for optical communication, and relates to the technical field of optical communication. The system comprises an optical module receiving circuit,an optical module signal processing unit, an optical module test instrument, an error code transmitter and an oscilloscope, the optical module receiving circuit is externally connected with an opticalline terminal, data interaction is performed between the optical module signal processing unit and the optical module receiving circuit through a communication module, and the optical module receiving circuit is further connected with the optical module test instrument. The optical module test instrument is provided with a single-channel error code instrument, the single-channel error code instrument is connected with the OLT module, the error code transmitter is connected with the optical module signal processing unit through the optical module control system, and the oscilloscope is connected with the optical module test instrument. Various automatic test systems can be quickly and conveniently established by utilizing a universal hardware module, and signal analysis, data processing, storage, transmission, display and the like can be conveniently carried out by utilizing powerful functions of a computer.

Description

technical field [0001] The invention relates to the technical field of optical communication, in particular to an optical module testing system for optical communication. Background technique [0002] In 1966, British Chinese scholars Gao Kun (C.K.KA) and Hawkham (C.K.HOCKHAM) published a paper on the new concept of transmission medium, pointing out the possibility and technical approach of using optical fiber (Optical Fiber) for information transmission, laying the foundation The basis of modern optical communication - fiber optic communication. In 1970, a major breakthrough was made in the development of optical fiber, and substantial progress was also made as a light source for optical fiber communication. The 1970's became an important milestone in the development of optical fiber communications due to technological advances in optical fibers and semiconductor lasers. In 1976, the United States conducted the world's first field experiment of a practical optical fiber c...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04B10/079H04B10/25H04B10/2507
CPCH04B10/079H04B10/0795H04B10/2507
Inventor 卢立建
Owner 湖南中科光电有限公司
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