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High-power multi-core photoelectric integrated connector

An optoelectronic integrated, high-power technology, applied in the direction of connection, optical waveguide coupling, two-part connecting device, etc., can solve the problem of inability to retract or retract the optoelectronic integrated cable, improve the difficulty of connection or separation, and increase the overall structure. Volume and weight issues, to achieve the effect of light weight, low loss, volume and weight reduction

Pending Publication Date: 2021-08-20
安徽光纤光缆传输技术研究所
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The disadvantage of option 1 is that the permanent connection makes the integrated photoelectric cable unable to be retracted or retracted, which is not conducive to transportation, and it is very difficult to move the mobile platform
[0006] The disadvantage of option two is that too many branch ends increase the volume and weight of the overall structure, and also increase the difficulty of operation when connecting or separating

Method used

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  • High-power multi-core photoelectric integrated connector
  • High-power multi-core photoelectric integrated connector
  • High-power multi-core photoelectric integrated connector

Examples

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Embodiment Construction

[0102] The present invention is described in detail below with reference to accompanying drawing and embodiment:

[0103] The high-power multi-core photoelectric integrated connector is designed with a compact voltage-resistant structure, which greatly increases the creepage distance between the electrical contacts and between the electrical contacts and the housing. The outer diameter is reduced, thereby reducing the overall size and weight; through the design of the photoelectric separation secondary positioning structure, it solves the problem of the large lateral force generated by the multi-core high-power contacts in the connector when plugging and unplugging, resulting in the butt joint of optical terminals When the coaxiality cannot be guaranteed, it will eventually lead to the problem of greatly increased insertion loss.

[0104] attached Figure 1-14 It can be seen that a high-power multi-core photoelectric integrated connector,

[0105] Including: plug connector a...

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Abstract

The invention relates to a high-power multi-core photoelectric integrated connector which comprises a plug connector and a socket connector. The plug connector and the socket connector are provided with shell units; optical and electric units are arranged in the plug connector and the socket connector; the optical and electric unit in the plug connector is connected with a photoelectric composite cable; the optical and electric unit in the socket connector is connected with the electric wire and the optical fiber; and the plug connector and the socket connector carry out photoelectric connection through a photoelectric contact pair. According to the high-power multi-core photoelectric integrated connector disclosed by the invention, through a compact voltage-resistant structural design, the connector meets the voltage-resistant performance, and meanwhile, the outer diameter is reduced, and the overall size and weight are decreased; and a lateral force generated when the multi-core high-power electric contact in the connector is plugged and pulled is reduced so that the coaxiality is ensured when the optical end connectors are in butt joint.

Description

technical field [0001] The invention relates to a communication device, in particular to a high-power multi-core photoelectric integrated connector. Background technique [0002] High-power multi-core photoelectric integrated cable is used for power supply and signal transmission between fixed platforms and large mobile (underwater, surface, floating) platforms. The high-power multi-core photoelectric integrated connector is used for the connection between the high-power multi-core photoelectric integrated cable and the large mobile platform. [0003] Solution 1 of the prior art: fix the photoelectric composite cable on the mobile platform, and permanently connect the photoelectric units of the photoelectric composite cable to the equipment of the mobile platform. [0004] Solution 2 of the existing technology: use the splitter, introduce the photoelectric integrated cable into the splitter, branch according to different functions at the branch end, and separate the multi-c...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01R13/502H01R13/631H01R24/38G02B6/38
CPCH01R24/38H01R13/6315H01R13/502G02B6/3817G02B6/3825G02B6/3821
Inventor 顾庆昌杨小平谢鸿志朱家远
Owner 安徽光纤光缆传输技术研究所