5G transportable mobile phone signal control equipment

By designing a compact 5G mobile phone signal control device, combined with the design of DC fans and aluminum heat sinks, the problem of poor heat dissipation of the equipment is solved, and the stable operation and extended service life of the equipment during long working hours are achieved.

CN223024841UActive Publication Date: 2025-06-24北京安华信科技有限公司
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Patent Information

Application Number
CN202422199771.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-06-24
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

The existing mobile phone signal control equipment is huge, inconvenient, and poor heat dissipation, which leads to unstable operation of the equipment and may even be damaged due to overheating, making it difficult to adapt to temporary needs.

Method used

A 5G mobile phone signal control device is designed, adopting a compact structure, which is easy to handle and install. Combined with four sets of DC fans and aluminum heat sinks, the heat dissipation problem is effectively solved by accelerating air flow and excellent thermal conductivity.

Benefits of technology

It realizes that the equipment maintains a stable operating temperature during long working hours, extends the service life of the equipment, improves the ease of use and adaptability of the equipment, and can be quickly deployed in various temporary needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mobile communication, in particular to 5G transportable mobile phone signal control equipment which is convenient to transport and install and can adapt to various temporary requirements, and a direct-current fan accelerates air flow, takes away heat from the interior of the equipment and ensures that the equipment keeps stable operating temperature in long-time work. Comprising a control panel, a switch, an indicator light, a direct current fan, an aluminum cooling fin and a signal collection control device, a cavity is formed in the signal collection control device, an electrical element is arranged in the cavity of the signal collection control device, the control panel is fixedly installed at the side end of the signal collection control device, the switch is arranged on the control panel, and the indicator light is arranged on the switch. The control panel is provided with an indicating lamp, the indicating lamp is electrically connected with the switch, four sets of direct-current fans are fixedly arranged on the control panel, and an inner cavity of the collection signal control equipment is communicated with the outside through the direct-current fans.
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Description

Technical Field

[0001] The utility model relates to the technical field of mobile communication, in particular to a 5G portable mobile phone signal control device. Background Art

[0002] With the development of 5G communication technology, the mobile communication network has entered a new era, which not only improves the data transmission rate but also enhances the system capacity and reliability. However, in some specific occasions, such as conference centers, examination rooms, military bases and other sensitive areas, in order to ensure information security and prevent cheating behavior, it is necessary to effectively manage and control the mobile phone signals in these areas. Traditional mobile phone signal control devices are often bulky and inconvenient to carry. Moreover, due to the fact that high-power electronic components generate a large amount of heat during operation, the heat dissipation problem has become a key factor restricting their stability and service life.

[0003] At present, most mobile phone signal control devices on the market are fixedly installed and difficult to meet various temporary needs. Although there are some miniaturized portable products, they generally have problems with poor heat dissipation, resulting in unstable operation of the devices and even possible damage due to overheating. Summary of the Invention

[0004] To solve the above technical problems, the utility model provides a 5G portable mobile phone signal control device which is easy to carry and install, can adapt to various temporary needs, uses a DC fan to accelerate air flow, takes away heat from the inside of the device, and ensures that the device maintains a stable operating temperature during long-term operation.

[0005] The 5G portable mobile phone signal control device of the utility model includes a control panel, a switch, an indicator light, a DC fan, an aluminum heat sink and a signal collection and control device. There is a cavity inside the signal collection and control device, and electrical components are arranged in the cavity of the signal collection and control device. A control panel is fixedly installed on the side end of the signal collection and control device. A switch is arranged on the control panel, and an indicator light is arranged on the control panel. The indicator light is electrically connected to the switch. Four groups of DC fans are fixedly arranged in an array on the control panel. The internal cavity of the signal collection and control device is connected to the outside through the DC fans. An aluminum heat sink is fixedly installed inside the signal collection and control device. An air outlet is communicated and arranged on the back plate of the signal collection and control device. The back plate of the signal collection and control device is arranged opposite to the control panel.

[0006] The 5G portable mobile phone signal control device of the utility model further includes external interfaces, and several groups of external interfaces are arranged on the back plate of the signal collection and control device.

[0007] The 5G portable mobile phone signal control device of the present utility model further includes a chassis connector and multi-mode control chassis. There are two groups of the multi-mode control chassis, and the two groups of multi-mode control chassis are stacked. The mobile phone signal control device is stacked on the upper multi-mode control chassis. The two groups of multi-mode control chassis are firmly connected by several groups of chassis connectors, and the mobile phone signal control device and the upper multi-mode control chassis are firmly connected by several groups of chassis connectors.

[0008] The 5G portable mobile phone signal control device of the present utility model further includes a shock-absorbing platform. The shock-absorbing platform is used to support the multi-mode control chassis and the mobile phone signal control device, and the shock-absorbing platform and the multi-mode control chassis are firmly connected by several groups of chassis connectors.

[0009] For the 5G portable mobile phone signal control device of the present utility model, two handles are provided on the mobile phone signal control device.

[0010] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0011] The device is compactly designed, easy to carry and install, and can meet various temporary needs; whether it is a conference center, an examination room or a sensitive area such as a military base, it can be quickly deployed to effectively manage and control mobile phone signals; through the design of combining four DC fans and aluminum heat sinks, the heat dissipation problem generated by high-power electronic components during operation is effectively solved; the DC fans accelerate the air flow, taking the heat away from the inside of the device, while the aluminum heat sinks, with their excellent heat conduction performance, quickly spread the heat to a larger area and discharge it through the air outlets on the back panel, ensuring that the device maintains a stable operating temperature during long-term operation and extending the service life of the device; the control panel integrates a switch and an indicator light, and users can control the on / off state of the device through simple operations and intuitively understand the working state of the device through the indicator light, which not only improves the usability of the device but also facilitates the daily maintenance of the device; as a device designed specifically for 5G communication, the control device can cope with the high-speed rate, large capacity and reliability characteristics of the 5G network, ensuring efficient and stable signal control in the 5G environment. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] The following further describes the present utility model with reference to the drawings.

[0013] Figure 1 It is a front view structural schematic diagram of the control panel;

[0014] Figure 2 It is an installation structural schematic diagram of the external interface;

[0015] Figure 3 It is a cross-sectional structural schematic diagram of the present utility model;

[0016] Figure 4 It is a schematic diagram of the cooperation structure between a mobile phone signal control device and a multi-mode control chassis;

[0017] Markings in the attached drawings: 1, control panel; 2, switch; 3, indicator light; 4, external interface; 5, DC fan; 6, aluminum heat sink; 7, mobile phone signal control device; 8, chassis connector; 9, multi-mode control chassis; 10, shock absorption platform. Specific implementation manners

[0018] The following will further describe in detail the specific implementation manners of the present utility model in conjunction with the attached drawings and embodiments. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.

[0019] As Figures 1 to 4 shown, the 5G portable mobile phone signal control device of the present utility model includes a control panel 1, a switch 2, an indicator light 3, a DC fan 5, an aluminum heat sink 6, and a signal collection and control device 7. A cavity is provided inside the signal collection and control device 7, and electrical components are provided in the cavity of the signal collection and control device 7. A control panel 1 is fixedly installed on the side end of the signal collection and control device 7. A switch 2 is provided on the control panel 1, and an indicator light 3 is provided on the control panel 1. The indicator light 3 is electrically connected to the switch 2. Four groups of DC fans 5 are fixedly installed in an array on the control panel 1. The internal cavity of the signal collection and control device 7 is connected to the outside through the DC fans 5. An aluminum heat sink 6 is fixedly installed inside the signal collection and control device 7. An air outlet is communicatively provided on the back panel of the signal collection and control device 7. The back panel of the signal collection and control device 7 is arranged opposite to the control panel 1; The device is designed compactly, facilitating handling and installation, and can adapt to various temporary requirements; Whether it is a conference center, an examination room or a sensitive area such as a military base, it can be quickly deployed to effectively manage and control mobile phone signals; By combining the design of four groups of DC fans 5 and aluminum heat sinks 6, the heat dissipation problem generated by high-power electronic components during operation is effectively solved; The DC fans accelerate the air flow and take the heat away from the inside of the device, while the aluminum heat sinks, with their excellent heat conduction performance, quickly spread the heat to a larger area and discharge it through the air outlet on the back panel, ensuring that the device maintains a stable operating temperature during long-term operation and extending the service life of the device; The control panel 1 integrates the switch 2 and the indicator light 3. Users can control the on / off state of the device through simple operations and intuitively understand the working state of the device through the indicator light, which not only improves the usability of the device but also facilitates the daily maintenance of the device; As a device specifically designed for 5G communication, the control device can cope with the high speed, large capacity and reliability characteristics of the 5G network, ensuring efficient and stable signal control in a 5G environment.

[0020] As a preference of the above embodiments, an external interface 4 is further included. A number of groups of external interfaces 4 are provided on the backplane of the collection signal control device 7. The introduction of the external interface 4 enables the device to be connected to other systems or devices and perform data exchange, enhancing the expandability of the device, allowing users to flexibly configure and upgrade the device according to actual needs, and meeting the application requirements in more complex scenarios. The setting of the external interface 4 makes the connection and configuration process of the device more convenient. Users do not need to open the inside of the device or perform complex wiring operations, and can quickly complete the connection only through the interfaces on the backplane, improving work efficiency and user experience. The external interface 4 can also be used to integrate additional functional modules, which can further enhance the performance of the device, enabling it to provide more comprehensive and advanced functional services while meeting the basic signal control requirements.

[0021] As a preference of the above embodiments, a chassis connector 8 and a multi-mode control chassis 9 are further included. There are two groups of the multi-mode control chassis 9, and the two groups of the multi-mode control chassis 9 are stacked. The collection signal control device 7 is stacked on the upper multi-mode control chassis 9. The two groups of the multi-mode control chassis 9 are firmly connected by a number of groups of chassis connectors 8, and the collection signal control device 7 and the upper multi-mode control chassis 9 are firmly connected by a number of groups of chassis connectors 8. The chassis connector 8, as a key component for firm connection, ensures the stable connection between the multi-mode control chassis 9 and the collection signal control device 7, not only improving the stability of the device during transportation and use, reducing the risk of damage caused by vibration or impact, but also extending the service life of the device. The modular design makes the maintenance and upgrade of the device simpler and more efficient. When a certain module fails or needs to be upgraded, users can easily disassemble and replace the corresponding chassis or components without making large-scale changes to the entire system. This not only reduces the maintenance cost, but also shortens the downtime and improves the availability of the device. The stacked multi-mode control chassis 9 and the collection signal control device 7 effectively utilize the vertical space and reduce the floor area of the device.

[0022] Preferably, as in the above embodiment, a shock-absorbing platform 10 is further included. The shock-absorbing platform 10 is used to support the multi-mode control chassis 9 and the signal collection and control equipment 7. The shock-absorbing platform 10 and the multi-mode control chassis 9 are firmly connected by a number of sets of chassis connectors 8. The shock-absorbing platform 10 can effectively absorb and disperse vibrations and impacts from the external environment, thereby protecting the electrical components and precision parts inside the equipment from damage. When exposed to a vibration and impact environment for a long time, the mechanical parts and electronic components of the equipment are prone to wear or damage, which will affect the performance and service life of the equipment. The introduction of the shock-absorbing platform 10 can significantly reduce such wear, thereby extending the overall service life of the equipment. During the transportation, installation and use of the equipment, the shock-absorbing platform 10 can reduce noise and vibration, improving the user's operation experience. Due to the addition of the shock-absorbing platform 10, the equipment can better adapt to various complex environments, including uneven ground, harsh weather conditions, etc. This adaptability enables the equipment to maintain stable performance in more scenarios, meeting diverse usage requirements.

[0023] Preferably, as in the above embodiment, two sets of handles are provided on the signal collection and control equipment 7. The design of the two sets of handles enables the operator to carry and move the entire equipment more easily. Whether during installation, debugging or moving to different positions, the two sets of handles can provide a stable gripping point, reducing the handling burden and improving the portability of the equipment. Using the two sets of handles can disperse the force exerted by the hand during handling, reducing the risk of the equipment slipping or being damaged due to single-handed operation or unstable gripping. It helps to ensure the safety of the equipment during handling and protects the precision electrical components inside the equipment from damage.

[0024] The 5G portable mobile phone signal control device of the present utility model, when working, the operator carries the entire device to the designated position through two groups of handles on the mobile phone signal control device 7; uses the chassis connector 8 to firmly connect the mobile phone signal control device 7 with the upper multi-mode control chassis 9 and the shock-absorbing platform 10 to ensure that the device is stable and does not shake; connects to the power supply through the external interface 4 on the back panel of the mobile phone signal control device 7 to provide the power required for the device to work; the operator presses the switch 2 on the control panel 1, and the device starts to start; at the same time, the indicator light 3 lights up to display the working state of the device; the electrical components inside the mobile phone signal control device 7 start to work, and through the built-in signal receiving and processing module, the mobile phone signals in the surrounding environment are collected and analyzed; the four groups of DC fans 5 arranged on the control panel 1 start to work, and the heat generated inside the mobile phone signal control device 7 is exchanged with the external air through the cavity; the aluminum heat sink 6 enhances the heat dissipation effect and transfers the heat to the vicinity of the fan more efficiently, and is blown out of the device by the fan; the air outlet on the back panel of the mobile phone signal control device 7 ensures that the heat can be smoothly discharged from the device to prevent component damage caused by excessive internal temperature; during the use of the device, the operator should regularly check the connection status, heat dissipation situation and the working condition of the electrical components of the device to ensure the stable operation of the device; when signal control is no longer required, the operator can turn off the device through the switch 2 on the control panel 1, the indicator light 3 goes out, and the device enters the standby or off state.

[0025] The installation method, connection method or setting method of the 5G portable mobile phone signal control device of the present utility model are all common mechanical methods, and any implementation that can achieve its beneficial effects can be carried out.

[0026] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can still be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A 5G portable mobile phone signal control device, characterized in that: It includes a control panel, a switch, an indicator light, a DC fan, an aluminum heat sink and a signal collection control device. A cavity is arranged inside the signal collection control device, and electrical components are arranged in the cavity of the signal collection control device. A control panel is fixedly installed on the side end of the signal collection control device, a switch is arranged on the control panel, an indicator light is arranged on the control panel, and the indicator light is electrically connected to the switch. Four groups of DC fans are arranged and fixedly installed on the control panel. The internal cavity of the signal collection control device is connected to the outside through the DC fan. An aluminum heat sink is fixedly installed inside the signal collection control device, and an air outlet is arranged on the back panel of the signal collection control device. The back panel of the signal collection control device is arranged on the opposite side of the control panel.

2. The 5G portable mobile phone signal control device according to claim 1, characterized in that: It also includes an external interface, and a plurality of groups of external interfaces are arranged on the back panel of the collection signal control device.

3. The 5G portable mobile phone signal control device according to claim 1, characterized in that: It also includes chassis connectors and multi-standard control and management plug-ins, wherein the multi-standard control and management plug-ins are provided in two groups, and the two groups of the multi-standard control and management plug-ins are stacked, and the collection signal control equipment is stacked and placed on the upper multi-standard control and management plug-ins, and the two groups of the multi-standard control and management plug-ins are fastened and connected by several groups of chassis connectors, and the collection signal control equipment is fastened and connected to the upper multi-standard control and management plug-ins by several groups of chassis connectors.

4. The 5G portable mobile phone signal control device as claimed in claim 3, characterized in that: It also includes a shock-absorbing platform, which is used to support the multi-standard control plug-in box and the collection signal control equipment. The shock-absorbing platform and the multi-standard control plug-in box are fastened to each other through several groups of chassis connectors.

5. The 5G portable mobile phone signal control device according to claim 1, characterized in that: The signal collection control device is provided with two sets of handles.