Modular handle structure and electronic devices
By using the design of hooks, limiting components, and elastic components in the modular handle structure, the problem of inconvenient installation of the panel and the casing in electronic devices is solved, achieving convenient installation and disassembly.
Patent Information
- Application Number
- CN202411802976.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2044-12-06
AI Technical Summary
The installation and removal of the panel and the casing in existing electronic devices are inconvenient, especially when they are fixed with fasteners, which can easily cause operational difficulties.
The modular handle structure includes a handle housing, a handle module, and a linkage module. Through the cooperation of hooks, limiting parts, pressing parts, and elastic parts, the panel and the housing can be detachably connected. The locking and unlocking mechanism of the hooks facilitates installation and disassembly.
It enables convenient installation and removal of the panel and the casing, improves operating efficiency, and simplifies the assembly and disassembly process.
Smart Images

Figure CN119653654B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a handle structure and electronic device, and more particularly to a modular handle structure and electronic device. Background Technology
[0002] With the development of technology, the public's demand for various electronic devices is constantly increasing. Therefore, electronic devices incorporate a variety of electronic components to meet different needs. An electronic device may be a server, which may include a casing and a panel. The panel has a handle, which the user can hold to install or remove the panel from the casing, and the panel can be further secured to the casing with fasteners.
[0003] However, this method of using fasteners to fix the panel to the housing can easily cause inconvenience in installation and disassembly, and there is still room for improvement. Summary of the Invention
[0004] This invention provides a modular handle structure and electronic device, which, through structural design, facilitates easy installation and disassembly.
[0005] According to one embodiment of the present invention, a modular handle structure is provided, comprising a handle housing, a handle module, and a linkage module. The handle housing includes a handle shell, a handle latch, and a handle side hole. The handle shell has an accommodating space and includes a first surface and a second surface, the second surface being orthogonal to the first surface. The handle latch is formed on the first surface of the handle shell. The handle side hole is formed on the second surface of the handle shell. The handle module is coupled to the handle housing and includes a handle seat, a limiting member, and a handle. The handle seat is accommodated in the accommodating space. The limiting member protrudes from the handle seat. The handle passes through the handle side hole to connect to the handle seat, and the handle portion is exposed outside the handle housing. The linkage module includes a hook, a first elastic member, a linkage element, and a second elastic member. The hook is pivotally connected to the first surface and includes a hook portion protruding from the handle latch from the handle shell. The first elastic member abuts against the hook, and the first elastic member has a first elastic capacity that allows the hook to rotate in a first rotational direction. A linkage element is pivotally connected to the handle housing. The linkage element corresponds to a limiting member and includes a pressing portion that contacts the hook. A second elastic member abuts against the linkage element, and the second elastic member has a second elastic potential energy that causes the linkage element to rotate in a second rotational direction, the second elastic potential energy being greater than the first elastic potential energy. When the modular handle structure is disposed on a panel and assembled into a housing, the hook portion is in a locked position and protrudes from the handle's latch hole to correspond to a lock hole in the housing. When the handle is pulled out in a direction away from the housing by an external force, the limiting member moves away from the linkage element, the second elastic member drives the linkage element to rotate in the second rotational direction, the pressing portion presses against the hook, causing the hook portion to switch to an unlocked position and disengage from the lock hole, allowing the modular handle structure to separate the panel from the housing.
[0006] In this way, the modular handle structure can be combined with the panel and the housing through the configuration of the hook. Furthermore, through the cooperation of the limiting component, the pressing part, the hook and the handle, the limiting of the panel and the housing can be released at the same time when the handle is pulled, so as to facilitate installation and disassembly.
[0007] According to another embodiment of the present invention, an electronic device is provided, comprising a modular handle structure, a panel, and a housing. The modular handle structure includes a handle housing, a handle module, and a linkage module. The handle housing includes a handle shell, a handle latch, and a handle side hole. The handle shell has an accommodating space and includes a first surface and a second surface, the second surface being orthogonal to the first surface. The handle latch is formed on the first surface of the handle shell. The handle side hole is formed on the second surface of the handle shell. The handle module is coupled to the handle housing and includes a handle base, a limiting member, and a handle. The handle base is accommodated in the accommodating space. The limiting member protrudes from the handle base. The handle passes through the handle side hole to connect to the handle base, and a portion of the handle protrudes from the handle housing. The linkage module includes a hook, a first elastic member, a linkage element, and a second elastic member. The hook is pivotally connected to the first surface and includes a hook portion protruding from the handle latch protruding from the handle housing. A first elastic element abuts against the hook, and the first elastic element has a first elastic potential that causes the hook to rotate in a first rotational direction. A linkage element is pivotally connected to the handle housing, and the linkage element corresponds to the limiting element and includes a pressing portion that contacts the hook. A second elastic element abuts against the linkage element, and the second elastic element has a second elastic potential that causes the linkage element to rotate in a second rotational direction, the second elastic potential being greater than the first elastic potential. The panel is connected to the modular handle structure. The housing is detachably connected to the panel and includes a locking hole. When the panel is assembled on the housing, the hook portion is in a locked position and protrudes from the handle's locking hole to correspond to the locking hole; when the handle is pulled out away from the housing by an external force, the limiting element moves away from the linkage element, the second elastic element drives the linkage element to rotate in the second rotational direction, the pressing portion presses against the hook, causing the hook portion to switch to an unlocked position and disengage from the locking hole, allowing the modular handle structure to separate the panel from the housing.
[0008] In this way, the modular handle structure can be combined with the panel and the housing through the configuration of the hook. Furthermore, through the cooperation of the limiting component, the pressing part, the hook and the handle, the limiting of the panel and the housing can be released at the same time when the handle is pulled, so as to facilitate installation and disassembly. Attached Figure Description
[0009] Figure 1 A perspective view of a modular handle structure according to a first embodiment of the present invention is shown.
[0010] Figure 2 Draw Figure 1 An exploded view of the modular handle structure in the embodiment;
[0011] Figure 3A Draw Figure 1 A cross-sectional view of the modular handle structure of the embodiment along section line 3-3;
[0012] Figure 3B Draw Figure 1 Another cross-sectional view of the modular handle structure of the embodiment along section line 3-3;
[0013] Figure 4 A perspective view of an electronic device according to a second embodiment of the present invention is shown; and
[0014] Figure 5 Draw Figure 4 A partial exploded view of the electronic device in the embodiment.
[0015] The reference numerals in the attached figures are explained as follows:
[0016] 10, 20: Modular handle structure
[0017] 100: Handle housing
[0018] 110: Handle housing
[0019] 111: First Page
[0020] 112: Second page
[0021] 113: Side view
[0022] 114: Bottom
[0023] 120: Handle clamp hole
[0024] 130: Handle side hole
[0025] 140: Setting hole
[0026] 150: Pivot convex part
[0027] 200: Handle Module
[0028] 210: Handle base
[0029] 211: Handle Setting Section
[0030] 212: Pivot Groove
[0031] 213: Stage Difference Department
[0032] 214: Spinning arm
[0033] 215: Receiving slot
[0034] 220: Limiting component
[0035] 230: Handle
[0036] 240: Joint column
[0037] 250: Elastomer
[0038] 30: Panel
[0039] 300: Interlocking Module
[0040] 310: Hook
[0041] 311: Hook body
[0042] 312: Hook section
[0043] 313: Pressure-bearing part
[0044] 320: First elastic element
[0045] 330: Linking element
[0046] 331: Linked Body
[0047] 332: Pressing part
[0048] 340: Second elastic element
[0049] 40: Chassis
[0050] 400: Pin
[0051] 41: Keyhole
[0052] D1: First rotation direction
[0053] D2: Second rotation direction Detailed Implementation
[0054] Please see Figure 1 and Figure 2 , Figure 1 A perspective view of a modular handle structure 10 according to a first embodiment of the present invention is shown. Figure 2 Draw Figure 1An exploded view of the modular handle structure 10 of the embodiment. The modular handle structure 10 includes a handle housing 100, a handle module 200, and a linkage module 300. The handle housing 100 includes a handle shell 110, a handle latch hole 120, and a handle side hole 130. The handle shell 110 has an accommodating space (not shown) and includes a first surface 111 and a second surface 112, the second surface 112 being orthogonal to the first surface 111. The handle latch hole 120 is formed on the first surface 111 of the handle shell 110. The handle side hole 130 is formed on the second surface 112 of the handle shell 110. The handle module 200 is coupled to the handle housing 100 and includes a handle base 210, a limiting member 220, and a handle 230. The handle base 210 is accommodated in the accommodating space. The limiting member 220 protrudes from the handle base 210. The handle 230 is inserted into the handle side hole 130 to connect to the handle seat 210, and a portion of the handle 230 is exposed outside the handle housing 100. The linkage module 300 includes a latch 310, a first elastic element 320, a linkage element 330, and a second elastic element 340. The latch 310 is pivotally connected to the first surface 111 and includes a latch portion 312 that protrudes from the handle latch hole 120 into the handle housing 110. The first elastic element 320 abuts against the latch 310, and the first elastic element 320 allows the latch 310 to rotate in a first rotation direction D1 (shown in the diagram). Figure 3A Rotation. The linkage element 330 is pivotally connected to the handle housing 110. The linkage element 330 corresponds to the limiting member 220 and includes a pressing portion 332 that contacts the hook 310. The second elastic member 340 abuts against the linkage element 330, and the second elastic member 340, with a second elastic capacity, causes the linkage element 330 to rotate in a second direction D2 (shown in the diagram). Figure 3B (When rotated, the second elastic potential energy is greater than the first elastic potential energy.)
[0055] Modular handle structure 10 is set on one panel (e.g.) Figure 4 The panel 30) is assembled into a housing (such as Figure 4 When the housing 40 is in a locked position, the latch 312 protrudes from the handle latch hole 120 to correspond to a locking hole on the housing (e.g., Figure 4 (lock hole 41); When the handle 230 is pulled out in a direction away from the housing by an external force, the limiting member 220 moves away from the linkage element 330, the second elastic member 340 drives the linkage element 330 to rotate in the second rotation direction D2, the pressing part 332 presses against the pressure receiving part 313, so that the hook part 312 switches to an unlock position and disengages from the lock hole, allowing the modular handle structure 10 to drive the panel to separate from the housing.
[0056] In this way, the modular handle structure 10 can combine the panel and the housing through the configuration of the hook 310, and through the cooperation of the limiting member 220, the pressing part 332, the hook 310 and the handle 230, the limiting of the panel and the housing can be released when the handle 230 is pulled, so as to facilitate installation and disassembly.
[0057] Specifically, the handle housing 110 further includes two side surfaces 113 and a bottom surface 114. The two side surfaces 113 are orthogonal to the first surface 111 and the second surface 112, and the bottom surface 114 is orthogonal to the second surface 112 and the two side surfaces 113 and parallel to the first surface 111. The two side surfaces 113, the first surface 111, and the bottom surface 114 can surround to form a housing opening (not shown) opposite the second surface 112. The handle module 200 can be inserted into the receiving space through the housing opening and coupled to the handle housing 100. The handle housing 100 may further include two mounting holes 140. The two mounting holes 140 are formed on the first surface 111 and are respectively located on both sides of the handle latch hole 120. The mounting holes 140 can be used to assemble with the handle module 200. In the first embodiment, the number of holes 140 can be four, and each hole 140 is an elongated elliptical opening. Two holes 140 are located on the first surface 111, adjacent to the second surface 112 relative to the handle hole 120. The remaining two holes 140 are located on the bottom surface 114, relative to the two holes 140 located on the first surface 111. In other embodiments, the number and arrangement of holes are not limited to this.
[0058] The handle housing 100 may further include a pivoting protrusion 150, which is disposed on the first surface 111. The modular handle structure 10 may further include a pin 400, which is inserted into the pivoting protrusion 150 and the linkage module 300. The number of pivoting protrusions 150 may be three, which are spaced apart on the first surface 111, and two of the pivoting protrusions 150 are located on both sides of the handle latch hole 120. The pivoting protrusion 150 protrudes toward the accommodating space and may include a pivoting hole (not shown). The pin 400 is inserted into the pivoting hole and the linkage module 300, and the linkage module 300 can rotate around the pin 400.
[0059] The latch 310 may further include a latch body 311 and a pressure receiving portion 313. The latch body 311 is pivotally connected to the pin 400. The latch portion 312 is disposed on the latch body 311 and adjacent to the first surface 111. The pressure receiving portion 313 is disposed on the latch body 311 and faces the second surface 112. A first elastic member 320 is inserted into the pin 400. The first elastic member 320 abuts between the latch 310 and the first surface 111, thereby allowing the latch 310 to rotate in a first rotation direction D1. The linkage element 330 may further include a linkage body 331. The linkage body 331 is pivotally connected to the pin 400. A pressing portion 332 is connected to one end of the linkage body 331 adjacent to the second surface 112 and is orthogonal to the linkage body 331, thus protruding toward and contacting the pressure receiving portion 313. The second elastic element 340 is inserted into the pin 400, and the second elastic element 340 abuts between the linkage element 330 and the first surface 111, so that the hook 310 can rotate in the second rotation direction D2.
[0060] The handle module 200 may further include two connecting posts 240, which protrude from the handle base 210 and respectively protrude into two mounting holes 140. Furthermore, the handle base 210 may include two handle mounting portions 211, a pivot groove 212, a step portion 213, and two spring arms 214. The two handle mounting portions 211 are respectively used to connect the two ends of the handle 230. The pivot groove 212 is recessed between the two handle mounting portions 211 and allows the hook 310 to protrude therein. The step portion 213 is located between one of the two handle mounting portions 211 and the pivot groove 212 and protrudes beyond the pivot groove 212. A limiting member 220 protrudes from the step portion 213. One end of each spring arm 214 is connected to each handle mounting portion 211, and the two spring arms 214 are respectively mounted on the two connecting posts 240.
[0061] The handle mounting portion 211 can be located on both sides of the handle latch hole 120. The pivot groove portion 212 and the step portion 213 are located between the two handle mounting portions 211 and are both recessed relative to the handle mounting portions 211. Therefore, a space corresponding to the pivot protrusion 150 can be formed above the pivot groove portion 212 and the step portion 213, so that the linkage module 300 can be installed therein. The latch 310 can correspond to the pivot groove portion 212, and the linkage element 330 can correspond to the step portion 213. The limiting member 220 protrudes from the step portion 213 and is closer to and in contact with the linkage element 330.
[0062] The number of spring arms 214 can be four, with two spring arms 214 disposed on the upper and lower sides of the left handle mounting portion 211, and the remaining two spring arms 214 disposed on the upper and lower sides of the right handle mounting portion 211. Each spring arm 214 may include an extension portion (not shown) and an arm portion (not shown), wherein the two extension portions extend from the handle mounting portion 211 toward the first surface 111, and the remaining two extension portions extend from the handle mounting portion 211 toward the bottom surface 114. The arm portion connects to the extension portions and extends toward the second surface 112, that is, the extension portion and the arm portion are orthogonal to each other and connected to form an L-shape. The arm portion is provided with a connecting post 240 disposed thereon. The spring arm 214 can be bent toward the handle mounting portion 211 to make it easier for the handle module 200 to be inserted into the handle housing 100.
[0063] The number of connecting posts 240 can match the number of setting holes 140, which is four. The four connecting posts 240 can be respectively protruded from the four spring arms 214 and respectively protruded into the four setting holes 140. Each connecting post 240 can be generally cylindrical, and the diameter of each connecting post 240 can be smaller than the length of each setting hole 140 and approximately equal to the width of each setting hole 140. When the handle module 200 is coupled to the handle housing 100, the four connecting posts 240 protrude into the four setting holes 140 respectively. The connecting posts 240 are limited by the setting holes 140, so that the handle module 200 does not detach from the handle housing 100. Since the length of the setting hole 140 is longer than the connecting post 240, the connecting post 240 can be allowed to move within the setting hole 140, and the handle module 200 can be moved along the length direction of the setting hole 140.
[0064] Furthermore, such as Figure 1 and Figure 2 As shown, each coupling post 240 may include a ramp (not shown) angled towards the handle 230. The height of the side of the coupling post 240 adjacent to the second surface 112 is less than the height of the side away from the second surface 112, and a ramp can be formed at the top of the coupling post 240. When the handle module 200 is coupled to the handle housing 100, the first surface 111 and the bottom surface 114 of the handle housing 110 can be slightly opened by the abutment of the ramp of the coupling post 240 until the coupling post 240 exactly corresponds to and protrudes into the mounting hole 140, and the first surface 111 and the bottom surface 114 of the handle housing 110 no longer deform due to the abutment of the coupling post 240. By providing the ramp, the handle module 200 can be more easily coupled to the handle housing 100.
[0065] The handle base 210 may further include two receiving grooves 215, which are respectively opened in the two handle mounting portions 211. The handle module 200 may further include two elastic bodies 250, which are respectively received in the two receiving grooves 215 and abut against the second surface 112. Specifically, the opening of the receiving groove 215 faces the second surface 112. When the user applies an external force to bring the handle base 210 closer to the second surface 112, the elastic bodies 250 are compressed and can accumulate a third elastic potential energy of each elastic body 250. At the same time, the connecting post 240 moves within the mounting hole 140 and is still limited by the mounting hole 140. When the user stops applying the external force, the handle base 210 moves away from the second surface 112 under the action of the third elastic potential energy. Pushing the handle base 210 drives the connecting post 240 to move back to its original position within the mounting hole 140. The connecting post 240 rests against the rear end of the mounting hole 140, and the handle module 200 does not detach from the handle housing 100.
[0066] The handle 230 may be U-shaped and include two free ends. The two free ends of the handle 230 may pass through the handle side hole 130 located in the central area of the second surface 112 and connect to the handle mounting part 211. An arc-shaped part of the handle 230 can be gripped by a user and applied with external force. The handle 230 is connected to the handle mounting part 211, and when the handle 230 is pulled, the handle seat 210 can be pulled at the same time.
[0067] Please see Figure 3A and Figure 3B See also Figure 1 and Figure 2 , Figure 3A Draw Figure 1 A cross-sectional view of the modular handle structure 10 of the embodiment along the cut line 3-3. Figure 3B Draw Figure 1 Another cross-sectional view of the modular handle structure 10 of the embodiment along section line 3-3. When the modular handle structure 10 is... Figure 3A In the current state, the limiting member 220 limits the linkage element 330, and the hook 310 rotates in the first rotation direction D1 under the influence of the first elastic member 320. The hook portion 312 protrudes from the handle hole 120 and is in the locked position. When the modular handle structure 10 is in Figure 3B In the locked position, the handle 230 is pulled out away from the second surface 112 by an external force. The limiting member 220 moves away from the linkage element 330 without obstructing it. The linkage element 330 rotates in the second rotation direction D2 under the influence of the second elastic member 340. The pressing part 332 is linked to the pressed part 313, causing the latch 310 to rotate in the second rotation direction D2 as well, thus switching from the locked position to the unlocked position. It should be noted that when the modular handle structure 10 is in Figure 3BWhen in the state, the hook 310 is simultaneously subjected to the first elastic potential energy and the second elastic potential energy. However, since the second elastic potential energy is greater than the first elastic potential energy, the hook 310 rotates in the second rotation direction D2.
[0068] Please see Figure 4 and Figure 5 , Figure 4 A perspective schematic diagram of an electronic device according to a second embodiment of the present invention is shown. Figure 5 Draw Figure 4 A partially exploded view of the electronic device in the embodiment. The electronic device (not shown) includes a modular handle structure 20, a panel 30, and a housing 40. The panel 30 houses the modular handle structure 20, and the housing 40 is connected to the panel 30 and includes a locking hole 41. A hook portion (not shown) of the modular handle structure 20 can correspond to and engage with the locking hole 41 of the housing 40. The modular handle structure 20 of the second embodiment is similar to the modular handle structure 10 of the first embodiment, and the number of modular handle structures 20 can be two, which can be connected to the two ends of the panel 30 respectively by locking. Therefore, through the configuration of the modular handle structure 20, the hook portion can engage with the locking hole 41 to combine the panel 30 and the housing 40, and pulling the handle (not shown) can separate the panel 30 from the housing 40, thus providing convenience for assembly and disassembly.
[0069] Although the present invention has been disclosed above with reference to embodiments, it is not intended to limit the present invention. Any person skilled in the art can make various modifications and refinements without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A modular handle structure, characterized in that, Include: The handle casing includes: A handle housing has an accommodating space and includes a first surface and a second surface, the second surface being orthogonal to the first surface; A handle hole is provided on the first side of the handle housing; and A handle side hole is provided on the second side of the handle housing; A handle module, coupled to the handle housing and comprising: The seat for the head of the household is located within this space; A limiting element protrudes from the handle base; and A handle is inserted into the side hole of the handle to connect to the handle seat, and the handle portion is exposed outside the handle housing; as well as A linkage module, including: A latch, pivotally connected to the first surface and including a latch portion protruding from the handle latch hole of the handle housing; A first elastic element abuts against the hook, and the first elastic element has a first elastic capacity to cause the hook to rotate in a first rotation direction. A linkage element, pivotally connected to the handle housing, the linkage element corresponding to the limiting member and including a pressing portion contacting the latch; and A second elastic element abuts against the linkage element, and the second elastic element causes the linkage element to rotate in a second rotation direction with a second elastic potential energy, the second elastic potential energy being greater than the first elastic potential energy; When the modular handle structure is installed on a panel and assembled into a housing, the hook portion is in a locked position and protrudes from the handle's latch hole to correspond to a lock hole in the housing. When the handle is pulled out by an external force in a direction away from the housing, the limiting member moves away from the linkage element, the second elastic member drives the linkage element to rotate in the second rotation direction, and the pressing portion presses against the hook, causing the hook portion to switch to an unlocked position and disengage from the lock hole, allowing the modular handle structure to separate the panel from the housing.
2. The modular handle structure as described in claim 1, characterized in that, The handle housing further includes two mounting holes, which are opened on the first surface and located on both sides of the handle latch hole. The handle module further includes two connecting posts, which protrude from the handle base and protrude into the two mounting holes.
3. The modular handle structure as described in claim 2, characterized in that, The handle base includes two handle mounting portions, a pivot groove, a step portion, and two spring arms. The two handle mounting portions are used to connect the two ends of the handle. The pivot groove is recessed between the two handle mounting portions and allows the hook to protrude therein. The step portion is located between one of the two handle mounting portions and the pivot groove and protrudes beyond the pivot groove. The limiting member protrudes from the step portion. One end of each of the two spring arms is connected to each of the two handle mounting portions. The two spring arms are respectively used for the two connecting posts to be mounted thereon.
4. The modular handle structure as described in claim 3, characterized in that, Each of the two connecting posts includes an inclined surface that slopes toward the handle.
5. The modular handle structure as described in claim 3, characterized in that, The handle base further includes two receiving slots, which are respectively opened in the two handle mounting portions. The handle module further includes two elastic bodies, which are respectively received in the two receiving slots and abut against the second surface.
6. The modular handle structure as described in claim 1, characterized in that, The handle housing further includes a pivoting protrusion disposed on the first surface, and the modular handle structure further includes a pin inserted into the pivoting protrusion and the linkage module.
7. An electronic device, characterized in that, Include: A modular handle structure, comprising: The handle casing includes: A handle housing has an accommodating space and includes a first surface and a second surface, the second surface being orthogonal to the first surface; A handle hole is provided on the first side of the handle housing; and A handle side hole is provided on the second side of the handle housing; A handle module, coupled to the handle housing and comprising: The seat for the head of the household is located within this space; A limiting element protrudes from the handle base; and A handle is inserted into the side hole of the handle to connect to the handle seat, and the handle portion is exposed outside the handle housing; and A linkage module, including: A latch, pivotally connected to the first surface and including a latch portion protruding from the handle latch hole of the handle housing; A first elastic element abuts against the hook, and the first elastic element has a first elastic capacity to cause the hook to rotate in a first rotation direction. A linkage element, pivotally connected to the handle housing, the linkage element corresponding to the limiting member and including a pressing portion contacting the latch; and A second elastic element abuts against the linkage element, and the second elastic element causes the linkage element to rotate in a second rotation direction with a second elastic potential energy, the second elastic potential energy being greater than the first elastic potential energy; One panel connects to this modular handle structure; as well as A housing, detachably connected to the panel and including a keyhole; When the panel is installed on the housing, the hook is in a locked position and protrudes from the handle latch hole to correspond to the lock hole; when the handle is pulled out in a direction away from the housing by an external force, the limiting member moves away from the linkage element, the second elastic member drives the linkage element to rotate in the second rotation direction, and the pressing part presses against the hook, so that the hook switches to an unlocked position and disengages from the lock hole, allowing the modular handle structure to separate the panel from the housing.
8. The electronic device as claimed in claim 7, characterized in that, The handle housing further includes two mounting holes, which are opened on the first surface and located on both sides of the handle latch hole. The handle module further includes two connecting posts, which protrude from the handle base and protrude into the two mounting holes.
9. The electronic device as claimed in claim 8, characterized in that, The handle base includes two handle mounting portions, a pivot groove, a step portion, and two spring arms. The two handle mounting portions are used to connect the two ends of the handle. The pivot groove is recessed between the two handle mounting portions and allows the hook to protrude therein. The step portion is located between one of the two handle mounting portions and the pivot groove and protrudes beyond the pivot groove. The limiting member protrudes from the step portion. One end of each of the two spring arms is connected to each of the two handle mounting portions. The two spring arms are respectively used for the two connecting posts to be mounted thereon.
10. The electronic device as claimed in claim 9, characterized in that, Each of the two connecting posts includes an inclined surface that slopes toward the handle.
Citation Information
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