Optical port self-adaptive Ethernet network fiber optical transceiver and self-adaptive approach thereof

An optical fiber transceiver and self-adaptive technology, applied in the network field, can solve problems such as inconvenience in communication, and achieve the effects of short construction period, convenient network engineering and wide application range

Active Publication Date: 2009-12-23
深圳市巨联高科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, whether it is an optical switch or a high-speed transceiver, its optical interface is only fixed at 10M, 100M or 1000M, because the encoding methods of optical ports at different rates are different

Method used

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  • Optical port self-adaptive Ethernet network fiber optical transceiver and self-adaptive approach thereof
  • Optical port self-adaptive Ethernet network fiber optical transceiver and self-adaptive approach thereof
  • Optical port self-adaptive Ethernet network fiber optical transceiver and self-adaptive approach thereof

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Embodiment Construction

[0028] figure 1 , figure 2 and image 3 A specific implementation manner of the optical port self-adaptive Ethernet optical fiber transceiver of the present invention is shown.

[0029] Such as figure 1 As shown, the optical port adaptive Ethernet optical fiber transceiver includes an electrical interface unit that can access Ethernet signals, an optical interface unit that can access optical signals, a photoelectric medium conversion unit, a detection configuration part and an LED indicator unit (that is, a display unit); such as figure 2 As shown, the detection configuration part includes a processing unit, a detection unit, a reset system, and a configuration unit that is set with configuration data corresponding to two optical port rates of 100M and 1000M; the photoelectric medium conversion unit includes an internal register (not shown in the accompanying drawings) , the detection unit is electrically connected to the configuration unit, the photoelectric medium con...

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PUM

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Abstract

The invention provides an optical port self-adaptive Ethernet network fiber optical transceiver, comprising an electrical interface unit, an optical interface unit, an actinodielectric translation unit, a configuration unit, a detection unit and a resetting system; wherein the actinodielectric translation unit comprises an internal register, the detection unit and the configuration unit are electrically connected, the actinodielectric translation unit is electrically connected with the electrical interface unit, the optical interface unit, the configuration unit and the resetting unit respectively. The invention further provides the self-adaptive approach of the optical port self-adaptive Ethernet network fiber optical transceiver and provides the possibility of using fiber optical transceivers with different optical interface unit speeds in the same optical fiber link; the optical port self-adaptive Ethernet network fiber optical transceiver of the invention has wider application range than ordinary fiber optical transceivers, thus avoiding operating at low speed due to access to high-speed optical link; in addition, after the fiber optical transceiver at the other end of the optical fiber link is updated, namely the speed is increased, mutual communication among the fiber optical transceivers can still be carried out.

Description

【Technical field】 [0001] The invention relates to a network technology, in particular to an optical port self-adapting Ethernet optical fiber transceiver and an self-adapting method thereof. 【Background technique】 [0002] Ethernet fiber optic transceiver is an Ethernet transmission media conversion unit that exchanges short-distance twisted-pair electrical signals (Ethernet data) and long-distance optical signals. Its main function is to extend the connection distance of Ethernet. Breaking the distance limitation that twisted pair can only transmit 100 meters. Ethernet fiber optic transceivers are generally used in actual network environments where Ethernet cables cannot be covered, and optical fibers must be used to extend the transmission distance if the distance is greater than 100 meters, and are usually located in the access layer application of broadband metropolitan area networks. [0003] Driven by the increasing demand for network bandwidth and the diversification...

Claims

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Application Information

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IPC IPC(8): H04B10/24H04B10/12H04B10/40
Inventor 武高骏
Owner 深圳市巨联高科技有限公司
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