Antenna terminal of mobile communication terminal

By adopting a modular structure and a solar-powered complementary power supply design, the high maintenance costs and insufficient battery life of existing mobile communication terminal antenna terminals are solved, enabling rapid disassembly and assembly and continuous power supply, thus improving the availability of the equipment in emergency scenarios.

CN224191936UActive Publication Date: 2026-05-01SHENZHEN HANZHI TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN HANZHI TECHNOLOGY CO LTD
Filing Date
2025-07-09
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing mobile communication terminal antenna terminals suffer from problems such as high maintenance costs, insufficient battery life, and cumbersome assembly due to their integrated packaging design, making it difficult to meet the needs of rapid maintenance and continuous power supply in emergency scenarios.

Method used

It adopts a modular structural design, and achieves rapid assembly and maintenance through snap-fit ​​connections and rotatable solar panels. It also combines solar power with traditional battery power to form a complementary energy solution.

Benefits of technology

It enables rapid disassembly and maintenance of equipment, reduces the difficulty of production and assembly, and improves the availability and endurance of equipment in field and emergency scenarios.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224191936U_ABST
Patent Text Reader

Abstract

The utility model discloses a mobile communication terminal antenna terminal which comprises an interphone main body, the upper end of the interphone main body is provided with an interphone top cover through a buckle, a threaded joint at one end of the interphone top cover is in threaded connection with an interphone antenna, and a through hole in the middle of the interphone main body is provided with a front key module through a buckle. According to the antenna terminal of the mobile communication terminal, modular assembly design is realized, the components are connected through the buckles, the threads and the terminal jacks, the antenna terminal is convenient to disassemble and assemble and convenient to maintain and repair, meanwhile, the modular structure can reduce the production and assembly difficulty, the terminals are inserted into the terminal jacks to realize electrical connection, and the sliding frame and the groove are used for limiting, so that the antenna terminal is convenient to assemble and disassemble. And solar charging is combined with a traditional battery, a complementary energy scheme is formed, dependence on an external power supply is reduced, power can be continuously supplied in a scene without the external power supply, and the usability of equipment in field and emergency scenes is improved.
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Description

A mobile communication terminal antenna terminal Technical Field

[0001] This utility model relates to the fields of electronic engineering and communication technology, and in particular to a mobile communication terminal antenna terminal. Background Technology

[0002] In the field of modern communications, walkie-talkies and other mobile communication terminals are widely used in emergency rescue, field operations, public safety and other scenarios, and their equipment reliability and environmental adaptability are of paramount importance.

[0003] Existing mobile communication terminal antenna terminals suffer from several problems. First, most devices employ an integrated packaging design, with functional modules integrated through welding or fixed connections. This necessitates disassembly and repair of the entire device when a single module fails, increasing maintenance costs and compromising the device's sealing and durability due to repeated disassembly and reassembly. Second, traditional devices rely on lithium batteries or dry cell batteries for power. In scenarios without external power sources, such as field exploration and disaster relief, insufficient battery life can directly lead to device failure. Third, existing terminals often use screws or adhesives for module connections, resulting in cumbersome assembly processes, low production efficiency, and an inability to quickly replace modules, making them unsuitable for rapid maintenance in emergency scenarios. Therefore, this paper proposes a mobile communication terminal antenna terminal with a modular structure and solar-powered complementary power supply. Summary of the Invention

[0004] The purpose of this invention is to solve the above problems by proposing a modular structure and a solar-powered mobile communication terminal antenna terminal. Through snap-fit ​​connection, rotatable solar panel design and sliding frame limiting structure, the device can be quickly assembled and maintained and efficiently managed, thereby improving the availability of the device in complex scenarios.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a mobile communication terminal antenna terminal, comprising a walkie-talkie body, a walkie-talkie top cover being installed on the upper end of the walkie-talkie body via a snap-fit, a walkie-talkie antenna being threadedly connected to a threaded connector at one end of the walkie-talkie top cover, a front button module being snap-fitted onto a through hole in the middle of the walkie-talkie body, a limit-positioning socket module being inserted and installed between one side of the walkie-talkie body and the walkie-talkie top cover, a limit-positioning side button module being inserted and installed between the other side of the walkie-talkie body and the walkie-talkie top cover, a first solar panel being embedded and welded into the rear surface of the walkie-talkie body, and a second solar panel being rotatably installed in the upper hole on the rear surface of the walkie-talkie body.

[0006] Preferably, a display screen is embedded at the upper end of the front surface of the walkie-talkie body, a speaker outlet and a microphone pickup hole are opened at the lower end of the front surface of the walkie-talkie body, and terminal plug holes are opened in the middle, side and upper surface of the front surface of the walkie-talkie body.

[0007] Preferably, two knobs are movably installed on the upper surface of the walkie-talkie top cover, and the terminals on the lower surface of the walkie-talkie top cover are inserted into the terminal sockets on the upper surface of the walkie-talkie body.

[0008] Preferably, the front button module has multiple control buttons evenly distributed and embedded on its surface, and the terminals on the rear surface of the front button module are inserted into the terminal sockets in the middle of the front surface of the walkie-talkie body.

[0009] Preferably, the limiting socket module includes a socket module body that is inserted into a groove hole on one side of the walkie-talkie body and a first sliding frame that can be slidably installed in the socket module body. The terminals of the socket module body are inserted into terminal sockets in the groove hole on one side of the walkie-talkie body. The lower end of the first sliding frame is inserted into a strip groove on one side of the walkie-talkie body, and the upper end of the first sliding frame is inserted into a strip groove at one end on the lower surface of the walkie-talkie top cover.

[0010] Preferably, the limiting side button module includes a side button module body that fits against the other side of the walkie-talkie body and a second sliding frame that can be slidably installed in the side button module body. Two control buttons are embedded and pressed in the side button module body. The terminals of the side button module body are inserted into the terminal sockets on the other side of the walkie-talkie body. The lower end of the second sliding frame is inserted into the strip groove on the other side of the walkie-talkie body, and the upper end of the second sliding frame is inserted into the strip groove on the lower surface of the walkie-talkie top cover at the other end.

[0011] Preferably, the lower end of the second solar panel is inserted into a slot on the lower surface of the walkie-talkie body.

[0012] The beneficial effects of this utility model are as follows: The modular assembly design is achieved through the setting of the antenna terminal of this communication terminal. The components are connected by buckles, threads and terminal sockets, which makes disassembly and assembly convenient and easy to maintain and repair. At the same time, the modular structure can reduce the difficulty of production and assembly. Electrical connection is achieved by inserting the terminal into the terminal socket. The sliding frame and groove limit ensure the unity of structural stability and functionality. Furthermore, the combination of solar charging and traditional batteries forms a complementary energy solution, reducing dependence on external power sources and enabling continuous power supply in the absence of external power sources, thereby improving the availability of the equipment in the field and emergency scenarios. Attached Figure Description

[0013] Figure 1 is a schematic diagram of the overall structure of this utility model;

[0014] Figure 2 is an exploded structural diagram of this utility model;

[0015] Figure 3 is a schematic diagram of the walkie-talkie body, front button module, first solar panel and second solar panel of this utility model.

[0016] Figure 4 is a schematic diagram of the structure of the limiting socket module and the limiting side button module of this utility model;

[0017] Figure 5 is a schematic diagram of the walkie-talkie top cover and walkie-talkie antenna structure of this utility model.

[0018] Legend: 1. Walkie-talkie body; 2. Walkie-talkie top cover; 3. Walkie-talkie antenna; 4. Front button module; 5. Limiting socket module; 501. Socket module body; 502. No. 1 sliding frame; 6. Limiting side button module; 601. Side button module body; 602. No. 2 sliding frame; 7. No. 1 solar panel; 8. No. 2 solar panel. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Referring to Figures 1-5, a mobile communication terminal antenna terminal in this embodiment includes a walkie-talkie body 1. A walkie-talkie top cover 2 is installed on the upper end of the walkie-talkie body 1 via a snap-fit. A walkie-talkie antenna 3 is threadedly connected to a threaded connector at one end of the walkie-talkie top cover 2. A front button module 4 is snap-fitted into a through hole in the middle of the walkie-talkie body 1. A limiting socket module 5 is inserted and installed between one side of the walkie-talkie body 1 and the walkie-talkie top cover 2. A limiting side button module 6 is inserted and installed between the other side of the walkie-talkie body 1 and the walkie-talkie top cover 2. A first solar panel 7 is embedded and welded into the rear surface of the walkie-talkie body 1. A second solar panel 8 is rotatably installed in the upper hole on the rear surface of the walkie-talkie body 1.

[0021] Specifically, this communication terminal antenna terminal features a modular assembly design. Each component is connected via snaps, threads, and terminal sockets, making disassembly and assembly convenient and facilitating maintenance and repair. The modular structure also reduces the difficulty of production and assembly. Electrical connections are achieved by inserting terminals into terminal sockets. Sliding frames and grooves ensure structural stability and functionality. Furthermore, the combination of solar charging and traditional batteries forms a complementary energy solution, reducing dependence on external power sources and enabling continuous power supply in scenarios without external power, thus improving the availability of the equipment in the field and in emergency situations.

[0022] Referring to Figures 1-3, a display screen is embedded at the upper end of the front surface of the walkie-talkie body 1, and a speaker outlet and a microphone pickup hole are opened at the lower end of the front surface of the walkie-talkie body 1. Terminal plug holes are opened in the middle, side and upper surface of the front surface of the walkie-talkie body 1.

[0023] Specifically, the main body 1 of the walkie-talkie provides support for the structure of the entire walkie-talkie and integrates various functional modules. The front surface is equipped with a display screen, a speaker output hole, a microphone pickup hole, and a terminal socket. The side and top surfaces are also equipped with terminal sockets for connecting external devices. The top cover 2, front button module 4, limit socket module 5, and limit side button module 6 of the walkie-talkie are installed by means of snap-fit ​​and groove insertion.

[0024] Referring to Figures 1-4, two knobs are movably installed on the upper surface of the walkie-talkie top cover 2, and the terminals on the lower surface of the walkie-talkie top cover 2 are inserted into the terminal sockets on the upper surface of the walkie-talkie body 1.

[0025] Specifically, the walkie-talkie top cover 2 is installed on the upper part of the walkie-talkie body by a snap-fit ​​mechanism. The knob on the upper surface is used to adjust the volume and channel. The terminal on the lower surface is inserted into the terminal socket on the upper surface of the walkie-talkie body 1 to achieve circuit connection with the body. The threaded connector at one end is used to install the walkie-talkie antenna 3 to ensure signal transmission and reception. The walkie-talkie antenna 3 is connected to the walkie-talkie top cover 2 by a thread and is responsible for receiving and transmitting wireless communication signals to realize the voice and data transmission functions of the walkie-talkie.

[0026] Referring to Figures 1-3, multiple control buttons are evenly distributed and embedded on the surface of the front button module 4, and the terminals on the rear surface of the front button module 4 are inserted into the terminal sockets in the middle of the front surface of the walkie-talkie body 1.

[0027] Specifically, the control buttons on the surface of the front button module 4 are used to trigger power on / off, dialing, and function switching operations. The rear surface terminals are inserted into the terminal jacks in the middle of the front surface of the walkie-talkie body 1 to transmit the button signals to the internal circuit of the body.

[0028] Referring to Figures 1-5, the limiting socket module 5 includes a socket module body 501 inserted into a groove hole on one side of the walkie-talkie body 1 and a first sliding frame 502 slidably installed in the socket module body 501. The terminals of the socket module body 501 are inserted into terminal sockets in the groove hole on one side of the walkie-talkie body 1. The lower end of the first sliding frame 502 is inserted into a strip groove on one side of the walkie-talkie body 1, and the upper end of the first sliding frame 502 is inserted into a strip groove at one end on the lower surface of the walkie-talkie top cover 2.

[0029] Specifically, the main body 501 of the jack module is inserted into the groove hole on one side of the walkie-talkie body 1 and is connected to the walkie-talkie body 1 by a terminal, while providing an installation base for the first sliding frame; the upper and lower ends of the first sliding frame 502 are respectively inserted into the strip grooves of the walkie-talkie body 1 and the top cover, and the walkie-talkie body 1 and the walkie-talkie top cover 2 restrict the position of the main body 501 of the jack module; the limiting jack module 5 is used for external jacks, such as charging ports and headphone jacks.

[0030] Referring to Figures 1-5, the limiting side button module 6 includes a side button module body 601 that fits against the other side of the walkie-talkie body 1 and a second sliding frame 602 that can be slidably installed in the side button module body 601. Two control buttons are embedded and pressed in the side button module body 601. The terminals of the side button module body 601 are inserted into the terminal sockets on the other side of the walkie-talkie body 1. The lower end of the second sliding frame 602 is inserted into the strip groove on the other side of the walkie-talkie body 1, and the upper end of the second sliding frame 602 is inserted into the strip groove on the lower surface of the walkie-talkie top cover 2 at the other end.

[0031] Specifically, the side button module body 601 has embedded control buttons and is connected to the main circuit through terminals to realize side operation; the upper and lower ends of the second slide frame 602 are inserted into the strip grooves of the main body and the top cover, and the walkie-talkie body 1 and the walkie-talkie top cover 2 restrict the position of the side button module body 601.

[0032] Referring to Figures 1-3, the lower end of the second solar panel 8 is inserted into a slot on the lower surface of the walkie-talkie body 1.

[0033] Specifically, the No. 1 solar panel 7 is embedded and welded to the rear surface of the walkie-talkie body 1 and fixed in place. It converts solar energy into electrical energy to charge the device's battery, providing green energy supplementation and reducing dependence on traditional power sources. The upper end of the No. 2 solar panel 8 is inserted into the upper hole on the rear surface of the walkie-talkie body 1. It can be rotated to adjust the angle and can be opened and closed to improve solar energy absorption efficiency and enhance the battery life in the field and emergency scenarios.

[0034] The operating procedure of this utility model is as follows: During equipment assembly, take the walkie-talkie antenna 3, align its threaded hole with the threaded connector at one end of the walkie-talkie top cover 2, and rotate it clockwise until tightened to ensure stable signal transmission and reception. Insert the terminal on the rear surface of the front button module 4 into the terminal socket in the middle of the front surface of the walkie-talkie body 1, and press the front button module 4 until the buckle is embedded in the through hole of the body to complete the button signal circuit connection. Insert the terminal of the socket module body 501 into the terminal socket in the groove hole on one side of the walkie-talkie body 1, and at the same time insert the lower end of the first slide frame 502 into the strip groove on one side of the walkie-talkie body 1. The terminals of the module body 601 are inserted into the terminal sockets on the other side of the body. The lower end of the second slide frame 602 is inserted into the strip groove on the other side of the body. The walkie-talkie top cover 2 is aligned with the upper end of the walkie-talkie body 1, so that the terminals on the lower surface of the top cover are inserted into the terminal sockets on the upper surface of the body to ensure that the circuit is connected. Press the top cover along the buckle structure until a click is heard to confirm that the top cover is fixed in place with the body by the buckle. The upper ends of the first slide frame 502 and the second slide frame 602 are inserted into the strip groove on the lower surface of the walkie-talkie top cover 2. The upper end of the second solar panel 8 can rotate, and the lower end is inserted into the slot on the lower surface of the body to ensure smooth rotation.

[0035] When operating the function, press the power button on the front button module 4. After the display screen lights up, rotate the knob on the top cover 2 to adjust the communication channel. Speak into the microphone pickup hole on the front surface of the walkie-talkie body 1 and listen to the other party's voice through the speaker output hole. Press the PTT button on the side button module 6 to send a signal. Connect to an external power source for charging through the charging port of the limit socket module 5. In the absence of power in the wild, rotate the second solar panel 8 to make it at a certain angle with the first solar panel 7 to maximize the illumination area.

[0036] During modular maintenance and disassembly, rotate antenna 3 counterclockwise to remove it, pry up the buckle on the top cover 2 of the walkie-talkie and pull it out from the slot, separate the walkie-talkie body 1 from the top cover 2, gently pry the edge of the front button module 4, pull out the terminal and remove it, for the limit socket module 5 and the side button module 6, first slide the first slide frame 502 and the second slide frame 602 out of the strip groove, and then pull out the terminal of the module body to remove the module. If a module is malfunctioning, you can disassemble it according to the above steps and check whether the terminal is oxidized, or directly replace it with a new module without disassembling the whole machine.

[0037] 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 mobile communication terminal antenna terminal, characterized in that: The device includes a walkie-talkie body (1), with a walkie-talkie top cover (2) attached to the upper end of the body (1) via a snap fastener. A walkie-talkie antenna (3) is threaded onto a threaded connector at one end of the top cover (2). A front button module (4) is snapped onto the through hole in the middle of the body (1). A limit-positioning socket module (5) is inserted between one side of the body (1) and the top cover (2). A limit-positioning side button module (6) is inserted between the other side of the body (1) and the top cover (2). A first solar panel (7) is embedded and welded into the rear surface of the body (1). A second solar panel (8) is rotatably mounted in the upper hole on the rear surface of the body (1).

2. The mobile communication terminal antenna terminal according to claim 1, characterized in that: The front surface of the walkie-talkie body (1) is embedded with a display screen at the upper end, and the front surface of the walkie-talkie body (1) is provided with a speaker outlet and a microphone pickup hole at the lower end. Terminal plug holes are provided on the middle, side and upper surfaces of the front surface of the walkie-talkie body (1).

3. A mobile communication terminal antenna terminal according to claim 2, characterized in that: Two knobs are movably installed on the upper surface of the walkie-talkie top cover (2), and the terminals on the lower surface of the walkie-talkie top cover (2) are inserted into the terminal sockets on the upper surface of the walkie-talkie body (1).

4. A mobile communication terminal antenna terminal according to claim 3, characterized in that: The front button module (4) has multiple control buttons evenly distributed and embedded on its surface. The terminal on the rear surface of the front button module (4) is inserted into the terminal socket in the middle of the front surface of the walkie-talkie body (1).

5. A mobile communication terminal antenna terminal according to claim 4, characterized in that: The limiting socket module (5) includes a socket module body (501) inserted into a groove hole on one side of the walkie-talkie body (1) and a first sliding frame (502) that can be slidably installed in the socket module body (501). The terminals of the socket module body (501) are inserted into terminal socket holes in the groove hole on one side of the walkie-talkie body (1). The lower end of the first sliding frame (502) is inserted into a strip groove on one side of the walkie-talkie body (1). The upper end of the first sliding frame (502) is inserted into a strip groove on one end of the lower surface of the walkie-talkie top cover (2).

6. A mobile communication terminal antenna terminal according to claim 5, characterized in that: The limiting side button module (6) includes a side button module body (601) that fits against the other side of the walkie-talkie body (1) and a second slide frame (602) that can be slidably installed in the side button module body (601). Two control buttons are embedded and pressed in the side button module body (601). The terminals of the side button module body (601) are inserted into the terminal sockets on the other side of the walkie-talkie body (1). The lower end of the second slide frame (602) is inserted into the strip groove on the other side of the walkie-talkie body (1). The upper end of the second slide frame (602) is inserted into the strip groove on the lower surface of the walkie-talkie top cover (2) at the other end.

7. A mobile communication terminal antenna terminal according to claim 6, characterized in that: The lower end of the second solar panel (8) is inserted into the slot on the lower surface of the walkie-talkie body (1).