Opto-electric hybrid high-speed connector

CN224669069UActive Publication Date: 2026-08-21SHEN ZHEN CHENGDEXIN ELECTRONICS CO LTD
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Patent Information

Application Number
CN202521515826.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-21
Publication Date
2026-08-21
Estimated Expiration
2035-07-21

AI Technical Summary

Technical Problem

[0002]目前所使用的光-电混合高速连接器结构简单,大多通过卡扣的方式进行对接,而卡扣连接的稳定性较差,很容易导致连接器发生晃动,且卡扣连接的密封性较差,很容易导致连接器内部进入灰尘等杂质

Benefits of technology

[0010]与现有技术相比,本实用新型的有益效果是:本实用新型前后拉钩上方两侧对称嵌套有工型轴,可通过工型轴轻松对前后拉钩进行支撑、导向;前后拉钩上方中间通过螺纹连接有双向螺杆,可通过双向螺杆轻松带动前后拉钩相对进行移动;限位台与对接套之间套装有密封胶垫,可通过密封胶垫对限位台与对接套之间进行密封;综合上述本实用新型可轻松对光电混合连接器进行紧密对接,有效提高了光电混合连接器使用的稳定性。

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Abstract

The utility model discloses a kind of photoelectric hybrid high-speed connectors, including butt joint cover, first butt joint seat and second butt joint seat are provided on butt joint cover, the first butt joint seat is nested in butt joint cover inside front end, the second butt joint seat is nested in butt joint cover inside rear end, and limit platform and butt joint shaft are uniformly provided on second butt joint seat and first butt joint seat, the limit platform is integrally formed and connected in second butt joint seat and first butt joint seat outer end, and sealing rubber pad is sleeved between limit platform and butt joint cover, the butt joint shaft is integrally formed and connected in second butt joint seat and first butt joint seat outer two sides. The utility model can easily carry out close butt joint to photoelectric hybrid connector, effectively improve the stability of photoelectric hybrid connector use.
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Description

Technical Field

[0001] This utility model relates to a high-speed optoelectronic hybrid connector, belonging to the field of optoelectronic connector technology. Background Technology

[0002] Current optoelectronic hybrid high-speed connectors have simple structures, mostly using a snap-fit ​​connection. However, snap-fit ​​connections have poor stability, easily causing connector wobbling, and their sealing is also poor, allowing dust and other impurities to enter the connector. To solve these problems, a new technical solution is proposed. Utility Model Content

[0003] The purpose of this invention is to provide a high-speed optoelectronic hybrid connector to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, the present invention adopts the following technical solution: a high-speed optical-electric hybrid connector, comprising a mating sleeve, wherein a first mating seat and a second mating seat are provided on the mating sleeve, the first mating seat is nested inside the front end of the mating sleeve, the second mating seat is nested inside the rear end of the mating sleeve, and both the second mating seat and the first mating seat are provided with a limiting platform and a mating shaft, the limiting platform is integrally formed and connected to the inner end of the second mating seat and the first mating seat, and a sealing gasket is fitted between the limiting platform and the mating sleeve, and the mating shaft is integrally formed and symmetrically connected to the outer sides of the second mating seat and the first mating seat.

[0005] Preferably, the first docking seat is provided with an optical fiber connector and a wire connector. The optical fiber connector is fixed to the left side of the first docking seat by screws, and the wire connector is fixed to the right side of the first docking seat by screws.

[0006] Preferably, the second mating seat is provided with a fiber optic connector male and a wire connector male. The fiber optic connector male is fixed to the inside left side of the second mating seat by screws, and the wire connector male is fixed to the inside right side of the second mating seat by screws.

[0007] Preferably, hooks are fitted on the symmetrical front and rear docking shafts, and I-shaped shafts are symmetrically nested on both sides above the front and rear hooks. A bidirectional screw is threadedly connected to the middle of the front and rear hooks, and a hexagonal column is integrally formed in the middle section of the bidirectional screw.

[0008] Preferably, the male fiber optic connector is inserted into the female fiber optic connector.

[0009] Preferably, the male wire connector is inserted into the female wire connector.

[0010] Compared with the prior art, the beneficial effects of this utility model are as follows: Symmetrically nested I-shaped shafts are provided on both sides above the front and rear hooks, which can easily support and guide the front and rear hooks; a bidirectional screw is threadedly connected to the middle of the front and rear hooks, which can easily drive the front and rear hooks to move relative to each other; a sealing gasket is fitted between the limiting platform and the mating sleeve, which can seal the space between the limiting platform and the mating sleeve; In summary, this utility model can easily achieve tight mating of the optoelectronic hybrid connector, effectively improving the stability of the optoelectronic hybrid connector in use. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the docking sleeve structure of this utility model; Figure 3 This is a schematic diagram of the hook structure of this utility model; In the diagram: 1-Matching sleeve; 2-First mating seat; 3-Second mating seat; 4-Limiting platform; 6-Matching shaft; 6-Sealing gasket; 7-Fiber optic connector female; 8-Wire connector female; 9-Fiber optic connector male; 10-Wire connector male; 11-Hook; 12-I-shaped shaft; 13-Bidirectional screw; 14-Hexagonal post. Detailed Implementation

[0012] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0013] like Figure 1-3As shown, a hybrid optical-electrical high-speed connector includes a mating sleeve 1, on which a first mating seat 2 and a second mating seat 3 are disposed. The first mating seat 2 is nested inside the front end of the mating sleeve 1, and the second mating seat 3 is nested inside the rear end of the mating sleeve 1. Both the second mating seat 3 and the first mating seat 2 are provided with a limiting platform 4 and a mating shaft 5. The limiting platform 4 is integrally formed and connected to the inner end of the second mating seat 3 and the first mating seat 2, and a sealing gasket 6 is fitted between the limiting platform 4 and the mating sleeve 1. The mating shaft 5 is integrally formed and symmetrically connected to the outer sides of the second mating seat 3 and the first mating seat 2. The first mating seat 2 is provided with an optical fiber connector female 7 and a wire connector female 8. The optical fiber connector female 7 is fixed to the first mating seat by screws. On the left side inside the first docking seat 2, the female connector 8 is fixed to the right side inside the first docking seat 2 by screws. The second docking seat 3 is provided with a male connector 9 and a male connector 10. The male connector 9 is fixed to the left side inside the second docking seat 3 by screws, and the male connector 10 is fixed to the right side inside the second docking seat 3 by screws. Hooks 11 are fitted on the symmetrical docking shafts 5. I-shaped shafts 12 are symmetrically nested on both sides above the hooks 11. A bidirectional screw 13 is threadedly connected to the middle of the hooks 11. A hexagonal post 14 is integrally formed in the middle section of the bidirectional screw 13. The male connector 9 is inserted into the female connector 7, and the male connector 10 is inserted into the female connector 8.

[0014] Specific usage: When docking the optical-electric hybrid high-speed connector, the sealing gasket 6 is respectively fitted onto the first docking seat 2 and the second docking seat 3 at the inner end of the limiting platform 4. Then, the first docking seat 2 and the second docking seat 3 are respectively nested inside the docking sleeve 1 at the front and rear ends. At the same time, the hook 11 is fitted onto the corresponding docking shaft 5. Then, the bidirectional screw 13 is turned to drive the hook 11 to move inward. The inward movement of the hook 11 drives the symmetrical docking shaft 5 to move inward. The inward movement of the docking shaft 5 drives the first docking seat 2 and the second docking seat 3 to move inward into the docking sleeve 1. At this time, the sealing gasket 6 is firmly squeezed and fixed between the limiting platform 4 and the docking sleeve 1. At the same time, the optical fiber male connector 9 is inserted into the optical fiber female connector 7, and the wire connector male connector 10 is inserted into the wire connector female connector 8.

[0015] The above description is a preferred embodiment of the present utility model. For those skilled in the art, any changes, modifications, substitutions and variations made to the implementation methods without departing from the principles and spirit of the present utility model, based on the teachings of the present utility model, still fall within the protection scope of the present utility model.

Claims

1. A hybrid optoelectronic high-speed connector, comprising a mating sleeve (1), characterized in that: The docking sleeve (1) is provided with a first docking seat (2) and a second docking seat (3). The first docking seat (2) is nested inside the front end of the docking sleeve (1), and the second docking seat (3) is nested inside the rear end of the docking sleeve (1). Both the second docking seat (3) and the first docking seat (2) are provided with a limiting platform (4) and a docking shaft (5). The limiting platform (4) is integrally formed and connected to the inner end of the second docking seat (3) and the first docking seat (2). A sealing gasket (6) is fitted between the limiting platform (4) and the docking sleeve (1). The docking shaft (5) is integrally formed and symmetrically connected to the outer sides of the second docking seat (3) and the first docking seat (2).

2. The opto-electric hybrid high-speed connector according to claim 1, characterized in that: The first docking seat (2) is provided with an optical fiber connector (7) and a wire connector (8). The optical fiber connector (7) is fixed to the left side of the first docking seat (2) by screws, and the wire connector (8) is fixed to the right side of the first docking seat (2) by screws.

3. The opto-electric hybrid high-speed connector according to claim 1, characterized in that: The second docking seat (3) is provided with an optical fiber connector (9) and a wire connector (10). The optical fiber connector (9) is fixed to the left side of the second docking seat (3) by screws, and the wire connector (10) is fixed to the right side of the second docking seat (3) by screws.

4. The opto-electric hybrid high-speed connector according to claim 1, characterized in that: Hooks (11) are fitted on the front and rear symmetrical docking shafts (5). I-shaped shafts (12) are symmetrically nested on both sides above the front and rear hooks (11). A double-ended screw (13) is connected to the middle of the front and rear hooks (11) by a thread. A hexagonal column (14) is integrally formed in the middle section of the double-ended screw (13).

5. The opto-electric hybrid high-speed connector according to claim 3, characterized in that: The male fiber optic connector (9) is inserted into the female fiber optic connector (7).

6. The opto-electric hybrid high-speed connector according to claim 3, characterized in that: The male connector (10) is inserted into the female connector (8).