Electronic device

By designing intersecting frames and drivers in the server system, combining limiting parts and positioning parts, the problem of difficulty in plugging and unplugging between PDB and PIB is solved, convenient and labor-saving plugging and disassembly are achieved, and plugging accuracy and operating efficiency are improved.

CN223229929UActive Publication Date: 2025-08-15LENOVO (BEIJING) LTD
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Patent Information

Application Number
CN202422374845.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-08-15
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

In the server system, the plug-and-release operation of PDB and PIB is difficult to plug and unconvenient to operate due to limited space.

Method used

An electronic device is designed, including a first frame and a second frame arranged intersectingly. It is connected to the first frame through a driving member to drive the first board to move relative to the second board, achieving convenient plug-in and disassembly. The driving member can be switched between the first relative position and the second relative position, and combined with the design of the limiting member and the positioning member, ensuring labor-saving and accurate plug-in and disassembly.

Benefits of technology

It realizes convenient and labor-saving plugging and disassembly in a limited space, improving plugging accuracy and operating efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides electronic equipment, and relates to the technical field of electronic equipment. The electronic equipment comprises a bearing part, the bearing part is provided with a first frame body and a second frame body, the first frame body and the second frame body are arranged in an intersecting mode, the first frame body is used for bearing a first board card, and the second frame body is used for bearing a second board card; the driving piece is connected with the first frame body and used for being connected with a first board card to drive the first board card to move relative to the second board card; when the driving part is located at a first relative position, the first board card and the second board card are in a plug-in state; and when the driving piece is located at the second relative position, the first board card and the second board card are in a non-plug-in state.
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Description

Technical Field

[0001] The present application relates to the technical field of electronic equipment, and in particular to an electronic equipment. Background Art

[0002] In server systems, the PDB (Power Delivery Board) and PIB (Power Integration Board) are plugged together via connectors. The required force for plugging in is high, but the plugging stroke is short. However, due to limited internal space, applying force is difficult, making it difficult to plug and unplug the PDB. Utility Model Content

[0003] The purpose of the embodiments of the present application is to provide an electronic device, and the embodiments of the present application provide the following technical solutions:

[0004] The present application provides an electronic device, comprising: a carrier, the carrier having a first frame and a second frame arranged to intersect each other, the first frame being used to carry a first board, and the second frame being used to carry a second board;

[0005] a driving member connected to the first frame, and used to connect to the first board to drive the first board to move relative to the second board;

[0006] The driving member is in a first relative position, and the first board and the second board are in a plug-in state;

[0007] The driving member is in a second relative position, and the first board and the second board are in a non-mated state.

[0008] In some modified embodiments of the present application, the first end of the driving member is connected to the first frame through a rotating member, so that the driving member can rotate relative to the first frame to be in the first relative position or the second relative position;

[0009] The first frame is provided with a first limiting member, and the first limiting member is located on the side where the first end of the driving member is located;

[0010] The first frame is provided with a second limiting member, and the second limiting member is located on a side of the driving member where the second end opposite to the first end is located.

[0011] In some modified embodiments of the present application, the driving member is a plate-shaped structure, and its thickness direction is perpendicular to the first frame;

[0012] The first end of the driving member is connected to the rotating member, and a height of the first end relative to the first frame is smaller than a height of a second end of the driving member opposite to the first end relative to the first frame.

[0013] In some modified embodiments of the present application, a driving slot is provided on a side of the driving member facing the second frame body, and the driving slot is used to connect to a driving portion that drives the first board to drive the first board to move relative to the second board.

[0014] In some modified embodiments of the present application, the driving member is provided with a positioning member, the first frame has a first positioning hole and a second positioning hole adapted to the positioning member, and the first positioning hole and the second positioning hole are switched back and forth during the rotation of the driving member;

[0015] When the positioning member is located in the first positioning hole, the driving member is in a first relative position, and the first board and the second board are in a plug-in state;

[0016] When the positioning member is located in the second positioning hole, the driving member is in a second relative position, and the first board and the second board are in a non-mated state.

[0017] In some modified embodiments of the present application, the end of the positioning member facing away from the driving member has a neck portion, and the diameter of the neck portion gradually decreases.

[0018] In some modified embodiments of the present application, the first frame is provided with a plurality of positioning posts, the positioning posts being adapted to connect the first board to the positioning slots corresponding to the positioning posts, so that the first board is driven by the driving member to move relative to the second board in the first direction;

[0019] Wherein, the first direction is parallel to the first frame.

[0020] In some modified embodiments of the present application, the positioning column includes a first column segment and a second column segment that are axially connected to each other, wherein the second column segment is located on a side close to the first frame and has a diameter smaller than that of the first column segment;

[0021] The end of the positioning slot close to the second board has a hole portion adapted to the diameter of the first column segment, and the width of the remaining portion of the positioning slot in the second direction is adapted to the diameter of the second column segment;

[0022] The second direction is perpendicular to the first direction and parallel to the first frame.

[0023] In some modified embodiments of the present application, the positioning column includes the first column segment, the second column segment and the third column segment connected in sequence in the axial direction, and the diameter of the third column segment is larger than the diameter of the first column segment, and is used to support the first board.

[0024] In some modified embodiments of the present application, it also includes: a box body, the box body is provided with a connecting member, the supporting member is provided with a connecting hole corresponding to the connecting member, the connecting hole is adapted to be connected with the connecting member so that the supporting member and the driving member are both located in the box body. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] The above and other objects, features and advantages of the exemplary embodiments of the present application will become readily understood by reading the detailed description below with reference to the accompanying drawings. In the accompanying drawings, several embodiments of the present application are shown in an exemplary and non-limiting manner, and the same or corresponding reference numerals represent the same or corresponding parts, wherein:

[0026] Figure 1 The following schematically shows the structure of an electronic device according to an embodiment of the present application;

[0027] Figure 2 Schematically shows a structural diagram of an electronic device proposed in an embodiment of the present application from another angle;

[0028] Figure 3 The following schematically shows the structure of the electronic device proposed in the embodiment of the present application when the first board is not installed;

[0029] Figure 4 The following schematically shows a structural diagram of a driving component of an electronic device proposed in an embodiment of the present application;

[0030] Figure 5 Schematically shows a structural diagram of a driving component of an electronic device proposed in an embodiment of the present application from another angle;

[0031] Figure 6 The structure diagram of the first board of the electronic device proposed in the embodiment of the present application is schematically shown;

[0032] Figure 7 The structure diagram of the positioning column of the electronic device proposed in the embodiment of the present application is schematically shown;

[0033] Figure 8 A schematic diagram schematically shows a positional relationship between a driving member and a driving portion in an electronic device proposed in an embodiment of the present application;

[0034] Figure 9 Schematically shows another positional relationship diagram of the driving member and the driving portion in the electronic device proposed in an embodiment of the present application;

[0035] Figure 10 A schematic diagram schematically illustrates a positional relationship between a positioning post and a positioning slot in an electronic device according to an embodiment of the present application;

[0036] Figure 11 Schematically shows another positional relationship diagram of the positioning column and the positioning slot in the electronic device proposed in an embodiment of the present application;

[0037] Description of Figure Numbers:

[0038] 1. Carrying member; 11. First frame; 111. First stopper; 112. Second stopper; 113. First positioning hole; 114. Second positioning hole; 115. Positioning column; 1151. First column segment; 1152. Second column segment; 1153. Third column segment; 12. Second frame;

[0039] 2. Driving member; 2a. First end; 2b. Second end; 21. Driving slot; 22. Positioning member; 221. Neck section; 23. Plug / unplug connector;

[0040] 3. Rotating parts;

[0041] 4. First board; 41. Driving unit; 42. Positioning slot; 421. Hole;

[0042] 5. Second board;

[0043] 6. Connector. DETAILED DESCRIPTION

[0044] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.

[0045] It should be noted that, unless otherwise specified, the technical or scientific terms used in this application should have the common meanings understood by those skilled in the art to which this application belongs.

[0046] Example 1

[0047] Reference Attachment Figure 1 -Attached Figure 3, embodiment 1 of the present application proposes an electronic device, which includes: a carrier 1, the carrier 1 having a first frame 11 and a second frame 12 arranged to intersect, the first frame 11 being used to carry a first board 4, and the second frame 12 being used to carry a second board 5; and a driving member 2, connected to the first frame 11, used to connect the first board 4 to drive the first board 4 to move relative to the second board 5; the driving member 2 is in a first relative position, and the first board 4 and the second board 5 are in a plugged-in state; the driving member 2 is in a second relative position, and the first board 4 and the second board 5 are in a non-plugged-in state.

[0048] Specifically, the electronic device provided in this embodiment can be but is not limited to a server, and the interior of the electronic device includes: a carrier 1 and a pluggable first board 4 and a second board 5. The carrier 1 can be the shell structure of the electronic device, or it can be a bearing bracket inside the shell of the electronic device for installing and carrying the first board 4 and the second board 5. The carrier 1 includes a first frame 11 and a second frame 12, which are vertically arranged to form an "L"-shaped bracket structure. The first frame 11 and the second frame 12 can be but are not limited to plate structures. The first frame 11 is used to carry the first board 4, and the second frame 12 is used to carry the second board 5; the connection method of the first board 4 and the second board 5 is plug-in, specifically, they can be plugged in through a connector 6, and the plug-in force required for the plug-in between the two is large, requiring a certain plug-in space, but due to the layout of the internal wiring of the electronic device, the internal space is limited, that is, the operating space for plugging the first board 4 and the second board 5 is limited, which makes it difficult to apply force during operation and inconvenient to connect.

[0049] The following description will take the electronic device as a server, and the first board 4 and the second board 5 as an example. In order to solve the problem of difficulty in applying force during the plugging operation of the first board 4 and the second board 5, the technical solution adopted in this application is to provide a movable driving member 2 on the first frame 11. The movement here can be, but is not limited to, rotation. When the first board 4 and the second board 5 are plugged in, the driving member 2 can move relative to the first frame 11. At the same time, the driving member 2 can be connected to the first board 4 and move relative to the second board 5, so that the first board 4 and the second board 5 can be plugged in by the driving member 2. The board 5 is more labor-saving and convenient to plug in. Of course, the disassembly of the two can be achieved in the same way, that is, the reverse movement of the driving member 2 can be used to drive the first board 4 and the second board 5 to separate; during the installation process, the driving member 2 can be switched between the first relative position and the second relative position. When the driving member 2 is in the first relative position, the first board 4 and the second board 5 are in a plug-in state, and when the driving member 2 is switched from the first relative position to the second relative position, the first board 4 and the second board 5 are in a non-plug-in state, thus achieving convenient and labor-saving disassembly and assembly.

[0050] For further information, see the attached Figure 1 -Attached Figure 5 In a specific implementation, the first end 2a of the driving member 2 is connected to the first frame 11 through the rotating member 3, so that the driving member 2 can rotate relative to the first frame 11 to be in the first relative position or the second relative position.

[0051] Specifically, in order to realize the driving effect of the driving block on the movement of the first board 4 relative to the second board 5, in the technical solution adopted in the present application, the driving member 2 can be connected to the first frame 11 in a rotationally connected manner, specifically: the driving member 2 can be set as a structure extending along the second direction, and the first end 2a in the extension direction is connected to the first frame 11 through the rotating member 3, where the second direction is parallel to the first frame 11 and the second frame 12 respectively, and the rotating member 3 can be a rotating shaft, whose axial direction is perpendicular to the first frame 11. Such a design enables the driving member 2 to rotate relative to the first frame 11, and at least in the first relative direction. During operation, the second end 2b of the driving member 2, which is opposite to the first end 2a, can be used for hand-holding, and the portion of the driving member 2 between the first end 2a and the second end 2b can be used for connection with the first board 4. The connection here is a non-fixed connection, and while the driving member 2 drives the first board 4 to move relative to the second board 5, the driving member 2 and the first board 4 also generate relative movement. By driving the first board 4 while the driving member 2 rotates relative to the first frame 11, a lever effect can be formed to shorten the insertion distance between the first board 4 and the second board 5, and it can be more labor-saving.

[0052] Further, in order to limit the range of motion of the driving member 2, refer to the attached Figure 3 A first limiting member 111 can be provided on the first frame body 11, and the first limiting member 111 can be provided on the side where the first end 2a of the driving member 2 is located; a second limiting member 112 can also be provided on the first frame body 11, and the second limiting member 112 can be provided on the side where the second end 2b of the driving member 2 is located, which is opposite to the first end 2a; the first limiting member 111 and the second limiting member 112 can respectively play the role of limiting the rotation angle of the driving member 2, the first limiting member 111 can be used to limit the driving member 2 to the extreme rotation position of the side away from the second board 5, and the second limiting member 112 can be used to limit the driving member 2 to the extreme rotation position of the side away from the second board 5 The limit rotation position of one side of the second board 5 is rotated. When the driving member 2 abuts against the second limiting member 112, it can be just in the first relative position. When the driving member 2 abuts against the first limiting member 111, it can be just in the second relative position. The first limiting member 111 and the second limiting member 112 can be set to structures of the same shape, or can also be set to structures of different shapes. Taking the first limiting member 111 and the second limiting member 112 as structures of the same shape as an example, the first limiting member 111 and the second limiting member 112 can be set to a columnar structure or a block structure or a structure of other shapes added to the first frame 11, or as shown in the attached Figure 3 As shown, the first limiting member 111 and the second limiting member 112 can also be configured as a structure formed by bending the first frame body 11 itself and protruding relative to the main body of the first frame body 11 .

[0053] For further information, see the attached Figure 1 and attached Figure 3 In a specific implementation, the driving member 2 is a plate-shaped structure, and its thickness direction is perpendicular to the first frame 11; the first end 2a of the driving member 2 is connected to the rotating member 3, and the height of the first end 2a compared to the first frame 11 is less than the height of the second end 2b of the driving member 2 opposite to the first end 2a compared to the first frame 11.

[0054] Specifically, in order to further reduce the space occupied by the driver 2 and adapt to the limited space inside the electronic device, in the technical solution adopted in this application, the driver 2 can be set as a plate structure, and its thickness direction is perpendicular to the first frame 11, which can greatly reduce the space occupied by the driver 2; for ease of operation, the height distance between the first end 2a of the driver 2 and the first frame 11 is set to be lower than the height distance between its second end 2b and the first frame 11, so that sufficient hand-holding space can be reserved between the second end 2b of the driver 2, that is, the hand-holding part, and the first frame 11, which can facilitate operation and adjustment of the driver 2.

[0055] For further information, see the attached Figure 1 , Attachment Figure 3 -Attached Figure 5 And attached Figure 8 and attached Figure 9 In a specific implementation, a driving slot 21 is provided on the side of the driving member 2 facing the second frame 12, and the driving slot 21 is used to connect the driving part 41 of the first board 4 to drive the first board 4 to move relative to the second board 5.

[0056] Specifically, in order to realize the connection between the driving member 2 and the first board 4 and drive the first board 4, in the technical solution adopted by the present application, a driving slot 21 is provided on the side of the driving member 2 facing the second frame 12, and the opening direction of the driving slot 21 can be toward the side away from the first end 2a of the driving member 2, and a driving portion 41 is provided on the first board 4. When the first board 4 is placed on the first frame 11, the driving portion 41 is located at the opening of the driving slot 21, as shown in the attached figure. Figure 8 As shown, the position of the driving member 2 at this time can be the second relative position. In the process of the driving member 2 gradually rotating toward the side close to the second board 5, the driving member 2 can gradually drive the first board 4 to move toward the second board 5 through the overlapping relationship between the driving groove 21 and the driving portion 41, until the driving member 2 is in the first relative position, the first board 4 and the second board 5 are in a plug-in state, and the driving member reaches and abuts against the inner edge of the driving groove 31, as shown in the attached figure. Figure 9 shown.

[0057] Among them, the driving component 2 on the first board 4 can be a screw structure installed on the first board 4. During the cooperation between the driving part 41 and the driving slot 21, the rod of the screw structure overlaps and cooperates with the driving slot 21 and moves under the drive of the driving slot 21.

[0058] For further information, see the attached Figure 1 -Attached Figure 5 In a specific implementation, the driving member 2 is provided with a positioning member 22, and the first frame 11 has a first positioning hole 113 and a second positioning hole 114 adapted to the positioning member 22, and switches back and forth between the first positioning hole 113 and the second positioning hole 114 during the rotation of the driving member 2; when the positioning member 22 is located in the first positioning hole 113, the driving member 2 is in a first relative position, and the first board card 4 and the second board card 5 are in a plug-in state; when the positioning member 22 is located in the second positioning hole 114, the driving member 2 is in a second relative position, and the first board card 4 and the second board card 5 are in a non-plug-in state.

[0059] Specifically, in order to achieve reliable positioning of the driving member 2 when it is in the first relative position and the second relative position, in the technical solution adopted by the present application, a positioning member 22 can be provided on the driving member 2, and the positioning member 22 can be a protruding structure protruding toward the side where the first frame body 11 is located, and a first positioning hole 113 and a second positioning hole 114 adapted to the positioning member 22 are correspondingly provided on the first frame body 11. The first positioning hole 113 and the second positioning hole 114 can be through holes. Taking the cross-sectional shape of the positioning member 22 as an example, the first positioning hole 113 and the second positioning hole 114 are circular holes, and the apertures of the two are adapted to the outer diameter of the positioning member 22; the first positioning hole 113 and the second positioning hole 114 are for the driving member 2 to rotate relative to the first frame body 11 During the process, the positioning member 22 passes through two positions. When the driving member 2 rotates relative to the first frame body 11 until the positioning member 22 is located in the first positioning hole 113, the driving member 2 is in the first relative position, and the first board 4 and the second board 5 are in an inserted state. Through the cooperation of the positioning member 22 and the first positioning hole 113, the current position of the driving member 2 can be maintained to a certain extent, which plays a positioning role; when the driving member 2 rotates relative to the first frame body 11 until the positioning member 22 is located in the second positioning hole 114, the driving member 2 is in the second relative position, and the first board 4 and the second board 5 are in a non-inserted state. Similarly, through the cooperation of the positioning member 22 and the second positioning hole 114, a positioning role can be played, which limits the movement of the driving member 2 to a certain extent.

[0060] Further, in order to facilitate manual switching of the position of the driving member 2 so as to switch it between the first relative position and the second relative position, refer to the attached Figure 5The end of the positioning member 22 away from the driving member 2 has a constricted portion 221, and the diameter of the constricted portion 221 gradually decreases, so that when the position of the driving member 2 is manually switched, the positioning member 22 is disengaged from the first positioning hole 113 or the second positioning hole 114, which can achieve convenient and labor-saving operation.

[0061] Among them, when the first positioning hole 113 and the second positioning hole 114, the first limiting member 111 and the second limiting member 112, and the driving slot 21 are set at the same time, a corresponding relationship can be set between the positioning holes, the limiting members and the driving slot 21, specifically: when the driving member 2 is in the second relative position, the positioning member 22 is located in the second positioning hole 114, the driving member 2 abuts against the first limiting member 111, and the driving part 41 is located at the opening of the driving slot 21; and when the driving member 2 is in the first relative position, the positioning member 22 is located in the first positioning hole 113, the driving member 2 abuts against the second limiting member 112, and the driving part 41 reaches and abuts against the inner edge of the driving slot 31.

[0062] In addition, in order to adjust the driving member 2 more labor-saving, refer to the attached Figure 1 -Attached Figure 5 The positioning member 22 can also be set as a structure that passes through the driving member 2 and can move relative to the driving member 2. The positioning member 22 is located at the end of the driving member 2 on the side away from the first frame 11 and is provided with a plug-in head 23, which can be used to lift or press down the positioning member 22, so that the positioning member 22 can be more conveniently matched or separated with the first positioning hole 113 and the second positioning hole 114.

[0063] For further information, see the attached Figure 1 -Attached Figure 3 In a specific implementation, the first frame 11 is provided with a plurality of positioning posts 115, and the positioning posts 115 are used to adapt and connect the first board 4 to the positioning slots 42 corresponding to the positioning posts 115, so that the first board 4 is driven by the driving member 2 along the first direction to move relative to the second board 5; wherein, the first direction is parallel to the first frame 11.

[0064] Specifically, in order to improve the accuracy of the insertion of the first board 4 and the second board 5, in the technical solution adopted in the present application, a plurality of positioning posts 115 are provided on the first frame 11, and the extension direction of the positioning posts 115 is perpendicular to the first frame 11, and a plurality of positioning slots 42 are provided on the first board 4. The position of the positioning slots 42 can be, but is not limited to, located at the outer peripheral edge of the first board 4, and the number of the positioning posts 115 and the positioning slots 42 is equal; taking the first board 4 and the second board 5 in the insertion state as an example, the extension direction of the positioning slots 42 is the first direction, where the first direction is parallel to the first frame 11 and perpendicular to the second frame 12, and the dimensions of the positioning posts 115 and the positioning slots 42 in the second direction can be adapted to each other. In this way, when the driving member 2 drives the first board 4 to move relative to the second board 5 to the insertion state, the movement trajectory of the first board 4 can be limited by the cooperation of the positioning posts 115 and the positioning slots 42, so that the first board 4 can be accurately inserted into the second board 5, thereby improving the efficiency and accuracy of the insertion between the two.

[0065] Among them, refer to the attached Figure 1 , Attachment Figure 3 and attached Figure 6 And attached Figure 10 and attached Figure 11 The positioning column 115 includes a first column segment 1151 and a second column segment 1152 that are connected to each other in the axial direction. The two segments are coaxially arranged. The second column segment 1152 is located on the side close to the first frame 11 and its diameter is smaller than the diameter of the first column segment 1151; correspondingly, the positioning slot 42 can be provided with a hole portion 421 that is adapted to the diameter of the first column segment 1151 at one end close to the second plate 5, and the width of the remaining part of the positioning slot 42 in the second direction is adapted to the diameter of the second column segment 1152, that is, the positioning slot 42 forms a gourd-shaped hole. When the first plate 4 is matched with the positioning column 115, as shown in the attached Figure 10 As shown, the hole portion 421 of the first board 4 passes through the first column segment 1151, which corresponds to the driving member 2 being in the second relative position. In the process of the driving member 2 driving the first board 4 to move relative to the second board 5 to the plugged state, the second column segment 1152 cooperates with the positioning slot 42 to limit the moving trajectory of the first board 4, and the first column segment 1151 can also limit the position of the first board 4 in the direction perpendicular to the first board 4. When the driving member 2 is in the first relative position, as shown in the attached Figure 11 As shown, the positioning post 115 is located at the end of the positioning slot 42 opposite to the hole 421 .

[0066] For further information, see the attached Figure 7In a specific implementation, the positioning column 115 can also be set as a three-section structure, specifically including a first column section 1151, a second column section 1152 and a third column section 1153 which are connected in sequence in the axial direction. The three sections are coaxially arranged, and the diameter of the third column section 1153 is larger than the diameter of the first column section 1151. After the positioning slot 42 of the first board 4 passes through the first column section 1151, the third column section 1153 can be used to support the first board 4, so that the first board 4 is more stable and the insertion with the second board 5 is more precise.

[0067] In which, referring to Figure 3, except for the part where the second end 2b of the driving member 2 has a large height difference with the first frame body 11, the rest of the part corresponds to the first board 4, and the height of the rest of the part can be lower than the height of the third column supporting the first board 4, which can facilitate the cooperation between the driving member 2 and the driving part 41 of the first board 4.

[0068] Furthermore, in a specific implementation, the electronic device provided in this embodiment also includes: a box body (not shown in the figure), the box body is provided with a connecting member, the supporting member 1 is provided with a connecting hole corresponding to the connecting member, and the connecting hole is adapted to be connected with the connecting member so that the supporting member 1 and the driving member 2 are both located in the box body.

[0069] Specifically, in the technical solution adopted in the present application, the box body can be the shell structure of the electronic device, and the carrier 1 is the frame structure inside the box body. In order to fix the carrier 1 in the box body, multiple connecting parts can be arranged in the box body. The connecting parts can be arranged on the side walls of the box body, and the connecting parts can be but not limited to screws and other threaded parts, and corresponding connecting holes corresponding to and adapted to the connecting parts are opened on the carrier 1. By connecting the connecting parts with the corresponding connecting holes, the carrier 1 and the driving part 2 on the carrier 1 can be stably set in the box body; and the structural designs of the carrier 1 and the driving part 2 both occupy a small space and can adapt to the internal space layout of the box body.

[0070] Furthermore, in order to improve the convenience and accuracy of positioning the carrier 1 in the box, a track structure can be set on the box or the carrier 1, and a sliding structure corresponding to the track can be set on the carrier 1 or the box. During installation, the sliding structure cooperates with the track structure and slides within the track structure, so as to guide the carrier 1 to move to the assembly position. After moving to the assembly position, the connecting hole of the carrier corresponds to the position of the connecting part, and the connection can be achieved to position the carrier 1; wherein, the track structure can be a through groove, groove, etc. opened on the box or the carrier 1, and no specific limitation is made here.

[0071] It should be noted that, in the description of this specification, the terms "upper", "lower", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application; the terms "connect", "install", "fixed", etc. should be understood in a broad sense, for example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to the specific circumstances.

[0072] Throughout this specification, terms such as "one embodiment," "some embodiments," and "specific embodiments" mean that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present application. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

[0073] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of this application. Therefore, the scope of protection of this application should be based on the scope of protection of the claims.

Claims

1. An electronic device, characterized in that: include: A carrier, the carrier having a first frame and a second frame arranged to intersect each other, the first frame being used to carry a first board, and the second frame being used to carry a second board; a driving member connected to the first frame, and used to connect to the first board to drive the first board to move relative to the second board; The driving member is in a first relative position, and the first board and the second board are in a plug-in state; The driving member is in a second relative position, and the first board and the second board are in a non-mated state.

2. The electronic device according to claim 1, wherein The first end of the driving member is connected to the first frame through a rotating member, so that the driving member can rotate relative to the first frame to be in the first relative position or the second relative position; The first frame is provided with a first limiting member, and the first limiting member is located on the side where the first end of the driving member is located; The first frame is provided with a second limiting member, and the second limiting member is located on a side of the driving member where the second end opposite to the first end is located.

3. The electronic device according to claim 2, wherein: The driving member is a plate-shaped structure, and its thickness direction is perpendicular to the first frame; The first end of the driving member is connected to the rotating member, and a height of the first end relative to the first frame is smaller than a height of a second end of the driving member opposite to the first end relative to the first frame.

4. The electronic device according to claim 1 or 2, characterized in that: A driving slot is provided on a side of the driving member facing the second frame body, and the driving slot is used to connect to a driving portion that drives the first board card to drive the first board card to move relative to the second board card.

5. The electronic device according to claim 1, wherein The driving member is provided with a positioning member, the first frame has a first positioning hole and a second positioning hole adapted to the positioning member, and switches back and forth between the first positioning hole and the second positioning hole during the rotation of the driving member; When the positioning member is located in the first positioning hole, the driving member is in a first relative position, and the first board and the second board are in a plug-in state; When the positioning member is located in the second positioning hole, the driving member is in a second relative position, and the first board and the second board are in a non-mated state.

6. The electronic device according to claim 5, characterized in that The end of the positioning member facing away from the driving member has a constricted portion, and the diameter of the constricted portion gradually decreases.

7. The electronic device according to claim 1, wherein: The first frame is provided with a plurality of positioning posts, and the positioning posts are adapted to connect the first board and the positioning slots corresponding to the positioning posts, so that the first board is driven by the driving member to move relative to the second board in the first direction; Wherein, the first direction is parallel to the first frame.

8. The electronic device according to claim 7, wherein: The positioning column includes a first column segment and a second column segment connected to each other in the axial direction, wherein the second column segment is located on a side close to the first frame and has a diameter smaller than that of the first column segment; The end of the positioning slot close to the second board has a hole portion adapted to the diameter of the first column segment, and the width of the remaining portion of the positioning slot in the second direction is adapted to the diameter of the second column segment; The second direction is perpendicular to the first direction and parallel to the first frame.

9. The electronic device according to claim 8, wherein: The positioning column includes the first column segment, the second column segment and the third column segment which are connected in sequence in the axial direction. The diameter of the third column segment is larger than that of the first column segment and is used to support the first board.

10. The electronic device according to claim 1, wherein Also includes: The box body is provided with a connecting piece, the bearing piece is provided with a connecting hole corresponding to the connecting piece, and the connecting hole is adapted to be connected with the connecting piece so that the bearing piece and the driving piece are both located in the box body.