High-performance waterproof power supply and data transmission terminal

CN224790887UActive Publication Date: 2026-09-22BAOTOU RENEWABLE WATER RESOURCES & SEWAGE TREATMENT CO LTD
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Patent Information

Application Number
CN202522107317.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-09-22
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

[0006]本实用新型主要是解决上述电池缺少防护不能稳定供电的技术问题,提供一种高性能防水电源及数据传输终端

Benefits of technology

1.该一种高性能防水电源及数据传输终端,通过倒扣的顶盖密封第一壳体的上端开口,顶盖的内侧壁包裹第一壳体的外壁形成防水屏障,而安装壳与第一壳体之间形成的防水通道在顶盖的密封作用下能够保障相对稳定的压力,延伸体插入防水通道内会挤压防水通道内部的空气,使得安装壳外部形成一个正压环境,具有至少两道防水屏障,抑制外部水进入防水通道内,最后通过电池置于安装壳的腹内,具有对电池防水防撞的功能,应对复杂的使用场景能够延长寿命,第一壳体、顶盖和安装壳均采用可形变的橡胶材质。

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Abstract

The utility model relates to data transmission technical field, and disclose a kind of high-performance waterproof power supply and data transmission terminal, comprising: first shell and top cover, the inside fixed mounting of first shell has installation shell, and several batteries are installed in installation shell;Sealing structure, sealing structure includes extension body, extension body is fixedly connected with top cover, extension body is inserted into waterproof channel, extension body is in contact with the inner wall of first shell and the outer wall of installation shell, the upper end opening of first shell is sealed by the top cover of reverse buckle, and the outer wall of first shell is formed waterproof barrier by the inner side wall of top cover, and the waterproof channel formed between installation shell and first shell can guarantee relatively stable pressure under the sealing effect of top cover, inhibit external water to enter waterproof channel, finally through battery is placed in the abdomen of installation shell, with the function of battery waterproof anticollision, complex use scene can prolong service life, first shell, top cover and installation shell are all used deformable rubber material.
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Description

Technical Field

[0001] This utility model relates to the field of data transmission technology, and in particular to a high-performance waterproof power supply and data transmission terminal. Background Technology

[0002] In maritime matters, satellite communication terminal devices are frequently used to ensure smooth communication.

[0003] The prior art discloses a data transmission terminal device (publication number: CN219611792U), which includes a rechargeable battery board, a data transmission port, a touch screen control display, a speaker, a body, and a fixing mechanism. The fixing mechanism includes two supporting components, a locking block, a rotating piece, a screw, and a moving frame. The locking block is fixedly connected to the moving frame and is also locked to the body. The rotating piece is fixedly connected to the screw and is also rotatably connected to the body. The screw is threadedly connected to the moving frame, and the moving frame is tactilely connected to the body.

[0004] To ensure signal transmission, a power supply needs to be installed inside the device. In existing technologies, the battery is directly installed inside the device, lacking buffering and waterproofing. In complex and ever-changing usage scenarios, such as environments with high humidity and vibration, the lack of battery protection prevents it from providing a stable power supply environment, affecting the stability of the entire device.

[0005] To address this, we propose a high-performance waterproof power supply and data transmission terminal. Utility Model Content

[0006] The present invention mainly addresses the technical problem of unstable power supply caused by the lack of protection in batteries, and provides a high-performance waterproof power supply and data transmission terminal.

[0007] To achieve the above objectives, this utility model adopts the following technical solution: a high-performance waterproof power supply and data transmission terminal, comprising: A first housing and a top cover are constructed together to form a sealed housing. An installation shell is fixedly installed inside the first housing, and a waterproof channel is formed between the installation shell and the first housing. Several batteries are installed inside the installation shell, and the batteries are connected to wires. A sealing structure, set within a waterproof channel for buffering, includes an extension body fixedly connected to a top cover. The extension body is inserted into the waterproof channel and abuts against the inner wall of the first housing and the outer wall of the mounting housing. The sealing structure also includes a deformation cavity and supports. The deformation cavity is formed inside the extension body, and several supports are provided within the deformation cavity to support the extension body. The deformation cavity is a U-shaped groove, and the supports are rectangular plates. The two ends of the supports are fixedly connected to the two side walls of the extension body located within the deformation cavity. The multiple supports form a buffer wall within the deformation cavity.

[0008] In a preferred embodiment of the present invention, the first housing forms a rectangular box with an open top, and the top cover is a rectangular cover with a recessed bottom. The top cover is adapted to the first housing, and the inner sidewall of the top cover abuts against the outer wall of the first housing and forms a waterproof barrier at the top port of the first housing.

[0009] In a preferred embodiment of this utility model, the mounting shell is integrally formed with the first shell, the mounting shell is fixedly installed at the bottom of the first shell, the size of the mounting shell is smaller than the internal size of the first shell, and a U-shaped waterproof channel is formed between the outer wall of the mounting shell and the inner wall of the first shell.

[0010] In a preferred embodiment of this utility model, the extension body forms a U-shaped block, and the extension body is interference-fitted with the waterproof channel.

[0011] A data transmission terminal includes a terminal body, wherein the terminal body is equipped with all of the above-mentioned high-performance waterproof power supplies, and the first housing is fixedly installed at the bottom of the terminal body. Beneficial effects

[0012] This invention provides a high-performance waterproof power supply and data transmission terminal. It has the following beneficial effects: 1. This high-performance waterproof power supply and data transmission terminal seals the upper opening of the first housing with an inverted top cover. The inner wall of the top cover wraps around the outer wall of the first housing to form a waterproof barrier. The waterproof channel formed between the mounting shell and the first housing can ensure relatively stable pressure under the sealing effect of the top cover. The extension inserted into the waterproof channel will compress the air inside the waterproof channel, so that a positive pressure environment is formed outside the mounting shell. It has at least two waterproof barriers to prevent external water from entering the waterproof channel. Finally, the battery is placed inside the mounting shell, which has the function of waterproofing and shockproofing the battery. It can extend the life of the battery in complex usage scenarios. The first housing, top cover and mounting shell are all made of deformable rubber material.

[0013] 2. This high-performance waterproof power supply and data transmission terminal uses multiple support bodies to support the inner and outer walls of the extension body, ensuring that the extension body remains tightly fitted to the first housing and the mounting housing, thereby improving the sealing effect of the waterproof channel. Secondly, the deformable support bodies can support the first housing and the mounting housing, maintaining an elastic connection between the first housing and the mounting housing. Even if the first housing is compressed, the multiple support bodies can buffer the deformation and protect the mounting housing and the internal battery, exhibiting good waterproof and compression resistance performance. Attached Figure Description

[0014] Figure 1 This is a perspective view of the first housing and top cover of this utility model; Figure 2 This is an assembly drawing of the top cover and the first housing of this utility model; Figure 3 This is a partial sectional view of the first housing, top cover, and mounting housing of this utility model; Figure 4 This is a perspective view of the terminal body of this utility model; Figure 5 This is a schematic diagram of the internal structure of the terminal body of this utility model.

[0015] Legend: 10. First housing; 11. Top cover; 12. Mounting housing; 13. Battery; 20. Extension; 21. Deformation cavity; 22. Support; 30. Terminal body. Detailed Implementation

[0016] A high-performance waterproof power supply and data transmission terminal, such as Figure 1 and Figure 2 As shown, it includes: A first housing 10 and a top cover 11 are constructed together as a sealed housing. A mounting shell 12 is fixedly installed inside the first housing 10, forming a waterproof channel between the mounting shell 12 and the first housing 10. Several batteries 13 are installed inside the mounting shell 12, and the batteries 13 are connected to wires. The first housing 10 forms a rectangular box with an open top. The top cover 11 is a rectangular cover with a recessed bottom. The top cover 11 is adapted to the first housing 10. The inner sidewall of the top cover 11 abuts against the outer wall of the first housing 10 and forms a waterproof barrier at the top port of the first housing 10. The mounting shell 12 is integrally formed with the first housing 10 and is fixedly installed at the bottom of the first housing 10. The size of the mounting shell 12 is smaller than the internal size of the cavity of the first housing 10. A U-shaped waterproof channel is formed between the outer wall of the mounting shell 12 and the inner wall of the first housing 10. In this design, the upper opening of the first housing 10 is sealed by the inverted top cover 11. The inner wall of the top cover 11 wraps around the outer wall of the first housing 10 to form a waterproof barrier. The waterproof channel formed between the mounting shell 12 and the first housing 10 can ensure relatively stable pressure under the sealing effect of the top cover 11, preventing external water from entering the waterproof channel. Finally, the battery 13 is placed inside the mounting shell 12, which has the function of waterproofing and shockproofing the battery. It can extend the life of the battery in complex usage scenarios. The first housing 10, the top cover 11 and the mounting shell 12 are all made of deformable rubber material.

[0017] like Figure 3As shown, a sealing structure is set inside the waterproof channel for buffering. The sealing structure includes an extension body 20, which is fixedly connected to the top cover 11. The extension body 20 is inserted into the waterproof channel and abuts against the inner wall of the first housing 10 and the outer wall of the mounting housing 12. The extension body 20 forms a U-shaped block and is interference-fitted with the waterproof channel. The sealing structure also includes a deformation cavity 21 and a support body 22. The deformation cavity 21 is formed inside the extension body 20. Several support bodies 22 for supporting the extension body 20 are set inside the deformation cavity 21. The deformation cavity 21 is a U-shaped groove. The support body 22 is a rectangular plate. The two ends of the support body 22 are fixedly connected to the two side walls of the extension body 20 located in the deformation cavity 21. The multiple support bodies 22 form a buffer wall inside the deformation cavity 21. In this design, the sealing of the waterproof channel is also crucial. When the waterproof barrier formed by the slope cover 11 enters the waterproof channel, the extension 20 inserted into the waterproof channel will compress the air inside the waterproof channel, creating a positive pressure environment outside the mounting shell 12. The extension 20 is supported by multiple supports 22, which keeps it in close contact with the first shell 10 and the mounting shell 12, thereby improving the sealing effect of the waterproof channel. Secondly, the deformable supports 22 can support the first shell 10 and the mounting shell 12, keeping them in an elastic connection. Even if the first shell 10 is compressed, the multiple supports 22 can buffer the deformation and protect the mounting shell 12 and the battery 13 inside, providing good waterproof and compression resistance.

[0018] like Figure 4 and Figure 5 As shown, a data transmission terminal includes a terminal body 30, the interior of which is equipped with all the aforementioned high-performance waterproof power supplies, and the first housing 10 is fixedly installed at the bottom of the terminal body 30.

[0019] The working principle of this utility model is as follows: The inverted top cover 11 seals the upper opening of the first housing 10. The inner wall of the top cover 11 wraps around the outer wall of the first housing 10 to form a waterproof barrier. The waterproof channel formed between the mounting shell 12 and the first housing 10 can maintain a relatively stable pressure under the sealing effect of the top cover 11, preventing external water from entering the waterproof channel. Finally, the battery 13 is placed inside the mounting shell 12, which has the function of waterproofing and shockproofing the battery. The sealing of the waterproof channel is also crucial. When the waterproof barrier formed by the top cover 11 enters the waterproof channel, the extension 20 is inserted. The air inside the waterproof channel is compressed, creating a positive pressure environment outside the mounting shell 12. Multiple supports 22 support the inner and outer walls of the extension 20, ensuring that the extension 20 remains tightly fitted to the first shell 10 and the mounting shell 12, thereby improving the sealing effect of the waterproof channel. Furthermore, the deformable supports 22 can support the first shell 10 and the mounting shell 12, maintaining an elastic connection between them. Even if the first shell 10 is compressed, the multiple supports 22 can buffer the deformation and protect the mounting shell 12 and the internal battery 13. It should be noted that the terminal body 30 includes a power socket, a power indicator light, an audio / video input module, and an iris recognition module. The power socket is fixedly connected to the body and located below the data transmission socket. The power indicator light is fixedly connected to the body and located below the power socket. The audio / video input module is fixedly connected to the body and located above the speaker. The iris recognition module is fixedly connected to the body and located on the other side of the main body. The body includes a sound control module and a main body. The sound control module is fixedly connected to the main body and located below the iris recognition module. The rechargeable battery is detachably connected to the main body. The data transmission port is fixedly connected to the main body of the device, the touch screen control display is fixedly connected to the main body of the device, the speaker is movably connected to the main body of the device, the power port is fixedly connected to the main body of the device, the power indicator light is fixedly connected to the main body of the device, the locking block is also locked to the main body of the device, the rotating piece is also rotatably connected to the main body of the device, the moving frame is movably connected to the main body of the device, the positioning block is fixedly connected to the main body of the device, the audio-visual input module is fixedly connected to the main body of the device, the iris recognition module is fixedly connected to the main body of the device, and the battery 13 supplies power to the whole device through a lead-connected power port. Since this is known prior art, it will not be described in detail here.

Claims

1. A high-performance waterproof power supply, characterized in that, include: The first housing (10) and the top cover (11) are constructed together as a sealed housing. An installation shell (12) is fixedly installed inside the first housing (10). A waterproof channel is formed between the installation shell (12) and the first housing (10). Several batteries (13) are installed inside the installation shell (12). The batteries (13) are connected to wires. A sealing structure is set inside the waterproof channel for buffering. The sealing structure includes an extension body (20), which is fixedly connected to the top cover (11). The extension body (20) is inserted into the waterproof channel and abuts against the inner wall of the first housing (10) and the outer wall of the mounting housing (12). The sealing structure also includes a deformation cavity (21) and a support body (22). The deformation cavity (21) is formed inside the extension body (20). Several supports (22) for supporting the extension body (20) are set inside the deformation cavity (21). The deformation cavity (21) is a U-shaped groove. The support body (22) is a rectangular plate. The two ends of the support body (22) are fixedly connected to the two side walls of the extension body (20) located in the deformation cavity (21). Multiple supports (22) form a buffer wall inside the deformation cavity (21).

2. The high-performance waterproof power supply according to claim 1, characterized in that: The first housing (10) forms a rectangular box with an open top, and the top cover (11) is a rectangular cover with a recessed bottom. The top cover (11) is adapted to the first housing (10), and the inner sidewall of the top cover (11) abuts against the outer wall of the first housing (10) and forms a waterproof barrier at the top port of the first housing (10).

3. The high-performance waterproof power supply according to claim 1, characterized in that: The mounting shell (12) is integrally formed with the first shell (10). The mounting shell (12) is fixedly installed at the bottom of the first shell (10). The size of the mounting shell (12) is smaller than the cavity size of the first shell (10). A U-shaped waterproof channel is formed between the outer wall of the mounting shell (12) and the inner wall of the first shell (10).

4. The high-performance waterproof power supply according to claim 1, characterized in that: The extension (20) forms a U-shaped block, and the extension (20) is interference-fitted with the waterproof channel.

5. A data transmission terminal, comprising a terminal body (30), characterized in that: The terminal body (30) is equipped with a high-performance waterproof power supply as described in any one of claims 1-4, and the first housing (10) is fixedly installed on the bottom of the terminal body (30).

Citation Information

Patent Citations

  • Data transmission terminal device

    CN219611792U