Electronic device support

By introducing a first elastic element and a cross-hinged connecting rod into the phone holder, and using the open button to drive the connecting rod to rotate, the clamp arm can be opened with one click, solving the problem that existing phone holders require manual opening of the clamp arm and improving the ease of operation.

CN224538223UActive Publication Date: 2026-07-21SHENZHEN BASEUS TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN BASEUS TECH CO LTD
Filing Date
2025-06-30
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing phone holders require users to manually pull open the clamping arms, which is inconvenient and fails to meet users' needs for convenient operation.

Method used

Design an electronic device bracket by setting a first elastic element and a cross-hinged connecting rod between the clamping arms, and using an open button to drive the connecting rod to rotate, so as to realize one-button control of the clamping arms opening.

Benefits of technology

Users can control the opening of the clamping arm by pressing the open button once, simplifying the operation process and improving convenience and user experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224538223U_ABST
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Abstract

The utility model relates to electronic equipment support technical field discloses an electronic equipment support, electronic equipment support includes mounting seat, two clamping arms, first elastic part, opening button and two connecting rods, two clamping arms are oppositely arranged and are all movably connected in mounting seat along the first direction, first elastic part is connected between two clamping arms for driving two clamping arms to move towards each other, opening button is movably connected in mounting seat, two connecting rods are cross arrangement and are mutually hinged, one end of two connecting rods is along the first direction distribution and is respectively transmission connection in a clamping arm, the other end of two connecting rods is along the first direction distribution and is all used for the drive of opening button, wherein, opening button is driven to move to drive two connecting rods to rotate in opposite directions, and then drive two clamping arms to move in opposite directions, thereby can realize one button control two clamping arms to open.
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Description

Technical Field

[0001] This utility model relates to the field of electronic device bracket technology, and specifically to an electronic device bracket. Background Technology

[0002] With the continuous development of the electronic device stand industry, users have increasingly higher requirements for mobile phone stands.

[0003] Current phone holders have a relatively simple structure and usually use springs to automatically clamp the phone with two clamping arms. Users need to manually pull the two clamping arms apart when taking the phone out or putting it in, which is inconvenient and fails to meet users' needs. Utility Model Content

[0004] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes an electronic device bracket that enables one-button control of the opening of two clamping arms.

[0005] An electronic device bracket according to an embodiment of the present invention includes a mounting base, two clamping arms, a first elastic element, an open button, and two connecting rods; the two clamping arms are arranged opposite to each other and are movably connected to the mounting base along a first direction; the first elastic element is connected between the two clamping arms and is used to drive the two clamping arms to move towards each other; the open button is movably connected to the mounting base; the two connecting rods are arranged crosswise and hinged to each other; one end of the two connecting rods is distributed along the first direction and is respectively driven to one clamping arm; the other end of the two connecting rods is distributed along the first direction and is used to be driven by the open button; wherein, the open button is driven to move so as to drive the two connecting rods to rotate in opposite directions, thereby driving the two clamping arms to move in opposite directions.

[0006] The electronic device bracket according to the embodiments of this utility model has at least the following beneficial effects: By setting two clamping arms to be movably connected to the mounting base along a first direction, and setting a first elastic member between the two clamping arms, the first elastic member can drive the two clamping arms to move towards each other to clamp the electronic device. By movably connecting the open button to the mounting base, two connecting rods are arranged crosswise and hinged to each other. One end of the two connecting rods is distributed along the first direction and is respectively connected to one clamping arm. The other end of the two connecting rods is distributed along the first direction and is used to be driven by the open button. The open button is driven to move to drive the two connecting rods to rotate in opposite directions, thereby driving the two clamping arms to move in opposite directions. Thus, when the open button is driven to move, it can drive the two connecting rods to rotate in opposite directions, thereby driving the two clamping arms to move in opposite directions to the open state. In this way, the user can control the two clamping arms to open by pressing the open button once, so that the user can take and put the electronic device in the clamping space without the user having to manually pull the two clamping arms open, making the operation more convenient.

[0007] According to some embodiments of the present invention, each link includes a clamping arm working end, a hinge part, and a button working end arranged sequentially; the two hinge parts are hinged to each other, the two clamping arm working ends are distributed along a first direction and are respectively driven to a clamping arm; the two button working ends are distributed along the first direction and are both partially located in the moving path of the open button; the open button is driven to move to drive the two button working ends to move in opposite directions along the first direction, and each clamping arm working end can move relative to the clamping arm along a second direction as the button working end moves, the second direction intersecting the first direction.

[0008] According to some embodiments of the present invention, the open button has a protrusion on one side facing the button's working end along the moving direction. The protrusion has two first inclined surfaces, which are respectively located on opposite sides of the protrusion along the first direction, and the distance between the two first inclined surfaces gradually decreases along the protrusion direction of the protrusion. The working ends of the two buttons are respectively partially located on the moving path of one of the first inclined surfaces, and can slide on the corresponding first inclined surfaces as the open button moves.

[0009] According to some embodiments of this utility model, the two first inclined planes are symmetrically arranged.

[0010] According to some embodiments of the present invention, each button actuating end includes a rotating part and a sleeve. The sleeve is movably connected to the mounting base or to open the button along a first direction, and the rotating part is rotatably connected to the sleeve. The rotation axes of the rotating part and the hinge part are both arranged along a third direction. The third direction intersects the first direction and the second direction respectively. Each sleeve part is located on a movement path of a first inclined plane.

[0011] According to some embodiments of the present invention, each sleeve is provided with a second inclined surface opposite to the corresponding first inclined surface, and the second inclined surface can slide on the corresponding first inclined surface as the open button moves.

[0012] According to some embodiments of the present invention, the open button is movably connected to the mounting base along a third direction and is provided with a first slide groove extending along a first direction; each sleeve is movably inserted into the first slide groove along the first direction; and a boss protrudes from the first slide groove.

[0013] According to some embodiments of the present invention, the sleeve includes a first anti-rotation surface, and the inner wall of the first sliding groove includes a second anti-rotation surface. The first anti-rotation surface slidably contacts the second anti-rotation surface along a first direction. The cooperation between the first anti-rotation surface and the second anti-rotation surface can restrict the rotational movement of the sleeve around the axis of the rotating part.

[0014] According to some embodiments of the present invention, each clamping arm is provided with a second sliding groove extending in a second direction, and each clamping arm's working end is provided with a first protrusion, and each first protrusion passes through the corresponding second sliding groove; the first protrusion can move in the second sliding groove along the second direction as the button's working end moves, and push against the groove wall of the second sliding groove.

[0015] According to some embodiments of the present invention, at least one hinge portion is provided with a first sliding portion, and the mounting base is provided with at least one second sliding portion. The first sliding portion and the second sliding portion correspond one to one. One of the first sliding portion and the second sliding portion is a third sliding groove extending along the second direction, and the other is a second protrusion. The second protrusion is movably inserted into the third sliding groove along the second direction.

[0016] According to some embodiments of the present invention, the electronic device bracket further includes a trigger component and a second elastic member. The trigger component is movably connected to the mounting base along a third direction, and the first direction intersects with the third direction. The trigger component is partially abutted between two clamping arms and partially located within the clamping space formed between the two clamping arms. The trigger component is driven to move toward the mounting base to disengage from the abutment of the two clamping arms. The second elastic member is connected between the mounting base and the trigger component and is used to drive the trigger component to reset.

[0017] According to some embodiments of the present invention, the triggering component includes a trigger button and a locking member. The trigger button is at least partially located within the clamping space, and the locking member is fixedly connected to the side of the trigger button facing the mounting base and abuts against the two clamping arms. The trigger button is used to drive the locking member to move along a third direction to disengage from the abutment against the two clamping arms. At least one of the trigger button and the locking member is connected to the mounting base by a second elastic member.

[0018] According to some embodiments of the present invention, the mounting base is provided with a receiving cavity, and two clamping arms are partially located inside the receiving cavity and partially extend outside the receiving cavity, forming a clamping space between the two clamping arms extending outside the receiving cavity; the first elastic member and the two connecting rods are both located inside the receiving cavity; the open button and the trigger assembly are both partially exposed outside the receiving cavity and are respectively located on opposite sides of the mounting base along a third direction.

[0019] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments, wherein:

[0021] Figure 1 This diagram shows a partial structural schematic of the electronic device bracket provided in this embodiment of the present invention when the two clamping arms are in a clamping state;

[0022] Figure 2 This diagram shows a partial structural schematic of the electronic device bracket provided in an embodiment of the present invention when the two clamping arms are in the open state;

[0023] Figure 3 This diagram shows a cross-sectional view of the electronic device bracket when the two clamping arms are in a clamping state, as provided in an embodiment of the present invention.

[0024] Figure 4 This diagram shows a cross-sectional view of the electronic device bracket provided in this embodiment of the invention when the two clamping arms are in the open state.

[0025] Figure 5 A partial structural schematic diagram of the electronic device bracket provided in an embodiment of this utility model is shown.

[0026] Figure label:

[0027] Electronic device bracket 100; mounting base 110; receiving cavity 111; third slide groove 113; clamping arm 130; second slide groove 131; first elastic element 150; opening button 170; boss 171; first inclined surface 1711; first slide groove 173; second anti-rotation surface 1731;

[0028] Link 190; Clamping arm operating end 191; First protrusion 1911; Hinge 193; Second protrusion 1931; Button operating end 195; Rotating part 1951; Sleeve 1953; First anti-rotation surface 1957; Second inclined surface 1955;

[0029] Clamping space 210; trigger component 230; trigger button 231; locking element 233; second elastic element 250;

[0030] First direction X; second direction Y; third direction Z. Detailed Implementation

[0031] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0032] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0033] In the description of this utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. The use of "first" and "second" in the description is merely for distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the number of indicated technical features, or implicitly indicating the order of the indicated technical features.

[0034] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0035] In the description of this utility model, the terms "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this utility model. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0036] Please see Figures 1 to 2 This application provides an electronic device bracket 100, including a mounting base 110, two clamping arms 130, a first elastic element 150, an open button 170, and two connecting rods 190.

[0037] Both clamping arms 130 are movably connected to the mounting base 110 along the first direction X, and the two clamping arms 130 are arranged opposite to each other, forming a clamping space 210 between the two clamping arms 130. The clamping space 210 can be used to accommodate electronic devices. The clamping arms 130 can be moved towards each other to reduce the clamping space 210, so as to clamp the electronic devices (such as...). Figure 1 (As shown); the two gripping arms 130 moving in opposite directions can increase the gripping space 210, making it easier for the user to pick up and put down electronic devices (such as...). Figure 2 (As shown).

[0038] The first elastic element 150 is connected between the two clamping arms 130. The first elastic element 150 is used to drive the two clamping arms 130 to move towards each other. The two clamping arms 130 can clamp the electronic device under the action of the first elastic element 150.

[0039] The first elastic element 150 can be a spring, elastic rope, or other elastic element.

[0040] The open button 170 is movably connected to the mounting base 110. The open button 170 provides a pressing position for the user, who can press the open button 170 to control the movement of the control linkage 190.

[0041] The two connecting rods 190 are arranged in a cross configuration and are hinged to each other, meaning that the two connecting rods 190 can be hinged to each other at the intersection, and the two connecting rods 190 are roughly arranged in an X shape. Both connecting rods 190 can rotate about the axis of the hinge point.

[0042] The two connecting rods 190 can have the same or different shapes.

[0043] As an example, when the two links 190 have the same shape, the two links 190 can be stacked on top of each other and arranged in a cross configuration. The two links 190 can be hinged through a first pivot in the area of ​​the cross configuration, so that the two links 190 can rotate about the first pivot respectively.

[0044] As another example, when the two connecting rods 190 have different shapes, one connecting rod 190 may have a through-hole between its two ends, and the other connecting rod 190 may pass through the through-hole. The two connecting rods 190 at the through-hole position can be hinged by a first pivot, so that the two connecting rods 190 can rotate about the first pivot respectively. The size of the through-hole can be set according to requirements to avoid affecting the rotation angle of the two connecting rods 190.

[0045] Two connecting rods 190 have one end distributed along the first direction X and are respectively connected to a clamping arm 130. The other ends of the two connecting rods 190 are distributed along the first direction X and are both driven by the open button 170. The open button 170 is driven to move, causing the two connecting rods 190 to rotate in opposite directions, which in turn causes the two clamping arms 130 to move in opposite directions. Thus, when the open button 170 is driven to move, it can drive the two connecting rods 190 to rotate in opposite directions, which in turn causes the two clamping arms 130 to move in opposite directions to the open state, so that the user can take out and put in electronic devices in the clamping space 210. In this way, the user can control the two clamping arms 130 to open by pressing the open button 170 once, without the user having to manually pull the two clamping arms 130 apart, which makes it easier for the user to take out and put in electronic devices in the clamping space 210, making the operation more convenient and the user experience better.

[0046] In some embodiments, each link 190 includes a clamping arm actuating end 191, a hinge portion 193, and a button actuating end 195 distributed sequentially. Specifically, along the extension direction of the link 190, the hinge portion 193 is located between the clamping arm actuating end 191 and the button actuating end 195.

[0047] As an example, the clamping arm actuating end 191, the hinge portion 193, and the button actuating end 195 can be connected sequentially along the extension direction of the connecting rod 190.

[0048] The two hinge parts 193 can be hinged to each other, that is, the hinge parts 193 of the two connecting rods 190 can be hinged to each other, and each clamping arm actuating end 191 and each button actuating end 195 can rotate around the hinge axis of the two hinge parts 193.

[0049] As an example, the two hinges 193 can be hinged together via a first pivot.

[0050] The two clamping arm working ends 191 can be distributed along the first direction X, that is, the clamping arm working ends 191 of the two connecting rods 190 can be distributed along the first direction X.

[0051] The two clamping arm actuating ends 191 can be respectively drivenly connected to a clamping arm 130, so that the two clamping arm actuating ends 191 can rotate towards or away from each other about the hinge axes of the two hinge parts 193. When the two clamping arm actuating ends 191 rotate away from each other, the two clamping arm actuating ends 191 can drive the two clamping arms 130 to move away from each other, so that the two clamping arms 130 open. It can be understood that when the two clamping arms 130 move towards each other under the action of the first elastic member 150, the two clamping arms 130 can also drive the two clamping arm actuating ends 191 to rotate towards each other.

[0052] The two button action ends 195 can be distributed along the first direction X, that is, the button action ends 195 of the two connecting rods 190 can be distributed along the first direction X.

[0053] Both button action ends 195 can be partially located in the movement path of the open button 170, so that when the open button 170 moves, it can push against the two button action ends 195.

[0054] Specifically, the open button 170 is driven to move, causing the two button action ends 195 to move in opposite directions along the first direction X. Each clamping arm action end 191 can move relative to the clamping arm 130 along the second direction Y as the button action end 195 moves. The second direction Y intersects the first direction X. In this way, the open button 170 can drive the two button action ends 195 to move linearly along the first direction X, which helps to prevent the two button action ends 195 from leaving the movement path of the open button 170 due to circumferential movement. At the same time, the two clamping arm action ends 191 can rotate around the hinge axis of the two hinge parts 193 and move along the second direction Y. Thus, the movement of the clamping arm action ends 191 along the second direction Y can ensure that the button action ends 195 can move stably along the first direction X, which helps to make the overall movement of the link 190 more stable and reduces the possibility of the link 190 getting stuck.

[0055] As an example, the first direction X and the second direction Y can be perpendicular to each other. When the two clamping arms 130 are in a clamping state under the action of the first elastic member 150, when the open button 170 is driven to move, it can move between the two button action ends 195 to push the two button action ends 195 to move away from each other along the first direction X. When the two button action ends 195 move, they can drive the two clamping arm action ends 191 to rotate around the hinge axis of the two hinge parts 193 and move towards the side closer to the button action end 195 along the second direction Y. When the two clamping arm action ends 191 rotate, they can push against the two clamping arms 130 to drive the two clamping arms 130 to move away from each other, thereby increasing the clamping space 210 so that the user can take out and put in electronic devices in the clamping space 210.

[0056] Please see Figures 2 to 4 In some embodiments, the open button 170 has a protrusion 171 protruding along the moving direction toward the button's actuating end 195 (e.g., Figure 3 (As shown).

[0057] As an example, the movement direction of the open button 170 can be either the second direction Y or the third direction Z. The third direction Z can intersect with the first direction X and the second direction Y respectively; specifically, the third direction Z can be perpendicular to the first direction X and the second direction Y respectively.

[0058] The boss 171 may have two first inclined surfaces 1711, which may be respectively located on opposite sides of the boss 171 along the first direction X. The distance between the two first inclined surfaces 1711 may gradually decrease along the protrusion direction of the boss 171. The two button action ends 195 are respectively partially located on the movement path of one of the first inclined surfaces 1711 and can slide on the corresponding first inclined surface 1711 as the open button 170 moves. Thus, the movement of the open button 170 can directly push the button action end 195 through the first inclined surface 1711, without the need to set an additional transmission structure between the open button 170 and the clamping arm action end 191, which helps to simplify the overall structure of the electronic device bracket 100 and reduce manufacturing costs.

[0059] As an example, the boss 171 can be a triangular boss 171, and the two first inclined surfaces 1711 can be the two outer surfaces of opposite sides of the triangular boss 171 along the first direction X, respectively. The two first inclined surfaces 1711 are connected to form one corner of the triangular boss 171. When the two clamping arms 130 are in the clamping state, the release button 170 is driven to move, and the corner formed by the connection of the two first inclined surfaces 1711 can extend between the two button action ends 195. The two button action ends 195 slide on the corresponding first inclined surfaces 1711, so that the two button action ends 195 move opposite sides along the first direction X.

[0060] In some embodiments, the two first inclined surfaces 1711 can be symmetrically arranged, which helps the two clamping arm working ends 191 to move approximately the same distance under the action of the open button 170, and the two clamping arms 130 can also move approximately the same distance, resulting in a better user experience.

[0061] As an example, boss 171 is approximately an isosceles triangular boss 171.

[0062] In some embodiments, each button actuation end 195 may include a rotating part 1951 and a sleeve 1953.

[0063] Among them, the sleeves 1953 are movably connected to the mounting base 110 or the opening button 170 along the first direction. Specifically, the opening button 170 can drive the sleeves 1953 of the two button action ends 195 to move towards or away from each other along the first direction X.

[0064] The rotating part 1951 is rotatably connected to the sleeve 1953. Thus, as the connecting rod 190 rotates, the rotating part 1951 can rotate inside the sleeve 1953, so that the sleeve 1953 can move stably along the first direction X. This helps to prevent the rotating part 1951 from affecting the movement trajectory of the sleeve 1953, and the movement of the connecting rod 190 is smoother.

[0065] As an example, sleeve 1953 may be provided with a rotating hole, the axis of which may be set along the third direction Z, and rotating part 1951 may be generally a circular shaft extending along the third direction Z, the circular shaft being at least partially rotatably inserted into the rotating hole, so that rotating part 1951 can rotate in the rotating hole as connecting rod 190 rotates.

[0066] The rotation axes of both the rotating part 1951 and the hinge part 193 can be set along the third direction Z, which helps to avoid motion interference.

[0067] Each sleeve 1953 can be partially located on the movement path of a first inclined plane 1711. Thus, as the open button 170 is driven to move, the open button 170 can drive the two sleeves 1953 to move in opposite directions. When the sleeves 1953 move, they can drive the connecting rod 190 to rotate around the axis of the hinge 193 through the rotating part 1951. As the connecting rod 190 rotates, the rotating part 1951 can rotate relative to the sleeves 1953 to avoid interfering with the movement of the sleeves 1953 and to help the connecting rod 190 move more smoothly.

[0068] In some embodiments, the open button 170 may be movably connected to the mounting base 110 along a third direction Z, and the open button 170 may be provided with a first groove 173 extending along a first direction X.

[0069] The sleeves 1953 are movably inserted into the first groove 173 along the first direction X, which helps to make the structure between the sleeves 1953 and the open button 170 more compact.

[0070] As an example, the first slide groove 173 may have a slot, which may be located at one end of the open button 170 along the third direction Z, and the other end of the open button 170 along the third direction Z may be used for user pressing. The sleeve 1953 may pass through the slot at least partially through the first slide groove 173, and the outer sidewall of the sleeve 1953 may slidably contact the inner sidewall of the first slide groove 173. The inner sidewall of the first slide groove 173 may guide the outer sidewall of the sleeve 1953 so that the sleeve 1953 moves stably along the first direction X.

[0071] The boss 171 can protrude into the first groove 173.

[0072] As an example, the first groove 173 may include a bottom wall that is spaced apart from the groove opening in a third direction (Z). A boss 171 may protrude from the bottom wall and be located approximately at the middle of the first groove 173 in its extending direction.

[0073] In some embodiments, each sleeve 1953 may be provided with a second inclined surface 1955 opposite to the corresponding first inclined surface 1711. The second inclined surface 1955 can slide on the corresponding first inclined surface 1711 as the open button 170 moves, thereby increasing the contact area between the sleeve 1953 and the first inclined surface 1711 through the second inclined surface 1955. This helps the open button 170 to apply force to the second inclined surface 1955 more evenly when it is driven to move, thereby helping the open button 170 to drive the sleeve 1953 to move more smoothly and stably.

[0074] As an example, when the two clamping arms 130 are in a clamping state and the open button 170 is not driven, the two sleeves 1953 can contact each other, and the second inclined surfaces 1955 of the two sleeves 1953 can face each other along the first direction X and form a triangular space. The boss 171 can be partially inserted into the triangular space, and each second inclined surface 1955 contacts a first inclined surface 1711, thereby ensuring that each second inclined surface 1955 can accurately contact the corresponding first inclined surface 1711 as the open button 170 moves, which helps to improve the stability of the open button 170 in controlling the opening of the clamping arms 130.

[0075] Please see Figure 1 In some embodiments, the sleeve 1953 may include a first anti-rotation surface 1957, and the inner wall of the first groove 173 may include a second anti-rotation surface 1731.

[0076] The first anti-rotation surface 1957 can slidably contact the second anti-rotation surface 1731 along the first direction X. The cooperation of the first anti-rotation surface 1957 and the second anti-rotation surface 1731 can restrict the rotational movement of the sleeve 1953 around the axis of the rotating part 1951. This helps the sleeve 1953 to move more stably along the first direction X and helps to avoid the instability of the connecting rod 190 due to the rotation of the sleeve 1953.

[0077] Among them, both the first anti-rotation surface 1957 and the second anti-rotation surface 1731 can be planar.

[0078] As an example, the first groove 173 is generally rectangular, and the two opposite sidewalls of the rectangular groove along the second direction Y are both planar and can both serve as the second anti-rotation surface 1731. The sleeve 1953 can adopt a polygonal columnar structure extending along the third direction Z. The two opposite outer sidewalls of the sleeve 1953 along the second direction Y can slidably contact one sidewall of the groove, and both opposite outer sidewalls of the sleeve 1953 along the second direction Y can serve as the first anti-rotation surface 1957.

[0079] As another example, sleeve 1953 may adopt a semi-circular columnar structure extending along a third direction Z. Understandably, the semi-circular columnar structure has a connected arc-shaped outer wall and a planar extending outer wall. The planar extending outer wall can serve as a first anti-rotation surface 1957 to slide in contact with one of the two groove sidewalls in the above example, and the arc-shaped outer wall can also slide in contact with the other of the two groove sidewalls.

[0080] In some other embodiments, the first anti-rotation surface 1957 and the second anti-rotation surface 1731 may also be curved surfaces, and the specific shape can be set according to the requirements.

[0081] Please see Figures 1 to 2 In some embodiments, each clamping arm 130 may be provided with a second sliding groove 131 (e.g., Figure 2 As shown), each clamping arm working end 191 may be provided with a first protrusion 1911.

[0082] The second slide groove 131 can extend along the second direction Y, and each first protrusion 1911 can pass through the corresponding second slide groove 131. The first protrusion 1911 can move along the second direction Y in the second slide groove 131 as the button action end 195 moves, and push against the groove wall of the second slide groove 131. Thus, the second slide groove 131 can provide a definite connection position for the first protrusion 1911, which helps to prevent the clamping arm action end 191 from disengaging from the clamping arm 130, and the transmission between the clamping arm action end 191 and the clamping arm 130 is more stable.

[0083] As an example, the first protrusion 1911 can protrude along the third direction Z.

[0084] Please see Figure 1 , Figure 2 and Figure 5 In some embodiments, at least one hinge portion 193 is provided with a first sliding portion, and the mounting base 110 is provided with at least one second sliding portion. The first sliding portion and the second sliding portion correspond one-to-one, that is, each first sliding portion can be connected to a second sliding portion.

[0085] Among them, one of the first sliding part and the second sliding part is a third slide groove 113 extending along the second direction Y, and the other is a second protrusion 1931. The second protrusion 1931 is movably disposed in the third slide groove 113 along the second direction Y. In this way, the second protrusion 1931 and the third slide groove 113 can provide guidance for the hinge part 193. When the button action end 195 moves along the first direction X, the two hinge parts 193 can move stably along the second direction Y under the guidance of the second protrusion 1931 or the third slide groove 113, which helps the connecting rod 190 to have a more stable movement trajectory.

[0086] Please see Figures 2 to 4 In some embodiments, the electronic device bracket 100 may further include a trigger component 230 and a second elastic element 250.

[0087] The trigger component 230 is movably connected to the mounting base 110 along the third direction Z. Specifically, the trigger component 230 can move towards the mounting base 110 along the third direction Z or away from the mounting base 110 along the third direction Z.

[0088] The trigger component 230 can partially abut between the two clamping arms 130 (e.g.) Figure 2 As shown), to prevent the two clamping arms 130 from moving towards each other, the two clamping arms 130 can be controlled to remain open, so that the user can easily take the electronic device out of the clamping space 210.

[0089] The trigger component 230 may be partially located within the clamping space 210 (e.g., Figure 4 As shown), when the electronic device is placed in the clamping space 210, the trigger component 230 can support the electronic device, and the electronic device can press the trigger component 230 by its own weight and / or the clamping force of the two clamping arms 130, so as to drive the trigger component 230 to move along the third direction Z towards the mounting base 110 (e.g., Figure 3 (As shown).

[0090] The trigger component 230 is driven to move toward the mounting base 110 to disengage from the abutment of the two clamping arms 130 (as shown in the figure), thereby enabling the trigger component 230 to unlock the two clamping arms 130, which can move toward each other under the action of the first elastic member 150 to clamp the electronic device.

[0091] As an example, when the electronic device is placed in the clamping space 210, the electronic device presses the trigger component 230, causing the trigger component 230 to disengage from the two clamping arms 130. The two clamping arms 130 move towards each other under the action of the first elastic member 150 to clamp the electronic device.

[0092] The second elastic element 250 can be connected between the mounting base 110 and the trigger component 230 to drive the trigger component 230 to reset. That is, the second elastic element 250 can drive the trigger component 230 to reset to partially abut between the two clamping arms 130 and partially serve as the clamping space 210, so as to prepare for the next use of the electronic device bracket 100 by the user.

[0093] The second elastic element 250 can be a spring, elastic rope, or other elastic element.

[0094] As an example, a user can place an electronic device in the clamping space 210. The electronic device presses the trigger component 230, causing it to move towards the mounting base 110. The trigger component 230 disengages from the two clamping arms 130, which then move towards each other under the action of the first elastic element 150, partially positioning themselves in the reset path that was previously abutting the trigger component 230. This achieves automatic clamping of the electronic device, eliminating the need for additional structural components to control the clamping arms 130, resulting in a better user experience. When the user needs to remove the electronic device, they can press the open button 170 to open the two clamping arms 130, allowing for convenient removal. Understandably, at this time, the two clamping arms 130 disengage from the reset path of the trigger component 230, and the trigger component 230 resets to its pop-up state under the action of the second elastic element 250. The user then releases the open button 170, causing the two clamping arms 130 to move towards each other under the action of the first elastic element 150, respectively abutting against the trigger component 230, preparing for the next use of the electronic device holder 100.

[0095] In some embodiments, the trigger component 230 may include a trigger button 231 and a locking element 233.

[0096] The trigger button 231 is at least partially located within the clamping space 210, and the locking member 233 is fixedly connected to the side of the trigger button 231 facing the mounting base 110. Thus, when the electronic device is placed in the clamping space 210, the trigger button 231 can support the electronic device, and the electronic device can press the trigger button 231 to move towards the mounting base 110, thereby causing the locking member 233 to move synchronously.

[0097] The locking member 233 can abut against the two clamping arms 130 to prevent the two clamping arms 130 from moving towards each other, keeping the two clamping arms 130 in an open state. The trigger button 231 is used to drive the locking member 233 to move along the third direction Z to disengage from the abutment of the two clamping arms 130, so that the locking member 233 can unlock the two clamping arms 130 under the action of the trigger button 231. The two clamping arms 130 can move towards each other under the action of the first elastic member 150 to clamp the electronic device, and the two clamping arms 130 can be partially located on the side of the locking member 233 facing the trigger button 231 to prevent the locking member 233 and the trigger button 231 from resetting.

[0098] At least one of the trigger button 231 and the locking member 233 is connected to the mounting base 110 by a second elastic member 250 to drive the locking member 233 and the trigger button 231 to reset.

[0099] Please see Figure 1 and Figure 4 In some embodiments, the mounting base 110 may be provided with a receiving cavity 111.

[0100] The first elastic element 150 and the two connecting rods 190 can both be located within the accommodating cavity 111 to reduce the possibility of damage from other external structures.

[0101] Both clamping arms 130 are partially located inside the receiving cavity 111 and partially extend outside the receiving cavity 111, and a clamping space 210 is formed between the two clamping arms 130 extending outside the receiving cavity 111.

[0102] Both the open button 170 and the trigger button 231 can be partially exposed outside the receiving cavity 111, and are located on opposite sides of the mounting base 110 along the third direction Z, which helps to avoid interference between the trigger button 231 and the control components, and is easy to be driven by external force.

[0103] In the electronic device bracket 100 provided in this application embodiment, two clamping arms 130 are configured to be movably connected to the mounting base 110 along the first direction X, and a first elastic member 150 is provided between the two clamping arms 130. The first elastic member 150 can drive the two clamping arms 130 to move towards each other so as to clamp the electronic device. By movably connecting the open button 170 to the mounting base 110, two connecting rods 190 are arranged crosswise and hinged to each other. One end of the two connecting rods 190 is distributed along the first direction X and is respectively connected to a clamping arm 130. The other end of the two connecting rods 190 is distributed along the first direction X and is driven by the open button 170. The open button 170 is driven to move, causing the two connecting rods 190 to rotate in opposite directions, thereby causing the two clamping arms 130 to move in opposite directions. Thus, when the open button 170 is driven to move, it can drive the two connecting rods 190 to rotate in opposite directions, thereby causing the two clamping arms 130 to move in opposite directions to the open state. In this way, the user can control the two clamping arms 130 to open by pressing the open button 170 once, so that the user can take out and put in electronic devices in the clamping space 210 without the user having to manually pull the two clamping arms 130 apart, making the operation more convenient.

[0104] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention. Furthermore, the embodiments of the present invention and the features thereof can be combined with each other unless otherwise specified.

Claims

1. An electronic device bracket, characterized in that, include: Mounting base; Two clamping arms are arranged opposite to each other and are movably connected to the mounting base along a first direction; The first elastic element is connected between the two clamping arms and is used to drive the two clamping arms to move towards each other; The button is movably connected to the mounting base; and Two connecting rods are arranged crosswise and hinged to each other; one end of each connecting rod is distributed along the first direction and is respectively connected to one of the clamping arms; the other end of each connecting rod is distributed along the first direction and is used to be driven by the open button. The open button is driven to move, causing the two connecting rods to rotate in opposite directions, which in turn causes the two clamping arms to move in opposite directions.

2. The electronic device bracket according to claim 1, characterized in that, Each of the links includes a clamping arm actuating end, a hinge portion, and a button actuating end distributed sequentially. The two hinged parts are hinged to each other, and the two clamping arm working ends are distributed along the first direction and are respectively connected to one of the clamping arms; The two button actuation ends are distributed along the first direction and are both partially located in the movement path of the open button; The open button is driven to move so as to cause the two button action ends to move in opposite directions along the first direction. Each clamping arm action end can move relative to the clamping arm along the second direction as the button action end moves. The second direction intersects the first direction.

3. The electronic device bracket according to claim 2, characterized in that, The open button has a protrusion facing the side of the button's actuating end along the moving direction. The protrusion has two first inclined surfaces, which are respectively located on opposite sides of the protrusion along the first direction, and the distance between the two first inclined surfaces gradually decreases along the protrusion direction of the protrusion. The two button actuation ends are respectively partially located on the movement path of the first inclined plane, and can slide on the corresponding first inclined plane as the open button moves.

4. The electronic device bracket according to claim 3, characterized in that, The two first inclined planes are symmetrically arranged.

5. The electronic device bracket according to claim 3, characterized in that, Each of the button's actuating end includes a rotating part and a sleeve. The sleeve is movably connected to the mounting base or the open button along the first direction, and the rotating part is rotatably connected to the sleeve. The rotation axes of both the rotating part and the hinge part are arranged along a third direction; the third direction intersects the first direction and the second direction respectively; Each of the sleeve portions is located on a movement path along one of the first inclined planes.

6. The electronic device bracket according to claim 5, characterized in that, Each of the sleeves is provided with a second inclined surface opposite to the corresponding first inclined surface, and the second inclined surface can slide on the corresponding first inclined surface as the open button is moved.

7. The electronic device bracket according to claim 5, characterized in that, The open button is movably connected to the mounting base along the third direction and is provided with a first slide groove extending along the first direction; each sleeve is movably inserted into the first slide groove along the first direction. The boss protrudes from the first groove.

8. The electronic device bracket according to claim 7, characterized in that, The sleeve includes a first anti-rotation surface, and the inner wall of the first groove includes a second anti-rotation surface. The first anti-rotation surface slidably contacts the second anti-rotation surface along the first direction. The first anti-rotation surface and the second anti-rotation surface cooperate to restrict the rotational movement of the sleeve about the axis of the rotating part.

9. The electronic device bracket according to claim 2, characterized in that, Each clamping arm is provided with a second sliding groove extending in a second direction, and each clamping arm's working end is provided with a first protrusion, with each first protrusion passing through the corresponding second sliding groove; The first protrusion can move along the second direction within the second groove as the button actuating end moves, and push against the groove wall of the second groove.

10. The electronic device bracket according to claim 2, characterized in that, At least one of the hinge portions is provided with a first sliding portion, and the mounting base is provided with at least one second sliding portion, with the first sliding portion and the second sliding portion corresponding one-to-one; One of the first sliding portion and the second sliding portion is a third sliding groove extending along the second direction, and the other is a second protrusion; The second protrusion is movably inserted into the third groove along the second direction.

11. The electronic device bracket according to claim 1, characterized in that, The electronic device bracket further includes a triggering component and a second elastic element, the triggering component being movably connected to the mounting base along a third direction, the first direction and the third direction intersecting; The trigger component is partially abutted between the two clamping arms and partially located within the clamping space formed between the two clamping arms. The trigger component is driven to move toward the mounting base to disengage from the abutment of the two clamping arms. The second elastic element is connected between the mounting base and the trigger component, and is used to drive the trigger component to reset.

12. The electronic device bracket according to claim 11, characterized in that, The triggering component includes a trigger button and a locking member. The trigger button is at least partially located within the clamping space, and the locking member is fixedly connected to the side of the trigger button facing the mounting base and abuts against the two clamping arms. The trigger button is used to drive the locking member to move along the third direction to disengage from the two clamping arms; at least one of the trigger button and the locking member is connected to the mounting base by the second elastic member.

13. The electronic device bracket according to claim 11, characterized in that, The mounting base is provided with a receiving cavity, and both clamping arms are partially located inside the receiving cavity and partially extend outside the receiving cavity. The clamping space is formed between the two clamping arms extending outside the receiving cavity. The first elastic element and both connecting rods are located within the accommodating cavity; Both the open button and the trigger component are partially exposed outside the accommodating cavity and are located on opposite sides of the mounting base along the third direction.