Handle radiator and handle

By designing a detachable handle radiator, the problem of excessive volume caused by the integrated design of the handle heat dissipation module and the handle is solved, and the handle is easily disassembled and installed, improving the operation convenience.

CN222900169UActive Publication Date: 2025-05-27LITESTAR ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202421582532.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-05-27
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

The existing handle heat dissipation module and the handle are integrated, resulting in a large size of the handle, which is inconvenient for operators to hold and carry.

Method used

A handle radiator is designed, which includes a radiator body, a first interface and a second interface. These interfaces are removably connected to the grip of the handle, which is easy to disassemble by snap adjustment, ensuring that the connection between the handle and the radiator is easy to disassemble.

Benefits of technology

It realizes the convenient disassembly and installation of the handle radiator and handle, solving the problem of excessive size and inconvenient grip and carrying.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is suitable for the technical field of handle manufacturing, and provides a handle radiator and a handle, which are characterized in that a first handle holding part is embedded on a radiator body and is connected with a first interface of the radiator body; the second handle holding part is connected with the second interface of the radiator body; the two opposite outer side wall faces of the radiator body are provided with a first connector and a second connector respectively, and the first connector and the second connector are matched in shape so that the first handle holding part and the second handle holding part can be detachably connected with the radiator body in a butt joint mode after being separated from the radiator body. The two ends of the handle are detachably connected with the radiator body and the two side faces of the radiator body respectively, the first holding part and the second holding part of the handle can be detachably connected in a butt joint mode after disassembly, disassembly is convenient, and the problems that heat dissipation modules on most handles and the handle are integrally designed, the size of the handle is large, and the heat dissipation efficiency is high are solved. The handle is inconvenient to hold by an operator and is inconvenient to store and carry.
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Description

Technical Field

[0001] The utility model belongs to the technical field of handle manufacturing, and particularly relates to a handle radiator and a handle. Background Art

[0002] A handle is a common input device widely used in multiple fields. Common fields include video games, virtual reality and augmented reality, robot control, drone control, medical devices, aerospace, heavy machinery, assistive technology, automotive and vehicle control, home entertainment, and smart home. Due to its intuitive operation method and flexible application scenarios, the handle has become an indispensable control tool in many industries.

[0003] In the field of video games, the handle is connected to a mobile phone or a game console, and game operations are performed through the handle. After connecting the handle to the mobile phone, a more comfortable and precise gaming experience can be enjoyed, which is suitable for various types of mobile games and simulators. Generally, a handle consists of components such as a joystick, direction and function buttons, a grip, a connection port, an indicator light, and a rechargeable battery.

[0004] In the prior art, the handle is connected to the mobile phone through a connection port. This connection method is more stable and has a high adaptability. During the process of connecting the handle to the mobile phone and playing games, heat will be generated. In most cases, the handle is provided with a heat dissipation module to dissipate heat from the mobile phone. However, in most handles, the heat dissipation module and the handle are integrally designed, resulting in a relatively large volume of the handle, which is not convenient for the operator to hold the handle and is also inconvenient for storage and carrying. Summary of the Utility Model

[0005] The purpose of the embodiments of the present utility model is to provide a handle radiator and a handle, aiming to solve the problem that in most cases, the handle is provided with a heat dissipation module to dissipate heat from the mobile phone, but in most handles, the heat dissipation module and the handle are integrally designed, resulting in a relatively large volume of the handle, which is not convenient for the operator to hold the handle and is also inconvenient for storage and carrying.

[0006] The embodiments of the present utility model are implemented as follows. A handle radiator, the handle radiator includes:

[0007] A radiator body, a first interface and a second interface are respectively arranged on the left and right sides of the radiator body. The first interface is detachably connected to the first grip part of the handle, and the second interface is detachably connected to the second grip part of the handle. The shapes of the first interface and the second interface are adapted so that the first grip part of the handle, the second grip part of the handle and the radiator body can be detachably docked after being separated.

[0008] Preferably, the radiator body is provided with a mounting bracket, a heat dissipation component, and a positioning component. The mounting bracket is provided with a first mounting member and a second mounting member. The mounting bracket is used for mounting the heat dissipation component, and the heat dissipation component is used for dissipating heat from the device mounted on the mounting bracket. The positioning component is provided with a first positioning plate and a second positioning plate. One end of the first positioning plate and one end of the second positioning plate are respectively mounted on opposite side surfaces of the mounting bracket and are higher than the back surface of the mounting bracket. The first positioning plate and the second positioning plate are used for positioning the device.

[0009] Preferably, a cavity is formed inside the mounting bracket. The first mounting member and the second mounting member are mounted on two opposite side surfaces of the mounting bracket. The first mounting member is provided with a first interface and a first positioning hole. The first interface is matched with the first connecting convex block on the handle so that the radiator body is connected to the first holding part of the handle. The first positioning hole is used for positioning the first holding part. The second mounting member is provided with a second interface and a first positioning member. The second interface is connected to the first connecting hole of the second holding part of the handle. The first positioning member is used for positioning the second holding part of the handle.

[0010] Preferably, a first buckle and a second buckle are provided on the mounting bracket. The first buckle and the second buckle are mounted in the internal cavity structure of the mounting bracket. The first buckle is provided with a first adjusting block and a first connecting spring. One end of the first adjusting block is mounted on the back surface of the mounting bracket through a third positioning plate. The other end of the first adjusting block is connected to the first connecting spring so as to be mounted inside the cavity of the mounting bracket. By adjusting the position of the first adjusting block, the connection relationship between the first interface and the first connecting convex block can be changed. The second buckle is provided with a second adjusting block and a second connecting spring. One end of the second adjusting block is mounted on the back surface of the mounting bracket through a fourth positioning plate. The other end of the second adjusting block is connected to the second connecting spring so as to be mounted inside the cavity of the mounting bracket. By adjusting the position of the second adjusting block, the connection position between the second interface and the first connecting hole can be adjusted.

[0011] Another object of the embodiment of the present invention is a handle, which includes: a first holding part, a second holding part, and the handle radiator as described above;

[0012] The first holding part is provided with a first connecting convex block, and the first connecting convex block is embedded in the radiator body and connected to the radiator body;

[0013] The second holding part is provided with a first connecting hole, and the first connecting hole is connected to the radiator body;

[0014] The radiator body is used for dissipating heat from the device mounted on the handle.

[0015] Preferably, the first holding part is provided with a second positioning member, a first operation assembly, and a first connecting plate. The second positioning member is used to position the connection position between the radiator body and the first holding part. The first operation assembly is provided with a first installation shell and a plurality of first operation buttons. A cavity is formed inside the first installation shell, and the cavity structure is used to install a plurality of first operation buttons. A first installation area and a first positioning convex block are arranged on the side surface of the first installation shell. The first installation area is connected to the first connecting plate through a first installation convex block, and the first positioning convex block is used to position the device on the handle.

[0016] Preferably, the two opposite surfaces of the first connecting plate are respectively a first installation surface and a first connection surface. The first installation surface is provided with a plurality of first installation grooves, and the first installation grooves cooperate with the first installation convex blocks so that the first operation assembly is connected to the first connecting plate; the first connection convex block and the second positioning member are arranged on the first connection surface.

[0017] Preferably, the second holding part is provided with a second positioning hole, a second operation assembly, and a second connecting plate. The second positioning hole is used to position the connection position between the radiator body and the second holding part. The second operation assembly is provided with a second installation shell and a plurality of second operation buttons. A cavity is formed inside the second installation shell, and the cavity structure is used to install a plurality of second operation buttons. A second installation area and a second positioning convex block are arranged on the side surface of the second installation shell. The second installation area is connected to the second connecting plate through a second installation convex block, and the second positioning convex block is used to position the device installed on the handle.

[0018] Preferably, the two opposite surfaces of the second connecting plate are respectively a second installation surface and a second connection surface. The second installation surface is provided with a plurality of second installation grooves, and the second installation grooves cooperate with the second installation convex blocks so that the second operation assembly is connected to the second connecting plate; the first connection hole and the second positioning hole are arranged on the second connection surface.

[0019] A handle radiator and a handle provided by an embodiment of the present invention. The present invention is provided with a radiator body, and a first interface and a first connection hole are respectively arranged on two opposite side surfaces of the radiator body. The first interface is detachably connected to a first connection convex block on the first holding part of the handle and is adjusted by a first buckle for easy disassembly. The second installation member is detachably connected to a first connection hole on the second holding part of the handle and is adjusted by a second buckle for easy disassembly. The connections between the first holding part and the second holding part of the handle and the radiator body are respectively adjusted by the first buckle and the second buckle for easy disassembly. Moreover, the shapes of the first interface and the first connection hole are adapted so that after the first holding part and the second holding part of the handle are separated from the radiator body, they can be detachably docked, which is convenient for disassembly and solves the problem that the heat dissipation module on most handles is integrally designed with the handle, resulting in a larger volume of the handle, making it inconvenient for the operator to hold the handle and inconvenient for storage and carrying. Brief Description of the Drawings

[0020] Figure 1 A three-dimensional structure diagram of a handle radiator and a handle provided by an embodiment of the present utility model;

[0021] Figure 2 A schematic structural diagram of a first holding part in a handle provided by an embodiment of the present utility model;

[0022] Figure 3 A schematic structural diagram of a second holding part in a handle provided by an embodiment of the present utility model;

[0023] Figure 4 A schematic structural diagram of the left side of a radiator body in a handle radiator provided by an embodiment of the present utility model;

[0024] Figure 5 A schematic structural diagram of the right side of a radiator body in a handle radiator provided by an embodiment of the present utility model;

[0025] Figure 6 A schematic structural diagram of a first buckle of a radiator body in a handle radiator provided by an embodiment of the present utility model.

[0026] In the drawings: 1. First holding part; 11. First connecting convex block; 12. Second positioning member; 13. First connecting plate; 14. First operating assembly; 141. First mounting shell; 142. First operating button; 15. First positioning convex block; 2. Second holding part; 21. First connecting hole; 22. Second positioning hole; 23. Second connecting plate; 24. Second operating assembly; 241. Second mounting shell; 242. Second operating button; 25. Second positioning convex block; 3. Radiator body; 31. First mounting member; 311. First interface; 312. First positioning hole; 32. Second mounting member; 321. First positioning member; 322. Second interface; 33. First buckle; 331. First adjusting block; 332. First connecting spring; 34. Second buckle; 341. Second adjusting block; 35. First positioning plate; 36. Second positioning plate; 37. Mounting frame; 38. Heat dissipation assembly. Detailed Description of the Preferred Embodiments

[0027] In order to make the objectives, technical solutions and advantages of the present utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0028] The following describes the specific implementation of the present utility model in detail with reference to specific embodiments.

[0029] As Figure 1-6As shown in the figure, it is a structural diagram of a handle radiator and a handle provided by an embodiment of the present invention. The handle radiator includes: a radiator body 3. A first interface 311 and a second interface 322 are respectively arranged on the left and right sides of the radiator body 3. The first interface 311 is detachably connected to the first grip portion 1 of the handle, and the second interface 322 is detachably connected to the second grip portion 2 of the handle. The shapes of the first interface 311 and the second interface 322 are adapted so that the first grip portion 1 of the handle, the second grip portion 2 of the handle and the radiator body 3 can be detachably docked after being separated.

[0030] As Figure 1-6 shown, an embodiment of the present invention also provides a handle, including: a first grip portion 1, a second grip portion 2, and a handle radiator;

[0031] The first grip portion 1 is provided with a first connecting convex block 11, and the first connecting convex block 11 is embedded in the radiator body 3 and connected to the radiator body 3;

[0032] The second grip portion 2 is provided with a first connecting hole 21, and the first connecting hole 21 is connected to the radiator body 3;

[0033] The radiator body 3 is used for dissipating heat from the device installed on the handle.

[0034] In an embodiment of the present utility model, preferably, the handle radiator and the handle mainly consist of a first holding portion 1, a second holding portion 2, and a radiator body 3. The first holding portion 1 is provided with a first connecting convex block 11 which is connected to a first interface 311 on one side of the radiator body 3. The second holding portion 2 is provided with a first connecting hole 21 which is connected to a second interface 322 on the other side of the radiator body 3. The first interface 311 and the second interface 322 are respectively arranged on two opposite outer side surfaces of the mounting bracket 37, and are respectively provided with a first buckle 33 and a second buckle 34 to adjust the connection positions between the first connecting convex block 11 and the first interface 311, and between the second interface 322 and the first connecting hole 21, so as to facilitate the disassembly and installation between the first holding portion 1, the second holding portion 2 and the radiator body 3. The radiator body 3 mainly uses a heat dissipation component 38 to dissipate heat from the devices installed on the first holding portion 1 and the second holding portion 2. The heat dissipation component 38 can be provided with a heat dissipation plate or a heat dissipation fan structure to dissipate heat from the devices. The heat dissipation plate can accelerate heat conduction, and the heat dissipation fan enables the air around the devices to circulate to play a heat dissipation role. When it is necessary to remove the radiator body 3 from the handle, the connection position between the first connecting convex block 11 and the first interface 311 is adjusted through the first buckle 33 for disassembly. Similarly, the connection between the second holding portion 2 and the radiator body 3 is adjusted through the second buckle 34. At this time, the structure provided on the first mounting member 31 can be similar to the first connecting hole 21 on the second holding portion 2, and the structure provided on the second mounting member 32 can be similar to the first connecting convex block 11 on the first holding portion 1 to facilitate embedding in the first connecting hole 21. After the radiator body 3 is removed, the first holding portion 1 and the second holding portion 2 can be connected according to requirements to facilitate the installation of the device. The shapes of the first interface 311 and the second interface 322 are adapted so that the handle first holding portion 1, the handle second holding portion 2 and the radiator body 3 can be detachably docked after separation. The user can remove or assemble the radiator body 3 and the holding portion according to requirements, and can also connect the first holding portion 1 and the second holding portion 2 together according to requirements to connect with the device.

[0035] In an example of the present utility model, a radiator body 3 is provided, and a first interface 311 and a first connection hole 21 are respectively provided on two opposite side surfaces of the radiator body 3. The first interface 311 is detachably connected to a first connection bump 11 on a first holding portion 1 of the handle and can be adjusted by a first buckle 33 for easy disassembly. A second mounting member 32 is detachably connected to the first connection hole 21 on a second holding portion 2 of the handle and can be adjusted by a second buckle 34 for easy disassembly. The connections between the first holding portion 1 and the second holding portion 2 of the handle and the radiator body 3 are respectively adjusted by the first buckle 33 and the second buckle 34 for easy disassembly. Moreover, the shapes of the first interface 311 and the first connection hole 21 are adapted such that the first holding portion 1 and the second holding portion 2 of the handle can be detachably docked after being separated from the radiator body 3, which is convenient for disassembly and solves the problems that the heat dissipation module on most handles is integrally designed with the handle, resulting in a relatively large volume of the handle, making it inconvenient for the operator to hold the handle and difficult to store and carry.

[0036] As Figure 1-6 shown, as a preferred embodiment of the present utility model, the first holding portion 1 is provided with a second positioning member 12, a first operation assembly 14, and a first connecting plate 13. The second positioning member 12 is used to position the connection position between the radiator body 3 and the first holding portion 1. The first operation assembly 14 is provided with a first mounting shell 141 and a plurality of first operation buttons 142. A cavity is formed inside the first mounting shell 141, and the cavity structure is used to mount the plurality of first operation buttons 142. A first mounting area and a first positioning bump 15 are provided on the side surface of the first mounting shell 141. The first mounting area is connected to the first connecting plate 13 through a first mounting bump, and the first positioning bump 15 is used to position the device on the handle.

[0037] In an embodiment of the present utility model, preferably, the first holding portion 1 uses the first mounting shell 141 with an irregular shape and a certain cavity structure to mount a plurality of first operation buttons 142. A circuit board can also be arranged inside the cavity of the first mounting shell 141 and electrically connected to the first operation buttons 142 so that the user can operate using the first operation buttons 142 on the handle. A first positioning bump 15 is provided on the inner side surface of the first mounting shell 141, and a first mounting area is provided below the first positioning bump 15. The first positioning bump 15 can be a rectangular plate with a certain length for easy positioning. The first mounting area is provided with an irregularly shaped first mounting bump to completely connect with one end of the first connecting plate 13. The first operation buttons 142 can be provided with trigger keys, direction buttons, joysticks, switch buttons, etc. for handle operation according to functions.

[0038] As Figure 1-6As shown, as a preferred embodiment of the present utility model, the two opposite surfaces of the first connecting plate 13 are respectively a first mounting surface and a first connecting surface. The first mounting surface is provided with a plurality of first mounting grooves, and the first mounting grooves cooperate with the first mounting bumps to connect the first operating component 14 to the first connecting plate 13. The first connecting bump 11 and the second positioning member 12 are provided on the first connecting surface.

[0039] In the embodiment of the present utility model, preferably, the first connecting plate 13 can be an irregular plate-like structure with a certain thickness and is a hollow structure. The two opposite side surfaces of the first connecting plate 13 are respectively set as the first mounting surface and the first connecting surface. A plurality of irregular first mounting grooves are provided on the first mounting surface to facilitate the first mounting bumps on the first mounting shell 141 to be embedded in the first mounting grooves. The first connecting bump 11 and the second positioning member 12 provided on the first connecting surface can be respectively irregular structures. The first connecting bump 11 can be a rectangular plate with a certain thickness and an irregular protrusion is provided at the end of the rectangular plate to facilitate connection with the first mounting member 31. The second positioning member 12 can be a component similar to a connecting joint to electrically connect the first holding portion 1 and the radiator body 3, so that the radiator body 3 not only dissipates heat from the device, but also can dissipate heat from the first operating component 14 through the hollow first connecting plate 13.

[0040] As Figure 1-6 shown, as a preferred embodiment of the present utility model, the second holding portion 2 is provided with a second positioning hole 22, a second operating component 24 and a second connecting plate 23. The second positioning hole 22 is used to locate the connection position between the radiator body 3 and the second holding portion 2. The second operating component 24 is provided with a second mounting shell 241 and a plurality of second operating buttons 242. A cavity is formed inside the second mounting shell 241, and the cavity structure is used to mount a plurality of second operating buttons 242. A second mounting area and a second positioning bump 25 are provided on the side surface of the second mounting shell 241. The second mounting area is connected to the second connecting plate 23 through a second mounting bump. The second positioning bump 25 is used to locate the device mounted on the handle.

[0041] In the embodiment of the present utility model, preferably, the structure of the second holding portion 2 is similar to that of the first holding portion 1. For the explanation of the second holding portion, reference can be made to the explanation of the first holding portion 1, and the embodiment of the present utility model will not be elaborated herein.

[0042] As Figure 1-6As shown, as a preferred embodiment of the present utility model, the two opposite surfaces of the second connecting plate 23 are respectively a second mounting surface and a second connecting surface. A plurality of second mounting grooves are provided on the second mounting surface, and the second mounting grooves cooperate with the second mounting bumps so that the second operating component 24 is connected to the second connecting plate 23; the first connecting hole 21 and the second positioning hole 22 are provided on the second connecting surface.

[0043] In the embodiment of the present utility model, preferably, the second connecting plate 23 can be an irregular plate-shaped structure with a certain thickness and is hollow. The two opposite side surfaces of the second connecting plate 23 are respectively set as the second mounting surface and the second connecting surface. A plurality of irregular second mounting grooves are provided on the second mounting surface to facilitate the second mounting bumps on the second mounting shell 241 to be embedded in the second mounting grooves. The first connecting hole 21 and the second positioning hole 22 provided on the second connecting surface can be irregular holes, and the shape inside the first connecting hole 21 can be set to fit the shape of the first connecting bump 11 to facilitate the first connecting bump 11 and the second mounting member 32 to be embedded in the first connecting hole 21. The second positioning hole 22 can be a connection interface to facilitate the second positioning member 12 and the first mounting member 31 to be embedded in the second positioning hole 22.

[0044] As Figure 1-6 As shown, as a preferred embodiment of the present utility model, the radiator body 3 is provided with a mounting frame 37, a heat dissipation component 38 and a positioning component. The mounting frame 37 is provided with a first mounting member 31 and a second mounting member 32. The mounting frame 37 is used to mount the heat dissipation component 38, and the heat dissipation component 38 is used to dissipate heat from the device mounted on the mounting frame 37. The positioning component is provided with a first positioning plate 35 and a second positioning plate 36. One end of the first positioning plate 35 and one end of the second positioning plate 36 are respectively mounted on the opposite side surfaces of the mounting frame 37 and are higher than the back surface of the mounting frame 37. The first positioning plate 35 and the second positioning plate 36 are used to position the device.

[0045] In the embodiment of the present utility model, preferably, the radiator body 3 is mainly provided with a mounting frame 37, a heat dissipation component 38 and a positioning component. In the positioning component, the first positioning plate 35 and the second positioning plate 36 are respectively mounted on the opposite two side surfaces of the mounting frame 37. The ends of the first positioning plate 35 and the second positioning plate 36 are higher than the back surface of the mounting frame 37 to facilitate positioning a set of opposite two side surfaces of the device. And when the device is mounted on the handle, the first positioning bump 15 on the first holding part 1 and the second positioning bump 25 on the second holding part 2 can position the other set of opposite two side surfaces of the device so that the device is completely positioned on the handle. At this time, the radiator body 3 is located at the central position of the bottom of the device, and the heat dissipation component 38 can dissipate heat from the device in time, improving the use experience of the user.

[0046] AsFigure 1-6 As shown, as a preferred embodiment of the present utility model, a cavity is formed inside the mounting bracket 37. The first mounting member 31 and the second mounting member 32 are mounted on two opposite side surfaces of the mounting bracket 37. The first mounting member 31 is provided with a first interface 311 and a first positioning hole 312. The first interface 311 is matched with the first connecting convex block 11 on the handle so that the radiator body 3 is connected to the first gripping portion 1 of the handle. The first positioning hole 312 is used to position the first gripping portion 1. The second mounting member 32 is provided with a second interface 322 and a first positioning member 321. The second interface 322 is connected to the first connecting hole 21 of the second gripping portion 2 of the handle. The first positioning member 321 is used to position the second gripping portion 2 of the handle.

[0047] In an embodiment of the present utility model, preferably, the mounting bracket 37 is set as a rectangular semi-closed shell with a certain cavity structure. The first mounting member 31 and the second mounting member 32 are respectively mounted on two opposite side surfaces of the mounting bracket 37. At this time, the first positioning plate 35 and the second positioning plate 36 are arranged on another group of two opposite side surfaces of the mounting bracket 37. The first mounting member 31 is provided with a first interface 311 and a first positioning hole 312 which have the same structural size as the first connecting hole 21 and the second positioning hole 22 on the second gripping portion 2 respectively. And a ring-shaped positioning sleeve is arranged on the outer side of the first mounting member 31 to position the first gripping portion 1. The second mounting member 32 is provided with a second interface 322 and a first positioning member 321 which have the same structural size as the first connecting convex block 11 and the second positioning member 12 on the first gripping portion 1 respectively. And a ring-shaped mounting sleeve is arranged on the outer side of the second mounting member 32 to position the second gripping portion 2.

[0048] As Figure 1-6 shown, as a preferred embodiment of the present utility model, a first buckle 33 and a second buckle 34 are arranged on the mounting bracket 37. The first buckle 33 and the second buckle 34 are mounted in the internal cavity structure of the mounting bracket 37. The first buckle 33 is provided with a first adjusting block 331 and a first connecting spring 332. One end of the first adjusting block 331 is mounted on the back surface of the mounting bracket 37 through a third positioning plate. The other end of the first adjusting block 331 is connected to the first connecting spring 332 so as to be mounted inside the cavity of the mounting bracket 37. By adjusting the position of the first adjusting block 331, the connection relationship between the first interface 311 and the first connecting convex block 11 can be changed. The second buckle 34 is provided with a second adjusting block 341 and a second connecting spring. One end of the second adjusting block 341 is mounted on the back surface of the mounting bracket 37 through a fourth positioning plate. The other end of the second adjusting block 341 is connected to the second connecting spring so as to be mounted inside the cavity of the mounting bracket 37. By adjusting the position of the second adjusting block 341, the connection position between the second interface 322 and the first connecting hole 21 can be adjusted.

[0049] In the embodiment of the present utility model, preferably, the first buckle 33 and the second buckle 34 are respectively installed above the first mounting member 31 and the second mounting member 32. The first buckle 33 mainly includes a first adjusting block 331 and a first connecting spring 332. One end of the first adjusting block 331 is positioned by a first bending plate, and a guiding hole is provided on the first bending plate to limit the moving distance and guide the moving direction of the first guiding block. The other end of the first adjusting block 331 passes through the mounting frame 37 and is located above the first interface 311 on the first mounting member 31, so as to adjust the first connecting convex block 11 embedded on the first interface 311 by moving the position of the first adjusting block 331, making it convenient to disassemble the first holding portion 1 and the radiator body 3. The middle part of the first adjusting block 331 is connected to one end of the first connecting spring 332, and the other end of the first connecting spring 332 is installed on the inner wall surface of the mounting frame 37. The explanation of the second buckle 34 can refer to the explanation of the first buckle 33, and the embodiment of the present utility model will not be elaborated herein.

[0050] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.

Claims

1. A handle radiator, characterized in that: The handle radiator comprises: The radiator body has a first interface and a second interface respectively arranged on the left and right sides of the radiator body, the first interface is detachably connected to the first gripping portion of the handle, the second interface is detachably connected to the second gripping portion of the handle, and the shapes of the first interface and the second interface are adapted so that the first gripping portion of the handle and the second gripping portion of the handle can be disassembled and docked after being separated from the radiator body.

2. The handle heat sink according to claim 1, characterized in that: The radiator body is provided with a mounting frame, a heat dissipation component and a positioning component. The mounting frame is provided with a first mounting member and a second mounting member. The mounting frame is used to install the heat dissipation component. The heat dissipation component is used to dissipate heat for equipment mounted on the mounting frame. The positioning component is provided with a first positioning plate and a second positioning plate. One end of the first positioning plate and one end of the second positioning plate are respectively mounted on two opposite side surfaces of the mounting frame and are higher than the back side of the mounting frame. The first positioning plate and the second positioning plate are used to position the equipment.

3. The handle heat sink according to claim 2, characterized in that: A cavity is formed inside the mounting frame, and the first mounting member and the second mounting member are mounted on two opposite sides of the mounting frame. The first mounting member is provided with a first interface and a first positioning hole, and the first interface cooperates with the first connecting protrusion on the handle to connect the radiator body to the first gripping portion of the handle, and the first positioning hole is used to position the first gripping portion. The second mounting member is provided with a second interface and a first positioning member, and the second interface is connected to the first connecting hole of the second gripping portion of the handle, and the first positioning member is used to position the second gripping portion of the handle.

4. The handle heat sink according to claim 2, characterized in that: The mounting frame is provided with a first buckle and a second buckle, and the first buckle and the second buckle are installed in the internal cavity structure of the mounting frame. The first buckle is provided with a first adjustment block and a first connecting spring, one end of the first adjustment block is installed on the back of the mounting frame through a third positioning plate, and the other end of the first adjustment block is connected to the first connecting spring for installation inside the mounting frame cavity, and the connection relationship between the first interface and the first connecting protrusion is changed by adjusting the position of the first adjustment block; the second buckle is provided with a second adjustment block and a second connecting spring, one end of the second adjustment block is installed on the back of the mounting frame through a fourth positioning plate, and the other end of the second adjustment block is connected to the second connecting spring for installation inside the mounting frame cavity, and the connection position of the second interface and the first connecting hole is adjusted by adjusting the position of the second adjustment block.

5. A handle, characterized in that: The handle comprises: a first gripping portion, a second gripping portion and a handle radiator according to any one of claims 1 to 4; A first gripping portion is provided with a first connecting protrusion, wherein the first connecting protrusion is embedded in the radiator body and connected to the radiator body; The second gripping portion is provided with a first connecting hole, wherein the first connecting hole is connected to the radiator body; The radiator body is used to dissipate heat for the device installed on the handle.

6. The handle according to claim 5, characterized in that: The first gripping portion is provided with a second positioning piece, a first operating component and a first connecting plate, the second positioning piece is used to locate the connection position between the radiator body and the first gripping portion, the first operating component is provided with a first mounting shell and a plurality of first operating buttons, a cavity is formed inside the first mounting shell, and the cavity structure is used to install a plurality of first operating buttons, a first mounting area and a first positioning protrusion are provided on the side of the first mounting shell, the first mounting area is connected to the first connecting plate via the first mounting protrusion, and the first positioning protrusion is used to locate the device on the handle.

7. The handle according to claim 6, characterized in that: The first connecting plate is provided with two opposite surfaces, namely a first mounting surface and a first connecting surface. The first mounting surface is provided with a plurality of first mounting grooves, and the first mounting grooves cooperate with the first mounting protrusions to connect the first operating component to the first connecting plate; the first connecting protrusion and the second positioning member are provided on the first connecting surface.

8. The handle according to claim 5, characterized in that: The second gripping portion is provided with a second positioning hole, a second operating component and a second connecting plate. The second positioning hole is used to locate the connection position between the radiator body and the second gripping portion. The second operating component is provided with a second mounting shell and a plurality of second operating buttons. A cavity is formed inside the second mounting shell. The cavity structure is used to install a plurality of second operating buttons. A second mounting area and a second positioning protrusion are provided on the side of the second mounting shell. The second mounting area is connected to the second connecting plate via the second mounting protrusion. The second positioning protrusion is used to locate the device installed on the handle.

9. The handle according to claim 8, characterized in that The second connecting plate is provided with two opposite surfaces, namely a second mounting surface and a second connecting surface. The second mounting surface is provided with a plurality of second mounting grooves, which cooperate with the second mounting protrusions to connect the second operating component to the second connecting plate. The first connecting hole and the second positioning hole are provided on the second connecting surface.