Connecting structure of lamp tube fast plug wire for semiconductor CVD (Chemical Vapor Deposition) process

By designing a connection structure between a fixed block and a rotating lever, the problem of needing tools to connect lamp tube wires was solved, and convenient fixing of conductive cells was achieved.

CN224261647UActive Publication Date: 2026-05-19北京所为科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
北京所为科技有限公司
Filing Date
2025-07-07
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

In existing technologies, connecting lamp tube wires requires the use of tools such as screwdrivers, which makes disassembly and assembly inconvenient.

Method used

Design a connection structure including a fixing block, a locking block, and a rotating lever. The conductive battery cell is fixed by rotating the lever, avoiding dependence on tools.

Benefits of technology

It enables convenient fixing of conductive battery cells, simplifies the operation process, and allows connection to be completed without additional tools.

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Abstract

The utility model discloses a connecting structure of a lamp tube fast plug wire for a semiconductor CVD (chemical vapor deposition) process, which comprises a fixed block, one end of the fixed block is provided with a wire slot, the inner upper wall of the wire slot is fixedly connected with a first clamping block, a second clamping block is arranged below the first clamping block and can move up and down, the upper end of the fixed block is provided with a groove, and the upper end of the groove is fixedly connected with the first clamping block. When the device is implemented and a conductive cell needs to be connected with a fixed block, the rotary shifting block is firstly rotated to a vertical state, then the conductive cell is inserted into a wire slot, and then the rotary shifting block is rotated, so that the conductive cell can be connected with the fixed block, and then the conductive cell is inserted into the wire slot. And the conductive battery cell is fixed between the first clamping block and the second clamping block at the moment, the whole process does not need to be used in cooperation with other tools, and the conductive battery cell can be fixed so as to be convenient for a user to use.
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Description

Technical Field

[0001] This utility model belongs to the field of wire connection technology, specifically a connection structure for quick-connect lamps in semiconductor CVD processes. Background Technology

[0002] In existing technologies, when connecting the wires from a light tube to a power plug, the insulating sheath on the end of the wire is usually stripped off, and then the conductive battery is inserted into the power plug and secured with bolts. However, this operation requires a screwdriver, and without a suitable screwdriver, it is impossible to disassemble or assemble the conductive battery. Utility Model Content

[0003] To address the problems mentioned in the background art, this utility model provides the following technical solution: a connection structure for quick-connect lamp wires in semiconductor CVD processes, comprising a fixing block, one end of which has a wire groove, a first locking block fixedly connected to the upper inner wall of the wire groove, a second locking block disposed below the first locking block, the second locking block being movable up and down, a groove being provided at the upper end of the fixing block, a rotatable rotating paddle disposed in the groove, and the second locking block being movable up and down when the rotating paddle rotates.

[0004] Preferably, the first card block has a card slot, and the second card block is fixedly connected to the card block.

[0005] Preferably, a connecting rod is fixedly connected to the upper end of the second card block, and a crossbar is fixedly connected to the upper end of the connecting rod.

[0006] Preferably, a rotatable cam is provided below the crossbar, a rotating shaft is fixedly connected to the side of the cam, the rotating shaft and the cam are arranged opposite to each other, and the lower end of the rotating block is fixedly connected to the rotating shaft.

[0007] Compared with the prior art, the beneficial effects of this utility model are:

[0008] When implementing this device, if it is necessary to connect the conductive battery cell to the fixing block, first rotate the rotating block to the vertical position, then insert the conductive battery cell into the wire groove, and then rotate the rotating block until it reaches the horizontal position. At this time, the conductive battery cell is fixed between the first and second locking blocks. The entire process can fix the conductive battery cell without the use of other tools, which is convenient for users. Attached Figure Description

[0009] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the embodiments of the present invention to explain the present invention, but do not constitute a limitation thereof. In the drawings:

[0010] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0011] Figure 2 This is a partial structural schematic diagram of the present invention;

[0012] In the diagram: 1. Fixing block; 2. Wire groove; 3. First locking block; 4. Second locking block; 5. Connecting rod; 6. Crossbar; 7. Cam; 8. Rotating shaft; 9. Rotating lever; 10. Groove. Detailed Implementation

[0013] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0014] Depend on Figure 1-2 This utility model discloses a connection structure for quick-connect lamp wires in semiconductor CVD processes, including a fixing block 1. One end of the fixing block 1 has a wire groove 2. A first locking block 3 is fixed to the upper inner wall of the wire groove 2. A second locking block 4 is provided below the first locking block 3. The second locking block 4 can move up and down. A groove 10 is provided at the upper end of the fixing block 1. A rotating lever 9 is provided in the groove 10. When the rotating lever 9 rotates, the second locking block 4 can move up and down.

[0015] When implementing this device, if it is necessary to connect the conductive battery cell to the fixing block 1, first rotate the rotating block 9 to the vertical position, then insert the conductive battery cell into the wire groove 2, and then rotate the rotating block 9 until it is rotated to the horizontal position. At this time, the conductive battery cell is fixed between the first locking block 3 and the second locking block 4. The entire process can be completed without the use of other tools, so as to fix the conductive battery cell for the convenience of the user.

[0016] The first card block 3 can be electrically connected to the conductive battery cell, and the first card block 3 can be electrically connected to the plug.

[0017] The first card block 3 has a card slot, and the second card block 4 has a card block fixed to it. The conductive battery cell is inserted into the card slot through the card block to achieve connection stability.

[0018] The upper end of the second locking block 4 is fixedly connected to a connecting rod 5, and the upper end of the connecting rod 5 is fixedly connected to a crossbar 6.

[0019] A rotatable cam 7 is provided below the crossbar 6. A rotating shaft 8 is fixedly connected to the side of the cam 7. The rotating shaft 8 and the cam 7 are arranged on opposite axes. The lower end of the rotating block 9 is fixedly connected to the rotating shaft 8. When the rotating block 9 is rotated to the vertical direction, the rotating shaft 8 is closest to the crossbar 6. When the rotating block 9 is rotated to the horizontal position, the rotating shaft 8 is farthest from the crossbar 6. This achieves the purpose of pulling the second locking block 4 up and down. The second locking block 4 can move downward when no force is applied due to gravity.

[0020] In order to ensure that the rotating block 9 remains stable when it is rotated to the horizontal position, a rubber pad can be provided on the surface of the cam 7 to increase friction.

[0021] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0022] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A connection structure for quick-connect lamps in semiconductor CVD processes, comprising a fixing block (1), characterized in that: One end of the fixing block (1) is provided with a wire groove (2), and a first locking block (3) is fixedly connected to the upper inner wall of the wire groove (2). A second locking block (4) is provided below the first locking block (3). The second locking block (4) can move up and down. A groove (10) is provided at the upper end of the fixing block (1). A rotating paddle (9) is provided in the groove (10). When the rotating paddle (9) rotates, the second locking block (4) can move up and down.

2. The connection structure of a quick-connect lamp for semiconductor CVD process according to claim 1, characterized in that: The first card block (3) has a card slot, and the second card block (4) has a card block fixedly connected to it.

3. The connection structure of a quick-connect lamp for semiconductor CVD process according to claim 2, characterized in that: The upper end of the second locking block (4) is fixedly connected to a connecting rod (5), and the upper end of the connecting rod (5) is fixedly connected to a crossbar (6).

4. The connection structure of a quick-connect lamp for semiconductor CVD process according to claim 3, characterized in that: A rotatable cam (7) is provided below the crossbar (6), and a rotating shaft (8) is fixedly connected to the side of the cam (7). The rotating shaft (8) and the cam (7) are arranged on opposite axes, and the lower end of the rotating block (9) is fixedly connected to the rotating shaft (8).