Male end piece, female end piece, hanger device and electronic equipment assembly

By using the rotation or compression self-locking design of the male and female terminals, combined with elasticity and limiting parts, the problem of high difficulty in self-locking operation of electronic devices is solved, and simplified mounting and ultra-thin wall mounting are achieved.

CN120926346APending Publication Date: 2025-11-11HUAWEI TECH CO LTD
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Patent Information

Application Number
CN202410581542.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-10
Publication Date
2025-11-11

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Abstract

The embodiment of the invention provides a male end piece, a female end piece, a hanger device and an electronic equipment assembly, and belongs to the technical field of hangers. The hanger device comprises a male end piece and a female end piece, and the male end piece is used for being connected with electronic equipment. The female end piece comprises a main body part and a self-locking part, the self-locking part is fixedly connected with the main body part, the self-locking part and the main body part form a first containing space used for containing a part of the male end piece, and the first containing space is used for forming a self-locking structure with the male end piece. One of the main body part and the male end piece comprises a connecting body, the other comprises a matching space, and the connecting body is matched with the matching space, so that the main body part bears the male end piece. Through the arrangement, the self-locking difficulty of the male end piece and the female end piece can be reduced, and the hanging difficulty of the electronic equipment is reduced.
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Description

Technical Field

[0001] This application relates to the field of rack technology, and in particular to a male terminal, a female terminal, a rack device, and an electronic device assembly. Background Technology

[0002] Currently, electronic devices such as televisions, monitors, and advertising screens are mounted on walls or supporting structures using brackets. These brackets typically include a fixed plate, two support beams, and a self-locking mechanism. The fixed plate is securely attached to the wall, and the two support beams are connected to opposite ends of the fixed plate and then to the casing of the electronic device. After the fixed plate and support are connected, pulling the cord of the self-locking mechanism locks it in place, preventing the fixed plate and support beams from accidentally falling. However, the limited space behind the electronic device increases the difficulty of operating the cord, making the self-locking mechanism more challenging. Summary of the Invention

[0003] This application provides a male terminal, a female terminal, a mounting bracket, and an electronic device assembly, which can reduce the difficulty of self-locking the male and female terminals and reduce the difficulty of mounting electronic devices.

[0004] This application provides a mounting bracket device, including a male terminal and a female terminal, the male terminal being used to connect to an electronic device. The female terminal includes a main body and a self-locking part, the self-locking part being fixedly connected to the main body, the self-locking part and the main body forming a first receiving space for accommodating a portion of the male terminal, the first receiving space being used to form a self-locking structure with the male terminal. One of the main body and the male terminal includes a connecting body, and the other includes a mating space, the connecting body and the mating space mating together, such that the main body carries the male terminal.

[0005] During the installation of the mounting bracket, the female end is fixedly mounted on a wall or other fixed location, while the male end is fixedly mounted on the electronic device. The male and female ends are connected via a connector and a mating space, and the electronic device is then hung on the wall or other fixed location using the mounting bracket. The male end can be inserted into the first receiving space by rotating relative to the female end, or by squeezing the male end, thus partially locking it into the first receiving space. The first receiving space and the male end form a self-locking structure, achieving self-locking. Therefore, once part of the male end is locked into the first receiving space, the first receiving space and the male end automatically form a self-locking structure, requiring no additional operation and reducing the difficulty of self-locking between the male and female ends.

[0006] In one possible implementation, the male end member is rotatably connected to the main body and is rotatable relative to the female end member about a rotation axis parallel to a first direction, causing the male end member to move from a first position to a second position. The first direction is the thickness direction of the female end member. When the male end member is in the first position, it is located outside the first receiving space. When the male end member is in the second position, it is located inside the first receiving space.

[0007] During the connection process between the male and female terminals, the male terminal first connects to the main body and abuts against the self-locking part along the first direction. The self-locking part is located between the male terminal and the main body along the first direction, meaning the male terminal is outside the first receiving space. Then, the male terminal rotates relative to the female terminal until it separates from the self-locking part, meaning the male terminal passes the self-locking part. Immediately afterwards, while moving towards the female terminal along the first direction, the male terminal rotates again relative to the female terminal, causing it to return to its original position and engage with the interior of the first receiving space, thus achieving self-locking. Therefore, by utilizing the rotation of the male terminal relative to the female terminal, a portion of the male terminal can be engaged with the interior of the first receiving space without a visible view, simplifying the operation and reducing the difficulty of self-locking.

[0008] In one possible implementation, the main body includes a base and a connector. A first end of the base is fixedly connected to the connector, and a second end of the base is fixedly connected to a self-locking part. The connector and the base form a second receiving space for accommodating a portion of the male connector. The male connector includes a mating space, and the connector passes through the mating space and abuts against the male connector in a second direction. The second direction is defined as the direction of gravity and is perpendicular to the first direction. This allows the male connector to be suspended from the main body, reducing the difficulty of the female connector supporting the male connector.

[0009] In one possible implementation, along the first direction, the highest point of the self-locking part is flush with the highest point of the connecting body, or, along the first direction, the highest point of the self-locking part is located between the highest point of the connecting body and the base. Here, the highest point of the self-locking part refers to the point on the self-locking part that is farthest from the base in the first direction, and the highest point of the connecting body refers to the point on the connecting body that is farthest from the base in the first direction.

[0010] This reduces the thickness of the female end component in the first direction, which helps to achieve a thinner design for the hanger device.

[0011] In one possible implementation, the female end member further includes an elastic portion, which is fixedly connected to the main body portion and is used to abut against the male end member in a second direction.

[0012] In this way, as the male end rotates relative to the female end and passes the self-locking part, the elastic part abuts against the male end, indicating the position of the male end. Thus, the user does not need to observe to know that the male end has passed the self-locking part, which further reduces the difficulty of the male end locking into the first receiving space and helps to further reduce the difficulty of self-locking between the male end and the female end.

[0013] In one possible implementation, the female end member further includes a first limiting part, which is fixedly connected to the main body. The first limiting part and the self-locking part are spaced apart in a third direction, and the first limiting part is used to abut against the male end member in a third direction. The first direction, the second direction, and the third direction are perpendicular to each other.

[0014] In this way, as the male end rotates relative to the female end and passes the self-locking part, the first limiting part abuts against the male end, indicating that the male end has passed the self-locking part and preventing the male end from disengaging. Furthermore, as the male end rotates relative to the female end and engages with the first receiving space, the first limiting part abuts against the male end, ensuring that a portion of the male end is already inside the first receiving space without requiring further observation. Therefore, by abutting against the male end from a third-order upward direction, the difficulty of the male end engaging with the first receiving space is reduced, further simplifying the self-locking process between the male and female ends.

[0015] In one possible implementation, the male end member includes a first connector, a second connector, and a sleeve. The first connector is for detachable connection to the female end member, and the second connector is for detachable connection to an electronic device. The first and second connectors are rotatably connected. One of the first and second connectors includes a pivot portion, and the other includes a third receiving space for accommodating the pivot portion. The sleeve is fitted onto the outer wall of the pivot portion and located inside the third receiving space, abutting against the inner walls of both the pivot portion and the third receiving space.

[0016] During the connection process between the male and female terminals, the first and second connectors are spaced at a certain angle, facilitating the connection of the first connector to the female terminal and reducing the difficulty of connecting them. Furthermore, the sleeve abuts against the interior of both the rotating shaft and the third receiving space, providing appropriate damping between the first and second connectors. This prevents the first connector from easily rotating relative to the second connector, thus maintaining a constant angle between them and further reducing the difficulty of connecting the male and female terminals.

[0017] In one possible implementation, the second connector includes a fixedly connected connecting portion and a bent portion, the connecting portion being used to connect to an electronic device, and the bent portion and the connecting portion forming a third receiving space.

[0018] This allows the third receiving space to be formed through bending, which helps reduce the difficulty of forming the third receiving space. Additionally, it reduces the difficulty of assembling the second connector with the first connector, thus improving the production efficiency of the male connector.

[0019] In one possible implementation, the second connector further includes at least one first through hole, which extends through the connection portion and the bend portion, and is used to receive a screw that is threadedly connected to at least one of the connection portion and the bend portion.

[0020] Thus, after the sleeve wears to a certain extent, a screw can be screwed into at least one through hole to ensure that the damping force generated when the sleeve is compressed meets the requirements. Additionally, screwing in a screw can also increase the clamping force of the bend and connection parts on the sleeve.

[0021] In one possible implementation, the second connector further includes at least one second through hole for receiving a screw that is threaded to an electronic device.

[0022] In this way, after the female terminal is connected to the fixed position, the electronic device engages with the second through holes at different positions on the male terminal, so that the height of the electronic device relative to the ground can be adjusted along the second direction.

[0023] In one possible implementation, the first connector includes a hook portion and two pivot portions. The hook portion is used to suspend on the connector body. A pivot portion is connected to a first end of the hook portion and a pivot portion is connected to a second end of the hook portion. Each pivot portion corresponds to a sleeve.

[0024] In this way, after the first and second connecting parts are opened at a certain angle, the hook part is suspended from the main body, realizing the connection between the female end and the male end. In addition, the first connecting part is connected to the second connecting part through two pivot parts, which can improve the connection between the first and second connecting parts.

[0025] In one possible implementation, the second connector further includes a third through hole communicating between the interior and exterior of the third receiving space. The first connector also includes two second limiting portions, each connected to a pivot portion, and each second limiting portion protruding from the exterior of the third receiving space through the third through hole. Each sleeve corresponds to one second limiting portion and is located between the corresponding second limiting portion and the hook portion.

[0026] This design, on the one hand, prevents the sleeve from moving axially along the shaft, ensuring that the sleeve always abuts against the inner wall of the third receiving space and the shaft. On the other hand, it improves the firmness of the connection between the first and second connectors, preventing accidental separation of the first and second connectors.

[0027] In one possible implementation, the self-locking part and the main body are integrally structured.

[0028] This allows the female end component to be manufactured in one piece, which helps improve its production efficiency. Additionally, it reduces the thickness of the connection between the self-locking part and the main body in the first direction, thus reducing the thickness of the female end component in that direction and enabling a thinner design for the hanger device.

[0029] In one possible implementation, the female end member includes a first limiting portion that is integrally formed with the main body.

[0030] This allows the female end component to be manufactured in one piece, which helps improve production efficiency. Additionally, it reduces the thickness of the connection between the first limiting part and the main body in the first direction, thus reducing the thickness of the female end component in the first direction and enabling a thinner design for the hanger device.

[0031] In one possible implementation, the main body further includes a base integrally formed with the connector, and the base is connected to the self-locking part.

[0032] This increases the connection strength between the connector and the base, helping to prevent the male end from accidentally falling off. Furthermore, the connector and base can be manufactured in one piece, which helps improve the production efficiency of the main body. In addition, the connection thickness between the connector and the base in the first direction can be reduced, which helps to reduce the thickness of the female end in the first direction.

[0033] In one possible implementation, after the male end and the female end are connected, the maximum thickness of the hanger assembly in the first direction is less than or equal to 6.5 mm.

[0034] In one possible implementation, the hanger assembly includes two female end pieces and two male end pieces, each male end piece corresponding to one female end piece and detachably connected to the corresponding female end piece.

[0035] A second aspect of this application provides a female terminal for detachably connecting to a male terminal connected to an electronic device. The female terminal includes a main body and a self-locking portion, which is fixedly connected to the main body. The self-locking portion and the main body form a first receiving space for accommodating a portion of the male terminal, and the first receiving space forms a self-locking structure with the male terminal. One of the main body and the male terminal includes a connecting body, and the other includes a mating space. The connecting body mates with the mating space, such that the main body carries the male terminal.

[0036] In one possible implementation, the male end member is rotatably connected to the main body and is rotatable relative to the female end member about a rotation axis parallel to a first direction, causing the male end member to move from a first position to a second position. The first direction is the thickness direction of the female end member. When the male end member is in the first position, it is located outside the first receiving space. When the male end member is in the second position, it is located inside the first receiving space.

[0037] In one possible implementation, the main body includes a base and a connector. A first end of the base is fixedly connected to the connector, and a second end of the base is fixedly connected to a self-locking part. The connector and the base form a second receiving space for accommodating a portion of the male end piece. The male end piece includes a mating space, and the connector passes through the mating space and abuts against the male end piece in a second direction. The second direction is defined as the direction of gravity and is perpendicular to the first direction.

[0038] In one possible implementation, along the first direction, the highest point of the self-locking part is flush with the highest point of the connecting body, or, along the first direction, the highest point of the self-locking part is located between the highest point of the connecting body and the base. Here, the highest point of the self-locking part refers to the point on the self-locking part that is farthest from the base in the first direction, and the highest point of the connecting body refers to the point on the connecting body that is farthest from the base in the first direction.

[0039] In one possible implementation, the female end member further includes an elastic portion, which is fixedly connected to the main body portion and is used to abut against the male end member in a second direction.

[0040] In one possible implementation, the self-locking part and the main body are integrally structured.

[0041] In one possible implementation, the female end member includes a first limiting portion that is integrally formed with the main body.

[0042] In one possible implementation, the main body further includes a base integrally formed with the connector, and the base is connected to the self-locking part.

[0043] A second aspect of this application provides a male terminal component, including a first connector, a second connector, and a sleeve. The first connector is for detachable connection to a female terminal component, and the second connector is for detachable connection to an electronic device. The first connector and the second connector are rotatably connected. One of the first connector and the second connector includes a pivot portion, and the other includes a third receiving space for accommodating the pivot portion. The sleeve is fitted onto the outer wall of the pivot portion and located inside the third receiving space, and the sleeve abuts against the inner walls of both the pivot portion and the third receiving space.

[0044] In one possible implementation, the second connector includes a fixedly connected connecting portion and a bent portion, the connecting portion being used to connect to an electronic device, and the bent portion and the connecting portion forming a third receiving space.

[0045] In one possible implementation, the second connector further includes at least one first through hole, which extends through the connection portion and the bend portion, and is used to receive a screw that is threadedly connected to at least one of the connection portion and the bend portion.

[0046] In one possible implementation, the second connector further includes at least one second through hole for receiving a screw that is threaded to an electronic device.

[0047] In one possible implementation, the first connector includes a hook portion and two pivot portions. The hook portion is used to suspend on the connector body. A pivot portion is connected to a first end of the hook portion and a pivot portion is connected to a second end of the hook portion. Each pivot portion corresponds to a sleeve.

[0048] In one possible implementation, the second connector further includes a third through hole communicating between the interior and exterior of the third receiving space. The first connector also includes two second limiting portions, each connected to a pivot portion, and each second limiting portion protruding from the exterior of the third receiving space through the third through hole. Each sleeve corresponds to one second limiting portion and is located between the corresponding second limiting portion and the hook portion.

[0049] A fourth aspect of this application provides an electronic device assembly, including an electronic device and a mounting device as described in any of the first aspects, the mounting device including a male terminal that is fixedly connected to the electronic device. Attached Figure Description

[0050] Figure 1 This is a structural diagram of a hanger in related technologies;

[0051] Figure 2 This is a schematic diagram of the structure of an electronic device component provided in an embodiment of this application;

[0052] Figure 3 This is a schematic diagram of the structure of a hanging device provided in an embodiment of this application;

[0053] Figure 4 for Figure 3 Left view schematic diagram of the hanging bracket device shown;

[0054] Figure 5 for Figure 3 A schematic diagram illustrating the connection process between the male and female terminals;

[0055] Figure 6 for Figure 3 Enlarged view of point A in the middle;

[0056] Figure 7 for Figure 3A schematic diagram of the first structure of the female end component in the hanging bracket device shown;

[0057] Figure 8 for Figure 3 A schematic diagram of the second structure of the female end component in the hanging bracket device shown;

[0058] Figure 9 for Figure 3 Right view schematic diagram of the hanging bracket device shown;

[0059] Figure 10 for Figure 7 Schematic diagram of the cross section at point AA;

[0060] Figure 11 for Figure 3 A three-dimensional structural diagram of the male terminal component;

[0061] Figure 12 for Figure 11 Enlarged view of point A in the middle;

[0062] Figure 13 for Figure 11 A schematic diagram of the first connector engaging with the sleeve;

[0063] Figure 14 for Figure 3 A front view diagram of the male terminal in the diagram;

[0064] Figure 15 for Figure 3 The rear view diagram of the male terminal component.

[0065] Explanation of reference numerals in the attached figures:

[0066] 100. Hanging device; 200. Electronic equipment; 300. Electronic equipment assembly; 400. Fixing position;

[0067] 10. Female terminal component;

[0068] 11. Main body; 111. Matrix; 112. Connecting body;

[0069] 12. Self-locking part;

[0070] 13. First containment space;

[0071] 14. Second storage space;

[0072] 15. Elastic part;

[0073] 16. First limiting part;

[0074] 20. Public terminal components;

[0075] 21. First connecting member; 211. Rotating shaft; 212. Hook; 2121. First rod segment; 2122. Second rod segment; 2123. Third rod segment; 213. Second limiting part;

[0076] 22. Second connector; 221. Connecting part; 222. Bending part; 223. First through hole; 224. Mating space; 225. Second through hole; 226. Third through hole; 227. Third receiving space;

[0077] 23. Sleeve;

[0078] 31. Fixing hole; 32. Fastener;

[0079] X, first direction;

[0080] Y, the second direction;

[0081] Z, Third-party orientation. Detailed Implementation

[0082] Figure 1 This is a structural diagram of a hanger in related technologies. In related technologies, such as... Figure 1 As shown, the mounting bracket 500 includes a fixed plate 501, two support beams 502, and a self-locking mechanism. The fixed plate 501 is fixedly connected to the wall 602, and the two support beams 502 are respectively connected to the opposite ends of the fixed plate 501 and to the outer casing of the electronic device 601. After the fixed plate 501 is connected to the support beams, pulling the pull cord 503 of the self-locking mechanism locks the fixed plate 501 and support beams 502, preventing the electronic device 601 from accidentally falling. However, the limited space behind the electronic device 601 increases the difficulty of operating the pull cord 503, making the self-locking mechanism more difficult and thus increasing the difficulty of mounting the electronic device 601. Therefore, reducing the difficulty of mounting the electronic device 601 is an urgent problem to be solved.

[0083] In view of this, the embodiments of this application provide a female end piece 10, a male end piece 20, a hanging bracket device 100, and an electronic device assembly 300, which can reduce the difficulty of self-locking and thus reduce the difficulty of mounting the electronic device 200. In addition, the thinness of the hanging bracket device 100 can reduce the distance between the electronic device 200 and the fixed position 400 in the first direction X, achieving an ultra-thin wall mounting distance.

[0084] Figure 2 This is a schematic diagram of the structure of an electronic device component provided in an embodiment of this application.

[0085] See Figure 2As shown, the electronic device assembly 300 provided in this embodiment includes an electronic device 200 and a mounting bracket 100. The mounting bracket 100 includes a male terminal 20 and a female terminal 10, which are detachably connected. The male terminal 20 is detachably connected to the electronic device 200, and the female terminal 10 is fixedly installed at a fixed position 400. The electronic device 200 is mounted at the fixed position 400 via the mounting bracket 100.

[0086] The electronic device 200 can be a display device such as a television, monitor, or advertising screen. For example, in this embodiment, a television is used as an example of the electronic device 200 for explanation.

[0087] The fixed position 400 can be a wall, cabinet, or bracket. For example, in this embodiment, the fixed position 400 is described using a wall as an example.

[0088] It should be noted that the female terminal 10 can also be referred to as the first connecting component, the fixed component, etc., and the male terminal 20 can also be referred to as the second connecting component, the movable component, etc. In addition, in some embodiments, the component connected to the electronic device 200 can also be referred to as the female terminal 10, and in this case, the component connected to the fixed position 400 can also be referred to as the male terminal 20.

[0089] In some possible implementations, the mounting bracket 100 may include two male terminals 20 and two female terminals 10, each female terminal 10 corresponding to one male terminal 20, and each female terminal 10 being detachably connected to its corresponding male terminal 20. This increases the number of connection points between the electronic device 200 and the fixed position 400, contributing to improved security of the electronic device 200.

[0090] It should be noted that, in addition to having two female terminals 10 and two male terminals 20, in some embodiments, the number of female terminals 10 may also be one, in which case the number of male terminals 20 may be one or two.

[0091] In some possible implementations, when the male end 20 is connected to the female end 10, the maximum thickness of the bracket device 100 in the first direction X can be less than or equal to 6.5 mm, which can reduce the space for accommodating the bracket device 100 and reduce the distance between the electronic device 200 and the fixed position 400 in the first direction X, thus achieving an ultra-thin wall mounting distance.

[0092] The specific value of the maximum thickness of the hanging device 100 is not limited here. The maximum thickness of the hanging device 100 can be 5mm, 6mm or 6.5mm, etc.

[0093] It is understandable that the maximum thickness of the hanger device 100 refers to the maximum thickness of the hanger device 100 along the second direction Y and in the first direction X.

[0094] It should be noted that, without considering the ultra-thin wall mounting distance, the maximum thickness of the wall mount device 100 can also be greater than 6.5mm. For example, the maximum thickness of the wall mount device 100 can also be 8mm.

[0095] In this embodiment of the application, the first direction, the second direction and the third direction are perpendicular to each other. The first direction X is the thickness direction of the mother end piece 10, or the first direction X can also be understood as the thickness direction of the electronic device 200. The second direction is defined as the gravity direction.

[0096] In some possible implementations, the thickness of the female end piece 10 along the first direction X can be less than or equal to 6.5 mm, which can reduce the space for accommodating the female end piece 10 and reduce the distance between the electronic device 200 and the fixed position 400 in the first direction X, thereby achieving an ultra-thin wall mounting distance.

[0097] The thickness of the female end piece 10 is not limited here. For example, the thickness of the female end piece 10 can be 6.5 mm.

[0098] It should be noted that, without considering the ultra-thin wall mounting distance, the thickness of the female end piece 10 can also be greater than 6.5mm. For example, the thickness of the female end piece 10 can also be 8mm.

[0099] In some possible implementations, the thickness of the male end piece 20 along the first direction X can be less than or equal to 6.5 mm, which can reduce the space for accommodating the male end piece 20 and reduce the distance between the electronic device 200 and the fixed position 400 in the first direction X, thus achieving an ultra-thin wall mounting distance.

[0100] There is no limitation on the thickness of the male end piece 20. For example, the thickness of the male end piece 20 can be 6.5 mm.

[0101] It should be noted that, without considering the ultra-thin wall mounting distance, the thickness of the male end piece 20 can also be greater than 6.5mm. For example, the thickness of the male end piece 20 can also be 8mm.

[0102] Figure 3 This is a schematic diagram of the structure of a hanging device provided in an embodiment of this application. Figure 4 for Figure 3 The diagram shows a left-side view of the mounting bracket device. Figure 5 for Figure 3 A schematic diagram illustrating the connection process between the male and female terminals. Figure 6 for Figure 3 Enlarged diagram of point A in the middle. Figure 7 for Figure 3 The diagram shows the first structural schematic of the female end component in the hanging bracket device. Figure 8 for Figure 3 The diagram shows the second structural schematic of the female end component in the hanging bracket device. Figure 9 for Figure 3 The diagram shows a right-side view of the mounting bracket device. Figure 10 for Figure 7 A cross-sectional view at point AA.

[0103] See Figure 3 , Figure 4 and Figure 7 As shown, the female end piece 10 includes a main body 11 and a self-locking part 12. The self-locking part 12 is fixedly connected to the main body 11, and the self-locking part 12 and the main body 11 form a first receiving space 13 for accommodating a portion of the male end piece 20 (e.g., ...). Figure 9 and Figure 10 As shown, the first receiving space 13 is used to form a self-locking structure with the male end piece 20, realizing the self-locking of the male end piece 20 and the female end piece 10. One of the main body 11 and the male end piece 20 includes a connecting body 112 and the other includes a mating space 224. The connecting body 112 and the mating space 224 mate, so that the main body 11 carries the male end piece 20, realizing the connection between the male end piece 20 and the female end piece 10.

[0104] For example, such as Figure 3 As shown, the main body 11 may include a connector 112, and the male end 20 may include a mating space 224. The connector 112 passes through the mating space 224, so that the male end 20 is hung on the connector 112, and the main body 11 carries the male end 20. Of course, in some embodiments, the main body 11 may also include the mating space 224, and the male end 20 may also include the connector 112, which can also achieve the effect of the main body 11 carrying the male end 20.

[0105] For example, such as Figure 3 As shown, the mating space 224 can be a through hole penetrating the male end member 20, in which case the connector 112 passes through the mating space 224. However, the mating space 224 can also be other structures, such as a groove, in which case a portion of the connector 112 is inserted into the interior of the mating space 224.

[0106] During the installation of the bracket device 100, the female end piece 10 is fixedly installed on a fixed location 400 such as a wall, and the male end piece 20 is fixedly installed on the electronic device 200. The male end piece 20 and the female end piece 10 are connected via the connector 112 and the mating space 224. The electronic device 200 is then hung on the fixed location 400 via the bracket device 100. A portion of the male end piece 20 is inserted into the first receiving space 13, forming a self-locking structure between the first receiving space 13 and the male end piece 20. Therefore, after a portion of the male end piece 20 is inserted into the first receiving space 13, the first receiving space 13 and the male end piece 20 automatically form a self-locking structure, requiring no additional operation and reducing the difficulty of self-locking between the male end piece 20 and the female end piece 10.

[0107] For example, the male end member 20 is rotatably connected to the main body 11, and the male end member 20 is rotatable relative to the female end member 10 about a rotation axis parallel to the first direction X, such that the male end member 20 moves from a first position (e.g., Figure 5 (as shown in b1 and b2) move to the second position (e.g.) Figure 3 (As shown). When the male end 20 is in the first position, it is located outside the first receiving space 13. When the male end 20 is in the second position, it is located inside the first receiving space 13. By rotating the male end 20 relative to the female end 10, a portion of the male end 20 can be inserted into the first receiving space 13, which reduces the difficulty of inserting a portion of the male end 20 into the first receiving space 13.

[0108] It should be noted that, in addition to being inserted into the first receiving space 13 by rotating relative to the female end 10, in some embodiments, the male end 20 can also be squeezed along the first direction X so that a part of the male end 20 is located inside the first receiving space 13. In this case, the connection between the male end 20 and the main body 11 can be a rotatable connection or a non-rotatable connection.

[0109] For example, when the male terminal 20 is in the first position, such as Figure 5 As shown in Figures b1 and b2, along the first direction X, the male end 20 abuts against the self-locking part 12, at which time the self-locking part 12 is located between the male end 20 and the main body part 11. However, in some embodiments, when the male end 20 is in the first position, the self-locking part 12 and the male end 20 may not be in contact.

[0110] During the mounting process of the electronic device 200, the male terminal 20 is first fixedly connected to the electronic device 200, and the female terminal 10 is simultaneously fixedly connected to the fixed position 400. Then, the electronic device 200 is lifted so that the male terminal 20 is connected to the main body 11 (e.g., Figure 5 As shown in Figure a), at this time, as Figure 6 As shown, the self-locking part 12 is located between the male end member 20 and the main body part 11 along the first direction X. The male end member 20 abuts against the self-locking part 12 in the first direction X, that is, the male end member 20 is located outside the first receiving space 13. Next, the control electronics 200 rotates clockwise (or counterclockwise) so that the male end member 20 rotates clockwise (or counterclockwise) relative to the female end member 10 until the male end member 20 and the self-locking part 12 separate (e.g., Figure 5 As shown in Figure c), that is, the male end 20 passes over the self-locking part 12, or the self-locking part 12 does not contact the male end 20. Finally, gently press the top side of the electronic device 200 to keep the electronic device 200 vertical, and control the electronic device 200 to rotate counterclockwise (or clockwise), so that the male end 20 rotates counterclockwise (or clockwise) relative to the female end 10 until the male end 20 is inserted into the interior of the first receiving space 13 (as shown in Figure c). Figure 3 As shown in the figure, it achieves self-locking and ensures that the electronic device 200 is installed in place.

[0111] Therefore, during the connection process between the male terminal 20 and the female terminal 10, the male terminal 20 first connects to the connector 112 and abuts against the self-locking part 12 along the first direction X. At this time, the male terminal 20 is located outside the first receiving space 13. Then, the male terminal 20 rotates relative to the female terminal 10 until the male terminal 20 separates from the self-locking part 12, that is, the male terminal 20 passes over the self-locking part 12. Next, the male terminal 20 is rotated again, causing the male terminal 20 to return to its original position and lock into the interior of the first receiving space 13, thus achieving self-locking. In this way, even in situations where there is no field of vision, the male terminal 20 can be locked into the interior of the first receiving space 13. The operation method is simple, thereby reducing the difficulty of self-locking and thus reducing the difficulty of mounting the electronic device 200.

[0112] During the connection process between male terminal 20 and female terminal 10, see Figure 6 As shown, when the male end member 20 is located outside the first receiving space 13 and abuts against the self-locking part 12, the projection of the self-locking part 12 in the first direction X partially overlaps with the projection of the male end member 20 in the first direction X. See also Figure 3 As shown, when a portion of the male end piece 20 is inserted into the first receiving space 13, the projection of the self-locking part 12 in the first direction X overlaps with the projection of the male end piece 20 in the first direction X. Thus, by controlling the rotation of the male end piece 20 relative to the female end piece 10, the male end piece 20 can be inserted into or removed from the first receiving space 13, achieving self-locking or unlocking.

[0113] For example, such as Figure 7 and Figure 8As shown, the self-locking part 12 and the main body part 11 can be integrally formed, and the female end part 10 can be manufactured by integral molding, which helps to improve the production efficiency of the female end part 10. In addition, the thickness of the connection between the self-locking part 12 and the main body part 11 in the first direction X can be reduced, which helps to reduce the thickness of the female end part 10 in the first direction X and realize the thinning design.

[0114] It should be noted that the self-locking part 12 and the main body part 11 can also be a separate structure. In this case, the self-locking part 12 and the main body part 11 can be connected by welding, snap-fitting or other methods.

[0115] The specific structure of the self-locking part 12 is not limited here. For example, as shown... Figure 10 As shown, the self-locking part 12 can be a plate-shaped structure, and the cross-section of the self-locking part 12 can be L-shaped. The cross-section of the self-locking part 12 is parallel to the first direction X and perpendicular to the second direction Y.

[0116] For example, see Figure 5 As shown, the male end piece 20 can be movably suspended from the connector 112, so that the male end piece 20 is rotatably connected to the main body 11, thereby the male end piece 20 can move from the first position to the second position, so that the first receiving space 13 and the male end piece 20 form a self-locking structure.

[0117] Specifically, see Figures 3 to 5 As shown, when the male end piece 20 is mounted on the main body 11 by a hanging method, under the action of gravity, the male end piece 20 abuts against the main body 11 in the second direction Y, ensuring a firm connection between the male end piece 20 and the main body 11 while ensuring that the male end piece 20 can rotate relative to the female end piece 10. The male end piece 20 can pass over the self-locking part 12 and be inserted into the interior of the first receiving space 13. In addition, no additional structure is needed to fix the main body 11 and the male end piece 20, which simplifies the connection structure between the male end piece 20 and the female end piece 10 and reduces the number of parts in the hanger device 100.

[0118] In some possible implementations, such as Figure 4 and Figure 8 As shown, the main body 11 may include a base 111 and a connector 112. A first end of the base 111 is fixedly connected to the connector 112, and a second end of the base 111 is fixedly connected to a self-locking part 12. The connector 112 and the self-locking part 12 are spaced apart in the second direction Y, and the connector 112 and the base 111 form a second receiving space 14 for accommodating a portion of the male end piece 20. The male end piece 20 is suspended from the connector 112, which allows the male end piece 20 to be movably suspended from the connector 112 and to be connected to the female end piece 10.

[0119] When the male terminal 20 is attached to the female terminal 10, the hook portion 212 of the male terminal 20 is suspended on the connector 112. At this time, under the action of gravity, the hook portion 212 of the male terminal 20 abuts against the inner wall of the second receiving space 14 in the second direction Y, thereby supporting the male terminal 20. In addition, the projection of the hook portion 212 of the male terminal 20 in the first direction X overlaps with the projection of the connector 112 in the first direction X. The connector 112 can also limit the male terminal 20 in the first direction X, preventing the male terminal 20 from moving along the first direction X and accidentally falling off, thus preventing damage to the electronic device 200.

[0120] For example, the base 111 is used to be fixedly connected to the fixed position 400, so that the female end piece 10 is fixedly mounted on the fixed position 400. Wherein, as Figure 7 and Figure 8 As shown, the base 111 may include a plurality of fixing holes 31 through which fasteners 32 for fixing the base 111 and fixing position 400 pass. The fasteners 32 may be bolts, expansion screws, etc.

[0121] The specific structure of the substrate 111 is not limited here. For example, the substrate 111 may include a motherboard structure and a flange structure, which can not only reduce the thickness of the substrate 111, but also improve the strength of the substrate 111.

[0122] For example, such as Figure 8 As shown, the connector 112 can be a plate structure, which can increase the contact area between the connector 112 and the hook part 212, help reduce the deformation of the connector 112, and improve the connection reliability between the connector 112 and the male end piece 20.

[0123] In some possible implementations, such as Figure 8 As shown, the connector 112 and the base 111 can be an integral structure, which can improve the connection strength between the connector 112 and the base 111 and help prevent the male end piece 20 from accidentally falling off. Furthermore, the connector 112 and the base 111 can be manufactured by integral molding, which helps improve the production efficiency of the main body 11. In addition, the connection thickness of the connector 112 and the base 111 in the first direction X can be reduced, which helps to reduce the thickness of the female end piece 10 in the first direction X.

[0124] It should be noted that the connector 112 and the base 111 can also be separate structures. In this case, the connector 112 can be connected to the base 111 by welding, snap-fitting, or other methods.

[0125] In some possible implementations, such as Figure 9As shown, along the first direction X, the highest point of the self-locking part 12 is located between the highest point of the connecting body 112 and the base 111. That is, the highest point of the self-locking part 12 is lower than the highest point of the connecting body 112, or the distance between the highest point of the self-locking part 12 and the base 111 in the first direction X is less than the distance between the highest point of the connecting body 112 and the base 111. With this configuration, while ensuring that the male end member 20 is connected to the female end member 10, the thickness of the female end member 10 in the first direction X can be reduced, achieving a thinning design.

[0126] The highest point of the self-locking part 12 refers to the point on the self-locking part 12 that is farthest from the base 111 in the first direction X, and the highest point of the connecting body 112 refers to the point on the connecting body 112 that is farthest from the base 111 in the first direction X.

[0127] It should be noted that, in some embodiments, besides being lower than the highest point of the connecting body 112, the highest point of the self-locking part 12 can also be flush with the highest point of the connecting body 112 along the first direction X. That is, the distance between the highest point of the self-locking part 12 and the base 111 in the first direction X is equal to the distance between the highest point of the connecting body 112 and the base 111. With this configuration, while ensuring the male end member 20 is connected to the female end member 10, the thickness of the female end member 10 in the first direction X can be reduced, achieving a thinning design.

[0128] In some possible implementations, such as Figure 8 As shown, the female end member 10 may further include an elastic portion 15, which is fixedly connected to the main body portion 11. The elastic portion 15 and the self-locking portion 12 are spaced apart in the second direction Y. The elastic portion 15 is used to abut against the male end member 20 in the second direction Y (e.g., Figure 5 (as shown in c).

[0129] See Figure 5 As shown, during the process of the male end 20 moving from the first position to the second position, the elastic part 15 abuts against the male end 20, causing the elastic part 15 to undergo elastic deformation and apply resistance to the male end 20, which can indicate the position of the male end 20. Thus, the user does not need to observe to know that the male end 20 has passed the self-locking part 12, thereby further reducing the difficulty of self-locking between the male end 20 and the female end 10.

[0130] The specific structure of the elastic part 15 is not limited here. For example, as shown... Figure 7 As shown, the elastic part 15 can be a spring sheet.

[0131] In some embodiments, at least a portion of the elastic portion 15 may be disposed within the second receiving space 14, for example... Figure 7As shown, a portion of the elastic part 15 is disposed inside the second receiving space 14, and another portion is disposed outside the second receiving space 14. Of course, the elastic part 15 can also be disposed inside the second receiving space 14.

[0132] For example, along the first direction X, the projection of the connector 112 partially overlaps with the projection of the elastic portion 15. Of course, in some embodiments, the projection of the connector 112 may also cover the elastic portion 15 along the first direction X.

[0133] In some possible implementations, such as Figure 8 As shown, the female end piece 10 may further include a first limiting part 16, which is fixedly connected to the main body part 11. The first limiting part 16 and the self-locking part 12 are spaced apart in the third direction Z. The first limiting part 16 is used to abut against the male end piece 20 in the third direction Z.

[0134] During the process of the male end 20 rotating relative to the female end 10 and passing the self-locking part 12, the first limiting part 16 abuts against the male end 20, indicating that the male end 20 has passed the self-locking part 12 and preventing the male end 20 from disengaging. Furthermore, during the process of the male end 20 rotating relative to the female end 10 and engaging with the first receiving space 13, the first limiting part 16 abuts against the male end 20, ensuring that a portion of the male end 20 is already inside the first receiving space 13 without requiring further observation. Therefore, by having the first limiting part 16 abut against the male end 20 in the third direction Z, the difficulty of the male end 20 engaging with the first receiving space 13 is reduced, further reducing the difficulty of the male end 20 and the female end 10 self-locking.

[0135] For example, along the first direction X, the highest point of the first limiting portion 16 is located between the highest point of the connector 112 and the base 111. That is, the highest point of the first limiting portion 16 is lower than the highest point of the connector 112. The highest point of the first limiting portion 16 refers to the point on the first limiting portion 16 where the distance from the base 111 along the first direction X is the largest. In this way, the first limiting portion 16 can avoid constraining the thickness of the female end piece 10, the thickness of the female end piece 10 can be reduced, and a thinning design can be achieved.

[0136] Of course, in some embodiments, the highest point of the first limiting portion 16 may be flush with the highest point of the connecting body 112, except that it may be lower than the highest point of the connecting body 112. Alternatively, in other embodiments, the highest point of the first limiting portion 16 may be higher than the highest point of the connecting body 112, that is, the highest point of the connecting body 112 is located between the highest point of the first limiting portion 16 and the base 111.

[0137] For example, such as Figure 8As shown, the first limiting part 16 and the main body part 11 can be an integral structure, and the female end part 10 can be manufactured by integral molding, which helps to improve the production efficiency of the female end part 10. In addition, the thickness of the connection between the first limiting part 16 and the main body part 11 in the first direction X can be reduced, which helps to reduce the thickness of the female end part 10 in the first direction X and realize the thinning design.

[0138] It should be noted that, in addition to being an integral structure, the first limiting part 16 and the main body part 11 can also be separate structures in some embodiments. In this case, the first limiting part 16 can be connected to the main body part 11 by welding, snap-fitting or other means.

[0139] Figure 11 for Figure 3 A three-dimensional structural diagram of the male terminal component in the diagram. Figure 12 for Figure 11 Enlarged diagram of point A in the middle.

[0140] like Figure 11 and Figure 12 As shown, the male end piece 20 includes a first connector 21, a second connector 22, and a sleeve 23. The first connector 21 is used for detachable connection with the female end piece 10 (e.g., ...). Figure 5 As shown, the second connector 22 is used for detachable connection with the electronic device 200. The first connector 21 is rotatably connected to the second connector 22. One of the first connector 21 and the second connector 22 includes a pivot portion 211, and the other includes a third receiving space 227 for accommodating the pivot portion 211. A sleeve 23 is fitted onto the outer wall of the pivot portion 211 and located inside the third receiving space 227. The sleeve 23 abuts against the inner walls of the pivot portion 211 and the third receiving space 227, respectively.

[0141] For example, such as Figure 3 As shown, the first connector 21 is attached to the female end piece 10. The first connector 21 is suspended on the connector 112, and the connector 112 abuts against the first connector 21 in the first direction X. The projection of the connector 112 in the first direction X overlaps with the projection of the first connector 21 in the first direction X. A portion of the first connector 21 is disposed inside the second receiving space 14.

[0142] For example, such as Figure 11 and Figure 12 As shown, the first connector 21 may include a pivot portion 211, and the second connector 22 may include a third receiving space 227. In some embodiments, the first connector 21 may also include the third receiving space 227, and the second connector 22 may also include the pivot portion 211.

[0143] For example, the sleeve 23 can be made of non-metallic material, such as plastic. Of course, the sleeve 23 can also be made of metallic material.

[0144] like Figure 12 As shown, the sleeve 23 is fitted onto the outer wall of the rotating shaft 211. The sleeve 23 abuts against the inner walls of the rotating shaft 211 and the third accommodating space 227, respectively, so that a damping structure is formed between the third accommodating space 227 and the rotating shaft 211. Thus, there is damping between the first connecting member 21 and the second connecting member 22, and the first connecting member 21 and the second connecting member 22 can remain unchanged after being opened at a certain angle.

[0145] See Figure 5 As shown, during the connection process between the male end 20 and the female end 10, the first connector 21 and the second connector 22 are opened at a certain angle, which facilitates the first connector 21 to be hooked onto the female end 10, reducing the connection difficulty between the male end 20 and the female end 10. In addition, the sleeve 23 abuts against the interior of the rotating shaft 211 and the third receiving space 227 respectively, so that there is a suitable damping between the first connector 21 and the second connector 22. Therefore, during the process of the first connector 21 being hooked onto the female end 10, the first connector 21 will not easily rotate relative to the second connector 22, and the angle between the first connector 21 and the second connector 22 remains unchanged, which helps to reduce the connection difficulty between the male end 20 and the female end 10.

[0146] For example, the length of the sleeve 23 may be equal to the length of the rotating shaft 211. In some embodiments, the length of the sleeve 23 may also be less than the length of the rotating shaft 211.

[0147] For example, such as Figure 11 As shown, the first connector 21 and the second connector 22 can form a mating space 224. However, in some embodiments, the first connector 21 can also form a mating space 224.

[0148] Figure 13 for Figure 11 A schematic diagram of the first connector engaging with the sleeve.

[0149] For example, such as Figure 13 As shown, the first connector 21 may include a hook portion 212 and two pivot portions 211. Wherein, as... Figure 3As shown, the hook portion 212 is used to suspend the connector 112. A portion of the hook portion 212 is located inside the second receiving space 14, enabling the connection between the male end piece 20 and the female end piece 10, which reduces the difficulty of connecting the male end piece 20 and the female end piece 10. Additionally, a portion of the hook portion 212 is located inside the first receiving space 13, forming a self-locking structure with the first receiving space 13. A pivot portion 211 is connected to both the first and second ends of the hook portion 212, with each pivot portion 211 corresponding to a sleeve 23. Both pivot portions 211 are located inside the third receiving space 227.

[0150] like Figure 12 As shown, the first connector 21 is rotatably connected to the second connector 22 through two rotating shafts 211, which can increase the number of connection points between the first connector 21 and the second connector 22, and help to further improve the connection strength between the first connector 21 and the second connector 22.

[0151] For example, such as Figure 13 As shown, the hook portion 212 may include a first rod segment 2121, a second rod segment 2122, and a third rod segment 2123 connected in sequence. The first rod segment 2121 and the third rod segment 2123 are each connected to a pivot portion 211. The hook portion 212, formed by the first rod segment 2121, the second rod segment 2122, and the third rod segment 2123, has a shape similar to a U-shape. Of course, the shape of the hook portion 212 can also be other shapes.

[0152] For example, such as Figure 13 As shown, the hook portion 212 and the pivot portion 211 can be an integral structure, and the hook portion 212 and the pivot portion 211 can be manufactured by integral molding, which helps to improve the production efficiency of the hook portion 212 and the pivot portion 211. In addition, the connection strength between the pivot portion 211 and the hook portion 212 can be improved, which can further reduce the risk of the electronic device 200 being dropped.

[0153] In some possible implementations, such as Figure 12 As shown, the second connector 22 may further include a third through hole 226, which connects the interior and exterior of the third receiving space 227. Figure 13 As shown, the first connector 21 may further include two second limiting portions 213, each second limiting portion 213 being connected to a rotating shaft portion 211, and each second limiting portion 213 being exposed outside the third receiving space 227 through a third through hole 226. Each sleeve 23 corresponds to one second limiting portion 213 and is located between the corresponding second limiting portion 213 and the hook portion 212.

[0154] In this way, on the one hand, the sleeve 23 can be prevented from moving axially along the pivot 211, ensuring that the sleeve 23 always abuts against the inner wall of the third receiving space 227 and the pivot 211. On the other hand, it can improve the firmness of the connection between the first connector 21 and the second connector 22, and prevent the first connector 21 and the second connector 22 from accidentally separating.

[0155] Figure 14 for Figure 3 A front view diagram of the public terminal component. Figure 15 for Figure 3 The rear view diagram of the male terminal component.

[0156] For example, see Figure 12 , Figure 14 and Figure 15 As shown, the second connector 22 includes a connecting portion 221 and a bending portion 222 that are fixedly connected. The connecting portion 221 is used to connect with the electronic device 200, and the bending portion 222 and the connecting portion 221 form a third receiving space 227.

[0157] In this way, the second connector 22 can be bent to form the third receiving space 227, which helps to reduce the difficulty of forming the third receiving space 227. In addition, it can also reduce the difficulty of assembling the second connector 22 with the first connector 21, which helps to improve the production efficiency of the male end 20.

[0158] For example, such as Figure 14 and Figure 15 As shown, one end of the bent portion 222 is connected to the connecting portion 221, and the other end of the bent portion 222 is in contact with the connecting portion 221. In this case, the third receiving space 227 can be a receiving through hole. However, in some embodiments, the other end of the bent portion 222 may not be in contact with the connecting portion 221. In this case, the third receiving space 227 may also be a receiving groove.

[0159] In some embodiments, such as Figure 12 As shown, the connecting portion 221 and the bending portion 222 can be an integral structure, and the bending portion 222 and the connecting portion 221 can be manufactured by integral molding. In addition, the connection strength between the connecting portion 221 and the bending portion 222 can be improved. In other embodiments, the connecting portion 221 can also be connected to the bending portion 222 by welding, threaded connection, or other methods.

[0160] In some possible implementations, such as Figure 14 and Figure 15As shown, the second connector 22 may also include at least one first through hole 223, which penetrates the connecting portion 221 and the bent portion 222. That is, each first through hole 223 penetrates the connecting portion 221 and the bent portion 222. At least one first through hole 223 is used to accommodate a screw that is connected to at least one screw in the connecting portion 221 and the bent portion 222.

[0161] Thus, after the sleeve 23 wears to a certain extent, the damping force generated when the sleeve 23 is compressed can be satisfied by screwing a screw into at least one first through hole 223. In addition, the clamping force of the bending part 222 and the connecting part 221 on the sleeve can also be increased by screwing in a screw.

[0162] For example, such as Figure 15 As shown, each of the three first through holes 223 accommodates a screw. Of course, the number of first through holes 223 accommodating screws can be less than three.

[0163] In some possible implementations, the second connector 22 may further include at least one second through hole 225 for receiving a screw threaded to the electronic device 200. Thus, after the female end piece 10 is connected to the fixed position 400, the electronic device 200 engages with the second through holes 225 at different positions on the male end piece 20, allowing the height of the electronic device 200 relative to the ground along the second direction Y to be adjustable.

[0164] Specifically, such as Figure 15 As shown, the connecting part 221 is connected to the electronic device 200. Therefore, the connecting part 221 includes a second through hole 225, that is, the second through hole 225 is provided on the connecting part 221.

[0165] For example, such as Figure 15 As shown, there are multiple second through holes 225, which are arranged side by side and spaced apart along the second direction Y. However, in some embodiments, the number of second through holes 225 may be only one.

[0166] For example, such as Figure 14 and Figure 15 As shown, all the second through holes 225 have the same inner diameter. However, in some embodiments, the inner diameter of some of the second through holes 225 in the second connector 22 may be the same, while the inner diameter of other parts of the second through holes 225 may be different.

[0167] It should be noted that, in the above content, the female terminal 10 corresponds to an electronic device 200 of a certain size, specifically, as shown in the example below. Figure 7 and Figure 8As shown, the distribution of the four fixing holes 31 on the female end piece 10 matches the size of an electronic device 200 of a certain size. Therefore, when the size of the electronic device 200 changes, Figure 7 The female terminal 10 shown cannot be used unless a hole is re-drilled at the fixed position 400. Based on this, in some possible implementations, the female terminal 10 may include multiple usage groups arranged at Z intervals along a third direction, each usage group including at least one fixing hole 31. The multiple usage groups are used to mate the female terminal 10 with electronic devices 200 of various sizes, so that after the size of the electronic device 200 changes, the female terminal 10 can be fixed at the fixed position 400 by using the usage groups on the female terminal 10 that match the size of the electronic device 200, without the need to re-drill holes at the fixed position 400, thereby increasing the application range of the female terminal 10.

[0168] In the description of the embodiments of this application, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, an indirect connection through an intermediate medium, or the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this application according to the specific circumstances.

[0169] The devices or elements referred to in the embodiments of this application or implied herein must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the embodiments of this application. In the description of the embodiments of this application, "a plurality of" means two or more, unless otherwise precisely specified.

[0170] The terms "first," "second," "third," "fourth," etc. (if present) in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that embodiments of the present application described herein can be implemented, for example, in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0171] The term "multiple" in this article refers to two or more. The term "and / or" in this article is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A alone, A and B simultaneously, or B alone. Furthermore, the character " / " in this article generally indicates an "or" relationship between the preceding and following related objects; in formulas, the character " / " indicates a "division" relationship between the preceding and following related objects.

[0172] It is understood that the various numerical designations used in the embodiments of this application are merely for descriptive convenience and are not intended to limit the scope of the embodiments of this application.

[0173] It is understood that, in the embodiments of this application, the order of the above-mentioned process numbers does not imply the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of this application.

Claims

1. A hanging bracket device, characterized in that, It includes male and female terminals; the male terminal is used to connect to electronic devices. The female end piece includes a main body and a self-locking part. The self-locking part is fixedly connected to the main body and forms a first receiving space with the main body for accommodating a part of the male end piece. The first receiving space is used to form a self-locking structure with the male end piece. One of the main body and the male end piece includes a connector and the other includes a mating space. The connector and the mating space mate so that the main body carries the male end piece.

2. The hanging bracket device according to claim 1, characterized in that, The male end member is rotatably connected to the main body portion, and is rotatable relative to the female end member about a rotation axis parallel to a first direction, such that the male end member moves from a first position to a second position; wherein, the first direction is the thickness direction of the female end member; When the male end is in the first position, the male end is located outside the first accommodating space; When the male end is in the second position, the male end is located inside the first accommodating space.

3. The hanging bracket device according to claim 1 or 2, characterized in that, The main body includes a base and a connector. A first end of the base is fixedly connected to the connector, and a second end of the base is fixedly connected to the self-locking part. The connector and the base form a second receiving space for accommodating a portion of the male end piece. The male end includes the mating space, and the connector passes through the mating space and abuts against the male end in a second direction; wherein, the second direction is defined as the gravity direction, and the second direction is perpendicular to the first direction.

4. The hanging bracket device according to claim 3, characterized in that, Along the first direction, the highest point of the self-locking part is level with the highest point of the connecting body, or, along the first direction, the highest point of the self-locking part is located between the highest point of the connecting body and the base; wherein, the highest point of the self-locking part refers to the point of the self-locking part that is farthest from the base in the first direction, and the highest point of the connecting body refers to the point of the connecting body that is farthest from the base in the first direction.

5. The hanging bracket device according to any one of claims 1 to 4, characterized in that, The female end member further includes an elastic portion, which is fixedly connected to the main body portion and is used to abut against the male end member in a second direction.

6. The hanging bracket device according to any one of claims 1 to 5, characterized in that, The female end piece further includes a first limiting part, which is fixedly connected to the main body part. The first limiting part and the self-locking part are spaced apart in a third direction. The first limiting part is used to abut against the male end piece in the third direction. The first direction, the second direction, and the third direction are perpendicular to each other.

7. The hanging bracket device according to any one of claims 1 to 6, characterized in that, The male end component includes a first connector, a second connector, and a sleeve; The first connector is detachably connected to the female end piece, the second connector is detachably connected to the electronic device, the first connector and the second connector are rotatably connected, one of the first connector and the second connector includes a pivot portion, and the other includes a third receiving space for accommodating the pivot portion; The sleeve is fitted onto the outer wall of the rotating shaft and located inside the third accommodating space, and the sleeve abuts against the inner walls of the rotating shaft and the third accommodating space respectively.

8. The hanging bracket device according to claim 7, characterized in that, The second connector includes a fixedly connected connecting portion and a bent portion. The connecting portion is used to connect with an electronic device, and the bent portion and the connecting portion form the third receiving space.

9. The hanging bracket device according to claim 8, characterized in that, The second connector further includes at least one first through hole, which extends through the connecting portion and the bent portion, and is used to accommodate a screw that is threadedly connected to at least one of the connecting portion and the bent portion.

10. The hanging device according to any one of claims 7 to 9, characterized in that, The second connector also includes at least one second through hole for receiving a screw that is threaded to the electronic device.

11. The hanging device according to any one of claims 7 to 10, characterized in that, The first connector includes a hook portion and two pivot portions. The hook portion is used to suspend on the connector body. A pivot portion is connected to a first end of the hook portion and a pivot portion is connected to a second end of the hook portion. Each pivot portion corresponds to one sleeve.

12. The hanging bracket device according to claim 11, characterized in that, The second connector further includes a third through hole, which connects the interior and exterior of the third receiving space; The first connector further includes two second limiting parts, each of which is connected to one of the rotating shaft parts, and each of the second limiting parts is exposed outside the third receiving space through the third through hole; Each of the sleeves corresponds to a second limiting part and is located between the corresponding second limiting part and the hook part.

13. The hanging bracket device according to any one of claims 1 to 12, characterized in that, The self-locking part is integrally formed with the main body; or... The female end piece includes a first limiting part that is integrally formed with the main body; or... The main body also includes a base that is integral with the connector, and the base is connected to the self-locking part.

14. The hanging bracket device according to any one of claims 1 to 13, characterized in that, After the male end piece is connected to the female end piece, the maximum thickness of the bracket device in the first direction is less than or equal to 6.5 mm.

15. A female end piece, characterized in that, The female terminal is used to be detachably connected to the male terminal connected to the electronic device. The female terminal includes a main body and a self-locking part. The self-locking part is fixedly connected to the main body and forms a first receiving space with the main body to accommodate a part of the male terminal. The first receiving space is used to form a self-locking structure with the male terminal. One of the main body and the male end piece includes a connector and the other includes a mating space. The connector and the mating space mate so that the main body carries the male end piece.

16. The female end piece according to claim 15, characterized in that, The male end member is rotatably connected to the main body portion, and is rotatable relative to the female end member about a rotation axis parallel to a first direction, such that the male end member moves from a first position to a second position; wherein, the first direction is the thickness direction of the female end member; When the male end is in the first position, the male end is located outside the first accommodating space; When the male end is in the second position, the male end is located inside the first accommodating space.

17. The female end piece according to claim 15 or 16, characterized in that, The main body includes a base and a connector. A first end of the base is fixedly connected to the connector, and a second end of the base is fixedly connected to the self-locking part. The connector and the base form a second receiving space for accommodating a portion of the male end piece. The male end includes the mating space, and the connector passes through the mating space and abuts against the male end in a second direction; wherein, the second direction is defined as the gravity direction, and the second direction is perpendicular to the first direction.

18. The female end piece according to claim 17, characterized in that, Along the first direction, the highest point of the self-locking part is level with the highest point of the connecting body, or, along the first direction, the highest point of the self-locking part is located between the highest point of the connecting body and the base; wherein, the highest point of the self-locking part refers to the point of the self-locking part that is farthest from the base in the first direction, and the highest point of the connecting body refers to the point of the connecting body that is farthest from the base in the first direction.

19. The female end member according to any one of claims 15 to 18, characterized in that, The female end member further includes an elastic portion, which is fixedly connected to the main body portion and is used to abut against the male end member in a second direction.

20. The female end member according to any one of claims 15 to 19, characterized in that, The self-locking part is integrally formed with the main body; or... The female end piece includes a first limiting part that is integrally formed with the main body; or... The main body also includes a base that is integral with the connector, and the base is connected to the self-locking part.

21. A male terminal, characterized in that, Includes a first connector, a second connector, and a sleeve; The first connector is used for detachable connection with the female end piece, the second connector is used for detachable connection with the electronic device, the first connector and the second connector are rotatably connected, one of the first connector and the second connector includes a pivot portion, and the other includes a third receiving space for accommodating the pivot portion; The sleeve is fitted onto the outer wall of the rotating shaft and located inside the third accommodating space, and the sleeve abuts against the inner walls of the rotating shaft and the third accommodating space respectively.

22. The male connector according to claim 21, characterized in that, The second connector includes a fixedly connected connecting portion and a bent portion. The connecting portion is used to connect with an electronic device, and the bent portion and the connecting portion form the third receiving space.

23. The male connector according to claim 22, characterized in that, The second connector further includes at least one first through hole, which extends through the connecting portion and the bent portion, and is used to accommodate a screw that is threadedly connected to at least one of the connecting portion and the bent portion.

24. The male terminal according to any one of claims 21 to 23, characterized in that, The second connector also includes at least one second through hole for receiving a screw that is threaded to the electronic device.

25. The male connector according to any one of claims 21 to 24, characterized in that, The first connector includes a hook portion and two pivot portions. The hook portion is used to suspend on the connector body. A pivot portion is connected to a first end of the hook portion and a pivot portion is connected to a second end of the hook portion. Each pivot portion corresponds to one sleeve.

26. The male connector according to claim 25, characterized in that, The second connector further includes a third through hole, which connects the interior and exterior of the third receiving space; The first connector further includes two second limiting parts, each of which is connected to one of the rotating shaft parts, and each of the second limiting parts is exposed outside the third receiving space through the third through hole; Each of the sleeves corresponds to a second limiting part and is located between the corresponding second limiting part and the hook part.

27. An electronic device component, characterized in that, The device includes an electronic device and a mounting bracket as described in any one of claims 1 to 14, the mounting bracket including a male terminal that is fixedly connected to the electronic device.

Citation Information

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