Electronic equipment support

By designing adjustable locking parts and lever mechanism, the problem that traditional mobile phone holders cannot adapt to screens of different thicknesses is solved, and the stable clamping of different screens is achieved, which improves the user experience.

CN223153196UActive Publication Date: 2025-07-25SHENZHEN SENKEMU TECH CO LTD
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Patent Information

Application Number
CN202422410971.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-25
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Traditional mobile phone holders cannot be adjusted according to the car screen of different thicknesses, resulting in the inability to stabilize the phone and poor user experience.

Method used

An electronic equipment bracket is designed, including a connecting base, an adapter, a locking member and a lever mechanism. By driving the locking member to change the distance between the pusher and the clamping part, the clamping space is adjusted and non-adjustable, and the screens of different sizes and thicknesses are adapted.

Benefits of technology

It improves the versatility and practicality of the bracket, and can firmly clamp screens of different thicknesses, improving the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electronic equipment support which comprises a connecting base, a clamping part and a fixing part. The adapter piece is arranged on the connecting base, and the adapter piece is used for being connected with electronic equipment; the locking piece is connected to the base; the ejector rod mechanism comprises a pushing piece and an ejector rod, the ejector rod comprises an abutting end and a rod part, and a space for clamping an object is formed between the end, facing the clamping part, of the abutting end and the clamping part; the pushing piece is slidably connected to the other end of the connecting base, and the distance between the pushing piece and the clamping part can be changed when the pushing piece slides; the pushing piece is telescopically connected with the rod part of the ejector rod; the locking piece is connected with the pushing piece; the distance between the pushing piece and the clamping part is changed by driving the locking piece; when the distance between the pushing piece and the clamping part is maximum, the telescopic connection between the pushing piece and the rod part is in an adjustable state; and when the pushing piece drives the pushing piece to reduce the distance between the pushing piece and the clamping part, the telescopic connection between the pushing piece and the rod part is changed from an adjustable state to an unadjustable state.
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Description

Technical Field

[0001] The utility model relates to the technical field of electronic equipment brackets, in particular to an electronic equipment bracket. Background Art

[0002] An electronic device holder is a device used to fix an electronic device in a specific position. It is widely used in scenes such as vehicles, desktops, and kitchens. Its core function is to provide stable support to ensure that the electronic device maintains a safe and easy-to-operate posture during use. There are many types of electronic device holders on the market, such as mobile phone holders, tablet holders, and camera holders. Car mobile phone holders are particularly important because they can help drivers fix their phones in a suitable field of view, facilitate the use of navigation, voice assistants and other functions, and improve driving safety. In recent years, the degree of intelligence of automobiles has continued to improve, and the size of car screens has gradually increased, providing drivers with a more convenient interactive experience. However, traditional mobile phone holders are mainly installed by clamping the air outlet. As the space occupied by the car screen increases, the installation position of traditional mobile phone holders is limited and it is difficult to meet the needs of drivers. In order to solve this problem, some new mobile phone holders have emerged, such as mobile phone holders that can be buckled on the car screen.

[0003] In the related art, the mobile phone holder that can be buckled on the car screen is mainly composed of a buckle end and an adapter end. The adapter end is connected to the mobile phone, and the buckle end is usually designed with a slot structure that matches the size of the car screen. The mobile phone holder is fixed on the car screen by buckling the edge of the car screen into the slot structure. However, the car screen size matched by this type of holder is fixed and cannot be adjusted according to screens of different thicknesses. When the screen thickness is less than or exceeds the thickness corresponding to the buckle end, it cannot be effectively stuck, resulting in the mobile phone holder being unable to stably fix the mobile phone, resulting in a poor user experience. Utility Model Content

[0004] The purpose of the utility model is to provide an electronic device bracket to solve the technical problem raised in the above background technology: the screen size of the vehicle computer matched with the bracket is fixed and cannot be adjusted according to screens of different thicknesses. When the screen thickness is less than or exceeds the thickness corresponding to the buckle end, it cannot be effectively clamped, resulting in the mobile phone bracket being unable to stably fix the mobile phone, resulting in a poor user experience.

[0005] To achieve the above-mentioned purpose, according to an embodiment of the present application, there is provided an electronic equipment bracket, comprising: a connecting base, one end of which is provided with a clamping portion;

[0006] An adapter, the adapter is arranged on the connection base, and the adapter is used to connect the electronic device;

[0007] A locking member connected to the base;

[0008] A ejector rod mechanism, the ejector rod mechanism includes a pusher and an ejector rod, the ejector rod includes a contact end and a rod portion, and a space for clamping an object is formed between one end of the contact end facing the clamping portion and the clamping portion; the pusher is slidably connected to the other end of the connection base, and when the pusher slides, it can change the distance between the pusher and the clamping portion; the pusher is telescopically connected to the rod portion of the ejector rod, and the locking member is connected to the pusher;

[0009] By driving the locking member to change the distance between the pusher and the clamping portion; when the distance between the pusher and the clamping portion is the largest, the telescopic connection between the pusher and the rod portion is in an adjustable state; when the distance between the pusher and the clamping portion becomes smaller, the telescopic connection between the pusher and the rod portion changes from an adjustable state to a non-adjustable state.

[0010] In some possible implementation manners, the locking member includes a clamping member, the clamping member is rotatably connected to the other end of the connection base, the clamping member is provided with a clamping portion and an acting portion extending outward along the rotation axis, the clamping portion is used to drive the clamping member to rotate, and the acting portion is used to follow the rotation of the clamping member and act on the pusher to drive the pusher to move.

[0011] In some possible implementation manners, the acting portion includes a first part and a second part, and the distance from the first part to the rotation axis of the clamping member is larger than the distance from the second part to the rotation axis of the clamping member.

[0012] In some possible implementation manners, the pusher is slidably connected to the other end of the connection base, and the pusher is used to slide on the side of the ejector rod.

[0013] In some possible implementation manners, the electronic device bracket further includes a movable clamping member, a clamping portion is provided on one side of the ejector rod facing the pusher, an abutting top portion is provided on one side of the connection base facing the pusher, the movable clamping member is displaceably disposed on the pusher, a first end of the movable clamping member faces the clamping portion, a second end of the movable clamping member faces the abutting top portion, the movable clamping member is elastically connected to the pusher, when the distance between the pusher and the clamping portion decreases, the abutting top portion is used to abut against the second end of the movable clamping member to drive the first end of the movable clamping member to move close to the clamping portion so as to be clamped with the clamping portion, and when the distance between the pusher and the clamping portion is the largest, the movable clamping member disengages from the clamping portion under the action of the elastic force.

[0014] In some possible implementation manners, the abutting top portion is a structure that gradually protrudes along the direction in which the movable clamping member moves close to the abutting top portion.

[0015] In some possible implementations, the clamping portion is provided with a plurality of first teeth, and the first end of the movable clamping member is provided with a plurality of second teeth, and the first teeth are used for meshing connection with the second teeth.

[0016] In some possible implementations, the push rod is provided with a first protrusion and one of the first grooves, the connecting base is provided with the first protrusion and the other of the first grooves, the first protrusion extends into the first groove and is slidably connected to the first groove, the pushing member is provided with a second protrusion and one of the second grooves, the connecting base is provided with the second protrusion and the other of the second grooves, the second protrusion extends into the second groove and is slidably connected to the second groove.

[0017] In some possible implementations, an elastic member is provided between the pushing member and the rod portion, and the elastic member is used to provide a force for the pushing member to move away from the clamping portion.

[0018] In some possible implementations, the elastic member includes a first spring member, one end of the first spring member abuts against the pushing member, and the other end of the first spring member abuts against the rod.

[0019] The electronic device support provided by the embodiment of the utility model includes a connecting base, an adapter, a locking member, and a push rod mechanism, the push rod mechanism includes a push member and a push rod, the push rod includes a top end and a rod portion, and the distance between the push member and the clamping portion is changed by driving the locking member; when the distance between the push member and the clamping portion is the largest, the telescopic connection between the push member and the rod portion is in an adjustable state, that is, the distance between the rod portion and the push member can be adjusted telescopically, and the rod portion can drive the top end to move, thereby adjusting the distance between the top end and the clamping portion to adjust the space of the clamped object; after adjusting the space of the clamped object, by driving the locking member to reduce the distance between the push member and the clamping portion, the telescopic connection between the push member and the rod portion changes from an adjustable state to an unadjustable state, so that the push member can drive the rod portion so that the top end and the clamping portion are clamped on the object. By driving the locking member, the clamping space between the top end and the clamping portion can be adjusted, so that screens of different sizes and thicknesses can be adapted. After adjusting the appropriate clamping space, the locking member is driven to reduce the distance between the pushing member and the clamping portion, causing the push rod mechanism to enter a non-adjustable state, that is, the telescopic connection between the pushing member and the rod portion is in a non-adjustable state. The pushing member can drive the push rod with a fixed distance to clamp the object, ensuring its firm clamping, thereby improving versatility and practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1It is a three-dimensional schematic diagram of the overall structure of the electronic device bracket provided by the embodiment of the present utility model.

[0021] Figure 2 It is a three-dimensional schematic diagram of the overall structure of the electronic device bracket provided by the embodiment of the present utility model.

[0022] Figure 3 It is an exploded schematic diagram of the overall structure of the electronic device bracket provided by the embodiment of the present utility model.

[0023] Figure 4 It is a connection schematic diagram of the buckle and the ejector rod mechanism in the electronic device bracket provided by the embodiment of the present utility model.

[0024] Figure 5 It is a schematic diagram of the structure of the ejector rod mechanism in the electronic device bracket provided by the embodiment of the present utility model.

[0025] Figure 6 It is a schematic diagram of the structure of the connection base in the electronic device bracket provided by the embodiment of the present utility model;

[0026] Figure 7 It is a schematic diagram of the position of the movable latch when the distance between the pusher and the clamping part in the electronic device bracket provided by the embodiment of the present utility model is the largest;

[0027] Figure 8 It is a schematic diagram of the position of the movable latch when the distance between the pusher and the clamping part in the electronic device bracket provided by the embodiment of the present utility model becomes smaller;

[0028] Figure 9 It is a top view plane schematic diagram of the overall structure of the electronic device bracket provided by the embodiment of the present utility model;

[0029] Figure 10 It is taken from Figure 9 a side view schematic diagram of the section line A-A therein;

[0030] Figure 11 It is a schematic diagram of the elastic connection between the movable latch and the pusher in the electronic device bracket provided by the embodiment of the present utility model.

[0031] Description of reference numerals: 100, connecting base; 110, clamping part; 111, second anti-slip part; 120, abutting top; 130, first protrusion; 140, second protrusion; 200, adapter; 300, locking member; 310, pressing member; 311, pressing part; 312, action part; 3121, first part; 3122, second part; 313, rotating shaft; 400, push rod mechanism; 410, pushing member; 41 1. second groove; 412. third protrusion; 420. push rod; 421. abutment top; 4211. first anti-slip member; 422. rod; 423. clamping portion; 4231. first tooth; 424. first groove; 425. third groove; 500. movable clamp; 510. first end; 511. second tooth; 520. second end; 600. elastic member; 610. first spring member; 700. second spring member. DETAILED DESCRIPTION

[0032] The overall idea of the technical solution provided by the utility model is as follows:

[0033] See also Figures 1 to 11 , an electronic equipment bracket, comprising:

[0034] A connecting base 100, one end of which is provided with a clamping portion 110. It can be understood that the connecting base 100 is the basic part of the electronic device bracket, and the clamping portion 110 provided at one end of the connecting base 100 is used to fix the electronic device bracket to a specific position, such as on the vehicle screen in the vehicle;

[0035] Adapter 200, adapter 200 is arranged on the connecting base 100, and adapter 200 is used to connect the electronic device; it can be understood that adapter 200 can be connected to the electronic device (such as a mobile phone) through a mobile phone holder or directly connected to the electronic device. Since adapter 200 is a mature technology in this field, it is not described here. It can adopt some widely recognized design schemes, such as a universal ball head, a magnetic bracket, etc., but is not limited to this.

[0036] The locking member 300 is connected to the base; specifically, the locking member 300 is designed to be able to drive the pushing member 410 to move. This driving mechanism may include manual operations such as rotation, pressing, or sliding, enabling the user to adjust the position of the pushing member 410 as needed. Further, once the position of the pushing member 410 is adjusted to the appropriate position, the locking member 300 can lock the pushing member 410 to prevent it from moving during use. This locking mechanism is used to ensure that the electronic device bracket is stably clamped to an object. It can be understood that this design of driving and locking can be accomplished using common designs in the art, such as screw-nut connections, snap connections, etc., which are not limited herein. More specifically, in a screw-nut connection, the locking member 300 can be implemented using structures such as a screw and a nut. The screw can be rotated into the nut to drive the pushing member 410 to move through the rotation action, while the nut can fix the screw to prevent it from rotating back, thereby locking the position of the pushing member 410; in a snap connection, the locking member 300 can employ one or more elastically deformable components that can temporarily deform when subjected to appropriate pressure or operation, allowing the pushing member 410 to move to a new position. Once the pressure is released, the snap components will return to their original state, thus "clamping" the pushing member 410 to prevent it from moving.

[0037] The ejector rod mechanism 400 includes a pushing member 410 and an ejector rod 420. The ejector rod 420 includes a contact end 421 and a rod portion 422. A space for clamping an object is formed between the end of the contact end 421 facing the clamping portion 110 and the clamping portion 110. This space is used to place the object to be clamped; the pushing member 410 is slidably connected to the other end of the connecting base 100. When the pushing member 410 slides, it can change the distance between the pushing member 410 and the clamping portion 110; the pushing member 410 is telescopically connected to the rod portion 422 of the ejector rod 420. This connection method allows the user to adjust the relative position between the ejector rod 420 and the pushing member 410. The locking member 300 is connected to the pushing member 410. The locking member 300 can drive the pushing member 410 to move. Once the position of the pushing member 410 is adjusted to the appropriate position, the locking member 300 can lock the pushing member 410.

[0038] By driving the locking member 300 to change the distance between the pushing member 410 and the clamping portion 110; when the distance between the pushing member 410 and the clamping portion 110 is the largest, the telescopic connection between the pushing member 410 and the rod portion 422 is in an adjustable state, which means that the user can freely move the ejector rod 420 and adjust the distance between it and the clamping portion 110 to adapt to objects of different sizes; when the distance between the pushing member 410 and the clamping portion 110 becomes smaller, the telescopic connection between the pushing member 410 and the rod portion 422 changes from an adjustable state to a non-adjustable state. At this time, the pushing member 410 and the rod portion 422 are relatively fixed, and the pushing member 410 can push the abutting end 421 through the rod portion 422 to clamp the object together with the clamping portion 110. After clamping the object, the locking member 300 locks the pushing member 410 at this time to prevent it from moving during use and ensure that the abutting end 421 and the clamping portion 110 stably clamp the electronic device.

[0039] It can be understood that a locking and releasing mechanism may be included between the pushing member 410 and the ejector rod 420. When the distance between the pushing member 410 and the clamping portion 110 is the largest, the locking mechanism is released, allowing the user to freely adjust the relative positions of the ejector rod 420 and the pushing member 410. As the distance between the pushing member 410 and the clamping portion 110 becomes smaller, the locking mechanism is activated again to fix the relative positions of the ejector rod 420 and the pushing member 410. Alternatively, a snap or locking structure can be designed between the pushing member 410 and the rod portion 422, allowing the user to unlock by a simple pressing or triggering action when the distance between the pushing member 410 and the clamping portion 110 is the largest, and then adjust the position of the ejector rod 420. After the adjustment is completed, press or trigger again to lock the position.

[0040] By driving the locking member 300 to change the distance between the pushing member 410 and the clamping portion 110; when the distance between the pushing member 410 and the clamping portion 110 is the largest, the telescopic connection between the pushing member 410 and the rod portion 422 is in an adjustable state, that is, the distance between the rod portion 422 and the pushing member 410 can be telescopically adjusted, and the rod portion 422 can drive the abutting end 421 to move, so as to adjust the distance between the abutting end 421 and the clamping portion 110, and realize the adjustment of the space for clamping an object; after adjusting the space for clamping the object, when the distance between the pushing member 410 and the clamping portion 110 is reduced by driving the locking member 300, the telescopic connection between the pushing member 410 and the rod portion 422 changes from an adjustable state to an unadjustable state, so that the pushing member 410 can drive the rod portion 422 to clamp the abutting end 421 and the clamping portion 110 on the object. By driving the locking member 300, the adjustable clamping space between the abutting end 421 and the clamping portion 110 can be realized, so as to adapt to screens of different sizes and thicknesses. After adjusting the appropriate clamping space, driving the locking member 300 reduces the distance between the pushing member 410 and the clamping portion 110, prompting the ejector rod mechanism 400 to enter an unadjustable state, that is, the telescopic connection between the pushing member 410 and the rod portion 422 is in an unadjustable state, and the pushing member 410 can drive the ejector rod 420 with a fixed distance to clamp the object, ensuring its stable clamping, thereby improving the versatility and practicability.

[0041] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0042] Please refer to Figures 1 to 4 、 Figure 10, the locking member 300 includes a clamping member 310. The clamping member 310 is rotatably connected to the other end of the connecting base 100. The clamping member 310 extends outward along the rotation axis and is provided with a clamping portion 311 and an acting portion 312. The clamping portion 311 is used to drive the clamping member 310 to rotate, and the acting portion 312 is used to rotate along with the clamping member 310 and act on the pushing member 410 to drive the pushing member 410 to move. It can be understood that the clamping member 310 and the other end of the connecting base 100 can be rotatably connected through a rotating shaft 313. The clamping member 310 can perform a rotating action around the rotating shaft 313. The clamping portion 311 is a structure that extends outward along the rotation axis on the clamping member 310. The user can rotate the clamping member 310 by applying a force to the clamping portion 311. The acting portion 312 also extends outward along the rotation axis. When the clamping member 310 rotates, the acting portion 312 will rotate along with the clamping member 310 and act on the pushing member 410. The function of the acting portion 312 is to interact with the pushing member 410. This interaction can be a simple abutment, or an abutment plus a pulling action. This abutment and pulling action drives the pushing member 410 to move in a predetermined direction, so as to realize the driving of the pushing member 410. More specifically, the abutment action means that when the acting portion 312 rotates to a position in contact with the pushing member 410, continuously rotating the clamping member 310 will cause the acting portion 312 to apply a direct thrust to the pushing member 410. This thrust can be perpendicular to the surface of the pushing member 410, or applied at a specific angle, depending on the design of the pushing member 410 and the required movement direction. The abutment action is used to move the pushing member 410 in a direction close to the clamping portion 110, so that the distance between the pushing member 410 and the clamping portion 110 becomes smaller. The pulling action requires additional mechanical design. For example, the acting portion 312 can be designed with a structure that can grasp or latch the pushing member 410. Then, as the clamping member 310 rotates, the acting portion 312 pulls the pushing member 410. The pulling action is used to move the pushing member 410 in a direction away from the clamping portion 110, so that the distance between the pushing member 410 and the clamping portion 110 becomes larger.

[0043] After the pushing member 410 moves to a suitable position, the locking member 300 can lock the pushing member 410 to prevent it from moving during use. Specifically, please refer to Figure 4, the acting part 312 includes a first part 3121 and a second part 3122. The distance from the first part 3121 to the rotation axis of the clamping member 310 is greater than the distance from the second part 3122 to the rotation axis of the clamping member 310. In the initial state, the second part 3122 of the clamping member 310 abuts against the pushing member 410, and at this time, the pushing member 410 is in the first position. When the user rotates the clamping member 310, as the clamping member 310 rotates, the first part 3121 comes into contact with the pushing member 410 and begins to push against the pushing member 410 to move. Since the first part 3121 is farther from the rotation axis, the first part 3121 can push against and move the pushing member 410 a certain distance, causing the pushing member 410 to move to the second position. The first part 3121 can lock the pushing member 410 in the second position. This design realizes the adjustment and locking of the pushing member 410 through a simple rotation action, with simple and stable operation. The user can easily adjust and fix the electronic device bracket without additional tools.

[0044] Please refer to Figures 3 to 5 , the pushing member 410 is slidably connected to the other end of the connection base 100, and the pushing member 410 is used to slide on the side of the ejector rod 420. The pushing member 410 being slidably connected to the other end of the connection base 100 means that the pushing member 410 can move freely on the connection base 100. This design is usually achieved through a chute, a slide rail, or other sliding mechanisms. By sliding the pushing member 410 on the side of the ejector rod 420, the user can adjust the relative position of the ejector rod 420 and the pushing member 410, and thus change the distance between the ejector rod 420 and the clamping part 110.

[0045] Please refer to Figures 3 to 11, the electronic device bracket further includes a movable clamping member 500. A clamping portion 423 is provided on the side of the ejector rod 420 facing the pusher 410, and an abutting portion 120 is provided on the side of the connecting base 100 facing the pusher 410. The movable clamping member 500 is displaceably inserted through the pusher 410. The first end 510 of the movable clamping member 500 faces the clamping portion 423, and the second end 520 of the movable clamping member 500 faces the abutting portion 120. The movable clamping member 500 is elastically connected to the pusher 410. When the distance between the pusher 410 and the clamping portion 110 decreases, the abutting portion 120 is used to abut against the second end 520 of the movable clamping member 500 to drive the first end 510 of the movable clamping member 500 to move closer to the clamping portion 423 so as to be clamped with the clamping portion 423. When the distance between the pusher 410 and the clamping portion 110 is the largest, the movable clamping member 500 disengages from the clamping portion 423 under the action of the elastic force. Specifically, the movable clamping member 500 is designed to be displaceably inserted through the pusher 410. This design allows the movable clamping member 500 to move on the pusher 410. The elastic connection between the movable clamping member 500 and the pusher 410 means that there is a certain elastic force between the movable clamping member 500 and the pusher 410, which can push the movable clamping member 500 back to the initial position. When the distance between the pusher 410 and the clamping portion 110 decreases, the pusher 410 will drive the movable clamping member 500 to move closer to the abutting portion 120. As the movable clamping member 500 contacts the abutting portion 120, the abutting portion 120 will abut against the second end 520 of the movable clamping member 500, driving the first end 510 of the movable clamping member 500 to move closer to the clamping portion 423, thereby achieving clamping with the clamping portion 423.

[0046] Please refer to Figure 6 and Figure 10 , the abutting portion 120 is a structure that gradually protrudes along the direction in which the movable clamping member 500 moves closer to the abutting portion 120. Please refer to Figure 7 , when the distance between the pusher 410 and the clamping portion 110 is the largest, the movable clamping member 500 remains in the initial state under the action of the elastic force of the elastic connection with the pusher 410. At this time, the second end 520 of the movable clamping member 500 does not contact the clamping portion 423. At this time, the ejector rod 420 can move freely relative to the pusher 410, that is, when the distance between the pusher 410 and the clamping portion 110 is the largest, the telescopic connection between the pusher 410 and the rod portion 422 is in an adjustable state; Please refer to Figure 8, when the distance between the pushing member 410 and the clamping portion 110 decreases, the pushing member 410 drives the movable clamping member 500 to move in the direction approaching the abutting portion 120. The protruding portion of the abutting portion 120 will gradually abut against the second end 520 of the movable clamping member 500, pushing the first end 510 of the movable clamping member 500 closer to the clamping portion 423 and engaging with the clamping portion 423. At this time, the ejector rod 420 is relatively fixed to the pushing member 410 through the engagement of the movable clamping member 500 and the clamping portion 423. Thus, when the distance between the pushing member 410 and the clamping portion 110 becomes smaller, the telescopic connection between the pushing member 410 and the rod portion 422 changes from an adjustable state to a non-adjustable state.

[0047] Please refer to Figure 10 and Figure 11 , the clamping portion 423 is provided with a plurality of first teeth 4231, and the first end 510 of the movable clamping member 500 is provided with a plurality of second teeth 511. The first teeth 4231 are used for meshing connection with the second teeth 511. Specifically, when the distance between the pushing member 410 and the clamping portion 110 decreases, the first end 510 of the movable clamping member 500 will approach the clamping portion 423, and the second teeth 511 will mesh with the first teeth 4231, thereby realizing the clamping of the first end 510 of the movable clamping member 500 and the clamping portion 423.

[0048] Please refer to Figure 3 , Figure 4 and Figure 6 , one of the first protrusion 130 and the first groove 424 is provided on the ejector rod 420, and the other of the first protrusion 130 and the first groove 424 is provided on the connecting base 100. The first protrusion 130 extends into the first groove 424 and is slidably connected to the first groove 424. One of the second protrusion 140 and the second groove 411 is provided on the pushing member 410, and the other of the second protrusion 140 and the second groove 411 is provided on the connecting base 100. The second protrusion 140 extends into the second groove 411 and is slidably connected to the second groove 411. It can be understood that the ejector rod 420 and the pushing member 410 are slidably connected to the connecting base 100 through the combination of the first protrusion 130 and the first groove 424 and the second protrusion 140 and the second groove 411. This design allows the ejector rod 420 and the pushing member 410 to slide on the connecting base 100 in a specific direction. Through this sliding connection mechanism, the user can easily adjust the positions of the ejector rod 420 and the pushing member 410.

[0049] Please refer to Figure 5, one of the third protrusion 412 and the third groove 425 is provided on the ejector rod 420, and the other of the third protrusion 412 and the third groove 425 is provided on the pusher 410. The third protrusion 412 extends into the third groove 425 and is slidably connected to the third groove 425. It can be understood that the design of the third protrusion 412 and the third groove 425 allows the ejector rod 420 and the pusher 410 to slide and adjust relative to each other in a specific direction.

[0050] Please refer to Figure 1 and Figure 2 , a first anti-slip member 4211 is provided at one end of the abutting end 421 facing the clamping portion 110, and a second anti-slip member 111 is provided on the clamping portion 110. It can be understood that the design purpose of these two first anti-slip members 4211 and the second anti-slip member 111 is to increase the friction force of the contact surface and prevent the object from sliding or moving after being clamped by the abutting end 421 and the clamping portion 110. The anti-slip members are usually made of rubber, soft plastic or other materials with a high coefficient of friction. They can provide additional gripping force when contacting the object to ensure that the object is firmly clamped.

[0051] Please refer to Figure 3 , an elastic member 600 is provided between the pusher 410 and the rod portion 422. The elastic member 600 is used to provide a force for the pusher 410 to move away from the clamping portion 110. Specifically, when the rod portion 422 is stressed, the rod portion 422 can provide a force for the pusher 410 to move away from the clamping portion 110 through the elastic member 600, so that the distance between the pusher 410 and the clamping portion 110 becomes larger. In this design, the acting portion 312 does not need to pull the pusher 410 to make the distance between the pusher 410 and the clamping portion 110 larger, thereby simplifying the structure of the acting portion 312. If there is no elastic member 600 between the pusher 410 and the rod portion 422, it is necessary to pull the pusher 410 through the acting portion 312 to make the distance between the pusher 410 and the clamping portion 110 larger.

[0052] Please refer to Figure 4 , the elastic member 600 includes a first spring member 610. One end of the first spring member 610 abuts against the pusher 410, and the other end of the first spring member 610 abuts against the rod portion 422. Specifically, the first spring member 610 can provide a tension force for the pusher 410 and the rod portion 422 to move away from each other. When the distance between the pusher 410 and the clamping portion 110 is the largest, the telescopic connection between the pusher 410 and the rod portion 422 is in an adjustable state. The first spring member 610 can push the pusher 410 and the rod portion 422 to be in the maximum extended state. The tension of the first spring member 610 can be transmitted to the abutting end 421 through the rod portion 422, so that the abutting end 421 and the clamping portion 110 can maintain a certain clamping force when clamping objects of different thicknesses, thereby realizing the adaptive clamping of objects of different thicknesses.

[0053] Please refer to Figure 11 As shown in the figure, a second spring member 700 is provided between the movable card member 500 and the pushing member 410. The movable card member 500 and the pushing member 410 are elastically connected through the second spring member 700. The second spring member 700 provides a tension for the movable card member 500 to move towards the abutting portion 120. When the movable card member 500 is abutted by the abutting portion 120, it will have a certain displacement, but after the abutting action of the abutting portion 120 is removed, it can return to the initial position through the restoring force of the second spring member 700.

[0054] Although the preferred embodiments of the present invention have been described, those skilled in the art can make additional changes and modifications to these embodiments once they learn the basic creative concept. Therefore, the appended claims are intended to be construed to include the preferred embodiments as well as all changes and modifications that fall within the scope of the present invention.

[0055] Obviously, those skilled in the art can make various changes and modifications to the embodiments of the present invention without departing from the spirit and scope of the embodiments of the present invention. Thus, if these modifications and variations of the embodiments of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention is also intended to include these modifications and variations.

Claims

1. An electronic device bracket, characterized in that, Comprising: A connection base, one end of the connection base is provided with a clamping part; An adapter, the adapter is arranged on the connection base, and the adapter is used to connect an electronic device; A locking member, the locking member is connected to the base; A ejector rod mechanism, the ejector rod mechanism includes a pushing member and an ejector rod, the ejector rod includes a contact end and a rod part, a space for clamping an object is formed between the contact end facing one end of the clamping part and the clamping part; the pushing member is slidably connected to the other end of the connection base, and when the pushing member slides, the distance between the pushing member and the clamping part can be changed; the pushing member is telescopically connected to the rod part of the ejector rod, and the locking member is connected to the pushing member; By driving the locking member to change the distance between the pushing member and the clamping part; when the distance between the pushing member and the clamping part is the largest, the telescopic connection between the pushing member and the rod part is in an adjustable state; when the distance between the pushing member and the clamping part becomes smaller, the telescopic connection between the pushing member and the rod part changes from an adjustable state to a non-adjustable state.

2. The electronic device bracket according to claim 1, wherein The locking member includes a pressing member, the pressing member is rotatably connected to the other end of the connection base, the pressing member extends outward along the rotation axis and is provided with a pressing part and an acting part, the pressing part is used to drive the pressing member to rotate, and the acting part is used to follow the rotation of the pressing member and act on the pushing member to drive the pushing member to move.

3. The electronic device bracket according to claim 2, characterized in that, The acting part includes a first part and a second part, and the distance from the first part to the rotation axis of the pressing member is greater than the distance from the second part to the rotation axis of the pressing member.

4. The electronic device bracket according to claim 1, characterized in that, The pushing member is slidably connected to the other end of the connection base, and the pushing member is used to slide on the side of the ejector rod.

5. The electronic device bracket according to claim 4, characterized in that, It further includes a movable clamping member, a clamping part is provided on the side of the ejector rod facing the pushing member, a contact top is provided on the side of the connection base facing the pushing member, the movable clamping member is displaceably inserted through the pushing member, the first end of the movable clamping member faces the clamping part, the second end of the movable clamping member faces the contact top, the movable clamping member is elastically connected to the pushing member, when the distance between the pushing member and the clamping part decreases, the contact top is used to push against the second end of the movable clamping member to drive the first end of the movable clamping member to move close to the clamping part so as to be clamped with the clamping part, when the distance between the pushing member and the clamping part is the largest, the movable clamping member disengages from the clamping part under the action of elastic force.

6. The electronic device holder according to claim 5, characterized in that, The contact top is a structure that gradually protrudes along the direction in which the movable clamping member moves close to the contact top.

7. The electronic device bracket according to claim 5, characterized in that, A number of first teeth are provided on the clamping part, and a number of second teeth are provided on the first end of the movable clamping member, and the first teeth are used for meshing connection with the second teeth.

8. The electronic device bracket according to claim 1, characterized in that, One of a first protrusion and a first groove is provided on the ejector rod, and the other of the first protrusion and the first groove is provided on the connection base. The first protrusion extends into the first groove and is slidably connected to the first groove. One of a second protrusion and a second groove is provided on the pushing member, and the other of the second protrusion and the second groove is provided on the connection base. The second protrusion extends into the second groove and is slidably connected to the second groove.

9. The electronic device bracket according to claim 2, wherein, An elastic member is provided between the pushing member and the rod portion, and the elastic member is used to provide a force for the pushing member to move away from the clamping portion.

10. The electronic device bracket according to claim 9, wherein, The elastic member includes a first spring member. One end of the first spring member abuts against the pushing member, and the other end of the first spring member abuts against the rod portion.