Buckle trigger type control switch

Through the design of the snap trigger control switch, the problem of pressing switch is easily triggered by mistake, achieving safer and more reliable switching operation and dustproof effect.

CN223230237UActive Publication Date: 2025-08-15GUANGZHOU SHENGCI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422240014.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-08-15
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

Existing press switches are prone to false triggering.

Method used

A snap trigger control switch is designed to form a whole by plugging the daughter snap and female snap in the snap assembly. The normally open switch is pressed with the toggle lever, combined with the dustproof component to prevent mistriggering, and the dustproof effect is achieved through the design of the sliding block and the rotating plate.

Benefits of technology

It effectively prevents the occurrence of false triggering, improves the safety and reliability of the switch, and provides dustproof function.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a buckle trigger type control switch which comprises a buckle assembly, a first dustproof assembly and a second dustproof assembly. The buckle assembly comprises a son buckle, a mother buckle, a poke rod, a normally open switch and a Type-C interface, the son buckle is fixedly connected with one end of the poke rod, the mother buckle is fixedly connected with the normally open switch, the poke rod is arranged corresponding to the position of the normally open switch, and the mother buckle is provided with the Type-C interface; the first dustproof assembly comprises a sliding block, a sliding groove is formed in the female buckle, and the inner wall of the sliding groove is slidably connected with the sliding block; the second dustproof assembly comprises a rotating plate and a rotating shaft. The child buckle is inserted into the mother buckle, the child buckle and the mother buckle are connected together in an inserted mode to form a whole, at the moment, the poking rod presses the normally-open switch to enable the normally-open switch to be closed to form a closed circuit, the situation of false triggering can be prevented in the mode that the child buckle and the mother buckle are connected in a buckle mode, and safety and reliability are better achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of control switches, in particular to a buckle-triggered control switch. Background Art

[0002] In the field of mechanical switch technology, a wide variety of switch devices with varying functions have been developed, such as common push switches and rotary switches. Switch devices are often used in conjunction with circuit structures. In the switch device's two on / off states (some switch devices also have a third state), the circuit structure generates different control signals, thereby controlling the circuit's on / off state, circuit operation status, and so on.

[0003] Taking the most widely used push-button switch as an example, touching the push-button switch causes it to change its structural state, thereby activating the signal trigger circuit and sending a corresponding control signal to the switch control system of the smart device. The push-button switch is prone to false triggering. Utility Model Content

[0004] The technical problem to be solved by the present invention is that the existing push switches are prone to false triggering.

[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: a snap-on trigger control switch, which includes a snap-on assembly, a first dustproof assembly and a second dustproof assembly; the snap-on assembly includes a sub-snap, a mother snap-on, a toggle lever, a normally-open switch and a Type-C interface, the sub-snap is fixedly connected to one end of the toggle lever, the mother snap-on is fixedly connected to the normally-open switch, and the toggle lever is positioned corresponding to the normally-open switch, and the mother snap-on is provided with a Type-C interface; the first dustproof assembly includes a sliding block, the mother snap-on is provided with a sliding groove, and the inner wall of the sliding groove is slidably connected to the sliding block; the second dustproof assembly includes a rotating plate and a rotating shaft, the mother snap-on and the Type-C interface are provided with a receiving groove, the inner wall of the receiving groove is rotatably connected to the rotating shaft, and the rotating shaft is fixedly connected to the rotating plate.

[0006] Preferably, the sliding block is fixedly connected to one end of the spring, and the other end of the spring is fixedly connected to the inner end wall of the sliding groove.

[0007] Preferably, a through slot is provided on the rotating plate, and a torsion spring is sleeved on the rotating shaft in the through slot.

[0008] Preferably, a limit slot is provided on the Type-C interface.

[0009] Preferably, a mounting groove is provided on the female buckle.

[0010] Preferably, the sub-clip is fixedly connected to the first fixed shaft.

[0011] Preferably, the sub-buckle is provided with a first anti-slip pattern

[0012] Preferably, a second fixing axis is provided on the female buckle, and the second fixing axis is located above the Type-C interface.

[0013] Preferably, the female buckle is provided with a second anti-slip pattern.

[0014] The beneficial effects of the utility model are as follows: the utility model inserts the sub-buckle into the mother buckle, and the sub-buckle and the mother buckle are plugged together to form a whole. At this time, the toggle rod presses the normally open switch, so that the normally open switch is closed to form a passage. The sub-buckle and the mother buckle are connected by a snap-on method, which can prevent false triggering and is safer and more reliable. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 Schematic diagram of the overall structure of the embodiment of the present disclosure.

[0016] Figure 2 It is a cross-sectional view of the female buckle in the embodiment of the present disclosure.

[0017] Figure 3 This is a cross-sectional view of the Type-C interface in an embodiment of the present disclosure.

[0018] Figure 4 In the embodiment of the present disclosure Figure 3 A is an enlarged schematic diagram.

[0019] Figure markings: buckle assembly 1, sub-buckle 11, first fixed axis 111, first anti-slip groove 112, mother buckle 12, slide groove 121, accommodating groove 122, installation groove 124, second fixed axis 125, second anti-slip groove 126, toggle lever 13, normally open switch 14, Type-C interface 15, limit groove 151 first dustproof assembly 2, sliding block 21, spring 22, second dustproof assembly 3, rotating plate 31, through groove 311, rotating shaft 32, torsion spring 321. DETAILED DESCRIPTION

[0020] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below with reference to the accompanying drawings.

[0021] Example 1

[0022] Reference Figure 1-4 , this embodiment provides a buckle-triggered control switch, including a buckle assembly 1, a first dustproof assembly 2 and a second dustproof assembly 3;

[0023] The buckle assembly 1 includes a sub-buckle 11, a mother buckle 12, a toggle rod 13, a normally open switch 14 and a Type-C interface 15. The sub-buckle 11 is fixedly connected to one end of the toggle rod 13, the mother buckle 12 is fixedly connected to the normally open switch 14, and the toggle rod 13 is set at the position corresponding to the normally open switch 14. The mother buckle 12 is provided with a Type-C interface 15.

[0024] In this embodiment, preferably, the sub-buckle 11 is inserted into the mother buckle 12, and the sub-buckle 11 and the mother buckle 12 are plugged together to form a whole. At this time, the toggle rod 13 presses the normally open switch 14, so that the normally open switch 14 is closed to form a passage. By connecting the sub-buckle 11 and the mother buckle 12 in a snap-on manner, it can prevent the situation of false triggering, which is safer and more reliable.

[0025] The first dustproof component 2 includes a sliding block 21. The female buckle 12 is provided with a sliding groove 121. The inner wall of the sliding groove 121 is slidably connected to the sliding block 21.

[0026] In this embodiment, the sliding block 21 preferably blocks the opening of the mother buckle 12 to prevent dust. The child buckle 11 is inserted into the mother buckle 12, pushing the sliding block 21 to slide along the inner wall of the slide groove 121 until the child buckle 11 and the mother buckle 12 are plugged together to form a whole.

[0027] The second dustproof component 3 includes a rotating plate 31 and a rotating shaft 32. The female buckle 12 and the Type-C interface 15 are provided with a receiving groove 122. The inner wall of the receiving groove 122 is rotatably connected to the rotating shaft 32, and the rotating shaft 32 is fixedly connected to the rotating plate 31.

[0028] Preferably, in this embodiment, the rotating plate 31 can rotate on the inner wall of the accommodating groove 122 through the rotating shaft 32, blocking the Type-C interface 15 and playing a dust-proof role. When the charging cable is inserted from the Type-C interface 15, the rotating plate 31 is pushed to drive the rotating shaft 32 to rotate, and the rotating plate 31 rotates to the bottom of the charging cable. No additional operation is required and charging is not affected.

[0029] Example 2

[0030] Reference Figure 1-4 This embodiment is based on the previous embodiment, and differs from the previous embodiment in that.

[0031] The sliding block 21 is fixedly connected to one end of the spring 22 , and the other end of the spring 22 is fixedly connected to the inner end wall of the sliding groove 121 .

[0032] In this embodiment, preferably, under the action of the spring 22, when the sliding block 21 is in the initial position, the sliding block 21 can block the opening on the side of the mother buckle 12, thereby playing a dust-proof role. The child buckle 11 is inserted into the carriage of the mother buckle 12, pushing the sliding block 21 to slide along the inner wall of the slide groove 121, compressing the spring 22 until the child buckle 11 and the mother buckle 12 are plugged together to form a whole. After the child buckle 11 is pulled out, the sliding block 21 is reset to the initial position under the action of the spring 22, blocking the opening on the side of the mother buckle 12, thereby playing a dust-proof role.

[0033] Reference Figure 3 A through slot 311 is formed on the rotating plate 31 , and a torsion spring 321 is sleeved on the rotating shaft 32 in the through slot 311 .

[0034] In this embodiment, when the charging cable is inserted from the Type-C interface 15, the rotating plate 31 is pushed to drive the rotating shaft 32 to rotate, and the rotating plate 31 is rotated to the bottom of the charging cable. No additional operation is required and charging is not affected. At this time, the torsion spring 321 is compressed and stored. After the charging cable is pulled out, the rotating plate 31 is driven to rotate again under the action of the torsion spring 321. Figure 3 The middle position blocks the Type-C interface 15 and plays a dust-proof role.

[0035] Reference Figure 4 , a limiting slot 151 is provided on the Type-C interface 15 .

[0036] Preferably, in this embodiment, the limiting groove 151 prevents the rotating plate 31 from rotating at an excessive angle under the action of the torsion spring 321 .

[0037] The female buckle 12 is provided with a mounting slot 124 .

[0038] In this embodiment, preferably, the mounting groove 124 is used to mount a circuit board or a control chip of the control circuit.

[0039] The sub-clip 11 is fixedly connected to the first fixing shaft 111. The mother clip 12 is provided with a second fixing shaft 125, and the second fixing shaft 125 is located above the Type-C interface 15.

[0040] Preferably, in this embodiment, the first fixed shaft 111 and the second fixed shaft 125 are used to connect a hanging rope to prevent loss.

[0041] The sub-buckle 11 is provided with a first anti-slip groove 112 , and the mother buckle 12 is provided with a second anti-slip groove 126 .

[0042] In this embodiment, the first anti-slip grooves 112 and the second anti-slip grooves 126 can preferably increase friction, thereby facilitating the connection or separation of the sub-buckle 11 and the mother-buckle 12 .

Claims

1. A snap-on trigger control switch, characterized in that: It comprises a buckle assembly (1), a first dustproof assembly (2) and a second dustproof assembly (3); The buckle assembly (1) comprises a sub-buckle (11), a mother buckle (12), a toggle lever (13), a normally open switch (14) and a Type-C interface (15); the sub-buckle (11) is fixedly connected to one end of the toggle lever (13); the mother buckle (12) is fixedly connected to the normally open switch (14); the toggle lever (13) is arranged at a position corresponding to the normally open switch (14); and the mother buckle (12) is provided with a Type-C interface (15); The first dustproof component (2) comprises a sliding block (21), the female buckle (12) is provided with a sliding groove (121), and the inner wall of the sliding groove (121) is slidably connected to the sliding block (21); The second dustproof component (3) comprises a rotating plate (31) and a rotating shaft (32); a receiving groove (122) is provided on the female buckle (12) and the Type-C interface (15); the inner wall of the receiving groove (122) is rotatably connected to the rotating shaft (32); and the rotating shaft (32) is fixedly connected to the rotating plate (31).

2. The snap-action trigger control switch according to claim 1, wherein: The sliding block (21) is fixedly connected to one end of the spring (22), and the other end of the spring (22) is fixedly connected to the inner end wall of the sliding groove (121).

3. The snap-action trigger control switch according to claim 2, wherein: A through slot (311) is provided on the rotating plate (31), and a torsion spring (321) is sleeved on the rotating shaft (32) in the through slot (311).

4. The snap-action trigger control switch according to claim 3, wherein: A limiting slot (151) is provided on the Type-C interface (15).

5. The snap-action trigger control switch according to claim 1, wherein: The female buckle (12) is provided with a mounting slot (124).

6. The snap-action trigger control switch according to claim 1, wherein: The sub-clip (11) is fixedly connected to the first fixed shaft (111).

7. The snap-action trigger control switch according to claim 1, wherein: The sub-buckle (11) is provided with a first anti-slip pattern (112).

8. The snap-action trigger control switch according to claim 1, wherein: A second fixing shaft (125) is provided on the female buckle (12), and the second fixing shaft (125) is located above the Type-C interface (15).

9. The snap-action trigger control switch according to claim 1, wherein: The female buckle (12) is provided with a second anti-slip pattern (126).