Electronic device detachable module and electronic device

The combined design of the rotating handle and the power-assisting handle, combined with the tilt setting of the sliding part and the locking component, solves the problem of limited labor-saving effect of the power-assisting handle in high-density servers, realizes multi-level power-assisting effect in a limited space, and improves maintenance efficiency and operational convenience.

CN120568644BActive Publication Date: 2025-10-21INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202511052205.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-29
Publication Date
2025-10-21
Estimated Expiration
2045-07-29

AI Technical Summary

Technical Problem

The existing power handle has limited space in high-density servers and cannot achieve a long lever arm, resulting in limited labor-saving effects and cumbersome operation.

Method used

The combination design of a rotary handle and a power-assisted handle is adopted. The sliding part is tilted, and the power-assisted handle drives the rotary handle to rotate when it moves, achieving a double labor-saving effect. Combined with the optimized structure of the locking component, it adapts to the efficient maintenance needs of high-density modules.

Benefits of technology

It realizes multi-level assistance in a limited space, reduces maintenance difficulty and improves maintenance efficiency. It has a compact structure and is easy to operate, suitable for efficient maintenance under conditions of large plugging and unplugging forces.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an electronic device detachable module and an electronic device, wherein the electronic device detachable module comprises a module main body, a rotating handle and a power-assisted handle. The rotating handle is rotatably connected with the module main body, and the first end of the rotating handle is provided with a force applying structure for abutting and matching with a mounting structure on a case of the electronic device. The power-assisted handle is movably arranged relative to the module main body, and the power-assisted handle is provided with a sliding part which extends obliquely relative to the moving direction. The second end of the rotating handle is rotatably and movably arranged in the sliding part. When the power-assisted handle moves, the rotating handle is driven to rotate through the sliding part. The force applying structure of the rotating handle applies force to the mounting structure and drives the electronic device detachable module to be mounted or detached on the case. The application solves the problem that the power-saving effect of the power-assisted handle of the electronic device is limited in the prior art.
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Description

Technical Field

[0001] The present application relates to the technical field of server handles, and in particular to a detachable module of an electronic device and an electronic device. Background Art

[0002] Currently, a common solution for server installation handles is to use a handle that forms a force-saving lever to assist installation. However, in this arrangement, the length of the force-saving lever depends on the lever arm ratio of the handle. A longer lever arm is required for greater force saving. However, in high-density server scenarios, the high density of component layouts limits the space available for handle installation, making it impossible to set the handle to a longer length, thus limiting its force-saving effect.

[0003] As can be seen from the above, when the insertion and removal forces are too high and space is limited, the power handle cannot be lengthened, making the existing power handle unsuitable for high-density, modular design scenarios. In addition, the power handle requires the use of hand screws to lock and remove during the insertion and removal process, making the operation cumbersome. Summary of the Invention

[0004] The present application provides a detachable module of an electronic device and an electronic device, so as to at least solve the problem of limited labor-saving effect of the power-assisted handle of the electronic device in the related art.

[0005] The present application provides a detachable module of an electronic device, comprising: a module body, a rotating handle and a power-assisting handle, the rotating handle being rotatably connected to the module body, the first end of the rotating handle having a force-applying structure for abutting and cooperating with a mounting structure on a chassis of the electronic device; the power-assisting handle being movably arranged relative to the module body, the power-assisting handle having a sliding portion extending obliquely relative to a moving direction, the second end of the rotating handle being rotatably and movably arranged in the sliding portion, and when the power-assisting handle moves, the rotating handle is driven to rotate by the sliding portion, the force-applying structure of the rotating handle applies force to the mounting structure and drives the detachable module of the electronic device to be installed or removed from the chassis.

[0006] The present application also provides a server, comprising a chassis and the above-mentioned detachable electronic device module, wherein the detachable electronic device module is detachably installed in the chassis.

[0007] Through the present application, the rotary handle and the power-assisting handle cooperate with each other, wherein the rotary handle plays a role in cooperating with the mounting structure, and can achieve the action of driving the entire module body to be installed and removed by abutting against the mounting structure, while the power-assisting handle cooperates with the rotary handle through the setting of its sliding portion. When the power-assisting handle moves, the sliding portion drives the rotary handle to rotate. Due to the inclined setting of the sliding portion, the force applied by the power-assisting handle is amplified by the action of the sliding portion and the rotary handle, and ultimately acts on the mounting structure, achieving a double effort-saving effect. Specifically, when the power-assisting handle is pulled to move, the second end of the rotary handle moves within the sliding portion, which can drive the force-applying structure at the first end of the rotary handle to rotate and abut against the mounting structure. The force-applying structure will apply force to the mounting structure and drive the detachable module of the electronic device to be removed from the chassis. The force-applying structure abuts and applies force to the mounting structure to assist in the removal of the detachable module of the electronic device. Accordingly, during installation, pushing the power-assisting handle can drive the entire detachable electronic device module to move and install it in the chassis; when pushing the power-assisting handle to move, it can also drive the rotating handle to rotate. When the force-applying structure at the first end of the rotating handle rotates and abuts the matching mounting structure, the force-applying structure will apply force to the mounting structure and drive the detachable electronic device module to be installed in the chassis. The force-applying structure abuts and applies force to the mounting structure to assist in the installation of the detachable electronic device module. The cooperation between the rotating handle and the power-assisting handle makes the installation and removal of the detachable electronic device module more labor-efficient and can adapt to the efficient maintenance requirements of the detachable electronic device module under high insertion and removal force conditions, reducing maintenance difficulty and improving maintenance efficiency. By simply connecting the rotary handle, the power-assisting handle and the module body to each other, and using the power-assisting handle to drive the module body to move and the rotary handle to rotate, the detachable module of the electronic device can be disassembled and assembled labor-savingly. The structure is compact and easy to operate, and the high-reliability coupling design of the detachable module of the electronic device can be better realized within a limited space. The rotary handle and the power-assisting handle are connected in coordination to achieve multi-level power assistance, reduce the number of handle types, and achieve greater labor-saving gains through structural optimization to adapt to the efficient maintenance needs of the detachable module of the electronic device under large plugging and unplugging force conditions. BRIEF DESCRIPTION OF THE DRAWINGS

[0008] In order to more clearly illustrate the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0009] Figure 1 A schematic diagram of the structure of the rotating handle, the power-assisting handle, and the locking assembly in the detachable module of the electronic device provided in an embodiment of the present application;

[0010] Figure 2 for Figure 1 A schematic diagram of the structure of the rotating handle in FIG.

[0011] Figure 3 for Figure 1 A schematic diagram of the structure of the power-assist handle;

[0012] Figure 4 for Figure 1 A schematic diagram of the structure of the locking component in FIG.

[0013] Figure 5 for Figure 4 Exploded diagram;

[0014] Figure 6 for Figure 4 A side sectional view of

[0015] Figure 7 for Figure 4 A side sectional view of the main body member;

[0016] Figure 8 A schematic diagram of the overall structure of a detachable module of an electronic device provided in an embodiment of the present application;

[0017] Figure 9 for Figure 8 A schematic diagram of the structure of the rotating handle and the power handle cooperating with the side panels;

[0018] Figure 10 A schematic diagram of the structure of an electronic device provided in an embodiment of the present application;

[0019] Figure 11 for Figure 10 Schematic diagram of the structure of the middle chassis;

[0020] Figure 12 for Figure 11 Enlarged view of the installation structure;

[0021] Figure 13 This is a schematic diagram of the structure of the detachable module of the electronic equipment when it is installed in the chassis;

[0022] Figure 14 It is a structural diagram of the locking component when it is unlocked;

[0023] Figure 15 This is a structural diagram of the power handle applying force when disassembling a detachable module of an electronic device.

[0024] The above drawings include the following reference numerals:

[0025] 10. Rotating handle; 11. Force-applying structure; 12. Second end; 13. Rotating position; 14. First side; 15. Second side; 20. Power-assisting handle; 21. Sliding portion; 22. Operating portion; 23. Damping structure; 30. Locking assembly; 31. Main body; 311. Guide slide; 32. Lock tongue; 321. Inclined structure; 33. Operating member; 34. Resetting member; 40. Elastic member; 50. Module body; 51. Inner panel; 52. Outer panel; 60. Chassis; 61. Mounting structure; 62. Locking structure. DETAILED DESCRIPTION

[0026] The following will be combined with the accompanying drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0027] It should be noted that the terms "center," "longitudinal," "transverse," "length," "width," "thickness," "upper," "lower," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like, indicating positions or relationships, are based on the positions or relationships shown in the accompanying drawings and are intended solely for ease of description and simplification of the present application. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limiting the present application. The terms "mounted," "connected," and "connected" should be interpreted broadly, and may include, for example, fixed, removable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; and internal communication between two components. The terms "parallel," "perpendicular," and "equal" encompass the described conditions and conditions similar to the described conditions, provided that the range of the similar conditions is within an acceptable range of deviation, as determined by a person of ordinary skill in the art taking into account the measurement in question and the errors associated with the measurement of the particular quantity (i.e., the limitations of the measurement system). For example, "parallel" includes both absolute parallelism and approximate parallelism, where the acceptable deviation range for approximate parallelism may be, for example, within 5°; "perpendicular" includes both absolute perpendicularity and approximate perpendicularity, where the acceptable deviation range for approximate perpendicularity may also be, for example, within 5°. "Equal" includes both absolute equality and approximate equality, where the acceptable deviation range for approximate equality may be, for example, that the difference between the two is less than or equal to 5% of either. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.

[0028] In order to enable those skilled in the art to better understand the present application, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0029] In order to solve the problem of limited labor-saving effect of power-assisted handles of electronic devices in related technologies, the present application provides a detachable module of an electronic device and an electronic device.

[0030] like Figures 1 to 15 The shown embodiment shows a detachable module of an electronic device, comprising: a module body 50, a rotating handle 10 and a power-assisting handle 20. The rotating handle 10 is rotatably connected to the module body 50. The first end of the rotating handle 10 has a force-applying structure 11 for abutting and cooperating with the mounting structure 61 on the chassis 60 of the electronic device. The power-assisting handle 20 is movably arranged relative to the module body 50. The power-assisting handle 20 has a sliding portion 21 that extends obliquely relative to the moving direction. The second end 12 of the rotating handle 10 is rotatably and movably arranged in the sliding portion 21. When the power-assisting handle 20 moves, the rotating handle 10 is driven to rotate by the sliding portion 21. The force-applying structure 11 of the rotating handle 10 applies force to the mounting structure 61 and drives the detachable module of the electronic device to be installed or removed from the chassis 60.

[0031] This embodiment achieves the cooperation between the rotating handle 10 and the power-assisting handle 20, wherein the rotating handle 10 cooperates with the mounting structure 61, and can drive the module body 50 as a whole to be installed and removed through the abutment between the rotating handle 10 and the mounting structure 61, while the power-assisting handle 20 cooperates with the rotating handle 10 through the setting of its sliding portion 21. When the power-assisting handle 20 moves, the sliding portion 21 drives the rotating handle 10 to rotate. Due to the inclined setting of the sliding portion 21, the force applied by the power-assisting handle 20 is amplified under the action of the sliding portion 21 and the rotating handle 10, and finally acts on the mounting structure 61, achieving a double labor-saving effect. Specifically, when the power-assisting handle 20 is pulled to move, the second end 12 of the rotating handle 10 moves within the sliding portion 21, which can drive the force-applying structure 11 at the first end of the rotating handle 10 to rotate and abut against the matching mounting structure 61. The force-applying structure 11 will apply force to the mounting structure 61 and drive the detachable electronic device module to be removed from the chassis 60. The force-applying structure 11 abuts and applies force to the mounting structure 61 to assist in the removal of the detachable electronic device module. Correspondingly, during installation, pushing the power-assisting handle 20 can drive the entire detachable electronic device module to move and be installed in the chassis 60. When pushing the power-assisting handle 20 to move, it can also drive the rotating handle 10 to rotate. When the force-applying structure 11 at the first end of the rotating handle 10 rotates and abuts against the matching mounting structure 61, the force-applying structure 11 will apply force to the mounting structure 61 and drive the detachable electronic device module to be installed in the chassis 60. The force-applying structure 11 abuts and applies force to the mounting structure 61 to assist in the installation of the detachable electronic device module. The cooperation between the rotating handle 10 and the power-assisting handle 20 saves effort in the installation and removal of the detachable module of the electronic device, and can adapt to the efficient maintenance requirements of the detachable module of the electronic device under high plug-in and pull-out force conditions, reduce maintenance difficulty, and improve maintenance efficiency. Simply by connecting the rotating handle 10, the power-assisting handle 20, and the module body 50 to each other, and using the power-assisting handle 20 to drive the module body 50 to move and the rotating handle 10 to rotate, the detachable module of the electronic device can be assembled and disassembled with less effort. The structure is compact and easy to operate, and the high-reliability coupling design of the detachable module of the electronic device can be better realized in a limited space. The rotating handle 10 and the power-assisting handle 20 are connected in cooperation to achieve multi-level assistance, reduce the number of handles, and achieve greater effort-saving gains through structural optimization to adapt to the efficient maintenance requirements of the detachable module of the electronic device under high plug-in and pull-out force conditions.

[0032] This embodiment uses a server module as an example of a detachable electronic device module. For example, it could be a hard drive module, memory module, graphics card module, fan module, or other components. Furthermore, the electronic device in this embodiment could be a server or other device such as a router. The detachable electronic device module can be used in a variety of scenarios, including modular modules and server nodes, demonstrating excellent versatility and reliability.

[0033] like Figure 2 As shown, the rotary handle 10 of this embodiment has a rotating portion 13 for rotatably connecting to the module body 50. The rotating portion 13 is located between the first end and the second end 12, and the distance between the rotating portion 13 and the first end is smaller than the distance between the rotating portion 13 and the second end 12. The first end, the second end 12, and the rotating portion 13 form a lever structure with the rotating portion 13 as the fulcrum. The distance between the rotating portion 13 and the first end is smaller than the distance between the rotating portion 13 and the second end 12. Therefore, when the second end 12 drives the first end to rotate, it acts as a force-saving lever. When the second end 12 moves within the sliding portion 21, it can drive the force-applying structure 11 at the first end to rotate and abut against the mounting structure 61. When the second end 12 continues to move within the sliding portion 21, it drives the force-applying structure 11 at the first end to apply force to the mounting structure 61 and drive the detachable electronic device module to be removed from the chassis 60. The lever structure formed by the first end, the second end 12, and the rotating portion 13 can facilitate the removal of the detachable electronic device module, and the provision of the sliding portion 21 achieves a force-saving effect.

[0034] The rotating handle 10 of this embodiment is roughly a long plate-shaped structure, the rotating position 13 is a circular hole opened on the rotating handle 10, and the power handle 20 is provided with a protruding cylindrical structure that cooperates with the circular hole, so that the circular hole can be mounted on the cylindrical structure and can rotate relative to the cylindrical structure.

[0035] like Figure 1 As shown, the power-assisted handle 20 of this embodiment is a rectangular sheet-like structure with multiple hollow structures, which can reduce its weight and adapt to the high insertion and removal force conditions required for efficient maintenance of the detachable electronic device module. In addition to the power-assisted handle 20, the detachable electronic device module's housing, inner panel 51, outer panel 52, and chassis 60 are all provided with hollow structures, reducing the electronic device's weight while improving its heat dissipation performance, ensuring its safety and reliability.

[0036] like Figure 1As shown, along the direction in which the power-assisting handle 20 is pulled out of the chassis 60, the sliding portion 21 tilts toward the first end, that is, the sliding portion 21 tilts from the back to the front. The sliding portion 21 is an elongated groove provided in the power-assisting handle 20 and does not pass through the power-assisting handle 20. The elongated groove has two opposing long side walls and two opposing short side walls. The second end 12 can be a protruding columnar structure made of metal material. The second end 12 is embedded in the elongated groove and riveted to the sliding portion 21. The second end 12 can move and rotate along the long side walls of the elongated groove, and the short side walls of the elongated groove can limit the second end 12. The sliding portion 21 is also made of metal material and has self-lubricating and wear-resistant properties, so that the second end 12 can rotate smoothly in the sliding portion 21, reducing the friction between the two and achieving the purpose of saving effort. The power-assisting handle 20 is also made of metal. When the power-assisting handle 20 is pulled out of the chassis 60, the second end 12 abuts the long sidewall of the elongated slot and is driven by the power-assisting handle 20 to move synchronously. At the same time, the second end 12 can also slide along the long sidewall of the elongated slot. The sliding of the second end 12 causes the first end to rotate, and the force-applying structure 11 of the first end rotates and abuts the matching mounting structure 61. The force-applying structure 11 applies force to the mounting structure 61 to assist in the removal of the detachable module of the electronic device, achieving a labor-saving effect. The power-assisting handle 20 and the rotating handle 10 form a slider rocker structure within a limited space, realizing a multi-level power-assisting design and a larger power-assisting ratio, meeting the greater insertion and removal force requirements of high-density modules.

[0037] like Figure 3 As shown, the sliding portion 21 of this embodiment preferably forms an angle θ with the direction of movement of the power-assisting handle 20 that is greater than or equal to 20 degrees and less than or equal to 70 degrees. This creates a power-assisting slope on the sliding portion 21, which can assist in the removal of the detachable module of the electronic device, achieving a labor-saving effect. Of course, the specific angle can be adjusted as needed, as long as it is greater than 0 degrees and less than 90 degrees. Since the power-assisting handle 20 of this embodiment moves laterally, the angle θ is essentially the angle between the length of the sliding portion 21 and the transverse plane.

[0038] It should be noted that the principle of dual effort saving in this embodiment is as follows: the insertion and extraction force required to remove the detachable electronic device module is T, and the calculation formula for insertion and extraction force T is T = F × A × sinθ; where F is the insertion and extraction force of the detachable electronic device module, i.e., the force at the mounting structure 61; the angle formed between the sliding portion 21 and the movement direction of the power-assisting handle 20 is θ; and the force arm ratio, i.e., the ratio of the distance between the rotational position 13 and the first end to the distance between the rotational position 13 and the second end 12, is A. Because A and sinθ are both less than 1, the insertion and extraction force T is much smaller than the insertion and extraction force F, thereby achieving an effort-saving effect. In actual use, when the length ratio of the force arm has reached the limit, the power-assisting effect can be further achieved by adjusting the size of the angle; the plug-in force T is determined by the force arm ratio A and the value of the angle θ. Therefore, the force arm ratio A and the angle θ are adjusted as needed to assist in the disassembly of the detachable module of the electronic equipment. The second-level power-assisting effect of the power-assisting handle 20 can be realized, which effectively reduces the plug-in force required for the disassembly and assembly of the detachable module of the electronic equipment, achieves a larger power-assisting ratio, and meets the demand for higher plug-in force for high-density modules.

[0039] like Figure 2 As shown, the force-applying structure 11 of this embodiment has a first side surface 14 and a second side surface 15 facing each other. A force-applying region is formed between the first and second side surfaces 14, 15 for accommodating the mounting structure 61. The first and second side surfaces 14, 15 respectively abut different sides of the mounting structure 61 to facilitate installation or removal of the detachable electronic device module from the chassis 60. When removing the detachable electronic device module, pulling the power-assisting handle 20 can drive the rotating handle 10 to rotate, causing the first side surface 14 of the force-applying structure 11 to abut one side of the mounting structure 61. The force-applying structure 11 applies force to the mounting structure 61 through the first side surface 14, thereby detaching the detachable electronic device module from the chassis 60. Correspondingly, during installation, pushing the power-assisting handle 20 can drive the rotating handle 10 to rotate, causing the second side surface 15 of the force-applying structure 11 to abut the other side of the mounting structure 61. The force-applying structure 11 applies force to the mounting structure 61 through the second side surface 15, thereby detaching the detachable electronic device module from the chassis 60.

[0040] like Figure 2As shown, the force-applying structure 11 of this embodiment has a U-shaped opening, and the U-shaped opening has a force-applying area. The two opposite sides of the inner wall of the U-shaped opening serve as the first side 14 and the second side 15, respectively. Driven by the power-assisting handle 20, the force-applying structure 11 reaches the mounting structure 61. The force-applying structure 11 can be inserted into the mounting structure 61 from the opening side of the U-shaped opening. The power-assisting handle 20 continues to drive the mounting structure 61 to move so that the first side 14 or the second side 15 can abut against one side of the mounting structure 61, so that the force-applying structure 11 can apply force to the mounting structure 61 to achieve the disassembly and installation of the detachable module of the assisted electronic device. Of course, in addition to the U-shaped structure, the force-applying structure 11 can also adopt a raised structure, with the two sides of the raised structure serving as the first side 14 and the second side 15. In this case, the mounting structure 61 can adopt a groove or other structure.

[0041] like Figure 11 、 Figure 12 As shown, the mounting structure 61 of this embodiment is arranged on the inner wall of the chassis 60. The mounting structure 61 can be a structure such as a pin protruding from the inner wall. The force-applying structure 11 can be mounted on and abut the pin to provide assistance for the disassembly and assembly of the detachable module of the electronic device, thereby achieving a labor-saving effect.

[0042] This embodiment takes the horizontal placement of the detachable module of the electronic device as an example. In this case, the height of the detachable module of the electronic device is relatively low, while the length and width of the bottom surface can be relatively large. The force-applying structure 11 of this embodiment partially protrudes from the bottom surface of the detachable module of the electronic device, and the opening side of the U-shaped opening faces downward, so that the force-applying structure 11 can be inserted into the force-applying structure 11 below the detachable module of the electronic device through the U-shaped opening. Of course, the force-applying structure 11 can also partially protrude from other surfaces such as the side surface and top surface of the detachable module of the electronic device. Accordingly, the direction of the U-shaped opening and the setting position of the mounting structure 61 should also be adaptively adjusted so that the force-applying structure 11 and the force-applying structure 11 can normally abut and cooperate with each other.

[0043] According to the direction of the personnel facing the server, the end of the server closer to the personnel is the front, and the end away from the personnel is the back.

[0044] like Figure 3As shown, the power-assisting handle 20 of this embodiment further includes an operating portion 22. The operating portion 22 is located closer to the opening of the chassis 60 than the sliding portion 21. When the power-assisting handle 20 is extended from the chassis 60, the operating portion 22 extends out of the chassis 60 before the sliding portion 21. In other words, the operating portion 22 is located at the front end of the power-assisting handle 20. The operating portion 22 is a rectangular hole structure formed on the power-assisting handle 20. The rectangular hole structure is located near the side of the front end of the power-assisting handle 20, making it easy to insert and grasp the front end of the power-assisting handle 20, and facilitating the application of force to the power-assisting handle 20 to assist in the removal and installation of the detachable electronic device module. When the power-assisting handle 20 is pulled out of the module body 50, the operating portion 22 also extends out of the module body 50. The operator can grasp the power-assisting handle 20 via the operating portion 22 and pull the power-assisting handle 20 to move the module body 50 and remove the detachable electronic device module. The operating portion 22 leaves operating space for the operator, making it convenient for the operator to hold and apply force to disassemble and assemble the detachable module of the electronic device, thereby achieving labor-saving benefits and adapting to the efficient maintenance requirements of the detachable module of the electronic device under high plugging and unplugging force conditions.

[0045] like Figure 3 As shown, the power-assisting handle 20 of this embodiment also includes a damping structure 23 for enhancing operational feel. The damping structure 23 can be made of an elastic metal material, such as a damping spring. The damping structure 23 can contact and mate with the chassis 60 to increase damping. When the power-assisting handle 20 is moved so that it extends beyond the module body 50 and the force-applying structure 11 is not in contact with the mounting structure 61, the power-assisting handle 20 is unloaded. In this unloaded state, the damping structure 23 can increase damping, improving the feel of the power-assisting handle 20.

[0046] like Figure 8 As shown, the module body 50 of this embodiment includes a housing having upright side panels extending forward and backward. The power-assisting handle 20 is movably disposed on the side panels and can be moved forward and backward along the module body 50, so that the power-assisting handle 20 can move relative to the module body 50 and extend from the module body 50. The operator can simply apply force to the power-assisting handle 20 to achieve the assembly and disassembly of the detachable electronic device module, which is convenient for operation. Simply by installing the rotating handle 10 and the power-assisting handle 20 on the module body 50, the detachable electronic device module can be assembled and disassembled labor-savingly without adding additional installation space. This allows for a better high-reliability coupling design of the detachable electronic device module within a limited space, and achieves greater labor-saving benefits through structural optimization.

[0047] like Figure 9As shown, the side panels of this embodiment include an inner panel 51 and an outer panel 52. The inner panel 51 and the outer panel 52 are stacked, and the rotating handle 10 and the power-assisting handle 20 are clamped and arranged between the inner panel 51 and the outer panel 52. The rotating handle 10 and the power-assisting handle 20 do not occupy the position of the internal components of the module body 50, saving space. Moreover, the rotating handle 10, the power-assisting handle 20 and the module body 50 are relatively independently arranged. When the rotating handle 10 and the power-assisting handle 20 are moved, other components in the module body 50 will not be affected or worn, thereby ensuring the safety of the module body 50 and the high reliability of the detachable module of the electronic device. The front end of the inner panel 51 can limit the rear end of the power-assisting handle 20, that is, after the power-assisting handle 20 is pulled out to a certain length, the power-assisting handle 20 will be limited by the inner panel 51.

[0048] like Figure 1 、 Figure 8 As shown, the rotating handle 10 and the power-assisting handle 20 of this embodiment are both multiple and arranged in groups, each group including at least one rotating handle 10 and at least one power-assisting handle 20, and at least one group of rotating handles 10 and power-assisting handles 20 are provided on opposite sides of the module body 50. This allows the operator to simultaneously hold the power-assisting handles 20 and apply force when removing or assembling the detachable electronic device module, thereby meeting the requirements for efficient maintenance of the detachable electronic device module under high insertion and removal force conditions. Simultaneous force applied to the power-assisting handles 20 from both sides allows the detachable electronic device module to be moved parallel to the chassis 60 for removal from the chassis 60, preventing the detachable electronic device module from tilting during movement and colliding with the chassis 60, thereby ensuring the safety and high reliability of the detachable electronic device module.

[0049] The module body 50 of this embodiment has a rectangular structure, and two groups of inner panels 51 and outer panels 52 are arranged on both sides of the module body 50. The outer panels 52 are the outer walls of the module body 50. The two groups of rotating handles 10 and power-assisting handles 20 are respectively arranged in the inner panels 51 and outer panels 52 on both sides. The rotating handles 10 are close to the outer panels 52, while the power-assisting handles 20 are close to the inner panels 51.

[0050] Since the space for the detachable module of the electronic device in this embodiment is limited, the length of the rotating handle 10 and the power-assisting handle 20 does not need to be set too long. The length of the power-assisting handle 20 is basically the same as the length of the outer plate 52, so that when the detachable module of the electronic device is installed, the power-assisting handle 20 can be aligned with the outer plate 52; and the length of the inner plate 51 is shorter than the inner plate 51 and the power-assisting handle 20, so that the power-assisting handle 20 can be limited by the front end of the inner plate 51.

[0051] like Figure 1As shown, the detachable electronic device module of this embodiment further includes a locking assembly 30, which is connected to the front end of the power-assisting handle 20 and has a locked position and an unlocked position that cooperate with the chassis 60. When the locking assembly 30 is in the locked position, the power-assisting handle 20 can be locked, preventing the power-assisting handle 20 from extending beyond the module body 50, thereby ensuring the reliable installation of the detachable electronic device module. When the locking assembly 30 is in the unlocked position, the locking assembly 30 connected to the front end of the power-assisting handle 20 can be pulled to extend the power-assisting handle 20 beyond the module body 50, and then the operating portion 22 of the power-assisting handle 20 can be grasped to complete the assembly and disassembly of the detachable electronic device module, facilitating operation.

[0052] like Figure 4 、 Figure 5 As shown, the locking assembly 30 of this embodiment includes a main body 31, a locking tongue 32, and an operating member 33. The main body 31 is connected to the power-assisting handle 20. The locking tongue 32 can be made of metal and serves as a position limiter. After the power-assisting handle 20 completes the insertion operation, it prevents relative displacement between the power-assisting handle 20 and the module body 50, ensuring secure insertion and electrical performance. The locking tongue 32 is movably disposed within the main body 31 and can be extended or retracted within the main body 31. The locking tongue 32 is configured to engage with a locking structure 62 on the chassis 60 to lock the position of the power-assisting handle 20. The operating member 33 is connected to the locking tongue 32 and can drive the locking tongue 32 to extend or retract into the main body 31. After the detachable electronic device module is installed, the locking tongue 32 is moved to a position that mates with the locking structure 62. Then, by moving the operating member 33 toward the locking structure 62, the locking tongue 32 is driven past the locking structure 62 and locked by the locking structure 62, ensuring secure installation of the detachable electronic device module. When disassembling the detachable module of the electronic device, you can first unlock the locking structure 62 and move the operating part 33 in the direction away from the locking structure 62 to retract the locking tongue 32 into the main part 31, so that the locking tongue 32 is disengaged from the locking structure 62, and then pull the main part 31 to drive the power-assisting handle 20 to extend out of the module body 50, and then pull the power-assisting handle 20 to complete the disassembly and assembly of the detachable module of the electronic device, which is convenient for operation.

[0053] like Figures 13 to 15 As shown, the locking structure 62 of this embodiment can be a square columnar structure protruding from the inner wall of the chassis. When the locking structure 62 restricts the locking tongue 32 within the chassis, the locking assembly 30 is in the locked position. When the locking tongue 32 passes over the locking structure 62 and is separated from the chassis 60, the locking assembly 30 is in the unlocked position. Of course, the locking structure 62 can also be a columnar structure with a groove, so that the locking tongue 32 can be restricted in the groove and locked.

[0054] like Figure 6As shown, the locking assembly 30 of this embodiment also includes a reset member 34, which can be an elastic part such as a spring; the reset member 34 abuts against the lock tongue 32, and the reset member 34 provides a reset force for the lock tongue 32 to extend out of the main body 31 and cooperate with the locking structure 62. When the force is applied to move the operating member 33 to retract the lock tongue 32, the reset member 34 abutting against the lock tongue 32 will be compressed by the lock tongue 32 and generate a reset force. When the force of the moving operating member 33 is removed, the lock tongue 32 will extend under the action of the reset force, and the automatic extension of the lock tongue 32 can be achieved. When no force is applied to the operating member 33, the lock tongue 32 will remain in the extended state under the abutment of the reset member 34.

[0055] Accordingly, after the detachable electronic device module is installed in place, the operating member 33 is moved to cause the locking tongue 32 to retract into the main member 31. After the main member 31 is placed over the locking structure 62 and into the chassis 60, the operating member 33 is released, and the locking tongue 32 is extended and locked by the locking structure 62. Due to the abutment of the reset member 34, the locking tongue 32 is kept extended, ensuring that the locking tongue 32 remains locked by the locking structure 62, thereby ensuring that the power-assisted handle 20 is always in the locked state. When disassembling the detachable electronic device module, the locking structure 62 is unlocked and the operating member 33 is moved away from the locking structure 62 to retract the locking tongue 32 into the main member 31, so that the locking tongue 32 is disengaged from the locking structure 62. The operating member 33 is then released, and the locking tongue 32 is extended from the main member 31 and remains, thereby achieving rapid locking and unlocking of the locking assembly 30. The locking assembly 30 is convenient and maintainable during use, improving the operator's experience.

[0056] like Figure 5 As shown, the end of the lock tongue 32 extending out of the main body 31 of this embodiment has a slope structure 321. When the main body 31 is rotated in the direction close to the power-assisting handle 20, the locking structure 62 abuts against the slope structure 321 and pushes the lock tongue 32 to retract into the main body 31 through the slope structure 321; therefore, after the detachable module of the electronic device is installed in place, the main body 31 is directly rotated backward to drive the lock tongue 32 to approach the locking structure 62, and the locking structure 62 abuts against the slope structure 321 and pushes the lock tongue 32 to retract into the main body 31. When the lock tongue 32 is axially aligned with the locking structure 62, the locking structure 62 no longer abuts against the slope structure 321, and the lock tongue 32 can be extended under the action of the reset force and locked by the locking structure 62. There is no need to retract the lock tongue 32 into the main body 31 by moving the operating part 33, thereby improving the installation efficiency.

[0057] like Figure 7As shown, one end of the main member 31 of this embodiment is rotatably connected to the power-assisting handle 20. The upper end of the power-assisting handle 20 has a protruding mounting hole, and one end of the main member 31 has a mating hole that mates with the mounting hole. After the mounting hole and the mating hole are aligned, one end of the main member 31 can be locked to the power-assisting handle 20 using screws or the like, allowing the main member 31 to rotate relative to the power-assisting handle 20. When the locking tongue 32 is disengaged from the locking structure 62, the main member 31 can rotate relative to the power-assisting handle 20, allowing the other end of the main member 31 to separate from the power-assisting handle 20 and tilt up, that is, extend out of the module body 50, making it easier for the operator to drag and pull out the power-assisting handle 20. The other end of the main member 31 has a guide slide 311. Specifically, the main member 31 is a substantially elongated, completely or partially hollow structure. The hollow portion is located near and extends through the other end of the main member 31, and can accommodate the entire locking tongue 32. This hollow portion serves as the guide slide 311. The locking tongue 32 is movably disposed within the guide slide 311 and can extend from the other end of the main member 31. The main member 31 also has a square opening formed in the sidewall of the guide slide 311. An operating member 33 protrudes from the guide slide 311 and is connected to the locking tongue 32 within the guide slide 311. Moving the operating member 33 can drive the locking tongue 32 within the guide slide 311. The movement trajectory of the operating member 33 and the locking tongue 32 is parallel to the guide slide 311. When the locking tongue 32 is fully moved into the guide slide 311, the locking tongue 32 is retracted.

[0058] like Figure 1 As shown, the detachable electronic device module of this embodiment further includes an elastic member 40, which can be a compression spring or other elastic component. The elastic member 40 is disposed between the main member 31 and the power-assisting handle 20 and provides an elastic force for the main member 31 to rotate away from the power-assisting handle 20. The elastic member 40 is located near one end of the main member 31 that is rotatably connected to the power-assisting handle 20. When the detachable electronic device module is installed, pushing the main member 31 toward the power-assisting handle 20 locks the locking tongue 32 to the locking structure 62, while the elastic member 40 is compressed. After unlocking the locking structure 62, the main member 31 is rebounded by the elastic force of the elastic member 40, causing the main member 31 to tilt, making it easier for the operator to grasp and pull it, driving the power-assisting handle 20 to extend out of the module body 50. The power-assisting handle 20 is then pulled to complete the assembly and disassembly of the detachable electronic device module, thereby improving assembly and disassembly efficiency. Because the elastic member 40 is close to the end where the main member 31 is rotatably connected to the power-assisting handle 20, the elastic member 40 has sufficient elastic force to bounce up the main member 31; and the elastic member 40 has a certain length when not compressed, which can support the main member 31 to tilt up and have a certain angle with the power-assisting handle 20, making it convenient for the operator to pull.

[0059] like Figure 10 、 Figure 11As shown, this embodiment also provides an electronic device, including a chassis 60 and the above-mentioned detachable module of the electronic device. The specific structural form of the detachable module of the electronic device will not be further elaborated herein. The detachable module of the electronic device is detachably installed in the chassis 60. It can be seen from the above that the detachable module of the electronic device includes: a module body 50, a rotating handle 10 and a power-assisting handle 20. When the power-assisting handle 20 is pulled in the direction away from the chassis 60, the entire detachable module of the electronic device can be driven away from the chassis 60 until the detachable module of the electronic device is detached from the chassis 60; and the force-applying structure 11 abuts and applies force to the mounting structure 61, which can assist in the disassembly of the detachable module of the electronic device, making the installation and disassembly of the detachable module of the electronic device more labor-saving and easier, and can adapt to the efficient maintenance requirements of the detachable module of the electronic device under large plug-in and pull-out force conditions, reduce the difficulty of maintenance, and improve maintenance efficiency. Accordingly, during installation, the detachable module of the electronic device is aligned with the chassis 60, and pushing the power-assisting handle 20 can drive the entire detachable module of the electronic device to move and install it in the chassis 60; and the force-applying structure 11 abuts and applies force to the installation structure 61, which can assist in the installation of the detachable module of the electronic device.

[0060] like Figure 9 、 Figure 10 As shown, as the power-assisting handle 20 is pulled out of the chassis 60, the sliding portion 21 tilts toward the first end, forming a power-assisting slope. This facilitates the removal of the detachable electronic device module from the chassis 60, saving effort. The second end 12 of the rotating handle 10 can rotate and slide within the sliding portion 21, forming a slider rocker structure. Driven by the second end 12, the first end of the rotating handle 10 can abut the mounting structure 61, forming a lever structure. This achieves a multi-level power-assisting design and meets the greater insertion and removal force requirements of high-density modules.

[0061] like Figures 10 to 13 As shown, the chassis 60 of this embodiment is a rectangular parallelepiped structure with a hollow interior. The front side of the chassis 60 is an opening side, and the detachable electronic device module can be removed from the chassis along the opening side. The aforementioned mounting structure 61 and locking structure 62 are both located at the opening side, and one side surface of the mounting structure 61 and locking structure 62 is axially aligned with the opening surface of the opening side. As can be seen from the above, the power-assisted handle 20 also has an operating portion 22. The operating portion 22 is closer to the opening side of the chassis 60 than the sliding portion 21. When the power-assisted handle 20 is extended from the chassis 60, the operating portion 22 extends out of the chassis 60 before the sliding portion 21, making it easier for the operator to grasp the operating portion 22 and apply force to remove and assemble the detachable electronic device module.

[0062] like Figure 6As shown, the power-assisting handle 20 of this embodiment also includes a damping structure 23 for providing an operational feel. The damping structure 23 can contact and cooperate with the chassis 60. The damping structure 23 cooperates with the chassis 60 to increase damping. When the locking assembly 30 is pulled to cause the power-assisting handle 20 to extend out of the module body 50, before the power-assisting handle 20 contacts the inner plate 51, the power-assisting handle 20 is unloaded, and only a small pulling force is required to pull the power-assisting handle 20. Adding the damping structure 23 can provide damping when the power-assisting handle 20 is unloaded, thereby improving the feel of the power-assisting handle 20. After the power-assisting handle 20 contacts the inner plate 51, pulling the power-assisting handle 20 will drive the module body 50 to move out of the chassis 60, and a greater pulling force is required at this time.

[0063] like Figure 6 As shown, the electronic device of this embodiment further includes a partition, which is disposed within the chassis 60 and divides the interior of the chassis 60 into at least two installation areas. Each installation area is provided with a mounting structure 61 and a locking structure 62. The detachable electronic device modules can be selectively disposed in different installation areas. Of course, multiple installation areas can each be provided with detachable electronic device modules. Each detachable electronic device module is independently disposed and does not interfere with each other. During maintenance, a detachable electronic device module can be individually disassembled without disassembling all detachable electronic device modules. This enables independent maintenance of the detachable electronic device modules, reduces the number of times a single detachable electronic device module is disassembled, and extends the service life of the detachable electronic device modules.

[0064] The shape of the installation area of ​​this embodiment is the same as that of the detachable electronic device module and is slightly larger than the detachable electronic device module, so that the detachable electronic device module can be exactly installed in the installation area. After the detachable electronic device module is installed in the installation area, the detachable electronic device module is completely nested in the installation area, ensuring that the detachable electronic device module will not be displaced in the chassis 60, ensuring the safety and reliability of the detachable electronic device module, and extending the service life of the electronic device. However, in this way, it is difficult for the operator to pull out the detachable electronic device module during disassembly, while the tilted locking assembly 30 is easy to pull, and pulling the locking assembly 30 will in turn drive the power-assisting handle 20 to extend. Then, by holding the operating portion 22 of the power-assisting handle 20 and applying force, the detachable electronic device module can be easily disassembled and assembled. Only one end of the power-assisting handle 20 is connected to the power-assisting handle 20. When the power-assisting handle 20 is pulled, the power-assisting handle 20 is just in the no-load stage, and a large plug-in and pull-out force is not required. When the power-assisting handle 20 abuts against the inner plate 51, the gripping force position needs to be promptly replaced with the operating part 22. At this time, a larger plug-in and pull-out force needs to be applied to drive the entire detachable electronic device module to move, thereby realizing the disassembly and assembly of the detachable electronic device module. This method not only ensures the connection reliability between the locking assembly 30 and the power-assisting handle 20, but also improves the convenience of disassembly and assembly of the detachable electronic device module. In a limited space, the structure of the power-assisting handle 20 is optimized, and the disassembly and assembly efficiency of the detachable electronic device module is improved.

[0065] When installing the detachable electronic device module of the electronic device of this embodiment, the tilted locking assembly 30 is first pulled to drive the operating part 22 of the power-assisting handle 20 to extend out of the detachable electronic device module. The entire detachable electronic device module can be lifted by holding the operating part 22 and / or the lifting module body 50. The detachable electronic device module is aligned with the opening of the installation area of ​​the chassis, and a thrust is applied to the power-assisting handle 20 and / or the module body 50 to push the detachable electronic device module into the installation area. After the detachable electronic device module is installed in place, continuing to apply a thrust to the power-assisting handle 20 can push the power-assisting handle 20 back to the detachable electronic device module. At this time, the locking assembly 30 maintains the tilted state. After the locking assembly 30 is rotated in the direction close to the power-assisting handle 20 so that the lock tongue 32 abuts and passes over the locking structure 62, it is locked in the chassis 60 by the locking structure 62, that is, the detachable electronic device module is locked into the chassis 60, completing the installation of the detachable electronic device module. When disassembling the detachable module of the electronic device, the upward operating part 33 drives the locking tongue 32 to retract into the main body 31, which can release the lock of the locking structure 62 on the locking tongue 32. At the same time, the main body 31 is bounced up by the elastic force of the elastic part 40, causing the main body 31 to tilt up. The operator holds and pulls the main body 31, which can drive the operating part 22 of the power-assisting handle 20 to extend out of the module body 50 and the chassis 60, and then pull the power-assisting handle 20 to complete the disassembly of the detachable module of the electronic device from the chassis 60. It should be noted that, since the module body 50 has a certain weight and the weight of the module body 50 accounts for a large proportion of the detachable module of the electronic device, the module body 50 can be properly lifted when installing the detachable module of the electronic device to assist in the installation, so as to avoid only holding the power-assisting handle 20 and the power-assisting handle 20 being disconnected from the module body 50 due to being unable to bear the weight of the module body 50, causing the module body 50 to fall and be damaged, thereby ensuring the installation reliability of the detachable module of the electronic device; for example, when disassembling, the detachable module of the electronic device can be lifted when most of it is pulled out of the chassis 60; when installing, the detachable module of the electronic device can be lifted when it is not yet supported on the chassis 60 or only a small part of it is supported on the chassis 60.

[0066] It should be noted that, in the above embodiments, a plurality refers to at least two.

[0067] From the above description, it can be seen that the above embodiments of the present invention achieve the following technical effects:

[0068] Through the cooperation between the rotating handle 10 and the power-assisting handle 20, the rotating handle 10 plays a role of cooperating with the mounting structure 61, and can drive the module body 50 as a whole to be installed and removed through the abutment between it and the mounting structure 61, while the power-assisting handle 20 cooperates with the rotating handle 10 through the setting of its sliding part 21. When the power-assisting handle 20 moves, the sliding part 21 drives the rotating handle 10 to rotate. Due to the inclined setting of the sliding part 21, the force applied by the power-assisting handle 20 is amplified under the action of the sliding part 21 and the rotating handle 10, and finally acts on the mounting structure 61, achieving a double labor-saving effect. Specifically, when the power-assisting handle 20 is pulled to move, the second end 12 of the rotating handle 10 moves within the sliding portion 21, which can drive the force-applying structure 11 at the first end of the rotating handle 10 to rotate and abut against the matching mounting structure 61. The force-applying structure 11 will apply force to the mounting structure 61 and drive the detachable electronic device module to be removed from the chassis 60. The force-applying structure 11 abuts and applies force to the mounting structure 61 to assist in the removal of the detachable electronic device module. Correspondingly, during installation, pushing the power-assisting handle 20 can drive the entire detachable electronic device module to move and be installed in the chassis 60. When pushing the power-assisting handle 20 to move, it can also drive the rotating handle 10 to rotate. When the force-applying structure 11 at the first end of the rotating handle 10 rotates and abuts against the matching mounting structure 61, the force-applying structure 11 will apply force to the mounting structure 61 and drive the detachable electronic device module to be installed in the chassis 60. The force-applying structure 11 abuts and applies force to the mounting structure 61 to assist in the installation of the detachable electronic device module. The cooperation between the rotating handle 10 and the power-assisting handle 20 saves effort in the installation and removal of the detachable module of the electronic device, and can adapt to the efficient maintenance requirements of the detachable module of the electronic device under high plug-in and pull-out force conditions, reduce maintenance difficulty, and improve maintenance efficiency. Simply by connecting the rotating handle 10, the power-assisting handle 20, and the module body 50 to each other, and using the power-assisting handle 20 to drive the module body 50 to move and the rotating handle 10 to rotate, the detachable module of the electronic device can be assembled and disassembled with less effort. The structure is compact and easy to operate, and the high-reliability coupling design of the detachable module of the electronic device can be better realized in a limited space. The rotating handle 10 and the power-assisting handle 20 are connected in cooperation to achieve multi-level assistance, reduce the number of handles, and achieve greater effort-saving gains through structural optimization to adapt to the efficient maintenance requirements of the detachable module of the electronic device under high plug-in and pull-out force conditions.

[0069] The above is a detailed introduction to a detachable module for an electronic device and an electronic device provided by the present application. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method and core idea of ​​the present application. It should be pointed out that for ordinary technicians in this technical field, without departing from the principles of the present application, several improvements and modifications can be made to the present application, and these improvements and modifications also fall within the scope of protection of the claims of the present application.

Claims

1. A detachable module for an electronic device, characterized in that: include: Module body (50); A rotating handle (10), the rotating handle (10) being rotatably connected to the module body (50), the first end of the rotating handle (10) having a force-applying structure (11) for abutting and cooperating with a mounting structure (61) on a chassis (60) of the electronic device; A power-assisting handle (20), the power-assisting handle (20) being movably arranged relative to the module body (50), the power-assisting handle (20) having a sliding portion (21) extending obliquely relative to the moving direction, the second end (12) of the rotating handle (10) being rotatably and movably arranged in the sliding portion (21), the power-assisting handle (20) driving the rotating handle (10) to rotate via the sliding portion (21) when the power-assisting handle (20) moves, the force-applying structure (11) of the rotating handle (10) applying force to the mounting structure (61) and driving the detachable module of the electronic device to be mounted on or detached from the chassis (60); The rotating handle (10) has a rotating position (13) for being rotatably connected to the module body (50), the rotating position (13) being located between the first end and the second end (12), and the distance between the rotating position (13) and the first end is smaller than the distance between the rotating position and the second end (12).

2. The detachable electronic device module according to claim 1, wherein: Along the direction in which the power-assisting handle (20) is pulled out of the chassis (60), the sliding portion (21) is inclined in a direction close to the first end.

3. The detachable electronic device module according to claim 1, wherein: An included angle of greater than or equal to 20 degrees and less than or equal to 70 degrees is formed between the sliding portion (21) and the moving direction of the power-assisting handle (20).

4. The detachable electronic device module according to claim 1, wherein: The force-applying structure (11) has a first side surface (14) and a second side surface (15) facing each other, and a force-applying area for accommodating the mounting structure (61) is formed between the first side surface (14) and the second side surface (15). The first side surface (14) and the second side surface (15) respectively abut against different sides of the mounting structure (61) to drive the detachable module of the electronic device to be installed or removed from the chassis (60).

5. The detachable electronic device module according to claim 4, characterized in that: The force-applying structure (11) has a U-shaped opening, the U-shaped opening has the force-applying area, and two opposite sides of the inner wall of the U-shaped opening serve as the first side surface (14) and the second side surface (15), respectively.

6. The detachable electronic device module according to claim 1, wherein: The power-assisting handle (20) further comprises an operating portion (22), wherein the operating portion (22) is closer to the opening side of the chassis (60) than the sliding portion (21); when the power-assisting handle (20) extends out of the chassis (60), the operating portion (22) extends out of the chassis (60) before the sliding portion (21).

7. The detachable electronic device module according to claim 1, wherein: The power-assisting handle (20) further includes a damping structure (23) for providing an operating feel, and the damping structure (23) is contact-matched with the chassis (60).

8. The detachable electronic device module according to claim 1, wherein: The module body (50) comprises a shell having side panels that are upright and extend forward and backward. The power-assisting handle (20) is movably arranged on the side panels and can be movably arranged along the forward and backward directions of the module body (50).

9. The detachable electronic device module according to claim 8, characterized in that: The side plate comprises an inner plate (51) and an outer plate (52), wherein the inner plate (51) and the outer plate (52) are stacked, and the rotating handle (10) and the power handle (20) are clamped and arranged between the inner plate (51) and the outer plate (52).

10. The detachable electronic device module according to claim 1, wherein: The rotating handle (10) and the power-assisting handle (20) are both multiple and arranged in groups, each group including at least one rotating handle (10) and at least one power-assisting handle (20), and at least one group of the rotating handle (10) and the power-assisting handle (20) is arranged on opposite sides of the module body (50).

11. An electronic device, characterized in that: It comprises a chassis (60) and a detachable electronic device module, wherein the detachable electronic device module is detachably mounted in the chassis (60), and the detachable electronic device module comprises: Module body (50); A rotating handle (10), the rotating handle (10) being rotatably connected to the module body (50), the first end of the rotating handle (10) having a force-applying structure (11), the inner wall of the chassis (60) having a mounting structure (61), the force-applying structure (11) and the mounting structure (61) being capable of abutting and cooperating; A power-assisting handle (20), the power-assisting handle (20) being movably arranged relative to the module body (50), the power-assisting handle (20) having a sliding portion (21) extending obliquely relative to the moving direction, the second end (12) of the rotating handle (10) being rotatably and movably arranged in the sliding portion (21), the power-assisting handle (20) driving the rotating handle (10) to rotate via the sliding portion (21) when the power-assisting handle (20) moves, the force-applying structure (11) of the rotating handle (10) applying force to the mounting structure (61) and driving the detachable module of the electronic device to be mounted on or detached from the chassis (60); The rotating handle (10) has a rotating position (13) for being rotatably connected to the module body (50), the rotating position (13) being located between the first end and the second end (12), and the distance between the rotating position (13) and the first end is smaller than the distance between the rotating position and the second end (12).

12. The electronic device according to claim 11, wherein: Along the direction in which the power-assisting handle (20) is pulled out of the chassis (60), the sliding portion (21) is inclined in a direction close to the first end.

13. The electronic device according to claim 11, wherein: An included angle of greater than or equal to 20 degrees and less than or equal to 70 degrees is formed between the sliding portion (21) and the moving direction of the power-assisting handle (20).

14. The electronic device according to claim 11, wherein: The force-applying structure (11) has a first side surface (14) and a second side surface (15) facing each other, and a force-applying area for accommodating the mounting structure (61) is formed between the first side surface (14) and the second side surface (15). The first side surface (14) and the second side surface (15) respectively abut against two opposite sides of the mounting structure (61) to drive the detachable module of the electronic device to be installed or removed from the chassis (60).

15. The electronic device according to claim 11, wherein The front side of the chassis (60) is an open side with an opening, and the power-assisting handle (20) further comprises an operating portion (22). The operating portion (22) is closer to the open side of the chassis (60) than the sliding portion (21). When the power-assisting handle (20) extends out of the chassis (60), the operating portion (22) extends out of the chassis (60) before the sliding portion (21).

16. The electronic device according to claim 11, wherein: The power-assisting handle (20) further includes a damping structure (23) for providing an operating feel, and the damping structure (23) is contact-matched with the chassis (60).

17. The electronic device according to claim 11, wherein: The module body (50) includes a shell, the shell includes an inner plate (51) and an outer plate (52) that are vertically arranged, the inner plate (51) and the outer plate (52) being stacked, and the rotating handle (10) and the power handle (20) being clamped and arranged between the inner plate (51) and the outer plate (52).

18. The electronic device according to claim 11, wherein: The electronic device further comprises a partition, which is arranged in the chassis (60) and divides the interior of the chassis (60) into at least two installation areas, each of which is provided with the installation structure (61), and the detachable module of the electronic device can be selectively arranged in different installation areas.

Citation Information

Patent Citations

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    CN218995990U