electronic machinery
The electronic device's innovative housing design with clamp members and a sliding mechanism allows easy disassembly, addressing the challenge of maintaining appearance integrity and enhancing competitiveness.
Patent Information
- Application Number
- JP2024536058
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-12-16
- Filing Date
- 2022-12-06
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2042-12-06
AI Technical Summary
Existing electronic devices face challenges in securing handles that mar the appearance and affect the elegance of the product, necessitating a design that allows easy disassembly without compromising aesthetics.
An electronic device design featuring a first and second housing with clamp members and a sliding mechanism, utilizing a stopper and sliding member to facilitate easy opening without buckles, ensuring the integrity of the device's appearance.
The design enables easy disassembly of electronic devices while maintaining aesthetic integrity, improving opening speed and product competitiveness by simplifying the structural design and reducing the need for additional holes.
Smart Images

Figure 0007771506000001 
Figure 0007771506000002 
Figure 0007771506000003
Abstract
Description
[Technical Field]
[0001] child The application relates to the field of electronic equipment technology, and in particular to portable electronic equipment. [Background technology]
[0002] Currently, there is a need to secure handles on electronic devices for disassembly on the production line. Handles can mar the appearance of the electronic device and affect the elegance of the product's appearance, so designing electronic devices that are easy to disassemble and do not affect the product's appearance has become an important development trend. Summary of the Invention
[0003] In order to simplify the disassembly design of electronic equipment without affecting the aesthetics of the electronic equipment, this application provides an electronic equipment that is easy to disassemble and does not affect the appearance of the product.
[0004] This application provides an electronic device 10. The electronic device 10 includes a first housing 100 and a second housing 200. The first housing 100 includes a first clamp member 111 and a stopper 121. The second housing 200 includes a first cavity 220, a sliding member 600, and a second clamp member 231. The first cavity 220 includes a first hole 210 and a sliding block 600. The first cavity 220 communicates with the outside through the first hole 210. The first hole 210 at least partially faces the sliding block 600, and the first clamp member 111 and the second clamp member 231 can be clamped and connected, and the first housing 100 and the second housing 200 can be clamped and connected by using the first clamp member 111 and the second clamp member 231. When the first clamp member 111 and the second clamp member 231 are clamped, the first housing 100 and the second housing 200 are clamped, and the projections of the sliding member 600 and the stopper 121 at least partially overlap in the first direction P1, where the first direction P1 is the direction in which the first hole 210 faces the sliding member 600.
[0005] When a force acts on the sliding member 600 through the first hole 210, the sliding member 600 can move along a first direction P1, and the stopper 121 can be displaced in a second direction P2 relative to the sliding member 600. The displacement of the stopper 121 in the second direction P2 causes the first clamping member 111 and the second clamping member 231 to change from clamping to separation, and the first housing 100 and the second housing 200 to change from clamping to separation, thereby opening the electronic device 10. The second direction P2 is the direction in which the second housing 200 extends toward the first housing 100. Because the electronic device 10 can be opened by moving the sliding member 600 along the first direction P1, there is no need to use a buckle, which ensures the integrity of the appearance of the electronic device 10 and improves product competitiveness.
[0006] In this embodiment of the application, the stopper 121 may include a first surface 1211, and the sliding member 600 may include a second surface 6001, and at least one of the first surface 1211 or the second surface 6001 may be a sloped surface or an arcuate surface. Since the projections of the stopper 121 and the sliding member 600 in the first direction P1 at least partially overlap, the projections of the first surface 1211 and the second surface 6001 in the first direction P1 at least partially overlap.
[0007] In this embodiment of the present application, when the first housing 100 and the second housing 200 are clamped and connected by using the first clamping member 111 and the second clamping member 231, the sliding member 600 can at least partially abut against the stopper 121. When an acting force acts on the sliding member 600 through the first hole 210, the sliding member 600 moves along the first direction P1 and presses the stopper 121, causing a displacement in the second direction P2, thereby opening the electronic device 10. Because the sliding member 600 at least partially abuts against the stopper 121, when the sliding member 600 moves along the first direction P1 and presses the stopper 121 to open the electronic device 10, the sliding displacement of the sliding member 600 is shortened, improving the opening speed of the electronic device 10 and enhancing product competitiveness.
[0008] In this embodiment of the present application, a bottom surface and a sidewall may be disposed in the first cavity 220. A second protrusion 224 may be disposed on the bottom surface of the first cavity 220, a side arm 225 may be disposed on the sidewall of the first cavity 220, and a first sliding space 226 may be formed between the second protrusion 224 and the side arm 225. A first sliding portion 6002 may be disposed on the sliding member 600, and the first sliding portion 6002 may be disposed in the first sliding space 226. When an acting force acts on the sliding member 600 through the first hole 210, the sliding member 600 may move along the first direction P1, the first sliding portion 6002 may move along the first direction P1 in the first sliding space 226, and the stopper 121 may be displaced in the second direction P2 relative to the sliding member 600, thereby opening the electronic device 10. The first sliding space 226 is formed by using the structure of the first cavity 220, and at least a part of the structure of the sliding member 600 slides to cooperate with the first sliding space 226. This simplifies the structural design and improves product competitiveness.
[0009] In this embodiment of the application, a bottom surface and an elastic member 500 may be disposed in the first cavity 220. A first protrusion 223 may be disposed on the bottom surface of the first cavity 220, and a second hole 501 may be disposed in the elastic member 500, and the elastic member 500 and the first protrusion 223 may cooperate with each other through the second hole 501 to prevent the elastic member 500 from falling out.
[0010] In this embodiment of the present application, the elastic member 500 may include a first step portion 503, and a second sliding space 227 may be formed between the first step portion 503 and the bottom surface of the first cavity 220. A second sliding portion 6003 and a third sliding portion 6004 may be disposed on the sliding member 600. The second sliding portion 6003 is disposed in the second sliding space 227. The third sliding portion 6004 contacts the bottom surface of the first cavity 220. When an acting force acts on the sliding member 600 through the first hole 210, the sliding member 600 may move along the first direction P1, and the second sliding portion 6003 may move along the first direction P1 within the second sliding space 227. The third sliding part 6004 can move on the bottom surface of the first cavity 220 along the first direction P1, and the stopper 121 generates a displacement in the second direction P2 relative to the sliding member 600, thereby opening the electronic device 10 and improving product competitiveness. The second sliding space 227 is formed by using the first cavity 220 and at least a part of the structure of the elastic member 500, and at least a part of the structure of the sliding member 600 slides to cooperate with the second sliding space 227. This simplifies the structural design and improves product competitiveness.
[0011] In this embodiment of the present application, a sliding slot may be disposed on the bottom surface of the first cavity 220, extending along a first direction P1, with a third sliding portion 6004 disposed on the sliding slot. When an acting force acts on the sliding member 600 through the first hole 210, the sliding member 600 may move along the first direction P1, and the third sliding portion 6004 may move along the sliding slot on the bottom surface of the first cavity 220 along the first direction P1. The stopper 121 displaces the sliding member 600 in the second direction P2, thereby opening the electronic device 10. By cooperating with the third sliding portion 6004, the sliding slot provides a sliding support function for the third sliding portion 6004, which reduces the uncertainty of the sliding path and improves structural reliability and product competitiveness.
[0012] In this embodiment of the present application, the elastic member 500 can be interference-fit with the first protrusion 223. When the first housing 100 and the second housing 200 change from clamping to separating, the elastic member 500 and the first protrusion 223 are prevented from slipping out.
[0013] In this embodiment of the present application, the elastic member 500 can be interference-fit with the first cavity 220. When the first housing 100 and the second housing 200 change from clamping to separating, the elastic member 500 is prevented from slipping out of the first cavity 220.
[0014] In this embodiment of the present application, the sliding member 600 may include a first connecting piece 6007. The first connecting piece 6007 may include a first connecting piece neck portion 6005 and a first connecting piece head portion 6006. The first hole 210 at least partially faces the sliding block 6000, and the first hole 210 at least partially faces the first connecting piece neck portion 6005. When an acting force acts on the first connecting piece neck portion 6005 through the first hole 210, the first connecting piece neck portion 6005 moves along the first direction P1, the sliding member 600 moves along the first direction P1, and the stopper 121 is displaced in the second direction P2 relative to the sliding member 600, resulting in the electronic device 10 being opened. A neck portion 6005 of the first connecting piece and a head portion 6006 of the first connecting piece are arranged, and a rope may be placed on the neck portion 6005 of the first connecting piece so that a force acts on the neck portion 6005 of the first connecting piece, causing the sliding member 600 to slide or to perform the function of hanging a decorative part. By reusing the function of the neck portion 6005 of the first connecting piece, the sliding member 600 can not only be used to open a cover, but also to hang a rope, which improves product competitiveness.
[0015] In this embodiment of the application, the length L7 of the head portion 6006 of the first connecting piece can be greater than the length L6 of the neck portion 6005 of the first connecting piece, or the width W3 of the head portion 6006 of the first connecting piece can be greater than the width W2 of the neck portion 6005 of the first connecting piece, so that when the rope is placed on the neck portion 6005 of the first connecting piece, the size relationship can be used to prevent the rope from slipping out of the neck portion 6005 of the first connecting piece.
[0016] In this embodiment of the present application, the stopper 121 and the first housing 100 may be integrally formed so as to prevent the stopper 121 from falling off the first housing 100. This simplifies the design of structural components.
[0017] In this embodiment of this application, the material of the elastic member 500 can be at least one of plastic, metal, or rubber.
[0018] In this embodiment of the application, the first housing 100 may include a sealing kit 112, and the second housing 200 may include a second cavity 230. When the first housing 100 and the second housing 200 are clamped and connected by using the first clamp member 111 and the second clamp member 231, the sealing kit 112 may be used to separate the first cavity 220 from the second cavity 230, and the sealing kit 112 may be used to seal the second cavity 230 to prevent water, dirt, etc. from entering the second cavity 230 and corroding the device in the second cavity 230.
[0019] In this embodiment of the application, a battery 300 and a circuit board 400 may be disposed within the second cavity 230 .
[0020] In this embodiment of this application, the electronic device 10 may be an electronic label device, an electronic tracking device, an electronic positioning device, a mobile phone, a wristwatch, a tablet computer, a laptop computer, or an ultra-mobile personal computer (UMPC), a handheld computer, a touch television, a walkie-talkie, a netbook, a point-of-sale terminal, a wearable device, a virtual reality device, and other electronic products. [Brief explanation of the drawings]
[0021] [Figure 1] 1 is a schematic diagram of an electronic device according to an embodiment of the present application. [Figure 2] FIG. 2 is an exploded view of the electronic device shown in FIG. [Figure 3] 2 is a schematic diagram of the structure of the electronic device shown in FIG. 1 in a fully open state. [Figure 4] FIG. 4 is a schematic diagram of the structure of the first housing shown in FIG. 3. [Figure 5] 5 is a cross-sectional view taken along line BB of the first housing shown in FIG. 4. [Figure 6] FIG. 4 is an exploded view of the first cavity shown in FIG. 3. [Figure 7] FIG. 7 is a cross-sectional view taken along CC of the first cavity shown in FIG. 6. [Figure 8] 7 is a schematic diagram of the structure of the elastic member shown in FIG. 6 as viewed from a first viewpoint. [Figure 9] 7 is a schematic view of the structure of the elastic member shown in FIG. 6 as seen from a second viewpoint. [Figure 10] FIG. 10 is a cross-sectional view along CC of the elastic member after it has been placed in the first cavity. [Figure 11] 7 is a schematic diagram of the structure of the sliding member shown in FIG. 6, viewed from a first viewpoint. [Figure 12] 7 is a schematic view of the structure of the sliding member shown in FIG. 6, seen from a second viewpoint. FIG. [Figure 13] FIG. 4 is a cross-sectional view of the first cavity shown in FIG. 3 taken along line AA. [Figure 14] FIG. 1 is a schematic diagram of the structure of an electronic device and an ejector pin according to an embodiment of the present application. [Figure 15] 15 is a cross-sectional view taken along the line DD of the electronic device and the ejector pin shown in FIG. 14. [Figure 16] 15 is a schematic diagram of a structure in which the ejector pin shown in FIG. 14 is coupled to an electronic device along a first direction. [Figure 17] FIG. 17 is a cross-sectional view taken along the line EE of the schematic configuration diagram shown in FIG. [Figure 18] 2 is a schematic structural diagram of the electronic device shown in FIG. 1 in which an ejector pin opens along a first direction. [Figure 19] FIG. 19 is a cross-sectional view taken along the line FF in the schematic configuration diagram shown in FIG. [Figure 20] 2 is a schematic diagram of the structure of the electronic device shown in FIG. 1 in a half-open state. DETAILED DESCRIPTION OF THE INVENTION
[0022] An embodiment of the present application provides an electronic device.
[0023] FIG. 1 is a schematic diagram of an electronic device according to one embodiment of the present application.
[0024] The electronic device in this embodiment of this application may be an electronic label device, an electronic tracking device, an electronic positioning device, a mobile phone, a wristwatch, a tablet computer, a laptop computer, or an ultra-mobile personal computer (UMPC), a handheld computer, a touch television, a walkie-talkie, a netbook, a point-of-sale terminal, a wearable device, a virtual reality device, or the like.
[0025] The electronic device 10 includes a first housing 100 and a second housing 200. The first housing 100 is coupled to the second housing 200, and the second housing 200 includes a first hole 210.
[0026] Fig. 2 is an exploded view of the electronic device shown in Fig. 1. It includes a first housing 100, a second housing 200, a battery 300, a circuit board assembly 400, an elastic member 500, and a sliding member 600. The second housing 200 has a first cavity 220 and a second cavity 230, the first cavity 220 having a first hole 210, and the second cavity 230 having a second clamp member 231.
[0027] 3 is a schematic diagram of the structure of the electronic device shown in FIG. 1 in a fully open state. The first housing 100 includes a first receiving space 110 and a second receiving space 120. The first clamping member 111 is disposed in the first receiving space 110, and the stopper 121 is disposed in the second receiving space 120, with the stopper 121 having a first surface 1211. The second housing 200 includes a first cavity 220 and a second cavity 230. The elastic member 500 and the sliding member 600 are disposed inside the first cavity 220, with the sliding member 600 having a second surface 6001. The battery 300, the circuit board assembly 400, and the second clamping member 231 are disposed inside the second cavity 230. The first clamp member 111 can be connected to the second clamp member 231 via buckling, and by using the first clamp member 111 and the second clamp member 231, the first housing 100 and the second housing 200 can be connected to each other, resulting in the first housing 100 and the second housing 200 of the electronic device 10 being firmly joined.
[0028] In this embodiment of the present application, two or more first clamp members 111 may be disposed on the first housing 100, and two or more second clamp members 231 may be disposed in the second cavity 230. The plurality of first clamp members 111 and the plurality of second clamp members 231 may be connected to form pairs via buckling. By connecting the first housing 100 and the second housing 200 using the plurality of first clamp members 111 and the plurality of second clamp members 231, the first housing 100 and the second housing 200 of the electronic device 10 are firmly joined together.
[0029] Figure 4 is a schematic diagram of the structure of the first housing shown in Figure 3. Figure 5 is a cross-sectional view of the first housing shown in Figure 4 along line BB. The first housing 100 further includes a sealing kit 112, which is disposed outside the first accommodation space 110, and the first accommodation space 110 and the second accommodation space 120 are separated by using the sealing kit 112. When the first housing 100 and the second housing 200 are combined, the first cavity 220 and the second cavity 230 can also be separated by using the sealing kit 112. The first housing 100 and the second housing 200 can form a sealed cavity by using the sealing kit 112. Since the first cavity 220 is in communication with the outside through the first hole 210, substances such as water and air can enter the first cavity 220 through the first hole 210, and the second cavity 230 can be isolated from the first cavity 220 by using the sealing kit 112, thereby preventing the battery 300, circuit board assembly 400, etc. inside the second cavity 230 from being damaged, thereby ensuring the product sealing performance.
[0030] In this embodiment of this application, the material of the sealing kit 112 may be rubber.
[0031] In this embodiment of the present application, the sealing kit 112 may be elastic. When the sealing kit 112 is disposed outside the first accommodating space 110, the sealing kit 112 is pressed by the outer wall of the first accommodating space 110, so that the rebound function of the sealing kit 112 allows the sealing kit 112 to be tightly coupled with the first housing 100 and can prevent the sealing kit 112 from falling out of the first housing 100.
[0032] In this embodiment of the present application, the outer wall of the first accommodating space 110 may instead be elastic. When the sealing kit 112 is disposed outside the first accommodating space 110, the outer wall of the first accommodating space 110 is pressed by the sealing kit 112, and the resilience of the outer wall of the first accommodating space 110 allows the sealing kit 112 to be tightly coupled with the first housing 100 and can prevent the sealing kit 112 from falling out of the first housing 100.
[0033] FIG. 6 is an exploded view of the first cavity shown in FIG. 3, including the first cavity 220, the elastic member 500, and the sliding member 600. The first cavity 220 includes a first protrusion 223, a second protrusion 224, and a side arm 225. FIG. 7 is a cross-sectional view of the first cavity 220 taken along CC in FIG. 6. The first cavity 220 has a length L1, and the first cavity 220 has a bottom surface and sidewalls. The bottom surface of the first cavity 220 and / or the sidewalls of the first cavity 220 may be smooth, or the bottom surface of the first cavity 220 and / or the sidewalls of the first cavity 220 may instead be uneven. The first protrusion 223 and the second protrusion 224 are disposed on the bottom surface of the first cavity 220, the side arm 225 is disposed on the side wall of the first cavity 220, and a first sliding space 226 is formed between the side arm 225 and the second protrusion 224.
[0034] Fig. 8 is a schematic diagram of the structure of the elastic member shown in Fig. 6 as seen from a first perspective. Fig. 9 is a schematic diagram of the structure of the elastic member shown in Fig. 6 as seen from a second perspective. Elastic member 500 includes second holes 501, elastic portions 502, and first step portions 503. Fig. 10 is a cross-sectional view taken along CC of the elastic member after it has been placed in the first cavity shown in Fig. 6. After the elastic member 500 is placed in the first cavity 220, the first cavity 220 further has a length L2 and a length L3, a second sliding space 227 is formed between the first step portion 503 and the bottom surface of the first cavity 220, and a third sliding space 228 is formed between the first sliding space 226, the second sliding space 227, the side arm 225, the second protrusion 224, the side wall of the first cavity 220, the first step portion 503, and the bottom surface of the first cavity 220.
[0035] In this embodiment of the application, the elastic member 500 and the first protrusion 223 can be coupled through the second hole 501, and the first protrusion 223 abuts against the inner wall of the elastic member 500. Because the inner wall of the elastic member 500 is pressed by the first protrusion 223, the rebound function of the elastic member 500 allows the first protrusion 223 to be tightly coupled with the elastic member 500, and can prevent the elastic member 500 from slipping off.
[0036] In this embodiment of the application, the first protrusion 223 may be elastic instead, and the elastic member 500 and the first protrusion 223 are coupled through the second hole 501. Because the first protrusion 223 is pressed by the inner wall of the elastic member 500, the rebound function of the first protrusion 223 allows the first protrusion 223 and the elastic member 500 to be tightly coupled, and can prevent the elastic member 500 from slipping off.
[0037] In this embodiment of the application, the elastic member 500 may have two or more second holes 501, and the first cavity 220 may have two or more first protrusions 223. The elastic member 500 and the multiple first protrusions 223 are coupled through the multiple second holes 501, and the multiple first protrusions 223 abut against the inner wall of the elastic member 500. Because the inner wall of the elastic member 500 is pressed by the multiple first protrusions 223, the resilience function of the elastic member 500 allows the multiple first protrusions 223 to be firmly coupled to the elastic member 500, preventing the elastic member 500 from slipping off.
[0038] In this embodiment of the application, the first protrusions 223 may be elastic instead, the elastic member 500 may have two or more second holes 501, the first cavity 220 may have two or more first protrusions 223, the elastic member 500 is coupled to the multiple first protrusions 223 through the multiple second holes 501, and the multiple first protrusions 223 abut against the inner wall of the elastic member 500. Because the multiple first protrusions 223 are pressed by the inner wall of the elastic member 500, the rebound function of the multiple first protrusions 223 allows the multiple first protrusions 223 to be firmly coupled to the elastic member 500, and can prevent the elastic member 500 from slipping off.
[0039] In this embodiment of the present application, the second hole 501 can be a through hole, the height of the first protrusion 223 can be the same as the length of the second hole 501, and the elastic member 500 is coupled to the first protrusion 223 through the second hole 501. Because the contact area between the inner wall of the elastic member 500 and the first protrusion 223 is large, the first protrusion 223 and the elastic member 500 are tightly coupled, which can prevent the elastic member 500 from slipping off.
[0040] In this embodiment of the application, the elastic portion 502 can abut against the inner wall of the first cavity 220, and the rebound function of the elastic portion 502 can enable the elastic member 500 to be firmly coupled with the first cavity 220 and prevent the elastic member 500 from falling out.
[0041] In this embodiment of the present application, two or more elastic portions 502 may be disposed on the elastic member 500, and the multiple elastic portions 502 abut against the inner wall of the first cavity 220. The elastic member 500 and the first cavity 220 are firmly coupled through the resilience of the multiple elastic portions 502, which can prevent the elastic member 500 from slipping out.
[0042] 11 is a schematic diagram of the structure of the sliding member shown in FIG. 6 from a first perspective, and includes a first sliding portion 6002, a second sliding portion 6003, a third sliding portion 6004, and a first connecting piece 6007. The sliding member 600 has lengths L4 and L5, the first connecting piece 6007 includes a first connecting piece neck portion 6005 and a first connecting piece head portion 6006, the first connecting piece neck portion 6005 has a length L6, the first connecting piece head portion 6006 has a length L7, and the first connecting piece neck portion 6005 includes a recess 60051. FIG. 12 is a schematic diagram of the structure of the sliding member shown in FIG. 4 from a second perspective. The sliding member 600 further includes a second surface 6001. The sliding member 600 has a width W1, the neck portion 6005 of the first connecting piece has a width W2, and the head portion 6006 of the first connecting piece has a width W3. Figure 13 is a cross-sectional view of the first cavity 220 taken along line AA in Figure 3. The sliding member 600 is disposed on the bottom surfaces of the first cavity 220 and the third sliding space 228, the second sliding portion 6003 is disposed in the second sliding space 227, the first sliding portion 6002 is disposed in the first sliding space 226, and the third sliding portion 6004 is disposed on the bottom surface of the first cavity 220. The second sliding part 6003 can slide within the second sliding space 227, the first sliding part 6002 can slide within the first sliding space 226, the third sliding part 6004 can slide on the bottom surface of the first cavity 220, and the sliding member 600 can slide within the third sliding space 228.
[0043] In this embodiment of the application, the second sliding space 227 is formed between the first step portion 503 of the elastic member 500 and the bottom surface of the first cavity 220, and the second sliding portion 6003 of the sliding member 600 is disposed in the second sliding space 227. Since the elastic member 500 can be tightly coupled with the first protrusion 223, the elastic member 500 may alternatively be tightly coupled with the first cavity 220 by using the elastic portion 503 to prevent the sliding member 600 from slipping out of the first cavity 220.
[0044] In this embodiment of the application, the length L1 of the first cavity 220 is equal to or greater than the length L4 of the sliding member 600, the length L2 of the first cavity 220 is equal to or greater than the length L4 of the sliding member 600, the length L1 of the first cavity 220 is equal to or less than the length L5 of the sliding member 600, and the length L2 of the first cavity 220 is equal to or less than the length L5 of the sliding member 600. This can prevent the sliding member 600 from slipping out of the third sliding space 228.
[0045] In this embodiment of the application, the size of the first sliding portion 6002 and the size of the second sliding portion 6003 may be different, or the appearance of the first sliding portion 6002 and the appearance of the second sliding portion 6003 may be different, so as to prevent the user from making an error when placing the sliding member 600 in the first cavity 220, and provide an error prevention function.
[0046] In this embodiment of the application, the neck portion 6005 of the first connecting piece can hang a rope, and the first hole 210 can have a rope hanging function, with one end of the rope hanging on the neck portion 6005 of the first connecting piece and the other end of the rope extending out through the first hole 210. The length L7 of the head portion 6006 of the first connecting piece is greater than the length L6 of the neck portion 6005 of the first connecting piece so as to prevent the rope from slipping out of the neck portion 6005 of the first connecting piece. The rope hanging function is realized by using the neck portion 6005 of the first connecting piece, thereby improving product competitiveness.
[0047] In one possible implementation, the neck portion 6005 of the first connecting piece can be used to hang a rope, and the first hole 210 can have a rope hanging function, with one end of the rope hanging on the neck portion 6005 of the first connecting piece and the other end of the rope extending out through the first hole 210. The width W3 of the head portion 6006 of the first connecting piece is greater than the width W2 of the neck portion 6005 of the first connecting piece so as to prevent the rope from slipping out of the neck portion 6005 of the first connecting piece. The rope hanging function can be achieved by using the neck portion 6005 of the first connecting piece, thereby improving product competitiveness.
[0048] In one possible implementation, the neck portion 6005 of the first connecting piece can be used to hang a rope, and the first hole 210 can have a rope hanging function, with one end of the rope hanging on the neck portion 6005 of the first connecting piece and the other end of the rope extending out through the first hole 210. To prevent the rope from slipping out of the neck portion 6005 of the first connecting piece, the length L7 of the head portion 6006 of the first connecting piece is greater than the length L6 of the neck portion 6005 of the first connecting piece, and the width W3 of the head portion 6006 of the first connecting piece is greater than the width W2 of the neck portion 6005 of the first connecting piece. The rope hanging function is realized by using the neck portion 6005 of the first connecting piece, thereby improving product competitiveness.
[0049] In this embodiment of the application, the sliding member 600 may have two or more third sliding portions 6004 so that the sliding member 600 can slide stably on the bottom surface of the first cavity 220 .
[0050] FIG. 14 is a schematic diagram of the structure of an electronic device and an ejector pin according to an embodiment of the present application. The ejector pin 700 includes an ejector pin head 710, which is movable along a first direction P1. The first direction P1 is a direction extending from the first hole 210 to the sliding member 600. FIG. 15 is a cross-sectional view of the electronic device and the ejector pin shown in FIG. 14 taken along line DD. The first cavity 220 has a width W4, and the first surface 1211 of the stopper 121 can at least partially face the second surface 6001 of the sliding member 600, and the recess 60051 of the neck portion 6005 of the first connecting piece at least partially faces the first hole 210.
[0051] In this embodiment of the application, two or more first surfaces 1211 can be disposed on the stopper 121, two or more second surfaces 6001 can be disposed on the sliding member 600, and the plurality of first surfaces 1211 and the plurality of second surfaces 6001 can face each other. In another possible design, the first surface 1211 is disposed on the stopper 121, two or more stoppers 121 can be disposed in the second accommodating space 120, and two or more second surfaces 6001 can be disposed on the sliding member 600, and the plurality of first surfaces 1211 and the plurality of second surfaces 6001 can face each other.
[0052] In this embodiment of the application, at least one of the first surface 1211 or the second surface 6001 can be a slope or an arcuate surface, and the width W1 of the sliding member 600 is smaller than the width W4 of the first cavity 220. When an acting force acts on the sliding member 600 through the first hole 210, the sliding member 600 can slide in the third sliding space 228 of the first cavity 220 along a first direction P1 toward the second cavity 230, and the stopper 121 generates a displacement relative to the sliding member 600 in a second direction P2, where the second direction P2 is a direction in which the second housing 200 extends toward the first housing 100. As the stopper 121 is displaced in the second direction P2, the first clamping member 111 and the second clamping member 231 change from clamping to separating, and the first housing 100 and the second housing 200 change from clamping to separating, thereby opening the electronic device 10. The sliding member 600 slides in the third sliding space 228 of the first cavity 220 toward the second cavity 230 along the first direction P1, thereby realizing the function of opening the electronic device 10 and improving product competitiveness.
[0053] In this embodiment of the present application, when the first housing 100 and the second housing 200 are clamped, the stopper 121 can at least partially abut against the sliding member 600, and the first surface 1211 can at least partially abut against the second surface 6001. When an acting force acts on the sliding member 600 through the first hole 210, the sliding member 600 slides in the third sliding space 228 of the first cavity 220 along the first direction P1 toward the second cavity 230, pushing the stopper 121 to cause a displacement in the second direction P2 relative to the sliding member 600, thereby causing the first clamping member 111 and the second clamping member 231 to change from clamping to separation, and causing the first housing 100 and the second housing 200 to change from clamping to separation, so that the electronic device 10 is opened. Since the stopper 121 at least partially abuts the sliding member 600, when the sliding member 600 slides in the third sliding space 228 along the first direction P1 to open the electronic device 10, the sliding displacement of the sliding member 600 is shortened, the speed at which the electronic device 10 can be opened is improved, and the product competitiveness is enhanced.
[0054] In this embodiment of the present application, a sliding slot may be disposed on the bottom surface of the first cavity 220, and a third sliding portion 6004 may be disposed in the sliding slot. The third sliding portion 6004 may slide within the sliding slot. When an acting force acts on the sliding member 600 through the first hole 210, the third sliding portion 6004 may slide within the sliding slot along the first direction P1 toward the second cavity 230, and the stopper 121 may be displaced in the second direction P2 relative to the sliding member 600. This causes the first clamping member 111 and the second clamping member 231 to change from clamping to separation, and the first housing 100 and the second housing 200 to change from clamping to separation, thereby opening the electronic device 10. The third sliding part 6004 slides in the sliding slot along the first direction P1 toward the second cavity 230, thereby realizing the function of opening the electronic device 10 and improving product competitiveness.
[0055] FIG. 16 is a schematic diagram of a structure in which the ejector pin shown in FIG. 14 is coupled to an electronic device along a first direction. The ejector pin 700 can move along the first direction P1 and be coupled to the second housing 200. The ejector pin head 710 of the ejector pin 700 can be at least partially disposed within the first hole 210. FIG. 17 is a cross-sectional view taken along E-E of the schematic diagram shown in FIG. 16. The ejector pin 700 can act on the sliding member 600 through the first hole 210. Under the acting force, the sliding member 600 moves along the first direction P1. The stopper 121 is displaced in the second direction P2 relative to the sliding member 600. The first clamping member 111 and the second clamping member 231 change from clamping to separation, and the first housing 100 and the second housing 200 change from clamping to separation.
[0056] FIG. 18 is a schematic diagram illustrating an opened electronic device. FIG. 19 is a cross-sectional view taken along line FF of the schematic diagram illustrated in FIG. 18. Referring to FIGS. 13 and 19, when it is necessary to open the electronic device 10, the ejector pin 700 is moved toward the second housing 200 along a first direction P1. When the ejector pin head 710 of the ejector pin 700 moves and at least partially abuts against the recess 60051 of the neck portion 6005 of the first connecting piece, the ejector pin head 710 of the ejector pin 700 presses the recess 60051 of the neck portion 6005 of the first connecting piece, applying a first acting force in the first direction P1 to the first connecting piece 6007. The first acting force drives the sliding member 600 to slide on the bottom surface of the first cavity 220 along the first direction P1, and the second surface 6001 of the sliding member 600 also moves in the first direction P1. At least one of the first surface 1211 of the stopper 121 and the second surface 6001 of the sliding member 600 may be an inclined surface or an arcuate surface. The first surface 1211 of the stopper 121 at least partially faces the second surface 6001 of the sliding member 600. The second surface 6001 of the sliding member 600 presses against the first surface 1211 of the stopper 121, applying a second acting force to the stopper 121 along the first direction P1, and a component of the second acting force in the second direction P2 is greater than zero. The component of the second acting force in the second direction P2 drives the stopper 121 to move along the second direction P2. The sliding member 600 presses against the first surface 1211 of the stopper 121, applying the second acting force to the stopper 121, and driving the first housing 100 to move along the second direction P2. The first clamping member 111 and the second clamping member 231 change from the clamped state to the separated state, the first housing 100 and the second housing 200 are separated, and the electronic device 10 is opened. The ejector pin 700 is used to push the sliding member 600, causing the sliding member 600 to slide in the third sliding space 228 of the first cavity 220 along the first direction P1 toward the second cavity 230, thereby realizing the function of opening the electronic device 10 and improving product competitiveness.
[0057] 20 is a schematic diagram of the electronic device 10 in a half-open state, in which the first clamping member 111 is separated from the second clamping member 231, and the first housing 100 is separated from the second housing 200. The ejector pin 700 inserted into the second housing 200 through the first hole 210 presses the sliding member 600 toward the inside of the first cavity 220, applying a first force in a first direction P1 to the sliding member 600. The first force drives the sliding member 600 to slide along the first direction P1, and the second surface 6001 of the sliding member 600 presses against the first surface 1211 of the stopper 121, applying a second force to the stopper 121. A component of the second force in the second direction P2 drives the stopper 121 to move along the second direction P2, which drives the first housing 100 to move along the second direction P2, thereby opening the electronic device 10. In this embodiment of the present application, a buckle is not required. The sliding member 600 is arranged to cooperate with the housing, and when the sliding member 600 is pushed via the ejector pin 700, the first clamping member 111 and the second clamping member 231 change from a clamped state to a separated state, and the first housing 100 and the second housing 200 change from a clamped state to a separated state. This ensures the integrity of the appearance of the electronic device 10. By using the sliding member 600, the ejector pin 700, and the first hole 210, the housing can change from a clamped state to a separated state and can also realize a rope hanging function. The electronic device 10 does not require an additional hole for hanging a rope, which reduces the number of holes on the product's appearance and improves the product's competitive appearance.
[0058] In this embodiment of the application, when the electronic device 10 needs to be closed, a third force is applied to the first housing 100 in a third direction P3 opposite to the second direction P2, and the third force drives the first housing 100 to move along the third direction P3 opposite to the second direction P2. When the first surface 1211 of the stopper 121 moves along the third direction P3, the first surface 1211 of the stopper 121 presses the second surface 6001 of the sliding member 600 to apply a fourth force to the sliding member 600, and a component of the fourth force in the fourth direction P4 opposite to the first direction P1 is greater than 0, and the component of the fourth force in the fourth direction P4 drives the sliding member 600 to move along the fourth direction P4 opposite to the first direction P1. When the first clamp member 111 is connected to the second clamp member 231 through buckling, the first housing 100 and the second housing 200 are joined together using the first clamp member 111 and the second clamp member 231, and the electronic device 10 is closed.
[0059] According to the electronic device provided in this embodiment of the present application, an ejector pin is inserted into the side hole of the second housing, and the first housing is lifted to disassemble the electronic device. Since there is no need for a buckle, the integrity of the electronic device's appearance is ensured. The side hole of the second housing can also function as a rope hanging hole. Since the electronic device does not require additional holes for hanging ropes, this reduces the number of holes on the product's appearance and improves the product's appearance competitiveness.
[0060] It should be further noted that in this embodiment of this application, relational terms such as first, second, third, and fourth are used merely to distinguish one entity or operation from another, and do not necessarily require or imply the existence of any actual relationship or order among those entities or operations. Also, the term "comprises" or any other term is intended to cover a non-exclusive inclusion, and thus a structure or device comprising a list of elements not only includes those elements, but also other elements not expressly listed, or further elements inherent in such structure or device. An element preceded by "comprises" or "contains" does not, without further constraints, exclude the presence of additional identical elements within the structure or device comprising that element.
[0061] The above description is merely a specific implementation of the embodiments and is not intended to limit the scope of protection of the embodiments. Any modifications or replacements within the technical scope disclosed in the embodiments shall fall within the scope of protection of the embodiments. Therefore, the scope of protection of the embodiments shall be governed by the scope of protection of the claims.
Claims
1. An electronic device having a first housing (100) and a second housing (200), The first housing (100) includes a stopper (121) and a first clamp member (111); The second housing (200) comprises a first cavity (220), a sliding member (600), and a second clamping member (231); The first cavity (220) has a first hole (210), the first cavity (220) communicates with the outside through the first hole (210), the sliding member (600) is disposed in the first cavity (220), and the first hole (210) is at least partially opposed to the sliding member (600), the first housing (100) and the second housing (200) are clamped and connected by using the first clamp member (111) and the second clamp member (231), and when the first clamp member (111) and the second clamp member (231) are clamped, the first housing (100) and the second housing (200) are clamped, and projections of the sliding member (600) and the stopper (121) in a first direction (P1) at least partially overlap, and the first direction (P1) is a direction in which the first hole (210) faces the sliding member (600); When an acting force acts on the sliding member (600) through the first hole (210), the sliding member (600) moves along the first direction (P1), the stopper (121) is displaced in a second direction (P2) relative to the sliding member (600), the first clamping member (111) and the second clamping member (231) change from clamping to separation, the first housing (100) and the second housing (200) change from clamping to separation, and the second direction (P2) is a direction in which the second housing (200) faces the first housing (100), a second protrusion (224) is disposed on a bottom surface of the first cavity (220), and a side arm (225) is disposed on a side wall of the first cavity (220); A first sliding space (226) is formed between the second protrusion (224) and the side arm (225), The sliding member (600) comprises a first sliding portion (6002), An action force acting on the sliding member (600) through the first hole (210) and the sliding member (600) moving along the first direction (P1) includes the action force acting on the sliding member (600) through the first hole (210) and the first sliding part (6002) moving relative to the first sliding space (226) along the first direction (P1). electronic equipment.
2. An electronic device having a first housing (100) and a second housing (200), The first housing (100) includes a stopper (121) and a first clamp member (111); The second housing (200) comprises a first cavity (220), a sliding member (600), and a second clamping member (231); The first cavity (220) has a first hole (210), the first cavity (220) communicates with the outside through the first hole (210), the sliding member (600) is disposed in the first cavity (220), and the first hole (210) is at least partially opposed to the sliding member (600), the first housing (100) and the second housing (200) are clamped and connected by using the first clamp member (111) and the second clamp member (231), and when the first clamp member (111) and the second clamp member (231) are clamped, the first housing (100) and the second housing (200) are clamped, and projections of the sliding member (600) and the stopper (121) in a first direction (P1) at least partially overlap, and the first direction (P1) is a direction in which the first hole (210) faces the sliding member (600); When an acting force acts on the sliding member (600) through the first hole (210), the sliding member (600) moves along the first direction (P1), the stopper (121) is displaced in a second direction (P2) relative to the sliding member (600), the first clamping member (111) and the second clamping member (231) change from clamping to separation, the first housing (100) and the second housing (200) change from clamping to separation, and the second direction (P2) is a direction in which the second housing (200) faces the first housing (100), The electronic device further comprises an elastic member (500), A first protrusion (223) is disposed on the bottom surface of the first cavity (220), The elastic member (500) has a second hole (501), and the elastic member (500) is disposed in the first cavity (220); The elastic member (500) and the first protrusion (223) fit together through the second hole (501). electronic equipment.
3. A first step portion (503) is disposed on the elastic member (500), and a second sliding space (227) is formed between the first step portion (503) and the bottom surface of the first cavity (220); The sliding member (600) comprises a second sliding portion (6003) and a third sliding portion (6004), The second sliding part (6003) is disposed in the second sliding space (227), and the third sliding part (6004) contacts the bottom surface of the first cavity (220). The electronic device according to claim 2 .
4. The action force acting on the sliding member (600) through the first hole (210) and the sliding member (600) moving along the first direction (P1) includes the action force acting on the sliding member (600) through the first hole (210), the second sliding part (6003) moving relative to the second sliding space (227) along the first direction (P1), and the third sliding part (6004) moving relative to the bottom surface of the first cavity (220) along the first direction (P1). The electronic device according to claim 3 .
5. A sliding slot is disposed on the bottom surface of the first cavity (220), and the sliding slot extends along the first direction (P1); the third slide (6004) is disposed within the slide slot; moving the third sliding portion (6004) relative to the bottom surface of the first cavity (220) along the first direction (P1) comprises moving the third sliding portion (6004) relative to the sliding slot along the first direction (P1); 5. The electronic device according to claim 4.
6. The elastic member (500) and the first protrusion (223) are in an interference fit; or The elastic member (500) and the first cavity (220) are in an interference fit. The electronic device according to claim 2 .
7. The electronic device according to claim 2 , wherein the material of the elastic member (500) is at least one of plastic, metal, or rubber.
8. An electronic device having a first housing (100) and a second housing (200), The first housing (100) includes a stopper (121) and a first clamp member (111); The second housing (200) comprises a first cavity (220), a sliding member (600), and a second clamping member (231); The first cavity (220) has a first hole (210), the first cavity (220) communicates with the outside through the first hole (210), the sliding member (600) is disposed in the first cavity (220), and the first hole (210) is at least partially opposed to the sliding member (600), the first housing (100) and the second housing (200) are clamped and connected by using the first clamp member (111) and the second clamp member (231), and when the first clamp member (111) and the second clamp member (231) are clamped, the first housing (100) and the second housing (200) are clamped, and projections of the sliding member (600) and the stopper (121) in a first direction (P1) at least partially overlap, and the first direction (P1) is a direction in which the first hole (210) faces the sliding member (600); When an acting force acts on the sliding member (600) through the first hole (210), the sliding member (600) moves along the first direction (P1), the stopper (121) is displaced in a second direction (P2) relative to the sliding member (600), the first clamping member (111) and the second clamping member (231) change from clamping to separation, the first housing (100) and the second housing (200) change from clamping to separation, and the second direction (P2) is a direction in which the second housing (200) faces the first housing (100), The sliding member (600) comprises a first connecting piece (6007), the first connecting piece (6007) comprising a neck portion (6005) of the first connecting piece and a head portion (6006) of the first connecting piece; The first hole (210) at least partially facing the sliding member (600) includes the first hole (210) at least partially facing the neck portion (6005) of the first connecting piece, The application of an action force to the sliding member (600) through the first hole (210) includes the application of the action force to the neck portion (6005) of the first connecting piece through the first hole (210). electronic equipment.
9. The length (L7) of the head portion (6006) of the first connecting piece is greater than the length (L6) of the neck portion (6005) of the first connecting piece, or the width (W3) of the head portion (6006) of the first connecting piece is greater than the width (W2) of the neck portion (6005) of the first connecting piece.
9. The electronic device according to claim 8.
10. An electronic device having a first housing (100) and a second housing (200), The first housing (100) includes a stopper (121) and a first clamp member (111); The second housing (200) comprises a first cavity (220), a sliding member (600), and a second clamping member (231); The first cavity (220) has a first hole (210), the first cavity (220) communicates with the outside through the first hole (210), the sliding member (600) is disposed in the first cavity (220), and the first hole (210) is at least partially opposed to the sliding member (600), the first housing (100) and the second housing (200) are clamped and connected by using the first clamp member (111) and the second clamp member (231), and when the first clamp member (111) and the second clamp member (231) are clamped, the first housing (100) and the second housing (200) are clamped, and projections of the sliding member (600) and the stopper (121) in a first direction (P1) at least partially overlap, and the first direction (P1) is a direction in which the first hole (210) faces the sliding member (600); When an acting force acts on the sliding member (600) through the first hole (210), the sliding member (600) moves along the first direction (P1), the stopper (121) is displaced in a second direction (P2) relative to the sliding member (600), the first clamping member (111) and the second clamping member (231) change from clamping to separation, the first housing (100) and the second housing (200) change from clamping to separation, and the second direction (P2) is a direction in which the second housing (200) faces the first housing (100), The first housing (100) comprises a sealing kit (112), and the second housing (200) comprises a second cavity (230); When the first housing (100) and the second housing (200) are clamped and connected by using the first clamp member (111) and the second clamp member (231), the second cavity (230) is sealed by using the sealing kit (112). electronic equipment.
11. The electronic device of claim 10, wherein the second cavity (230) comprises a battery (300) and a circuit board (400).
12. The stopper (121) has a first surface (1211), and the sliding member (600) has a second surface (6001); At least one of the first surface (1211) and the second surface (6001) is an inclined surface or an arcuate surface, the projections of the sliding member (600) and the stopper (121) in the first direction (P1) at least partially overlapping each other comprises the projections of the first surface (1211) and the second surface (6001) in the first direction (P1) at least partially overlapping each other. The electronic device according to any one of claims 1 to 11.
13. When the first housing (100) and the second housing (200) are clamped and connected by using the first clamping member (111) and the second clamping member (231), the stopper (121) at least partially abuts the sliding member (600). The electronic device according to any one of claims 1 to 11.
14. The electronic device according to claim 1 , wherein the stopper (121) and the first housing (100) are integrally formed.
Citation Information
Patent Citations
Housing fitting device of electronic apparatus
JP2006100554A