Novel doorbell pulling structure

By designing a new doorbell pulling structure and using a sliding mount and a rope trigger module, simple and intuitive doorbell operation is achieved, solving the complex problem of existing smart doorbell operation, suitable for elderly users and visually impaired people, and providing waterproof protection.

CN223022744UActive Publication Date: 2025-06-24ZHUHAI TAICHUAN CLOUD TECH CO LTD
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Patent Information

Application Number
CN202421546438.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-02
Publication Date
2025-06-24
Estimated Expiration
2034-07-02

AI Technical Summary

Technical Problem

The existing smart doorbell operation scheme is not intuitive, making it difficult for elderly users, visually impaired people or other users who are not familiar with high-tech products to operate.

Method used

A new doorbell pulling structure was designed, including a semi-bell shell, sliding mounting frame, pull rope trigger module, trigger slider, return spring and ball pull rope. By pulling the ball pull rope, the doorbell triggers a simple and intuitive operation method is achieved.

Benefits of technology

This design makes the doorbell simple and intuitive operation, suitable for elderly users, visually impaired people or other users who are not familiar with high-tech products, solving the complex operation of existing smart doorbells, and also providing waterproof protection for internal electronic components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a novel doorbell pulling structure, which comprises a half-bell shell, a sliding mounting rack and a pull rope triggering module arranged at the rear end of the sliding mounting rack are arranged in the half-bell shell, the sliding mounting rack is provided with a sliding groove, a sliding rail is arranged in the sliding groove, and the pull rope triggering module is arranged at the rear end of the sliding rail. The two sides of the upper end of the sliding groove are each provided with a limiting part, a trigger sliding piece, a reset spring and a ball pull rope are arranged in the sliding groove, the reset spring and the ball pull rope are connected between the lower end of the trigger sliding piece and the lower end of the half-bell shell, and the trigger sliding piece is slidably connected to the sliding rail. The upper portions of the two sides of the triggering sliding piece are provided with a limiting protruding block and a limiting triggering block respectively, the limiting protruding block and the limiting triggering block are both limited in the limiting part in a sliding mode, and a metal triggering piece of the pull rope triggering module is arranged at the lower end of the limiting triggering block. The utility model relates to the technical field of intelligent doorbells.
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Description

Technical Field

[0001] The utility model relates to the technical field of intelligent doorbells, in particular to a novel doorbell pulling structure. Background Art

[0002] In the past, doorbells often physically triggered the doorbell sound by driving a small hammer to strike a metal bell. However, the sound produced by the bell was often loud and difficult to adjust, which might cause interference to residents and neighbors. Therefore, it was gradually replaced by electronic doorbells. The electronic doorbells directly triggered the internal metal contact piece to close by pressing a button or touching, forming a circuit connection to activate the doorbell speaker and make it emit the doorbell sound to remind the host inside the house. However, it was only limited to reminding. The host inside the house needed to observe the visitors outside through the cat's eye to determine the identity of the visitors. With the development of electronic technology, more and more intelligent doorbells emerged. They added modules such as camera modules, lighting modules, electronic touch screen modules, and wireless remote reminder modules under the existing technology. Although the functions were more and more in use, the sense of interaction became weaker and weaker. Although the intelligence level of these doorbells had been improved, their specific operation schemes were not intuitive, resulting in difficulties for elderly users, visually impaired people, or other users who were not familiar with high-tech products to operate.

[0003] Therefore, it is imperative to redesign a novel doorbell pulling structure. Summary of the Utility Model

[0004] Aiming at the defects of the above-mentioned existing technology, the utility model provides a novel doorbell pulling structure, aiming to solve the problem that the operation scheme of the intelligent doorbell in the existing technology is not intuitive, resulting in difficulties for elderly users, visually impaired people, or other users who are not familiar with high-tech products to operate.

[0005] To achieve the above purpose, the technical scheme adopted by the utility model is: a novel doorbell pulling structure, including a semi-bell housing, a sliding mounting frame is arranged inside the semi-bell housing, and a pulling rope trigger module is arranged at the rear end of the sliding mounting frame. The sliding mounting frame is provided with a sliding groove, a slide rail is arranged inside the sliding groove, both sides of the upper end of the sliding groove are provided with limiting parts, a trigger sliding part, a return spring connected between the lower end of the trigger sliding part and the lower end of the semi-bell housing, and a ball pulling rope are arranged inside the sliding groove. The trigger sliding part is slidably connected to the slide rail. Limiting convex blocks and limiting trigger blocks are respectively arranged on the upper parts of both sides of the trigger sliding part, and both are slidably limited inside the limiting parts. The metal trigger piece of the pulling rope trigger module is arranged at the lower end of the limiting trigger block. The ball pulling rope penetrates into the bottom end of the semi-bell housing and is connected to the trigger sliding part through the return spring.

[0006] Based on the above, the beneficial effects of a new doorbell ringing structure are as follows: it solves the problem that the operation scheme of the existing intelligent doorbell is not intuitive, making it difficult for elderly users, visually impaired people or other users who are not familiar with high-tech products to operate; specifically manifested as follows:

[0007] In the present utility model, by pulling the ball pull rope, the trigger sliding member is squeezed in the sliding mounting bracket along the direction of the return spring, and then the limit trigger block presses down to drive the metal trigger piece to contact and conduct the circuit with the metal contact. The wireless communication module sends a signal to the doorbell device inside the house or the user's mobile phone, thereby triggering the doorbell or triggering the mobile phone doorbell notification. This operation is simple and intuitive, suitable for elderly users, visually impaired people or other users who are not familiar with high-tech products, and solves the problem of complex operation of the existing intelligent doorbell;

[0008] The beneficial effect of the semi-bell housing is to accommodate and protect the internal electronic components; the beneficial effect of the sliding mounting bracket is to ensure the stable installation and sliding of the pull rope trigger module, improving the smoothness of the operation; the beneficial effect of the pull rope trigger module is to trigger the doorbell by pulling the ball pull rope, realizing a simple and intuitive operation method; the beneficial effect of the sliding groove is to provide a sliding path for the trigger sliding member; the beneficial effect of the slide rail is to guide the trigger sliding member to move along the sliding groove, enhancing the structural stability and durability; the beneficial effect of the limiting part is to limit the movement range of the trigger sliding member; the beneficial effect of the trigger sliding member is to trigger the contact between the metal trigger piece and the metal contact, realizing the conduction of the circuit; the beneficial effect of the return spring is to make the trigger sliding member return to the initial position after release, preparing for the next operation; the beneficial effect of the ball pull rope is to pull the trigger sliding member; the beneficial effect of the limiting convex block is to cooperate with the limiting part to ensure that the trigger sliding member stops at the correct position, preventing excessive pressing of the metal trigger piece; the beneficial effect of the limit trigger block is to drive the metal trigger piece to contact the metal contact, realizing the conduction of the circuit.

[0009] Furthermore, the pull rope trigger module includes a trigger circuit board and a trigger element. The trigger element is arranged on the trigger circuit board. One end of the metal trigger piece is connected by a buckle to one side of the upper end of the trigger element, and a metal contact is arranged on the other side of the upper end of the trigger element. When the limit trigger block presses down, the other end of the metal trigger piece is connected to the metal contact to generate a doorbell signal for power on.

[0010] Based on the above, the beneficial effect of the trigger circuit board is to provide a stable circuit input and output for the metal trigger piece and the metal contact; the beneficial effect of the trigger element is to cooperate with the metal trigger piece to realize the conduction of the circuit; the beneficial effect of the metal contact is to contact the metal trigger piece to conduct the circuit.

[0011] Furthermore, a monitoring module is also provided inside the semi-bell housing. The monitoring module includes a camera component and a microwave component. The camera component includes a lens structure and a camera circuit board. A lens hole and a microwave adapter hole groove are provided at the upper end of the semi-bell housing. The camera circuit board is screwed to the high-foot internal threaded column of the semi-bell housing. The lens structure is arranged at the front end of the camera circuit board. The microwave component is screwed to the low-foot internal threaded column of the semi-bell housing and is located above the lens structure. The upper end of the microwave component extends vertically and partially protrudes to fit into the microwave adapter hole groove at the upper end of the semi-bell housing, so that the microwave component can be accommodated inside the semi-bell housing.

[0012] Based on the above, the beneficial effects of the monitoring module are that it integrates a camera component and a microwave component, providing video monitoring and induction detection functions; the beneficial effects of the camera component are to capture video images, enabling users to monitor the situation in front of the door in real time; the beneficial effects of the microwave component are to be able to detect the movement of objects in the front door area; the beneficial effects of the lens structure are to provide clear image input for the camera circuit board; the beneficial effects of the camera circuit board are to process the image signals captured by the camera; the beneficial effects of the lens hole are to position and install the lens structure; the beneficial effects of the microwave adapter hole groove are to fit the upper end of the microwave component so that it can be accommodated inside the semi-bell housing.

[0013] Furthermore, a camera module waterproof groove is provided at the upper end of the semi-bell housing. The lens hole and the microwave adapter hole groove are both located inside the camera module waterproof groove. A waterproof part is fitted on the camera module waterproof groove. The waterproof part is provided with a lens concave fitting port corresponding to the lens structure and seals the outer end of the microwave adapter hole groove to protect the microwave component and the lens structure from moisture intrusion.

[0014] Based on the above, the beneficial effects of the camera module waterproof groove are to provide waterproof protection for the lens structure and the microwave component; the beneficial effects of the waterproof part are to seal the lens hole and the microwave adapter hole groove to protect the internal electronic components from moisture intrusion; the beneficial effects of the lens concave fitting port are to match the lens structure, ensuring the waterproof performance and protecting the lens from damage.

[0015] Furthermore, a wireless communication module is also provided inside the semi-bell housing. The wireless communication module is snap-fitted on several snap-fastening parts inside the semi-bell housing and is located on one side of the pull rope trigger module. Both the pull rope trigger module and the monitoring module are electrically connected to the wireless communication module.

[0016] Based on the above, the beneficial effects of the wireless communication module are to trigger the doorbell or the doorbell prompt in the doorbell app on the mobile phone; the beneficial effects of the snap-fastening parts are to fix the wireless communication module inside the semi-bell housing.

[0017] To more clearly elaborate on the above features of the present utility model and the objectives to be achieved, the following further describes the present utility model in conjunction with the accompanying drawings and specific embodiments. Description of the Drawings

[0018] Figure 1 : is a perspective view of the present utility model;

[0019] Figure 2 : is a schematic diagram of the internal structure of the present utility model;

[0020] Figure 3 : is a schematic diagram of the structure of the internal sliding mounting frame of the present utility model;

[0021] Figure 4 : is Figure 3 an enlarged schematic diagram of part A of

[0022] Figure 5 : is a schematic diagram of the waterproof groove of the camera module of the present utility model.

[0023] Description of the reference numerals in the drawings: 1 - semi - bell housing, 11 - sliding mounting frame, 111 - sliding groove, 112 - slide rail, 113 - limiting part, 114 - trigger sliding part, 1141 - limiting convex block, 1142 - limiting trigger block, 115 - return spring, 116 - ball pull rope, 12 - lens hole, 13 - microwave adapter hole groove, 14 - waterproof groove of the camera module, 141 - waterproof part, 1411 - lens inner concave fitting port, 2 - pull - rope trigger module, 21 - trigger circuit board, 211 - trigger element, 212 - metal trigger piece, 213 - metal contact, 3 - monitoring module, 31 - camera assembly, 311 - lens structure, 312 - camera circuit board, 32 - microwave component, 4 - wireless communication module. Detailed Embodiments

[0024] As Figures 1-5As shown in the figure, a new doorbell ringing structure includes a semi-bell housing 1. Inside the semi-bell housing 1, there is a sliding mounting frame 11 and a rope-pulling trigger module 2 arranged at the rear end of the sliding mounting frame 11. The sliding mounting frame 11 is provided with a sliding groove 111. Inside the sliding groove 111, there is a slide rail 112. On both sides of the upper end of the sliding groove 111, there are limit parts 113. Inside the sliding groove 111, there is a trigger sliding part 114, a reset spring 115 connected between the lower end of the trigger sliding part 114 and the lower end of the semi-bell housing 1, and a ball rope 116. The trigger sliding part 114 is slidably connected to the slide rail 112. On the upper parts of both sides of the trigger sliding part 114, there are respectively a limit bump 1141 and a limit trigger block 1142, both of which are slidably limited within the limit parts 113. The metal trigger piece 212 of the rope-pulling trigger module 2 is arranged at the lower end of the limit trigger block 1142. The ball rope 116 passes through the bottom end of the semi-bell housing 1 and is connected to the trigger sliding part 114 through the reset spring 115.

[0025] The rope-pulling trigger module 2 includes a trigger circuit board 21 and a trigger element 211. The trigger element 211 is arranged on the trigger circuit board 21. One end of the metal trigger piece 212 is connected by a buckle to one side of the upper end of the trigger element 211. On the other side of the upper end of the trigger element 211, there is a metal contact 213. When the limit trigger block 1142 is pressed down, the other end of the metal trigger piece 212 is connected to the metal contact 213 to generate a doorbell signal by being powered on.

[0026] Inside the semi-bell housing 1, there is also a monitoring module 3. The monitoring module 3 includes a camera assembly 31 and a microwave assembly 32. The camera assembly 31 includes a lens structure 311 and a camera circuit board 312. On the upper end of the semi-bell housing 1, there are a lens hole 12 and a microwave adapter hole groove 13. The camera circuit board 312 is screwed to the high-foot internal thread column of the semi-bell housing 1. The lens structure 311 is arranged at the front end of the camera circuit board 312. The microwave assembly 32 is screwed to the low-foot internal thread column of the semi-bell housing 1 and is located above the lens structure 311. The upper end of the microwave assembly 32 vertically extends and partially protrudes to fit into the microwave adapter hole groove 13 at the upper end of the semi-bell housing 1, so that the microwave assembly 32 can be accommodated inside the semi-bell housing 1.

[0027] A camera module waterproof groove 14 is provided at the upper end of the semi-bell housing 1. The lens hole 12 and the microwave adapter hole groove 13 are both located within the camera module waterproof groove 14. A waterproof member 141 is adapted to the camera module waterproof groove 14. The waterproof member 141 is provided with a lens concave fitting port 1411 corresponding to the lens structure 311 and seals the outer end of the microwave adapter hole groove 13 to protect the microwave component 32 and the lens structure 311 from moisture intrusion.

[0028] A wireless communication module 4 is further provided within the semi-bell housing 1. The wireless communication module 4 is snap-fitted onto a number of snap members within the semi-bell housing 1 and is located on one side of the pull cord trigger module 2. Both the pull cord trigger module 2 and the monitoring module 3 are electrically connected to the wireless communication module 4.

[0029] In summary, the specific implementation of the present utility model is as follows: When the user pulls the ball pull cord 116, the sliding member 114 is triggered to be squeezed along the direction of the return spring 115 within the sliding mounting bracket 11. The limit trigger block 1142 presses down to drive the metal trigger piece 212 into contact with the metal contact 213 to conduct the circuit. The wireless communication module 4 sends a signal to the doorbell device inside the house or the user's mobile phone to trigger the doorbell or trigger the mobile phone doorbell notification. At the same time, the camera assembly 31 captures video images, and the microwave component 32 detects the movement of objects in the area in front of the door;

[0030] In terms of waterproofing, the waterproof member 141 on the camera module waterproof groove 14 ensures that the internal electronic components are protected from moisture intrusion.

[0031] The above is only the optimal solution embodiment of the present utility model and is not used to limit the present utility model. Any modifications or substitutions made by those skilled in the art to the present utility model without departing from the essence and protection scope of the present utility model should also be within the protection scope of the present utility model.

Claims

1. A new doorbell pull structure, characterized by: The invention comprises a half bell housing (1), wherein a sliding mounting frame (11) and a pull rope trigger module (2) are arranged at the rear end of the sliding mounting frame (11), the sliding mounting frame (11) is provided with a sliding groove (111), a sliding rail (112) is arranged in the sliding groove (111), both sides of the upper end of the sliding groove (111) are provided with limiting portions (113), a trigger sliding member (114) is arranged in the sliding groove (111), and a return spring (115) connected between the lower end of the trigger sliding member (114) and the lower end of the half bell housing (1) is provided. and a ball-bearing pull rope (116), the trigger sliding member (114) is slidably connected to the slide rail (112), and the upper parts of both sides of the trigger sliding member (114) are respectively provided with a limit protrusion (1141) and a limit trigger block (1142), both of which are slidably limited in the limit portion (113), and the metal trigger sheet (212) of the pull rope trigger module (2) is arranged at the lower end of the limit trigger block (1142), and the ball-bearing pull rope (116) penetrates into the bottom end of the half bell shell (1), and is connected to the trigger sliding member (114) through the reset spring (115).

2. A new doorbell pull structure according to claim 1, characterized in that: The pull cord trigger module (2) comprises a trigger circuit board (21) and a trigger element (211); the trigger element (211) is arranged on the trigger circuit board (21); one end of the metal trigger sheet (212) is arranged on one side of the upper end of the trigger element (211) through a snap connection; the other side of the upper end of the trigger element (211) is provided with a metal contact (213); when the limit trigger block (1142) is pressed downward, the other end of the metal trigger sheet (212) is connected to the metal contact (213) to generate a doorbell signal when powered on.

3. A new doorbell pull structure according to claim 1, characterized in that: A monitoring module (3) is also provided in the half-bell housing (1), and the monitoring module (3) includes a camera assembly (31) and a microwave assembly (32). The camera assembly (31) includes a lens structure (311) and a camera circuit board (312). A lens hole (12) and a microwave adapter hole groove (13) are provided at the upper end of the half-bell housing (1). The camera circuit board (312) is screwed to a high-foot internal threaded column of the half-bell housing (1). The structure (311) is arranged at the front end of the camera circuit board (312), the microwave component (32) is screwed to the short-legged internal threaded column of the half-bell shell (1), and is located above the lens structure (311), the upper end of the microwave component (32) extends vertically, and partially protrudes to adapt to the microwave adaptation hole groove (13) at the upper end of the half-bell shell (1), so that the microwave component (32) can be accommodated in the half-bell shell (1).

4. A new doorbell pull structure according to claim 3, characterized in that: A camera module waterproof groove (14) is provided at the upper end of the semi-bell housing (1), the lens hole (12) and the microwave adaptor hole groove (13) are both located in the camera module waterproof groove (14), a waterproof component (141) is adapted on the camera module waterproof groove (14), and the waterproof component (141) is provided with a lens concave fitting opening (1411) corresponding to the lens structure (311), and the outer end of the microwave adaptor hole groove (13) is sealed to protect the microwave component (32) and the lens structure (311) from moisture intrusion.

5. A new doorbell pull structure according to claim 3, characterized in that: A wireless communication module (4) is also provided in the half-bell shell (1). The wireless communication module (4) is snap-fitted onto a plurality of snap-fitting parts in the half-bell shell (1) and is located on one side of the pull-cord trigger module (2). Both the pull-cord trigger module (2) and the monitoring module (3) are electrically connected to the wireless communication module (4).