Wireless transmission computer heat dissipation case

By introducing wireless transmission technology and wireless components into the computer cooling chassis, the problem of slow software control response speed and user inability to monitor temperature in real time in traditional cooling systems is solved, achieving more flexible and convenient control and more efficient cooling effects.

CN222883008UActive Publication Date: 2025-05-16GUANGZHOU XUEXINGSI ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202421671029.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-15
Publication Date
2025-05-16
Estimated Expiration
2034-07-15

AI Technical Summary

Technical Problem

Traditional computer cooling systems have problems such as limited software control response speed, users cannot monitor the chassis temperature in real time, and difficulty in customizing the cooling strategy.

Method used

A wireless transmission computer cooling chassis is designed with built-in wireless components, including wireless transceiver chips, wireless antennas and PWM chips, which can remotely monitor, adjust and control the electronic components inside the chassis through wireless means.

Benefits of technology

It improves the operation convenience and system intelligence level, forms a comprehensive and effective cooling system, ensures the stable operation of electronic components inside the chassis, extends the service life of the equipment, and improves the heat dissipation effect and equipment reliability through the dust cover design.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wireless transmission computer heat dissipation case which comprises a supporting assembly, a heat dissipation assembly, a wireless assembly and a control assembly, the heat dissipation assembly is vertically installed on the supporting assembly, the heat dissipation assembly is connected with the supporting assembly and used for cooling the interior of the case, the wireless assembly is vertically installed on the supporting assembly, and the wireless assembly is connected with the wireless assembly. The heat dissipation assembly is used for wirelessly controlling electronic components in the case, the control assembly is vertically installed on the heat dissipation assembly and used for controlling the heat dissipation assembly, the wireless assembly comprises a limiting groove, a supporting plate and a wireless receiving and transmitting chip, the limiting groove is formed in the supporting plate and connected with the supporting plate, the supporting plate is vertically installed on the supporting assembly, and the wireless receiving and transmitting chip is connected with the supporting plate. The wireless transceiver chip is vertically installed on the supporting plate and connected with the supporting plate, and the wireless assembly comprises the wireless transceiver chip, a wireless antenna and a PWM chip, so that control over electronic elements in the case is more flexible and convenient.
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Description

Technical Field

[0001] The utility model relates to the technical development field of two-way transmission, in particular to a computer heat dissipation case with wireless transmission. Background Art

[0002] With the rapid development of computer technology, hardware components in high-performance computer cases, such as processors and graphics cards, will generate a lot of heat during operation. If this heat cannot be dissipated in a timely and effective manner, it will not only affect the stability and service life of the hardware, but may also cause system performance degradation or even hardware damage. Therefore, an efficient heat dissipation system is essential to ensure the long-term stable operation of the computer;

[0003] Traditional computer cooling systems mostly rely on passive or active cooling methods such as fans and heat pipe radiators, and monitor the hardware temperature through temperature sensors on the motherboard, and then the software in the operating system controls parameters such as fan speed to achieve the adjustment of the cooling effect. However, this cooling management method has several limitations: first, the control response speed at the software level may be limited by the efficiency of the operating system and driver; second, the user cannot directly see the real-time temperature inside the chassis, and it is difficult to directly adjust the cooling strategy according to needs; third, for computers that do not have the corresponding control software pre-installed, it is difficult for users to customize the cooling strategy. To solve this problem, the inventors proposed a wireless transmission computer cooling chassis. Utility Model Content

[0004] In view of the deficiencies existing in the above technologies, the utility model provides a computer heat dissipation chassis with wireless transmission.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a computer cooling case with wireless transmission, comprising a supporting component, a cooling component, a wireless component and a control component, wherein the cooling component is vertically mounted on the supporting component, the cooling component is connected to the supporting component and is used to cool the inside of the case, the wireless component is vertically mounted on the supporting component and is used to wirelessly control the electronic components inside the case, the control component is vertically mounted on the cooling component and is used to control the cooling component, the wireless component comprises a limiting groove, a supporting plate and a wireless transceiver chip, the limiting groove is opened inside the supporting plate, the limiting groove is connected to the supporting plate, the supporting plate is vertically mounted on the supporting component, the wireless transceiver chip is vertically mounted on the supporting plate, and the wireless transceiver chip is connected to the supporting plate.

[0006] As a further explanation, a wireless antenna is extended outward from the support plate and is vertically installed on the support plate. A PWM chip is extended outward from the support plate and is vertically installed on the support plate and away from the wireless antenna. A probe interface is extended outward from the support plate and is vertically installed on the support plate. A mainboard synchronization interface is extended outward from the probe interface and is vertically installed on the support plate and away from one end of the probe interface.

[0007] As a further explanation, the support assembly includes a base, a chassis body and an upper cover plate, the chassis body is vertically mounted on the base, and the upper cover plate is vertically mounted on the chassis body.

[0008] As a further explanation, the upper cover plate is extended outwardly with side panels, and the side panels are vertically installed on the base. The upper cover plate is extended outwardly with a front panel, and the front panel is vertically installed on the base. The chassis body is extended outwardly with a rear cover, and the rear cover is vertically installed on the base. The support plate is located inside the side panels.

[0009] As a further explanation, the rear cover plate is provided with a power supply placement groove extending outward, and the power supply placement groove is vertically installed on the rear cover plate. The rear cover plate is provided with a block bar extending outward, and the block bar is vertically installed in the middle of the rear cover plate. The rear cover plate is provided with a rear panel extending outward, and the rear panel is vertically installed on the rear cover plate.

[0010] As a further explanation, the heat dissipation assembly includes a first heat dissipation fan, a second heat dissipation fan and a dust cover, the first heat dissipation fan is vertically installed on the rear cover, the dust cover is vertically installed on the first heat dissipation fan, and the second heat dissipation fan is vertically installed on the base.

[0011] As a further explanation, the control component includes a speed display screen, a monitoring board, a button and a remote control cover. The speed display screen is vertically installed on the first cooling fan for monitoring the speed of the first cooling fan. The monitoring board is vertically installed on the remote control cover for monitoring the condition inside the chassis. The button is vertically installed on the remote control cover.

[0012] As a further explanation, a remote control back cover is extended outward from the remote control upper cover, and the remote control back cover is vertically installed on the remote control upper cover. A display driver PCB board is extended outward from the remote control back cover, and the display driver PCB board is installed in the middle of the remote control back cover. The display driver PCB board is electrically connected to the monitoring board, and a drive PCB board is extended outward from the remote control back cover, and the drive PCB board is vertically installed on the remote control back cover. A touch switch is extended outward from the drive PCB board, and the touch switch is installed at one end of the drive PCB board, and the touch switch is connected to the button.

[0013] As a further explanation, the remote control back cover extends outwardly to provide a power supply port, and the power supply port is vertically installed on the remote control back cover. The remote control back cover extends outwardly to provide a battery, and the battery is vertically installed on the remote control back cover. The battery extends outwardly to provide a battery cover, and the battery cover is vertically installed on the battery.

[0014] As a further explanation, a main board is provided extending outward from the side board, and the main board is vertically mounted on the side board.

[0015] In summary, the utility model has the following beneficial effects: The utility model is a computer cooling case with wireless transmission, and the built-in wireless components, including a wireless transceiver chip, a wireless antenna and a PWM chip, make the control of the electronic components inside the case more flexible and convenient. Users can achieve remote monitoring, adjustment and control by wireless means, which improves the convenience of operation and the intelligence level of the system. Through the vertical installation of the first cooling fan and the second cooling fan, a comprehensive and effective cooling system is formed, which ensures the stable operation of the electronic components inside the case and extends the service life of the equipment. The design of the dust cover effectively blocks the entry of external dust, maintains a clean environment inside the case, and further improves the heat dissipation effect and the reliability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a three-dimensional structural diagram of a computer heat dissipation chassis with wireless transmission according to the utility model;

[0017] Figure 2 This is a schematic diagram of the internal structure of a wireless transmission computer heat dissipation case of the utility model;

[0018] Figure 3 This is a rear view of a computer heat dissipation case with wireless transmission according to the utility model;

[0019] Figure 4 This is a schematic diagram of the control component structure of a computer cooling case with wireless transmission according to the utility model;

[0020] Figure 5This is an exploded schematic diagram of a control component of a wireless transmission computer cooling case of the utility model;

[0021] Figure 6 The utility model is a schematic diagram of the internal structure of a wireless component of a computer heat dissipation case with wireless transmission.

[0022] Numbers in the figure: 1-mainboard, 10-support component, 101-base, 102-chassis body, 103-upper cover, 104-front panel, 105-side panel, 106-rear cover, 107-gear bar, 108-rear panel, 109-power supply slot, 20-control component, 201-speed display screen, 202-monitoring board, 203-button, 204-remote control cover, 205-touch switch, 206-power supply port, 207-drive Dynamic PCB board, 208-battery, 209-battery cover, 210-display driver PCB board, 211-remote control back cover, 30-heat dissipation component, 301-first cooling fan, 302-second cooling fan, 303-dust cover, 40-wireless component, 401-wireless transceiver chip, 402-wireless antenna, 403-mainboard synchronization interface, 404-probe interface, 405-PWM chip, 406-limiting groove, 407-support plate. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0024] like Figure 1-6 As shown, a computer cooling case with wireless transmission includes a supporting component, a cooling component, a wireless component and a control component. The cooling component is vertically mounted on the supporting component, and the cooling component is connected to the supporting component for cooling the inside of the case. The wireless component is vertically mounted on the supporting component for wirelessly controlling the electronic components inside the case. The control component is vertically mounted on the cooling component for controlling the cooling component. The wireless component includes a limiting groove 406, a supporting plate 407 and a wireless transceiver chip 401. The limiting groove 406 is provided inside the supporting plate 407, and the limiting groove 406 is connected to the supporting plate 407. The supporting plate 407 is vertically mounted on the supporting component. The wireless transceiver chip 401 is vertically mounted on the supporting plate 407, and the wireless transceiver chip 401 is connected to the supporting plate 407.

[0025] Specifically, the limiting groove 406 is provided to facilitate fixing the wireless component inside the side plate 105 .

[0026] A wireless antenna 402 is provided outwardly from the support plate 407, and the wireless antenna 402 is vertically installed on the support plate 407. A PWM chip 405 is provided outwardly from the support plate 407, and the PWM chip 405 is vertically installed on the support plate 407 and away from the wireless antenna 402. A probe interface 404 is provided outwardly from the support plate 407, and the probe interface 404 is vertically installed on the support plate 407. A mainboard synchronization interface 403 is provided outwardly from the probe interface 404, and the mainboard synchronization interface 403 is vertically installed on the support plate 407 and away from one end of the probe interface 404.

[0027] Specifically, the wireless transceiver chip 401 in the wireless component receives external control signals (such as signals sent by a remote control) through a wireless antenna 402, and converts these signals into electrical signals and transmits them to the processing unit in the control component. At the same time, the wireless transceiver chip 401 can also send the internal status information of the chassis (such as temperature, fan speed, etc.) to the external control component by wireless means. After receiving the control signal, the PWM chip 405 adjusts the speed of the cooling fan according to the signal content to achieve wireless control. The settings of the motherboard synchronization interface 403 and the probe interface 404 allow users to connect various sensors (not shown), expansion cards (not shown) and other external devices as needed to achieve more diversified functions and wider compatibility.

[0028] The supporting assembly includes a base 101 , a chassis body 102 and an upper cover 103 . The chassis body 102 is vertically mounted on the base 101 , and the upper cover 103 is vertically mounted on the chassis body 102 .

[0029] The upper cover 103 is extended outwardly to be provided with a side panel 105, and the side panel 105 is vertically installed on the base 101. The upper cover 103 is extended outwardly to be provided with a front panel 104, and the front panel 104 is vertically installed on the base 101. The chassis body 102 is extended outwardly to be provided with a rear cover 106, and the rear cover 106 is vertically installed on the base 101. The support plate 407 is located inside the side panel 105.

[0030] Specifically, the support assembly is mainly used to support the overall equipment. At the same time, each part of the support assembly can be installed or disassembled independently, which is convenient for assembly and internal upgrades, as well as subsequent maintenance and troubleshooting, reducing maintenance costs and time.

[0031] A power supply slot 109 is extended outward from the rear cover 106 and vertically mounted on the rear cover 106 . A stop bar 107 is extended outward from the rear cover 106 and vertically mounted on the middle of the rear cover 106 . A rear panel 108 is extended outward from the rear cover 106 and vertically mounted on the rear cover 106 .

[0032] Specifically, a power module (not shown) is installed in the power slot 109 to provide a stable power supply for the entire chassis.

[0033] The heat dissipation assembly includes a first heat dissipation fan 301 , a second heat dissipation fan 302 and a dust cover 303 . The first heat dissipation fan 301 is vertically mounted on the rear cover 106 , the dust cover 303 is vertically mounted on the first heat dissipation fan 301 , and the second heat dissipation fan 302 is vertically mounted on the base 101 .

[0034] Specifically, the first cooling fan 301 and the second cooling fan 302 are configured inside the chassis, and they are respectively installed on the rear cover 106 and the base 101. When the temperature inside the chassis rises, the monitoring system (such as a temperature sensor) in the control component will detect this change and send a signal to the PWM chip 405. The PWM chip 405 adjusts the speed of the first cooling fan 301 and the second cooling fan 302 according to the preset cooling strategy to increase or decrease the air flow, thereby controlling the temperature inside the chassis. The dust cover 303 is installed outside the first cooling fan 301, which effectively blocks external dust and impurities from entering the chassis, keeps the cooling fan and the inside of the chassis clean, and improves the cooling efficiency and service life.

[0035] The control component includes a speed display screen 201, a monitoring board 202, a button 203 and a remote control cover 204. The speed display screen 201 is vertically installed on the first cooling fan 301 for monitoring the speed of the first cooling fan 301. The monitoring board 202 is vertically installed on the remote control cover 204 for monitoring the internal conditions of the chassis. The button 203 is vertically installed on the remote control cover 204.

[0036] Specifically, the monitoring board 202 collects various parameters (such as temperature, voltage, current, etc.) inside the chassis in real time by connecting various sensors (such as temperature sensors, voltage sensors, etc.) inside the chassis. After these parameters are processed, they are displayed on the speed display screen 201 for the user to view. The user can send adjustment instructions to the control component through the button 203 on the remote control cover 204. After receiving the instruction, the control component adjusts the parameters such as the speed of the cooling fan and the brightness of the LED light by adjusting the output of the PWM chip 405. At the same time, the display driver PCB board 210 converts the monitored data into a visual form and displays it on the display screen of the remote control cover 204.

[0037] A remote control back cover 211 is extended outward from the remote control upper cover 204, and the remote control back cover 211 is vertically installed on the remote control upper cover 204. A display driver PCB board 210 is extended outward from the remote control back cover 211, and the display driver PCB board 210 is installed in the middle of the remote control back cover 211. The display driver PCB board 210 is electrically connected to the monitoring board 202. A drive PCB board 207 is extended outward from the remote control back cover 211, and the drive PCB board 207 is vertically installed on the remote control back cover 211. A touch switch 205 is extended outward from the drive PCB board 207, and the touch switch 205 is installed at one end of the drive PCB board 207. The touch switch 205 is connected to the button 203.

[0038] Specifically, the speed display screen 201 and the monitoring board 202 in the control component can monitor the operating conditions inside the chassis in real time, such as the speed and temperature of the cooling fan and other key parameters, and make intelligent adjustments through the button 203 on the remote control cover 204 and the display driver PCB board 210, thereby realizing precise control and dynamic adjustment of the chassis status. Through the setting of the touch switch 205, it is mainly used to transmit the signal given by the button 203 to the inside of the driver PCB board 207, which is convenient for the driver PCB board 207 to adjust the equipment, thereby improving practicality.

[0039] The remote control back cover 211 is extended outwardly to be provided with a power supply port 206, and the power supply port 206 is vertically installed on the remote control back cover 211; the remote control back cover 211 is extended outwardly to be provided with a battery 208, and the battery 208 is vertically installed on the remote control back cover 211; the battery 208 is extended outwardly to be provided with a battery cover 209, and the battery cover 209 is vertically installed on the battery 208; the side panel 105 is extended outwardly to be provided with a main board 1, and the main board 1 is vertically installed on the side panel 105.

[0040] Specifically, the power supply port 206 and the battery 208 provide independent power for the remote control cover 204 to ensure the normal operation of the wireless control and monitoring system. The battery cover 209 is used to protect the battery 208 from damage and short circuit, and is convenient for users to replace the battery 208. When the battery 208 is low on power, the user can replace the battery 208 or connect an external power source to ensure the continuous operation of the remote control cover 204. The mainboard 1 is the connection center of all hardware devices inside the computer. It connects these devices together through different slots and interfaces to ensure that they can communicate with each other and work together.

[0041] The built-in wireless components, including the wireless transceiver chip 401, the wireless antenna 402 and the PWM chip 405, make the control of the electronic components inside the chassis more flexible and convenient. The user can realize remote monitoring, adjustment and control by wireless means, which improves the convenience of operation and the intelligence level of the system. Through the vertical installation of the first cooling fan 301 and the second cooling fan 302, a comprehensive and effective heat dissipation system is formed, which ensures the stable operation of the electronic components inside the chassis and prolongs the service life of the equipment. The design of the dust cover 303 effectively blocks the entry of external dust, maintains a clean environment inside the chassis, and further improves the heat dissipation effect and the reliability of the equipment.

[0042] It is obvious to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive, and the scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims are included in the present invention. Any reference numeral in a claim should not be regarded as limiting the claim to which it relates.

[0043] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A wireless transmission computer heat dissipation chassis, characterized in that: including a support assembly; A heat dissipation component, which is vertically mounted on the support component and connected to the support component, and is used to cool the inside of the chassis; A wireless component, which is vertically mounted on the supporting component and is used to wirelessly control the electronic components inside the chassis; A control component, which is vertically mounted on the heat dissipation component and is used to control the heat dissipation component; The wireless component includes a limiting groove, a support plate and a wireless transceiver chip, the limiting groove is opened inside the support plate, the limiting groove is connected to the support plate, the support plate is vertically installed on the support component, the wireless transceiver chip is vertically installed on the support plate, and the wireless transceiver chip is connected to the support plate.

2. A wireless transmission computer heat dissipation chassis according to claim 1, characterized in that: A wireless antenna is provided outwardly from the support plate and the wireless antenna is vertically mounted on the support plate. A PWM chip is provided outwardly from the support plate and the PWM chip is vertically mounted on the support plate and away from the wireless antenna. A probe interface is provided outwardly from the support plate and the probe interface is vertically mounted on the support plate. A mainboard synchronization interface is provided outwardly from the probe interface and the mainboard synchronization interface is vertically mounted on the support plate and away from one end of the probe interface.

3. A wireless transmission computer heat dissipation chassis according to claim 2, characterized in that: The support assembly includes a base, a chassis body and an upper cover plate. The chassis body is vertically installed on the base, and the upper cover plate is vertically installed on the chassis body.

4. A wireless transmission computer heat dissipation chassis according to claim 3, characterized in that: The upper cover plate is extended outwardly to be provided with side plates, and the side plates are vertically installed on the base. The upper cover plate is extended outwardly to be provided with a front panel, and the front panel is vertically installed on the base. The chassis body is extended outwardly to be provided with a rear cover, and the rear cover is vertically installed on the base. The support plate is located inside the side plates.

5. A wireless transmission computer heat dissipation chassis according to claim 4, characterized in that: The rear cover plate extends outwardly to be provided with a power supply placement slot, and the power supply placement slot is vertically installed on the rear cover plate. The rear cover plate extends outwardly to be provided with a block bar, and the block bar is vertically installed in the middle of the rear cover plate. The rear cover plate extends outwardly to be provided with a rear panel, and the rear panel is vertically installed on the rear cover plate.

6. A wireless transmission computer heat dissipation chassis according to claim 5, characterized in that: The heat dissipation assembly includes a first heat dissipation fan, a second heat dissipation fan and a dust cover, the first heat dissipation fan is vertically installed on the rear cover plate, the dust cover is vertically installed on the first heat dissipation fan, and the second heat dissipation fan is vertically installed on the base.

7. A wireless transmission computer cooling chassis according to claim 6, characterized in that: The control component includes a speed display screen, a monitoring board, a button and a remote control cover. The speed display screen is vertically installed on the first cooling fan for monitoring the speed of the first cooling fan. The monitoring board is vertically installed on the remote control cover for monitoring the internal conditions of the chassis. The button is vertically installed on the remote control cover.

8. The wireless transmission computer cooling case according to claim 7, characterized in that: A remote control back cover is provided outwardly from the remote control upper cover, and the remote control back cover is vertically installed on the remote control upper cover. A display driver PCB board is provided outwardly from the remote control back cover, and the display driver PCB board is installed in the middle of the remote control back cover. The display driver PCB board is electrically connected to the monitoring board. A driver PCB board is provided outwardly from the remote control back cover, and the driver PCB board is vertically installed on the remote control back cover. A touch switch is provided outwardly from the driver PCB board, and the touch switch is installed at one end of the driver PCB board. The touch switch is connected to the button.

9. A wireless transmission computer heat dissipation chassis according to claim 8, characterized in that: The remote control back cover is extended outwardly to be provided with a power supply port, and the power supply port is vertically installed on the remote control back cover. The remote control back cover is extended outwardly to be provided with a battery, and the battery is vertically installed on the remote control back cover. The battery is extended outwardly to be provided with a battery cover, and the battery cover is vertically installed on the battery.

10. The computer cooling case with wireless transmission according to claim 4, characterized in that: A main board is provided extending outward from the side board, and the main board is vertically installed on the side board.