过线机构和手控器

By designing a detachable cable holder that slides into the main housing to form a cable guide mechanism, the problem of insufficient adaptability to cable sizes in existing cable guide mechanisms is solved, enabling the fixing of cables of different sizes and improving versatility and fixing effect.

CN224521358UActive Publication Date: 2026-07-17DONGGUAN SANMIN ELECTRONIC TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN SANMIN ELECTRONIC TECH CO LTD
Filing Date
2025-06-25
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing technologies, the cable guiding mechanism needs to be precisely matched with the radius of the cable, which has low versatility and cannot adapt to cables of different sizes.

Method used

A cable guiding mechanism was designed, including a main housing and a cable clip. The cable clip is detachably connected to the main housing. Through the cooperation of the buckle and the latch, the main housing is engaged. When the cable is in the disassembled or installed state, the cable clip and the main housing slide together to form a curved cable guiding channel. The elastic deformation of the cable causes the cable to be pressed tightly against the cable clip and the main housing, which can accommodate cables of different sizes.

Benefits of technology

The versatility of the cable guiding mechanism has been improved, enabling it to adapt to cables of different sizes, enhancing the cable fixing effect, and reducing the risk of cable detachment.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型实施方式提供了一种过线机构和手控器,过线机构包括主壳体和线扣座。主壳体具有连通的容纳腔和出线口,容纳腔用于容纳线缆;线扣座设于出线口,并与主壳体可拆卸连接,当线扣座处于拆卸状态时,线扣座与主壳体分离,线缆从出线口穿出容纳腔;当线扣座从拆卸状态切换至安装状态时,线扣座与主壳体滑动配合,并可相对主壳体滑动至与主壳体扣合,线扣座将线缆折弯,并配合主壳体夹持固定线缆。线扣座从拆卸状态切换至安装状态时协同主壳体将线缆折弯,线缆发生弹性变形,过线机构能通过线缆产生的回弹力使线缆分别与线扣座和主壳体抵紧,以使线缆相对过线机构固定,从而能适配不同尺寸的线缆,以提高过线机构的通用性。
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Claims

1. A wire passing mechanism characterized by comprising: include: The main housing has a communicating receiving cavity and a cable outlet, the receiving cavity being used to receive cables; A cable clip is located at the cable outlet and is detachably connected to the main housing. When the cable clip is in the detached state, it separates from the main housing, and the cable passes through the receiving cavity from the cable outlet. When the cable clip is switched from the detached state to the installed state, it slides with the main housing and can slide relative to the main housing until it is engaged with the main housing. The cable clip bends the cable and works with the main housing to clamp and fix the cable.

2. The wire passing mechanism according to claim 1, characterized by The cable fastener has a protrusion. When the cable fastener is in the installed state, the protrusion is used to press the surface of the cable to restrict the movement of the cable.

3. The wire passing mechanism of claim 1, wherein, The cable fastener has an arc-shaped surface, and when the cable fastener is in the installed state, the arc-shaped surface is used to abut against the cable.

4. The wire pass-through mechanism of claim 1, wherein, The main housing is provided with a guide block extending in a first direction, and the wire buckle seat is provided with a guide groove extending in the first direction. When the wire buckle seat is in the installation state, the guide block and the guide groove are slidably engaged to provide guidance for the movement of the wire buckle seat relative to the main housing in the first direction.

5. The wire passing mechanism of claim 4, wherein, One of the main housing and the wire buckle seat is provided with a limiting hole extending along the first direction, and the other is provided with a limiting block extending along the first direction. When the wire buckle seat is in the installation state, the limiting block extends into the limiting hole to restrict the wire buckle seat from moving relative to the main housing in a direction perpendicular to the first direction.

6. The wire pass-through mechanism of claim 1, wherein, The cable fastener has a first wall and a second wall. The first wall is perpendicular to the second wall. When the cable fastener is in the installation state, the first wall and the second wall abut against the cable to bend the portion of the cable that abuts against the first wall relative to the portion that abuts against the second wall.

7. The wire passing mechanism of claim 6, wherein, The cable fastener has two spaced-apart third walls, which are perpendicular to the first and second walls, and are used to abut against the cable.

8. The wire passing mechanism of claim 7, wherein, The third wall surface is connected to the first wall surface. When the wire buckle is in the installation state, the first wall surface and the two third walls surface cooperate with the main housing to form a first wire passage, and the first wire passage is connected to the wire outlet.

9. The wire pass-through mechanism of claim 8, wherein, The third wall surface is connected to the second wall surface. When the wire fastener is in the installation state, the second wall surface and the two third walls surface cooperate with the main housing to form a second wire passage, and the second wire passage is connected to the first wire passage.

10. A hand controller characterized by It includes a control panel and a wire guiding mechanism according to any one of claims 1 to 9, wherein the wire guiding mechanism is mounted on the control panel.