Electronic device, extraction method of its removable module and its slide buckle
By designing a sliding buckle with a foldable handle in the electronic device, the problem of the side-inserted module being difficult to remove is solved, enabling convenient extraction and fixing of the module and ensuring the waterproof performance of the door cover.
Patent Information
- Application Number
- CN202111458233.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-02
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2041-12-02
AI Technical Summary
The side-insertion installation method for replacing modules in existing electronic devices is not easy to remove, and the fabric pull strap is easily damaged or detached, causing the door cover to fail to waterproof.
Design an electronic device comprising a replacement module and a sliding latch. The sliding latch is equipped with a foldable handle. Through the docking of a first slide rail and a second slide rail, combined with the design of the latch body and the handle, the replacement module can be easily removed and fixed.
It enables convenient removal and fixing of replacement modules, avoids damage to the pull straps, and ensures the waterproof performance of the door cover.
Smart Images

Figure CN116225155B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electronic devices, in particular to an electronic device, a method for extracting a replaceable module of the electronic device, and a slide buckle of the electronic device. BACKGROUND
[0002] Generally, electronic devices such as notebook computers or tablet computers are mostly flat plate-shaped, and a replaceable module is usually arranged on the electronic device. The replaceable module can be a battery, a hard disk or other functional module. The replaceable module is usually flat, and there are two common installation methods. One is embedded in the bottom surface of the electronic device, and the other is inserted into the electronic device from the side of the electronic device. The installation method of inserting from the side is not easy to extract the replaceable module, so a pull strap is arranged on the replaceable module for a user to pull. The pull strap is generally made of cloth and is fixed at one end of the replaceable module. The cloth pull strap is easy to break or fall off, and its shape is not fixed and is not easy to store and fix. If it is clamped into the opening door cover, it can also cause the door cover to lose waterproofing.
[0003] Therefore, the present application is developed to solve the above problems. SUMMARY
[0004] The present application provides an electronic device, which comprises a replaceable module and a slide buckle, and a foldable pull handle is formed on the slide buckle.
[0005] The present application provides an electronic device, which comprises a replaceable module and a slide buckle. One side of the replaceable module is provided with a first slide rail. The slide buckle comprises a body, a second slide rail is arranged on the body and is connected to the first slide rail, a latch body is arranged on the body, a pull handle extends from the body, and a groove is transversely arranged at the connection between the body and the pull handle. The slide buckle can be elastically bent along the groove, so that the pull handle can rotate relative to the body along the groove and be attached to or stand up on the surface of the replaceable module.
[0006] The electronic device of the present application comprises a buckle, and a buckle seat is arranged on the replaceable module. When the pull handle is attached to the surface of the replaceable module, the buckle buckles the buckle seat. The slide buckle is provided with a pair of travel stop blocks, and a positioning tenon corresponding to the pair of travel stop blocks is arranged on the replaceable module. The slide buckle can move relative to the replaceable module along the first slide rail, and at the same time, the positioning tenon can move between the pair of travel stop blocks to limit the movable stroke of the slide buckle.
[0007] The electronic device of the present application further comprises a body, and the body is provided with a container groove. The replaceable module is accommodated in the container groove, and the slide buckle can move relative to the replaceable module along the first slide rail so that the latch body is inserted into the body.
[0008] The present application also provides a method for extracting a replaceable module, comprising the steps of: providing a replaceable module, and a first slide rail is arranged on one side of the replaceable module; providing a slide buckle, the slide buckle comprises a main body, a second slide rail is arranged on the main body and is connected to the first slide rail, a latch body is arranged on the main body, a pull handle extends from the main body, and a groove is arranged across the connection between the main body and the pull handle, the slide buckle can be elastically bent along the groove so that the pull handle can rotate along the groove relative to the main body; and the second slide rail is connected to the first slide rail so that the pull handle can rotate along the groove and be attached to or stand on the surface of the replaceable module.
[0009] In the method for extracting the replaceable module of the present application, the replaceable module is accommodated in a machine body, and the slide buckle can move along the first slide rail relative to the replaceable module so that the latch body is inserted into the machine body.
[0010] In the method for extracting the replaceable module of the present application, the replaceable module is accommodated in a machine body, and the method comprises the step of standing the pull handle on the surface of the replaceable module and pulling the pull handle to move the replaceable module out of the machine body.
[0011] The method for extracting the replaceable module of the present application further comprises the steps of standing the pull handle on the surface of the replaceable module and pulling the pull handle along the longitudinal direction of the pull handle to drag the replaceable module.
[0012] The method for extracting the replaceable module of the present application further comprises the steps of standing the pull handle on the surface of the replaceable module and pulling the pull handle along the direction parallel to the first slide rail to push the slide buckle along the first slide rail.
[0013] The method for extracting the replaceable module of the present application, wherein the slide buckle comprises a fastener, a fastening seat is arranged on the replaceable module, and the method further comprises the steps of attaching the pull handle to the surface of the replaceable module and fastening the fastener to the fastening seat to fix the pull handle on the surface of the replaceable module.
[0014] The method for extracting the replaceable module of the present application, wherein the slide buckle is provided with a pair of travel stop blocks, the replaceable module is provided with a positioning tenon corresponding to the travel stop blocks, and the method further comprises the steps of pushing the slide buckle along the first slide rail after the second slide rail is connected to the first slide rail so that the positioning tenon moves into the travel stop blocks to limit the movable stroke of the slide buckle.
[0015] The method for extracting the replaceable module of the present application, wherein one of the pair of travel stop blocks is a protruding rib, and the positioning tenon moves into the travel stop blocks by passing the protruding rib.
[0016] The present application also provides an electronic device, comprising a replaceable module and a slide buckle, the replaceable module is provided with a first slide rail; the slide buckle comprises a main body, the main body extends a latch body and is provided with a groove to form a pull handle, and a second slide rail is arranged on the main body corresponding to the first slide rail, wherein the pull handle can be elastically bent along the groove to be bent relative to the main body and away from the replaceable module.
[0017] The electronic device of the present application further comprises a body, the body is provided with a receiving groove and a latch groove, the direction of inserting the removable module into the receiving groove is perpendicular to the direction of inserting the latch into the latch groove. The receiving groove is provided with an opening, the removable module is inserted into the receiving groove through the opening, the other side of the body is provided with a positioning latch, the side of the opening is provided with a corresponding channel, the positioning latch interferes with the inner edge of the opening, the channel is communicated with the opening, the extending direction of the channel is parallel to the direction of inserting the removable module into the receiving groove, when the positioning latch is aligned with the channel, the positioning latch can be inserted into the channel to make the removable module completely inserted into the receiving groove. The body is provided with an auxiliary latch groove communicated with the channel, the auxiliary latch groove extends parallel to the inner edge of the opening, after the removable module is inserted into the receiving groove, the slide buckle moving along the first slide rail can latch the latch and the positioning latch into the latch groove and the auxiliary latch groove respectively.
[0018] The present application further provides a slide buckle, which comprises a body, the body extends a latch and is provided with a groove to form a pull handle, the pull handle can be elastically bent along the groove to be deflected relative to the body.
[0019] The slide buckle of the present application further comprises a pair of travel stops. One of the travel stops is a protruding rib. The pull handle is provided with a fastener.
[0020] In summary, the electronic device of the present application is provided with a removable module and a slide buckle with a foldable pull handle. Therefore, the pull handle can be bent and turned up on the operation surface of the removable module to be pulled out of the electronic device by the user. The pull handle belongs to the slide buckle and is easy to store and fix. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a perspective exploded view of the removable module and the slide buckle of the electronic device provided by the present application;
[0022] Figure 2 is a perspective view of the slide buckle of the electronic device provided by the present application;
[0023] Figure 3 is a perspective view of the removable module and the slide buckle of the electronic device provided by the present application;
[0024] Figure 4 is Figure 3 is a sectional view along the 4-4 sectional line in FIG. 4;
[0025] Figure 5 is Figure 3 is a sectional view along the 5-5 sectional line in FIG. 5;
[0026] Figure 6 and Figure 7 is an installation view of the removable module of the electronic device provided by the present application;
[0027] Figure 8 is Figure 7 is a sectional view along the 8-8 sectional line in FIG. 8;
[0028] Figure 9 is Figure 7 a sectional view along the section line 9-9 in
[0029] Figure 10 is the schematic diagram of the locking of the electronic device provided by the application;
[0030] Figure 11 is Figure 10 a sectional view along the section line 11-11 in
[0031] Figure 12 is Figure 10 a sectional view along the section line 12-12 in
[0032] Figure 13 is the schematic diagram of the use state of the pull handle of the slide buckle of the electronic device provided by the application;
[0033] Figure 14 is the step flow chart of the extraction method of the removable module provided by the application.
[0034] in the figure:
[0035] 10, electronic device;
[0036] 100, removable module;
[0037] 110, operation surface;
[0038] 120, first slide rail;
[0039] 121, first positioning part;
[0040] 131, buckle seat;
[0041] 132, first buckling part;
[0042] 140, positioning tenon;
[0043] 200, slide buckle;
[0044] 201, groove;
[0045] 210, body;
[0046] 211, latch body;
[0047] 212, positioning latch;
[0048] 220, second slide rail;
[0049] 221, second positioning part;
[0050] 230, pull handle;
[0051] 231, buckle;
[0052] 232, second buckle part;
[0053] 240, stroke stopper;
[0054] 241, convex rib;
[0055] 300, machine body;
[0056] 310, accommodating groove;
[0057] 311, opening;
[0058] 312, passage;
[0059] 320, latch groove;
[0060] 321, auxiliary latch groove. DETAILED DESCRIPTION
[0061] Embodiments of the present application are described in detail below with reference to the accompanying drawings, in which like reference numerals refer to like elements or elements having the same function throughout the description of the drawings. The embodiments described below are examples and are intended to explain the present application, and should not be understood as limiting the present application.
[0062] In the description of the present application, unless explicitly defined and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0063] In the present application, unless explicitly defined and limited, the first feature "on" or "under" the second feature can include that the first and second features are in direct contact, or that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "above" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the first feature is higher than the second feature in horizontal height. The first feature "under", "below" and "below" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the first feature is lower than the second feature in horizontal height.
[0064] The technical solutions of the present application are further illustrated below in conjunction with the drawings and through specific embodiments.
[0065] Reference Figures 1 to 3The electronic device 10 includes a replaceable module 100 and a slide buckle 200. The electronic device 10 also includes a body 300.
[0066] In the embodiment, the body 300 is a flat rectangular body. The body 300 has a cavity 310 formed by an inner wall of the body 300. An opening 311 is formed on one side of the body 300 and communicates with the cavity 310. A latch groove 320 is formed on an inner edge of the opening 311. A door cover (not shown) can be provided on the opening 311 to close the cavity 310.
[0067] The replaceable module 100 has a shape corresponding to the cavity 310 so that the replaceable module 100 can be inserted into the cavity 310 through the opening 311. In the embodiment, the replaceable module 100 is a battery which is a flat rectangular body. However, the present application is not limited thereto. The replaceable module 100 has a first slide rail 120 on one side thereof. Specifically, one side of the replaceable module 100 forms an operation surface 110. When the replaceable module 100 is accommodated in the cavity 310, the operation surface 110 is located in the opening 311 and the first slide rail 120 is arranged on or along the operation surface 110.
[0068] The slide buckle 200 includes a body 210 having a second slide rail 220 arranged thereon and abutting against the first slide rail 120 to be movable on the operation surface 110 of the replaceable module 100. The body 210 extends a latch body 211 and a pull handle 230. The latch body 211 is arranged towards the latch groove 320. When the replaceable module 100 is accommodated in the cavity 310, the slide buckle 200 can be moved along the first slide rail 120 relative to the replaceable module 100 so that the latch body 211 is inserted into the latch groove 320 of the body 300. Moreover, the replaceable module 100 is inserted into the cavity 310 in a direction perpendicular to the direction in which the latch body 211 is inserted into the latch groove 320, thereby locking the replaceable module 100 in the cavity 310 to prevent the replaceable module 100 from falling out.
[0069] In the embodiment, the latch body 211 and the pull handle 230 extend in opposite directions. However, the present application is not limited thereto. A groove 201 is formed on a transverse direction of the body 210 at a joint between the body 210 and the pull handle 230. The pull handle 230 can be elastically bent along the groove 201 to be deflected relative to the body 210 and away from the replaceable module 100. That is, the slide buckle 200 can be elastically bent along the groove 201 so that the pull handle 230 can be rotated relative to the body 210 along the groove 201 to be attached to or stand up on the operation surface 110 of the replaceable module 100.
[0070] The slide buckle 200 comprises a buckle 231, and the dismounting module 100 is correspondingly provided with a buckle receiving seat 131. Specifically, the buckle 231 is arranged on the pull handle 230, and the buckle receiving seat 131 is arranged on the operation surface 110. When the pull handle 230 is attached to the operation surface 110 of the dismounting module 100, the buckle 231 buckles the buckle receiving seat 131 to fix the pull handle 230. In the embodiment, the buckle 231 is a column, and the side surface of the column is provided with a second buckling part 232 in the shape of a hook. The buckle receiving seat 131 is a long slot, and the extending direction of the buckle receiving seat 131 is parallel to the first slide rail 120. The inner side of the buckle receiving seat 131 is provided with a first buckling part 132 in the shape of a slot, and the extending direction of the first buckling part 132 is parallel to the first slide rail 120. When the buckle 231 buckles the buckle receiving seat 131, the second buckling part 232 buckles into the first buckling part 132 to fix the buckle 231 in the buckle receiving seat 131. Moreover, the buckle 231 can slide in the buckle receiving seat 131 along the longitudinal direction of the buckle receiving seat 131, and the second buckling part 232 can also slide in the first buckling part 132 along the longitudinal direction of the buckle receiving seat 131. Therefore, when the buckle 231 buckles the buckle receiving seat 131, the slide buckle 200 can still move relative to the dismounting module 100 along the first slide rail 120. Furthermore, when the second slide rail 220 is butted against the first slide rail 120, the pull handle 230 can be pulled up to avoid the buckle 231 interfering with the buckle receiving seat 131 to hinder the butt joint.
[0071] The slide buckle 200 is provided with a pair of travel stop blocks 240, and the operation surface 110 of the dismounting module 100 is correspondingly provided with a positioning tenon 140 corresponding to the pair of travel stop blocks 240. When the slide buckle 200 moves relative to the dismounting module 100 along the first slide rail 120, the positioning tenon 140 can move between the pair of travel stop blocks 240 to limit the movable stroke of the slide buckle 200. In the embodiment, one of the travel stop blocks 240 is a convex rib 241, but the present application is not limited thereto. Specifically, when the second slide rail 220 is butted against the first slide rail 120, the travel stop block 240 that first contacts the positioning tenon 140 is the convex rib 241, and the other is a stop wall. Therefore, the positioning tenon 140 can cross the convex rib 241 to move into between the two travel stop blocks 240. The two travel stop blocks 240 stop the positioning tenon 140 and one end of the first slide rail 120 respectively to limit the movable stroke of the slide buckle 200.
[0072] As Figure 1 , Figure 8 and Figure 11As shown, in the present embodiment, the first slide rail 120 is provided with at least one first positioning part 121, and the opposite second slide rail 220 is correspondingly provided with at least one second positioning part 221. The first positioning part 121 and the second positioning part 221 are a mortise and tenon structure capable of being mutually engaged, one of the first positioning part 121 and the second positioning part 221 is a tenon, and the other is a mortise. At least one specific position in the moving stroke of the slide buckle 200 can be positioned by the mutual engagement of the first positioning part 121 and the second positioning part 221.
[0073] Referring to Figures 1 to 3 , Figures 6 to 8 and Figures 10 to 11 , the other side of the main body 210 can be provided with a positioning latch 212 protruding therefrom for assisting in locking and positioning, and the inner edge of the other side of the opening 311 of the accommodating groove 310 is provided with a corresponding auxiliary latch groove 321 extending parallel to the inner edge of the opening 311, and the auxiliary latch groove 321 and the opening 311 are connected in communication by a passage 312. The extension direction of the passage 312 is parallel to the direction of insertion of the replacement module 100 into the accommodating groove 310, and the positioning latch 212 protrudes from the replacement module 100 at any position in its moving stroke, so the positioning latch 212 interferes with the opening 311 when the replacement module 100 is inserted into the accommodating groove 310. As shown, Figures 6 to 8 when the replacement module 100 is inserted into the accommodating groove 310, the positioning latch 212 is aligned with the passage 312 to allow it to enter the passage 312, and the replacement module 100 can be completely inserted into the accommodating groove 310, otherwise the positioning latch 212 will interfere with the inner edge of the opening 311, preventing the replacement module 100 from being completely inserted into the accommodating groove 310. By interfering with the opening 311 by the positioning latch 212, damage to the electrical connector caused by the replacement module 100 being inserted into the accommodating groove 310 in the wrong direction can be avoided. As shown, Figures 10 to 11 after the replacement module 100 is inserted into the accommodating groove 310, moving the slide buckle 200 along the first slide rail 120 can further latch the latch body 211 and the positioning latch 212 into the latch groove 320 and the auxiliary latch groove 321, respectively, to prevent the replacement module 100 from being removed from the accommodating groove 310.
[0074] Referring to Figures 1 to 3 , Figures 6 to 7 and Figure 14 , the aforementioned extraction method of the replacement module 100 comprises the following steps:
[0075] First, in step a, a replacement module 100 is provided. As shown, Figure 1 one side of the replacement module 100 is provided with a first slide rail 120. Moreover, as shown, Figures 6 to 7 the replacement module 100 is accommodated in a machine body 300.
[0076] After step a, in step b, a slide buckle 200 is provided. As shown, Figure 2As shown, the slide buckle 200 comprises a body 210, a second slide rail 220 and a latch body 211 are disposed on the body 210, and a pull handle 230 extends from the body 210. A groove 201 is transversely disposed at the joint of the body 210 and the pull handle 230, and the slide buckle 200 can be elastically bent along the groove 201 so that the pull handle 230 can rotate relative to the body 210 along the groove 201. As shown Figure 1 As shown, the slide buckle 200 comprises a buckle 231, and a buckle seat 131 is correspondingly disposed on the dismounting and replacing module 100. The slide buckle 200 is provided with a pair of travel stop blocks 240, and the dismounting and replacing module 100 is provided with a positioning tongue 140 corresponding to the pair of travel stop blocks 240, and one of the pair of travel stop blocks 240 is a convex rib 241. As shown Figure 1 and Figure 3 As shown, the second slide rail 220 is connected to the first slide rail 120, and when the second slide rail 220 is connected to the first slide rail 120, the travel stop block 240 first contacting the positioning tongue 140 is the convex rib 241, and the other is a stop wall. This allows the positioning tongue 140 to move between the two travel stop blocks 240 across the convex rib 241.
[0077] As shown Figures 3 to 5 , after step b, in step c, the second slide rail 220 is connected to the first slide rail 120 so that the pull handle 230 can rotate along the groove 201 to be attached or erected on the operation surface 110 of the dismounting and replacing module 100. Moving the slide buckle 200 along the first slide rail 120 allows the positioning tongue 140 to move between the pair of travel stop blocks 240 to define the movable stroke of the slide buckle 200. The positioning tongue 140 moves between the pair of travel stop blocks 240 across the convex rib 241. As shown Figures 6 to 12 , the slide buckle 200 can move relative to the dismounting and replacing module 100 along the first slide rail 120 so that the latch body 211 is inserted into the body 300 to lock the dismounting and replacing module 100 in the body 300. The pull handle 230 is attached to the operation surface 110 of the dismounting and replacing module 100, and the buckle 231 is buckled to the buckle seat 131 to fix the pull handle 230 to the operation surface 110 of the dismounting and replacing module 100.
[0078] As shown Figures 6 to 9 and Figure 13 , in step d, the pull handle 230 is erected on the operation surface 110 of the dismounting and replacing module 100, and the pull handle 230 is pulled to move the dismounting and replacing module 100 out of the body 300. The pull handle 230 is erected on the operation surface 110 of the dismounting and replacing module 100, and the pull handle 230 is pulled along its longitudinal direction to drag the dismounting and replacing module 100.
[0079] Furthermore, the pull handle 230 can also be erected on the operation surface 110 of the dismounting and replacing module 100 for a user to pull the pull handle 230 in a direction parallel to the first slide rail 120 to move the slide buckle 200 along the first slide rail 120. In this embodiment, the latch body 211 and the pull handle 230 extend in opposite directions, and as shown Figure 13When the pull handle 230 is pulled, the slide buckle 200 is pulled to make the latch body 211 exit the latch groove 320 and further pull the replacement module 100 out of the body 300
[0080] In summary, the electronic device 10 of the present application is provided with the replacement module 100, and the slide buckle 200 of the replacement module 100 is provided with the foldable pull handle 230. Therefore, the pull handle 230 can be folded and erected on the operation surface 110 of the replacement module 100, so that the user can pull the replacement module 100 out of the electronic device 10. The pull handle 230 belongs to the slide buckle 200, and is easy to store and fix.
[0081] The above embodiments only illustrate the basic principles and characteristics of the present application, and the present application is not limited to the above embodiments. Various changes and modifications can be made without departing from the spirit and scope of the present application, and these changes and modifications all fall within the scope of the present application. The scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An electronic device, characterized by comprising: The electronic device comprises a dismounting module (100), one side of the dismounting module (100) is provided with a first sliding rail (120); a sliding buckle (200) comprises a body (210), the body (210) is provided with a second sliding rail (220) and the second sliding rail (220) is connected with the first sliding rail (120), the body (210) is provided with a latch body (211), the body (210) extends a pull handle (230) and a groove (201) is transversely arranged at the joint of the body (210) and the pull handle (230), wherein the sliding buckle (200) can be elastically bent along the groove (201) so that the pull handle (230) can rotate relative to the body (210) along the groove (201) to be attached or erected on the surface of the dismounting module (100), the electronic device further comprises a machine body (300), the machine body (300) is provided with a containing groove (310) and a latch groove (320), the direction of inserting the dismounting module (100) into the containing groove (310) is perpendicular to the direction of inserting the latch body (211) into the latch groove (320), wherein the containing groove (310) has an opening (311) and the dismounting module (100) is inserted into the containing groove (310) through the opening (311), the other side of the body (210) is provided with a positioning latch (212) and the side of the opening (311) is provided with a corresponding channel (312), the positioning latch (212) interferes with the inner edge of the opening (311), the channel (312) is connected with the opening (311) and the extension direction of the channel (312) is parallel to the direction of inserting the dismounting module (100) into the containing groove (310), when the positioning latch (212) is aligned with the channel (312), the positioning latch (212) can be inserted into the channel (312) so that the dismounting module (100) is completely inserted into the containing groove (310).
2. The electronic device according to claim 1, wherein the sliding buckle (200) comprises a buckle (231), the dismounting module (100) is provided with a buckle receiving seat (131), when the pull handle (230) is attached to the surface of the dismounting module (100), the buckle (231) buckles the buckle receiving seat (131).
3. The electronic device according to claim 1, wherein the sliding buckle (200) is provided with a pair of stroke stoppers (240), the dismounting module (100) is provided with a positioning tenon (140) corresponding to the pair of stroke stoppers (240), the sliding buckle (200) can move relative to the dismounting module (100) along the first sliding rail (120) and at the same time the positioning tenon (140) can move between the pair of stroke stoppers (240) to limit the movable stroke of the sliding buckle (200). 4. The electronic device of claim 1, wherein the slide buckle (200) is capable of moving along the first slide rail (120) relative to the detachable module (100) to insert the latch body (211) into the machine body (300).
5. A method of extracting a removable module, characterized by: The steps include: a) providing a detachable module (100), and one side of the detachable module (100) is provided with a first slide rail (120); b) providing a slide buckle (200), the slide buckle (200) includes a body (210), the body (210) is provided with a second slide rail (220) and the second slide rail (220) is connected to the first slide rail (120), the body (210) is provided with a latch body (211), the body (210) extends a pull handle (230), and a groove (201) is transversely arranged at the connection between the body (210) and the pull handle (230), the slide buckle (200) is capable of being elastically bent along the groove (201) to enable the pull handle (230) to rotate relative to the body (210) along the groove (201); c) connecting the second slide rail (220) to the first slide rail (120) to enable the pull handle (230) to rotate along the groove (201) to be attached to or stand up on the surface of the detachable module (100); wherein in step a, the detachable module (100) is accommodated in a machine body (300), and in step c, the slide buckle (200) is capable of moving along the first slide rail (120) relative to the detachable module (100) to insert the latch body (211) into the machine body (300), wherein the machine body (300) is provided with a receiving groove (310) and a latch groove (320), the direction in which the detachable module (100) is inserted into the receiving groove (310) is perpendicular to the direction in which the latch body (211) is inserted into the latch groove (320), wherein the receiving groove (310) has an opening (311) and the detachable module (100) is inserted into the receiving groove (310) through the opening (311), the other side of the body (210) is provided with a positioning latch (212) and one side of the opening (311) is provided with a corresponding passage (312), the positioning latch (212) interferes with the inner edge of the opening (311), the passage (312) is connected to the opening (311) and the extension direction of the passage (312) is parallel to the direction in which the detachable module (100) is inserted into the receiving groove (310), when the positioning latch (212) is aligned with the passage (312), the positioning latch (212) can be inserted into the passage (312) to completely insert the detachable module (100) into the receiving groove (310).
6. The extraction method of the detachable module of claim 5, wherein the steps include: d) standing up the pull handle (230) on the surface of the detachable module (100) and pulling the pull handle (230) to move the detachable module (100) out of the machine body (300).
7. The method of claim 5, further comprising: standing the pull handle (230) on a surface of the removable module (100) and pulling the pull handle (230) in a longitudinal direction of the pull handle (230) to drag the removable module (100).
8. The method of claim 5, further comprising: standing the pull handle (230) on a surface of the removable module (100) and pulling the pull handle (230) in a direction parallel to the first slide rail (120) to push the slide buckle (200) along the first slide rail (120).
9. The method of claim 5, wherein the slide buckle (200) comprises a buckle (231), the removable module (100) is provided with a buckle seat (131), and further comprising: attaching the pull handle (230) to a surface of the removable module (100) and buckling the buckle (231) to the buckle seat (131) to fix the pull handle (230) to the surface of the removable module (100).
10. The method of claim 5, wherein the slide buckle (200) is provided with a pair of travel limit blocks (240), the removable module (100) is provided with a positioning tongue (140) corresponding to the pair of travel limit blocks (240), and further comprising: pushing the slide buckle (200) along the first slide rail (120) to move the positioning tongue (140) into the pair of travel limit blocks (240) to limit the movable travel of the slide buckle (200) after the second slide rail (220) is butted against the first slide rail (120).
11. The method of claim 10, wherein one of the pair of travel limit blocks (240) is a convex rib (241), and the positioning tongue (140) passes over the convex rib (241) to move into the pair of travel limit blocks (240).
12. An electronic device, comprising: Comprising: a removable module (100) provided with a first slide rail (120); a slide buckle (200) comprising a body (210) extending a latch body (211) and provided with a groove (201) to form a pull handle (230), the body (210) is provided with a second slide rail (220) corresponding to the first slide rail (120), the pull handle (230) can be elastically bent along the groove (201) to be deflected relative to the body (210) to be away from the removable module (100), the electronic device further comprises a machine body (300) provided with a containing groove (310) and a latch groove (320), the direction of inserting the removable module (100) into the containing groove (310) is perpendicular to the direction of inserting the latch body (211) into the latch groove (320), Wherein the container (310) has an opening (311) and the dismounting module (100) is inserted into the container (310) through the opening (311), the other side of the body (210) is provided with a positioning latch (212) and one side of the opening (311) is provided with a corresponding channel (312), the positioning latch (212) interferes with the inner edge of the opening (311), the channel (312) is communicated with the opening (311) and the extending direction of the channel (312) is parallel with the direction of the dismounting module (100) inserted into the container (310), when the positioning latch (212) is aligned with the channel (312), the positioning latch (212) can be inserted into the channel (312) to make the dismounting module (100) completely inserted into the container (310).
13. The electronic device of claim 12, wherein the body (300) is provided with an auxiliary latch slot (321) communicated with the channel (312), the auxiliary latch slot (321) extends parallel with the inner edge of the opening (311), after the dismounting module (100) is inserted into the container (310), moving the slide buckle (200) along the first slide rail (120) can latch the latch body (211) and the positioning latch (212) into the latch slot (320) and the auxiliary latch slot (321) respectively.
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