一种浮动连接器及半导体设备

By employing an axially through-cavity with an integrally molded shell and an elastic limiting structure in the floating connector, the problem of complex assembly of traditional floating connectors is solved, achieving the effects of simplified assembly and improved production efficiency.

CN224520323UActive Publication Date: 2026-07-17SHENZHEN SICARRIER IND MACHINES CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN SICARRIER IND MACHINES CO LTD
Filing Date
2025-06-27
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The assembly process of traditional floating connectors is complex, resulting in low production efficiency. In addition, the additional limiting structure and fixing parts increase the number of parts and the difficulty of production.

Method used

The axially through cavity is integrally formed with the shell, and the conductive component abuts against the annular bend inside the shell through an elastic component, so that axial limiting can be achieved without additional fasteners, simplifying the assembly process.

Benefits of technology

It simplifies the assembly process, improves production efficiency, enhances the stability and reliability of the structure, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请公开一种浮动连接器及半导体设备,包括一体成型的壳体、导电件和弹性件。壳体设有轴向贯通腔体,其两端分别形成带有第一环形弯折部的第一开口和带有第二环形弯折部的第二开口。导电件轴向穿设于腔体内,两端分别连接第一导体和与第二导体浮动接触,并设有第一、第二限位结构。弹性件套设在导电件上,两端分别抵接第一限位结构和第一环形弯折部,使第二限位结构与第二环形弯折部保持弹性接触。该结构通过一体成型的壳体弯折部和弹性件配合实现导电件的轴向限位,省去了传统连接器所需的卡扣、螺钉等固定件,不仅简化了装配工艺,提高了生产效率,还增强了连接器的结构稳定性和可靠性。
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Claims

1. A floating connector, characterized by, include: The housing has an integrally formed axially through cavity. A first opening is formed at a first end of the cavity, and a second opening is formed at a second end of the cavity. A first annular bend extending inward is formed radially at the edge of the first opening, and a second annular bend extending inward is formed radially at the edge of the second opening. A conductive element is movably axially inserted into the cavity. A first end of the conductive element passes through the first opening and is electrically connected to a first conductor, and a second end of the conductive element passes through the second opening and is in floating contact with a second conductor. The conductive element includes a first limiting structure and a second limiting structure. An elastic element is sleeved on a portion of the conductive element. One end of the elastic element abuts against the axial end face of the first limiting structure, and the other end of the elastic element abuts against the first annular bend. The second limiting structure abuts against the second annular bend under the action of the elastic element.

2. The floating connector of claim 1, wherein, The second annular bend is a deformable covering and limiting structure, which is formed by bending the conductive component after it is inserted into the cavity.

3. The floating connector of claim 2, wherein, The second limiting structure is an inclined surface or a circular arc surface, used to guide the bending deformation of the second annular bend.

4. The floating connector according to any one of claims 1 to 3, characterized in that, The bending angle of the first annular bend and / or the second annular bend relative to the central axis is 10 to 180 degrees.

5. The floating connector of any one of claims 1 to 4, wherein, A radial gap is provided between the outer wall of the conductive component and the inner wall of the cavity. After the second annular bend is bent, it fills part of the radial gap to limit the radial sway of the conductive component.

6. The floating connector of any one of claims 1 to 5, wherein, The inner wall of the cavity is provided with a guide groove, and the outer wall of the conductive component is provided with a guide protrusion that matches the guide groove, so as to prevent the conductive component from rotating circumferentially.

7. The floating connector of any one of claims 1 to 6, wherein, The first limiting structure is a ring structure or a plurality of first protrusions spaced apart, or / and the second limiting structure is a ring structure or a plurality of second protrusions spaced apart, or / and the first annular bend is a ring structure or a plurality of third protrusions spaced apart, or / and the second annular bend is a ring structure or a plurality of fourth protrusions spaced apart.

8. The floating connector of claim 1, wherein, The second limiting structure is an outwardly protruding boss that protrudes radially outward from the first end of the conductive element. The outwardly protruding boss is located outside the housing and abuts against the first annular bend to limit axial movement.

9. The floating connector of any one of claims 1 to 8, wherein, The housing is provided with multiple cavities, and each cavity is equipped with a conductive element and an elastic element.

10. A semiconductor device, characterized by comprising: include: The floating connector as described in any one of claims 1 to 9.