An electronic device

By designing a snap-fit ​​structure for sliders and stops in electronic devices, the problem of leaving handle positions during disassembly affecting the appearance is solved, achieving convenient disassembly without damaging the appearance.

CN116266978BActive Publication Date: 2026-01-02HUAWEI DEVICE CO LTD
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Patent Information

Application Number
CN202111544364.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-16
Publication Date
2026-01-02
Estimated Expiration
2041-12-16

AI Technical Summary

Technical Problem

Existing electronic devices require pre-reserved handle positions during disassembly, which affects the refinement of the appearance and results in an unattractive product appearance.

Method used

The first and second housings are connected by a snap-fit ​​mechanism. The design incorporates a sliding component and a stop block. The separation of the housings is achieved by the movement of the sliding component within the hole and the displacement of the stop block, thus avoiding the need for a pre-reserved handle position.

Benefits of technology

It enables convenient disassembly of electronic devices while maintaining their appearance integrity, thereby enhancing the product's competitiveness and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an electronic device, which comprises a first shell and a second shell, the first shell is provided with a stop block and a first clamping part; the second shell is provided with a first cavity, a sliding part and a second clamping part; the first cavity is provided with a first hole, the first cavity communicates with the outside through the first hole; the first shell and the second shell are clamped and connected through the first clamping part and the second clamping part; when a force acts on the sliding part through the first hole, the sliding part moves in a first direction, the stop block moves relative to the sliding part in a second direction, the first clamping part and the second clamping part change from clamping to separation, the first shell and the second shell change from clamping to separation, and the electronic device is opened.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electronic equipment, in particular to a portable electronic equipment. BACKGROUND

[0002] At present, in order to disassemble, a product line needs to reserve a hand hold position on the electronic equipment. Since the hand hold position will damage the appearance of the electronic equipment and affect the delicate degree of the appearance of the product, therefore, designing a convenient disassembly electronic equipment without affecting the appearance of the product becomes an important development direction. SUMMARY

[0003] In order to simplify the disassembly design of the electronic equipment while not affecting the appearance of the electronic equipment, the present application provides a convenient disassembly electronic equipment without affecting the appearance of the product:

[0004] The present application provides an electronic equipment 10, which comprises a first shell 100 and a second shell 200, the first shell 100 is provided with a first clamping part 111 and a stop block 121, the second shell 200 is provided with a first cavity 220, a sliding piece 600 and a second clamping part 231, wherein the first cavity 220 is provided with a first hole 210 and a sliding block 600, the first cavity 220 is communicated with the outside through the first hole 210, the first hole 210 and the sliding block 600 are at least partially opposite, the first clamping part 111 and the second clamping part 231 can be clamped and connected, and the first shell 100 and the second shell 200 can be clamped and connected through the first clamping part 111 and the second clamping part 231. When the first clamping part 111 and the second clamping part 231 are clamped, the first shell 100 and the second shell 200 are clamped, and the projection of the sliding piece 600 and the stop block 121 in a first direction P1 is at least partially overlapped, wherein the first direction P1 is the direction of the first hole 210 towards the sliding piece 600.

[0005] When a force acts on the above-mentioned sliding piece 600 through the first hole 210, the sliding piece 600 can move along the first direction P1, and the stop block 121 can produce displacement relative to the sliding piece 600 in a second direction P2, the displacement of the stop block 121 in the second direction P2 can make the first clamping part 111 and the second clamping part 231 change from clamping to separation, and the first shell 100 and the second shell 200 change from clamping to separation, so as to open the electronic equipment 10, wherein the second direction P2 is the direction of the second shell 200 extending to the first shell 100. Since the sliding piece 600 can open the electronic equipment 10 by moving along the first direction P1, it is not necessary to set a hand hold position, which ensures the integrity of the appearance of the electronic equipment 10 and improves the competitiveness of the product.

[0006] In the embodiments of the present application, the stopper 121 can include a first surface 1211, and the sliding member 600 can include a second surface 6001. At least one of the first surface 1211 or the second surface 6001 can be a bevel or an arc surface. Due to the at least partial overlap of the projections of the stopper 121 and the sliding member 600 in the first direction P1, the projections of the first surface 1211 and the second surface 6001 in the first direction P1 are at least partially overlapped.

[0007] In the embodiments of the present application, when the first shell 100 and the second shell 200 are connected by the first clamping portion 111 and the second clamping portion 231, the sliding member 600 and the stopper 121 can at least partially abut. When a force is applied to the sliding member 600 through the first hole 210, the sliding member 600 can move along the first direction P1 to push the stopper 121 to displace in the second direction P2 to open the electronic device 10. Due to the at least partial abutment of the sliding member 600 and the stopper 121, the displacement of the sliding member 600 is shortened when the sliding member 600 moves along the first direction P1 to push the stopper 121 to open the electronic device 10, which improves the speed of opening the electronic device 10 and the competitiveness of the product.

[0008] In the embodiments of the present application, the first chamber 220 can be provided with a bottom surface and a side wall. The bottom surface of the first chamber 220 can be provided with a second protrusion 224, and the side wall of the first chamber 220 can be provided with a side arm 225. The first sliding space 226 can be formed between the second protrusion 224 and the side arm 225. The sliding member 600 can be provided with a first sliding portion 6002, and the first sliding portion 6002 is arranged in the first sliding space 226. When a force is applied to the sliding member 600 through the first hole 210, the sliding member 600 can move along the first direction P1, the first sliding portion 6002 can move in the first sliding space 226 along the first direction P1, and the stopper 121 can displace relative to the sliding member 600 in the second direction P2 to open the electronic device 10. The first sliding space 226 is formed by the structure of the first chamber 220, and the at least partial structure of the sliding member 600 and the first sliding space 226 are slidingly matched, which simplifies the structure design and improves the competitiveness of the product.

[0009] In the embodiments of the present application, the first chamber 220 can be provided with a bottom surface and an elastic member 500. The bottom surface of the first chamber 220 can be provided with a first protrusion 223, and the elastic member 500 can be provided with a second hole 501. The elastic member 500 and the first protrusion 223 can be matched through the second hole 501 to prevent the elastic member 500 from falling off.

[0010] In the embodiments of the present application, the elastic member 500 can be provided with a first step portion 503, and a second sliding space 227 can be formed between the first step portion 503 and the bottom surface of the first cavity 220. The sliding member 600 can be provided with a second sliding portion 6003 and a third sliding portion 6004, the second sliding portion 6003 is arranged in the second sliding space 227, and the third sliding portion 6004 is in contact with the bottom surface of the first cavity 220. When a force acts on the sliding member 600 through the first hole 210, the sliding member 600 can move along the first direction P1, the second sliding portion 6003 can move along the first direction P1 in the second sliding space 227, and the third sliding portion 6004 can move along the first direction P1 on the bottom surface of the first cavity 220. The displacement of the stop block 121 relative to the sliding member 600 in the second direction P2 causes the electronic device 10 to open, thereby improving the competitiveness of the product. The second sliding space 227 is formed by at least part of the structure of the first cavity 220 and the elastic member 500, and at least part of the structure of the sliding member 600 and the second sliding space 227 are in sliding cooperation, thereby simplifying the structure design and improving the competitiveness of the product.

[0011] In the embodiments of the present application, the bottom surface of the first cavity 220 can be provided with a sliding groove extending along the first direction P1, and the third sliding portion 6004 is arranged in the sliding groove. When a force acts on the sliding member 600 through the first hole 210, the sliding member 600 can move along the first direction P1, and the third sliding portion 6004 can move along the first direction P1 in the sliding groove on the bottom surface of the first cavity 220. The displacement of the stop block 121 relative to the sliding member 600 in the second direction P2 causes the electronic device 10 to open. Through the cooperation of the sliding groove and the third sliding portion 6004, the sliding groove provides sliding support to the third sliding portion 6004, reduces the uncertainty of the sliding route, improves the structural reliability, and improves the competitiveness of the product.

[0012] In the embodiments of the present application, the elastic member 500 can be in interference fit with the first protrusion 223, and when the first shell 100 and the second shell 200 change from being engaged to being separated, the elastic member 500 and the first protrusion 223 are prevented from falling off.

[0013] In the embodiments of the present application, the elastic member 500 can be in interference fit with the first cavity 220, and when the first shell 100 and the second shell 200 change from being engaged to being separated, the elastic member 500 is prevented from falling off from the first cavity 220.

[0014] In the embodiment of the present application, the sliding member 600 can be provided with a first connecting member 6007, wherein the first connecting member 6007 can be provided with a neck portion 6005 of the first connecting member and a head portion 6006 of the first connecting member, the first hole 210 and the sliding block 600 are at least partially opposite, the first hole 210 and the neck portion 6005 of the first connecting member are at least partially opposite, when a force acts on the neck portion 6005 of the first connecting member through the first hole 210, the neck portion 6005 of the first connecting member moves along the first direction P1, the sliding member 600 moves along the first direction P1, the stop block 121 generates displacement relative to the sliding member 600 in the second direction P2 to open the electronic device 10, by providing the neck portion 6005 of the first connecting member and the head portion 6006 of the first connecting member, by applying a force to the neck portion 6005 of the first connecting member, the sliding member 600 is realized to slide out, and the hanging rope can also be provided on the neck portion 6005 of the first connecting member to realize the function of hanging the decoration, the function of the neck portion 6005 of the first connecting member is multiplexed, the sliding member 600 can be used to open the cover, and the sliding member 600 can also be used to realize the function of the hanging rope, thereby improving the competitiveness of the product.

[0015] In the embodiment of the present application, the length L7 of the head portion 6006 of the first connecting member can be longer than the length L6 of the neck portion 6005 of the first connecting member, or the width W3 of the head portion 6006 of the first connecting member can be wider than the width W2 of the neck portion 6005 of the first connecting member, when the neck portion 6005 of the first connecting member is provided with a hanging rope, by the size relationship, the hanging rope can be prevented from falling off the neck portion 6005 of the first connecting member.

[0016] In the embodiment of the present application, the stop block 121 and the first shell 100 can be integrally formed, which can prevent the stop block 121 from falling off the first shell 100, and simplify the design of the structure.

[0017] In the embodiment of the present application, the material of the elastic member 500 can be at least one of plastic, metal or rubber.

[0018] In the embodiment of the present application, the first shell 100 can be provided with a sealing member 112, and the second shell 200 can be provided with a second cavity 230, when the first shell 100 and the second shell 200 are connected by the first clamping portion 111 and the second clamping portion 231, the first cavity 220 and the second cavity 230 can be separated by the sealing member 112, the second cavity 230 can be sealed by the sealing member 112, to prevent water, dirt and the like from entering the second cavity 230 and corroding the devices in the second cavity 230.

[0019] In the embodiment of the present application, the second cavity 230 can be provided with a battery 300 and a circuit board 400.

[0020] In the embodiments of the present application, the electronic device 10 can be an electronic tag device, an electronic tracking device, an electronic positioning device, a mobile phone, a watch, a tablet computer, a notebook computer, an ultra-mobile personal computer (UMPC), a handheld computer, a touch TV, a walkie-talkie, a netbook, a POS machine, a wearable device, a virtual reality device, or the like. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 A schematic diagram of an electronic device according to an embodiment of the present application

[0022] Figure 2 A schematic diagram of a first housing according to an embodiment of the present application Figure 1 An exploded view of the electronic device shown in

[0023] Figure 3 A schematic diagram of the electronic device shown in Figure 1 A schematic diagram of the electronic device shown in

[0024] Figure 4 A schematic diagram of the first housing shown in Figure 3 A schematic diagram of the first housing shown in

[0025] Figure 5 A cross-sectional view of the first housing shown in Figure 4

[0026] Figure 6 An exploded view of the first chamber shown in Figure 3 A cross-sectional view of the first chamber shown in

[0027] Figure 7 A cross-sectional view of the first chamber shown in Figure 6

[0028] Figure 8 A schematic diagram of the elastic member shown in Figure 6 A schematic diagram of the elastic member shown in

[0029] Figure 9 A schematic diagram of the elastic member shown in Figure 6 A schematic diagram of the elastic member shown in

[0030] Figure 10 A cross-sectional view of the elastic member shown in

[0031] Figure 11 A schematic diagram of the sliding member shown in Figure 6 A schematic diagram of the sliding member shown in

[0032] Figure 12 A schematic diagram of the sliding member shown in Figure 6 A schematic diagram of the sliding member shown in

[0033] Figure 13 A cross-sectional view of the sliding member shown in​​Figure 3 The first chamber shown is a cross-sectional view from section AA.

[0034] Figure 14 A schematic diagram of an electronic device and a ejector pin provided in an embodiment of this application.

[0035] Figure 15 for Figure 14 The electronic device and ejector pin shown are in a cross-sectional view from section DD.

[0036] Figure 16 for Figure 14 The diagram shows the structure of the ejector pin combined with the electronic device along the first direction.

[0037] Figure 17 for Figure 16 The structural schematic diagram shown is a cross-sectional view of section EE.

[0038] Figure 18 To open the ejector pin along the first direction Figure 1 The schematic diagram of the electronic device shown

[0039] Figure 19 for Figure 18 The structural schematic diagram shown is a cross-sectional view from section FF.

[0040] Figure 20 for Figure 1 The diagram shows the structure of the electronic device in a semi-open state. Detailed Implementation

[0041] This application provides an electronic device.

[0042] like Figure 1 The diagram shown is a schematic diagram of an electronic device provided in an embodiment of this application.

[0043] The electronic devices in this application embodiment can be electronic tag devices, electronic tracking devices, electronic positioning devices, mobile phones, watches, tablet computers, laptops, ultra-mobile personal computers (UMPCs), handheld computers, touch screen TVs, walkie-talkies, netbooks, POS machines, wearable devices, virtual reality devices, and other electronic products.

[0044] The electronic device 10 includes a first housing 100 and a second housing 200, wherein the first housing 100 and the second housing 200 are combined, and the second housing 200 is provided with a first hole 210.

[0045] like Figure 2 As shown Figure 1The exploded view of the electronic device shown includes a first housing 100, a second housing 200, a battery 300, a circuit board assembly 400, an elastic element 500, and a sliding element 600. The second housing 200 is provided with a first chamber 220 and a second chamber 230. The first chamber 220 is provided with a first hole 210, and the second chamber 230 has a second snap-fit ​​portion 231.

[0046] like Figure 3 As shown Figure 1 The diagram shows the structure of the electronic device in its fully open state. The first housing 100 has a first accommodating space 110 and a second accommodating space 120. The first accommodating space 110 has a first latching portion 111, and the second accommodating space 120 has a stop 121, which has a first surface 1211. The second housing 200 has a first chamber 220 and a second chamber 230. The first chamber 220 contains an elastic member 500 and a sliding member 600, which has a second surface 6001. The second chamber 230 contains a battery 300, a circuit board assembly 400, and a second latching portion 231. The first latching portion 111 and the second latching portion 231 can be fastened together, allowing the first housing 100 and the second housing 200 to be securely connected.

[0047] In this embodiment, the first housing 100 may be provided with more than one first snap-fit ​​part 111, and the second chamber 230 may be provided with more than one second snap-fit ​​part 231. The multiple first snap-fit ​​parts 111 and the multiple second snap-fit ​​parts 231 can be connected in pairs. The first housing 100 and the second housing 200 can be connected through the multiple first snap-fit ​​parts 111 and the multiple second snap-fit ​​parts 231, so that the first housing 100 and the second housing 200 of the electronic device 10 are stably combined.

[0048] like Figure 4 As shown Figure 3 The diagram shows the structure of the first housing. Figure 5 As shown Figure 4The first shell is shown from the cross-sectional view of the cross-section line B-B, wherein the first shell 100 is further provided with a sealing member 112, the sealing member 112 is placed outside the first accommodating space 110, the first accommodating space 110 and the second accommodating space 120 are separated by the sealing member 112, when the first shell 100 and the second shell 200 are combined, the first cavity 220 and the second cavity 230 can also be separated by the sealing member 112. The first shell 100 and the second shell 200 can form a sealed cavity through the sealing member 112. Since the first cavity 220 is communicated with the outside through the first hole 210, water, air and other substances can enter the first cavity 220 through the first hole 210, the second cavity 230 can be isolated from the first cavity 220 by the sealing member 112, so as to avoid the damage of the battery 300, the circuit board assembly 400 and the like in the second cavity 230, and ensure the sealing of the product.

[0049] In the embodiment of the application, the material of the sealing member 112 can be rubber.

[0050] In the embodiment of the application, the sealing member 112 can have elasticity, when the sealing member 112 is placed outside the first accommodating space 110, since the sealing member 112 is extruded by the outer wall of the first accommodating space 110, the elastic effect of the sealing member 112 can make the sealing member 112 and the first shell 100 tightly combined, so as to prevent the sealing member 112 from falling off from the first shell 100.

[0051] In the embodiment of the application, the outer wall of the first accommodating space 110 can also have elasticity, when the sealing member 112 is placed outside the first accommodating space 110, since the outer wall of the first accommodating space 110 is extruded by the sealing member 112, the elastic effect of the outer wall of the first accommodating space 110 can make the sealing member 112 and the first shell 100 tightly combined, so as to prevent the sealing member 112 from falling off from the first shell 100.

[0052] As shown in Figure 6 As shown in Figure 3 As shown in the exploded view of the first cavity, the first cavity 220, the elastic member 500 and the sliding member 600 are included, wherein the first cavity 220 is provided with the first protrusion 223, the second protrusion 224 and the side arm 225. Figure 7 As shown in Figure 6 As shown in the cross-sectional view of the cross-section line C-C of the first cavity, the first cavity 220 has a length L1, the first cavity 220 has a bottom surface and a side wall, the bottom surface of the first cavity 220 and / or the side wall of the first cavity 220 can be smooth, and the bottom surface of the first cavity 220 and / or the side wall of the first cavity 220 can also be uneven. The bottom surface of the first cavity 220 is provided with the first protrusion 223 and the second protrusion 224, the side wall of the first cavity 220 is provided with the side arm 225, and the first sliding space 226 is formed between the side arm 225 and the second protrusion 224.

[0053] As shown in Figure 8 is a structural schematic diagram of a first perspective of the elastic member, as Figure 6 is a structural schematic diagram of a second perspective of the elastic member. The elastic member 500 is provided with a second hole 501, an elastic portion 502, and a first stepped portion 503. As Figure 9 is shown Figure 6 is a structural schematic diagram of a second perspective of the elastic member. The elastic member 500 is provided with a second hole 501, an elastic portion 502, and a first stepped portion 503. As Figure 10 is a cross-sectional view of the elastic member placed in Figure 6 the first chamber 220 from the cross-sectional view C-C, the elastic member 500 is placed in the first chamber 220, the first chamber 220 also has a length L2 and a length L3, the second sliding space 227 is formed between the first stepped portion 503 and the bottom surface of the first chamber 220, the first sliding space 226, the second sliding space 227, the side arm 225, the second protrusion 224, the side wall of the first chamber 220, the first stepped portion 503, and the bottom surface of the first chamber 220 form a third sliding space 228.

[0054] In the embodiment of the application, the elastic member 500 and the first protrusion 223 can be combined through the second hole 501, the first protrusion 223 and the inner wall of the elastic member 500 abut, because the inner wall of the elastic member 500 is extruded by the first protrusion 223, the elastic member 500 can make the first protrusion 223 and the elastic member 500 tightly combined by the elastic effect of the elastic member 500, preventing the elastic member 500 from falling off.

[0055] In the embodiment of the application, the first protrusion 223 can also have elasticity, the elastic member 500 and the first protrusion 223 are combined through the second hole 501, because the first protrusion 223 is compressed by the inner wall of the elastic member 500, the first protrusion 223 can make the first protrusion 223 and the elastic member 500 tightly combined by the elastic effect of the first protrusion 223, preventing the elastic member 500 from falling off.

[0056] In the embodiment of the application, the elastic member 500 can have more than one second hole 501, the first chamber 220 can have more than one first protrusion 223, the elastic member 500 and the plurality of first protrusions 223 are combined through the plurality of second holes 501, the plurality of first protrusions 223 and the inner wall of the elastic member 500 abut, because the inner wall of the elastic member 500 is extruded by the plurality of first protrusions 223, the elastic member 500 can make the plurality of first protrusions 223 and the elastic member 500 tightly combined by the elastic effect of the elastic member 500, preventing the elastic member 500 from falling off.

[0057] In the embodiment of the present application, the first protrusion 223 can also have elasticity, the elastic member 500 can have more than one second hole 501, the first chamber 220 can have more than one first protrusion 223, the elastic member 500 and the plurality of first protrusions 223 are combined through the plurality of second holes 501, the plurality of first protrusions 223 and the inner wall of the elastic member 500 abut, because the plurality of first protrusions 223 are compressed by the inner wall of the elastic member 500, the elastic rebound of the plurality of first protrusions 223 can make the plurality of first protrusions 223 and the elastic member 500 tightly combined, preventing the elastic member 500 from falling off.

[0058] In the embodiment of the present application, the second hole 501 can be a through hole, the height of the first protrusion 223 can be consistent with the length of the second hole 501, the elastic member 500 and the first protrusion 223 are combined 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 can be tightly combined, preventing the elastic member 500 from falling off.

[0059] In the embodiment of the present application, the elastic part 502 can abut the inner wall of the first chamber 220, the elastic rebound of the elastic part 502 can make the elastic member 500 and the first chamber 220 tightly combined, preventing the elastic member 500 from falling off.

[0060] In the embodiment of the present application, the elastic member 500 can be provided with more than one elastic part 502, the plurality of elastic parts 502 and the inner wall of the first chamber 220 abut, through the elastic rebound of the plurality of elastic parts 502, the elastic member 500 and the first chamber 220 can be tightly combined, preventing the elastic member 500 from falling off.

[0061] As shown in Figure 11 As shown in Figure 6 As shown in FIG. 6A is a structure schematic diagram of the first perspective of the sliding member, including a first sliding part 6002, a second sliding part 6003, a third sliding part 6004 and a first connecting piece 6007. Wherein, the sliding member 600 has a length L4 and a length L5, the first connecting piece 6007 is provided with a neck part 6005 of the first connecting piece and a head part 6006 of the first connecting piece, the neck part 6005 of the first connecting piece has a length L6, the head part 6006 of the first connecting piece has a length L7, and the neck part 6005 of the first connecting piece is provided with a recess 60051. As shown in Figure 12 As shown in Figure 4 As shown in FIG. 6B is a structure schematic diagram of the second perspective of the sliding member, the sliding member 600 further has a second surface 6001, wherein the sliding member 600 has a width W1, the neck part 6005 of the first connecting piece has a width W2, and the head part 6006 of the first connecting piece has a width W3. As shown in Figure 13 As shown in Figure 3The first chamber is shown from the cross-sectional view of the section line A-A. The sliding member 600 is placed on the bottom surface of the first chamber 220 and the third sliding space 228. The second sliding part 6003 is placed in the second sliding space 227. The first sliding part 6002 is placed in the first sliding space 226. The third sliding part 6004 is placed on the bottom surface of the first chamber 220. The second sliding part 6003 can slide in the second sliding space 227. The first sliding part 6002 can slide in the first sliding space 226. The third sliding part 6004 can slide on the bottom surface of the first chamber 220. The sliding member 600 can slide in the third sliding space 228.

[0062] In the embodiment, the first step part 503 of the elastic member 500 and the bottom surface of the first chamber 220 form the second sliding space 227. The second sliding part 6003 of the sliding member 600 is placed in the second sliding space 227. Since the elastic member 500 can be closely combined with the first protrusion 223, the elastic member 500 can be closely combined with the first chamber 220 through the first step part 503. The sliding member 600 can be prevented from falling off from the first chamber 220.

[0063] In the embodiment, the length L1 of the first chamber 220 is not less than the length L4 of the sliding member 600. The length L2 of the first chamber 220 is not less than the length L4 of the sliding member 600. The length L1 of the first chamber 220 is not greater than the length L5 of the sliding member 600. The length L2 of the first chamber 220 is not greater than the length L5 of the sliding member 600. The sliding member 600 can be prevented from falling off from the third sliding space 228.

[0064] In the embodiment, the size of the first sliding part 6002 and the size of the second sliding part 6003 can be different, or the shape of the first sliding part 6002 and the shape of the second sliding part 6003 can be different. The user can be prevented from misoperation when placing the sliding member 600 in the first chamber 220, and the function of preventing mistakes is achieved.

[0065] In the embodiment, the neck part 6005 of the first connecting member can hang a rope. The first hole 210 can have the function of a rope hole. One end of the rope is hung on the neck part 6005 of the first connecting member. The other end of the rope is stretched out through the first hole 210. The length L7 of the head part 6006 of the first connecting member is greater than the length L6 of the neck part 6005 of the first connecting member. The rope can be prevented from falling off from the neck part 6005 of the first connecting member. Since the function of the rope is achieved through the neck part 6005 of the first connecting member, the competitiveness of the product is improved.

[0066] In a possible implementation, the neck part 6005 of the first connecting member can hang a rope. The first hole 210 can have the function of a rope hole. One end of the rope is hung on the neck part 6005 of the first connecting member. The other end of the rope is stretched out through the first hole 210.

[0067] The width W3 of the head 6006 of the first connector is wider than the width W2 of the neck 6005 of the first connector, which can prevent the lanyard from falling off the neck 6005 of the first connector. Since the lanyard function is achieved through the neck 6005 of the first connector, the competitiveness of the product is enhanced.

[0068] In one possible implementation, the neck 6005 of the first connector can be used to hang a rope, and the first hole 210 can function as a rope hanging hole. One end of the rope is hung on the neck 6005 of the first connector, and the other end of the rope extends out through the first hole 210.

[0069] The length L7 of the head 6006 of the first connector is greater than the length L6 of the neck 6005 of the first connector, and the width W3 of the head 6006 of the first connector is greater than the width W2 of the neck 6005 of the first connector, which can prevent the lanyard from falling off the neck 6005 of the first connector. Since the function of hanging the lanyard is realized through the neck 6005 of the first connector, the competitiveness of the product is enhanced.

[0070] In this embodiment of the application, the slider 600 may have more than one third sliding part 6004, which can make the slider 600 slide stably on the bottom surface of the first chamber 220.

[0071] like Figure 14 The diagram shown is a structural schematic of an electronic device and a ejector pin according to an embodiment of this application. It includes an ejector pin 700, wherein the ejector pin 700 is provided with an ejector pin head 710, and the ejector pin 700 can move along a first direction P1, wherein the first direction P1 is the direction extending from the first hole 210 towards the slider 600. Figure 15 As shown Figure 14 The electronic device and the ejector pin shown are in a cross-sectional view from section DD. The first chamber 220 has a width W4. The first surface 1211 of the stop 121 may at least partially face the second surface 6001 of the slider 600. The recess 60051 of the neck 6005 of the first connector is at least partially facing the first hole 210.

[0072] In this embodiment, the stop 121 may have more than one first surface 1211, and the slider 600 may have more than one second surface 6001, with the multiple first surfaces 1211 and the multiple second surfaces 6001 facing each other in pairs. In another possible design, the stop 121 has a first surface 1211, the second accommodating space 120 may have more than one stop 121, and the slider 600 may have more than one second surface 6001, with the multiple first surfaces 1211 and the multiple second surfaces 6001 facing each other in pairs.

[0073] In the embodiments of the present application, at least one of the first surface 1211 or the second surface 6001 can be an inclined surface or an arc surface, and the width W1 of the sliding piece 600 is less than the width W4 of the first chamber 220. When a force acts on the sliding piece 600 through the first hole 210, the sliding piece 600 can slide along the first direction P1 towards the second chamber 230 in the third sliding space 228 of the first chamber 220, and the stopper 121 is displaced relative to the sliding piece 600 in the second direction P2, wherein the second direction P2 is the direction in which the second shell 200 extends towards the first shell 100. The displacement of the stopper 121 in the second direction P2 causes the first clamping part 111 and the second clamping part 231 to change from clamping to separation, and the first shell 100 and the second shell 200 change from clamping to separation, so that the electronic device 10 is opened. Since the sliding piece 600 achieves the function of opening the electronic device 10 by sliding along the first direction P1 towards the second chamber 230 in the third sliding space 228 of the first chamber 220, the competitiveness of the product is improved.

[0074] In the embodiments of the present application, when the first shell 100 and the second shell 200 are clamped, the stopper 121 and the sliding piece 600 can at least partially abut, and the first surface 1211 and the second surface 6001 at least partially abut. When a force acts on the sliding piece 600 through the first hole 210, the sliding piece 600 can slide along the first direction P1 towards the second chamber 230 in the third sliding space 228 of the first chamber 220, and the stopper 121 is displaced relative to the sliding piece 600 in the second direction P2, causing the first clamping part 111 and the second clamping part 231 to change from clamping to separation, and the first shell 100 and the second shell 200 change from clamping to separation, so that the electronic device 10 is opened. Since the stopper 121 and the sliding piece 600 at least partially abut, the displacement of the sliding piece 600 when sliding along the first direction P1 in the third sliding space 228 to open the electronic device 10 is shortened, the speed of opening the electronic device 10 is improved, and the competitiveness of the product is improved.

[0075] In the embodiments of the present application, the bottom surface of the first chamber 220 can be provided with a sliding groove, and the third sliding part 6004 is arranged in the sliding groove. When a force acts on the sliding piece 600 through the first hole 210, the third sliding part 6004 can slide along the first direction P1 towards the second chamber 230 in the sliding groove, and the stopper 121 is displaced relative to the sliding piece 600 in the second direction P2, causing the first clamping part 111 and the second clamping part 231 to change from clamping to separation, and the first shell 100 and the second shell 200 change from clamping to separation, so that the electronic device 10 is opened. Since the third sliding part 6004 achieves the function of opening the electronic device 10 by sliding along the first direction P1 towards the second chamber 230 in the sliding groove, the competitiveness of the product is improved.

[0076] AsFigure 16 As shown in Figure 14 As shown in the structure diagram of the combination of the ejector pin along the first direction and the electronic device, the ejector pin 700 can move along the first direction P1 and combine with the second shell 200. The ejector pin head 710 of the ejector pin 700 can be at least partially placed in the first hole 210, as Figure 17 As shown in Figure 16 As shown in the structure diagram from the cross-sectional view of the section line E-E, the ejector pin 700 can act on the sliding piece 600 through the first hole 210. The acting force makes the sliding piece 600 move along the first direction P1, the stopper 121 generates displacement relative to the sliding piece 600 in the second direction P2, the first clamping part 111 and the second clamping part 231 change from buckling to separation, and the first shell 100 and the second shell 200 change from buckling to separation.

[0077] As shown in Figure 18 As shown in the structure diagram of opening the electronic device, as Figure 19 As shown in Figure 18 As shown in the structure diagram from the cross-sectional view of the section line F-F, the combination Figure 13 and Figure 19 When it is needed to open the electronic device 10, the ejector pin 700 moves along the first direction P1 towards the second shell 200. When the ejector pin head 710 of the ejector pin 700 moves to at least partially abut the recess 60051 of the neck 6005 of the first connecting piece 6007, the ejector pin head 710 of the ejector pin 700 gives the first connecting piece 6007 a first acting force in the first direction P1 by pushing the recess 60051 of the neck 6005 of the first connecting piece 6007. The first acting force makes the sliding piece 600 slide along the first direction P1 on the bottom surface of the first cavity 220, and the second surface 6001 of the sliding piece 600 also moves along the first direction P1. At least one of the first surface 1211 of the stopper 121 or the second surface 6001 of the sliding piece 600 can be an inclined surface or an arc surface. The first surface 1211 of the stopper 121 at least partially abuts the second surface 6001 of the sliding piece 600. The second surface 6001 of the sliding piece 600 gives the stopper 121 a second acting force by pushing the first surface 1211 of the stopper 121 along the first direction P1. The component of the second acting force in the second direction P2 is greater than 0. The component of the second acting force in the second direction P2 makes the stopper 121 move along the second direction P2. The sliding piece 600 makes the first shell 100 move along the second direction P2 by giving the stopper 121 the second acting force by pushing the first surface 1211 of the stopper 121. The first clamping part 111 and the second clamping part 231 change from the buckling state to separation. The first shell 100 and the second shell 200 are separated. The electronic device 10 is opened. Since the sliding piece 600 is pushed by the ejector pin 700 to slide along the first direction P1 in the third sliding space 228 of the first cavity 220 towards the second cavity 230, the function of opening the electronic device 10 is realized, and the competitiveness of the product is improved.

[0078] As shown in Figure 20 The electronic device 10 is shown in a half-open state, the first clamping part 111 and the second clamping part 231 are separated, and the first shell 100 and the second shell 200 are separated. Due to the insertion of the ejector pin 700 into the first hole 210 of the second shell 200, the first action force of the sliding piece 600 inside the first cavity 220 pushes the second surface 6001 of the sliding piece 600 to slide along the first direction P1, the second action force of the first surface 1211 of the stop block 121 pushes the stop block 121 to move along the second direction P2, and the stop block 121 drives the first shell 100 to move along the second direction P2, so that the electronic device 10 is opened. The embodiment of the present application does not need to set a hand buckle position, and the sliding piece 600 is matched with the shell. The sliding piece 600 is pushed by the ejector pin 700, so that the first clamping part 111 and the second clamping part 231 change from the buckling state to the separation state, and the first shell 100 and the second shell 200 change from the buckling state to the separation state. The integrity of the appearance of the electronic device 10 is ensured. The sliding piece 600, the ejector pin 700 and the first hole 210 can change the shell from the buckling state to the separation state, and can also realize the function of the rope hole. The electronic device 10 does not need to additionally open a hole for hanging a rope, the number of product appearance holes is reduced, and the appearance competitiveness of the product is improved.

[0079] In the embodiment of the present application, when it is necessary to close the electronic device 10, a third action force in a third direction P3 opposite to the second direction P2 is applied to the first shell 100, the third action force drives the first shell 100 to move along the third direction P3 opposite to the second direction P2, the first surface 1211 of the stop block 121 moves along the third direction P3, the fourth action force of the first surface 1211 of the stop block 121 to the second surface 6001 of the sliding piece 600 is applied to the sliding piece 600, the component of the fourth action force in a fourth direction P4 opposite to the first direction P1 is greater than 0, the component of the fourth action force in the fourth direction P4 drives the sliding piece 600 to move along the fourth direction P4 opposite to the first direction P1, when the first clamping part 111 and the second clamping part 231 are buckled and connected, the first shell 100 and the second shell 200 are combined through the first clamping part 111 and the second clamping part 231, and the electronic device 10 is closed.

[0080] The electronic device provided by the embodiment of the present application adopts the ejector pin inserted into the side hole of the second shell, and the first shell is lifted to disassemble the electronic device. Since the hand buckle position is not needed to be set, the integrity of the appearance of the electronic device is ensured. The side hole of the second shell can also have the function of the rope hole. Since the electronic device does not need to additionally open a hole for hanging a rope, the number of product appearance holes is reduced, and the appearance competitiveness of the product is improved.

[0081] It should also be noted that the terms "first", "second", "third", "fourth" and the like in the description and in the claims, merely serve to identify different elements, and do not necessarily have to be taken in the literal sense. Furthermore, the terms "comprise", "include" or "contain" or any other variation thereof are intended to cover a non-exclusive inclusion, such that a structure or device that comprises, includes or contains an element or list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such structure or device. An element proceeded by "comprises... a", "includes... a", "has... a" or "contains... a", does not, without further constraints, preclude the existence of additional identical elements in the structure or device.

[0082] The above description is merely one specific implementation of the present embodiments. However, it is to be understood that the application is not to be limited to the specific arrangements or instrumentalities described, since other variations or modifications can be made within the technical scope of the present embodiments. Therefore, the scope of the present embodiments should be determined by the scope of the claims.

Claims

1. An electronic device, characterized in that, include: First housing (100), second housing (200), wherein: The first housing (100) is provided with a stop (121) and a first snap-fit ​​part (111). The second housing (200) is provided with a first chamber (220), a slider (600) and a second snap-fit ​​portion (231); the stop (121) includes a first surface (1211) and the slider (600) includes a second surface (6001); at least one of the first surface (1211) or the second surface (6001) is a slope or an arc surface; The first chamber (220) is provided with a first hole (210), and the first chamber (220) communicates with the outside through the first hole (210). The sliding member (600) is disposed in the first chamber (220), and the first hole (210) and the sliding member (600) are at least partially opposite to each other. The first housing (100) and the second housing (200) are engaged and connected by the first snap-fit ​​part (111) and the second snap-fit ​​part (231). When the first snap-fit ​​part (111) and the second snap-fit ​​part (231) are engaged, the first housing (100) and the second housing (200) are engaged, and the projections of the slider (600) and the stop (121) in a first direction (P1) at least partially overlap. The first direction (P1) is the direction from the first hole (210) toward the slider (600). When the first housing (100) and the second housing (200) are engaged and connected by the first snap-fit ​​part (111) and the second snap-fit ​​part (231), the stop (121) and the slider (600) at least partially abut against each other. When a force is applied to the slider (600) through the first hole (210), the slider (600) moves along the first direction (P1), and the stop (121) is displaced relative to the slider (600) in the second direction (P2). The first locking part (111) and the second locking part (231) change from being engaged to being disengaged, and the first housing (100) and the second housing (200) change from being engaged to being disengaged. The second direction (P2) is the direction in which the second housing (200) faces the first housing (100).

2. The electronic device according to claim 1, characterized in that, The projections of the slider (600) and the stop (121) in the first direction (P1) at least partially overlap, including: the projections of the first surface (1211) and the second surface (6001) in the first direction (P1) at least partially overlap.

3. The electronic device according to claim 1, characterized in that, The bottom surface of the first chamber (220) is provided with a second protrusion (224), and the side wall of the first chamber (220) is provided with a side arm (225). A first sliding space (226) is formed between the second protrusion (224) and the side arm (225); The slider (600) is provided with a first sliding part (6002); The force acts on the slider (600) through the first hole (210), and the slider (600) moves along the first direction (P1), including: the force acts on the slider (600) through the first hole (210), and the first sliding part (6002) moves relative to the first sliding space (226) along the first direction (P1).

4. The electronic device according to any one of claims 1 to 3, characterized in that, The electronic device also includes an elastic element (500); The bottom surface of the first chamber (220) is provided with a first protrusion (223); The elastic element (500) is provided with a second hole (501), and the elastic element (500) is disposed in the first chamber (220); The elastic element (500) and the first protrusion (223) are engaged through the second hole (501).

5. The electronic device according to claim 4, characterized in that, The elastic element (500) is provided with a first step portion (503), and a second sliding space (227) is formed between the first step portion (503) and the bottom surface of the first chamber (220). The slider (600) is provided with a second sliding part (6003) and a third sliding part (6004). The second sliding part (6003) is disposed in the second sliding space (227), and the third sliding part (6004) is in contact with the bottom surface of the first chamber (220).

6. The electronic device according to claim 5, characterized in that, The force is applied to the slider (600) through the first hole (210), and the slider (600) moves along the first direction (P1), including: the force is applied to the slider (600) through the first hole (210), the second sliding part (6003) moves relative to the second sliding space (227) along the first direction (P1), and the third sliding part (6004) moves relative to the bottom surface of the first chamber (220) along the first direction (P1).

7. The electronic device according to claim 6, characterized in that, The bottom surface of the first chamber (220) is provided with a sliding groove, which extends along the first direction (P1); The third sliding part (6004) is disposed in the sliding groove; The third sliding part (6004) moves relative to the bottom surface of the first chamber (220) along the first direction (P1), including: the third sliding part (6004) moves relative to the slide groove along the first direction (P1).

8. The electronic device according to claim 4, characterized in that, The elastic element (500) and the first protrusion (223) are interference-fitted.

9. The electronic device according to claim 4, characterized in that, The elastic element (500) and the first chamber (220) are interference-fitted.

10. The electronic device according to any one of claims 1 to 3, or any one of claims 5 to 9, characterized in that, The slider (600) is provided with a first connector (6007), and the first connector (6007) is provided with a neck (6005) and a head (6006). The first hole (210) and the slider (600) are at least partially opposite, including: the first hole (210) and the neck (6005) of the first connector are at least partially opposite; The force is applied to the slider (600) through the first hole (210), including: the force is applied to the neck (6005) of the first connector through the first hole (210).

11. The electronic device according to claim 10, characterized in that, The length (L7) of the head (6006) of the first connector is longer than the length (L6) of the neck (6005) of the first connector, or the width (W3) of the head (6006) of the first connector is wider than the width (W2) of the neck (6005) of the first connector.

12. The electronic device according to any one of claims 1 to 3, or any one of claims 5 to 9, or claim 11, characterized in that, The stop block (121) and the first housing (100) are integrally formed.

13. The electronic device according to claim 4, characterized in that, The elastic element (500) is made of at least one of plastic, metal or rubber.

14. The electronic device according to any one of claims 1 to 3, or any one of claims 5 to 9, or claim 11, or claim 13, characterized in that, The first housing (100) is provided with a sealing element (112), and the second housing (200) is provided with a second chamber (230). When the first housing (100) and the second housing (200) are engaged and connected by the first snap-fit ​​part (111) and the second snap-fit ​​part (231), the second chamber (230) is sealed by the seal (112).

15. The electronic device according to claim 14, characterized in that, The second chamber (230) is equipped with a battery (300) and a circuit board (400).

16. The electronic device according to any one of claims 1 to 3, or any one of claims 5 to 9, or claim 11, or claim 13, or claim 15, characterized in that, The electronic device is an electronic tracking device.

Citation Information

Patent Citations

  • Electronic equipment and housing locking mechanism used for electronic equipment

    CN106505167A