Base of mobile equipment support and mobile equipment support

By designing a combination of switch parts and movable buckles on the base of the mobile device bracket, the problem of unstable buckle connection between the base and the bracket body is solved, and a more stable buckle connection is achieved and the user experience is improved.

CN222946679UActive Publication Date: 2025-06-06SHENZHEN SENKEMU TECH CO LTD
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Patent Information

Application Number
CN202421658997.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-06-06
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

The snap connection between the base of the mobile device bracket and the bracket body is not stable enough due to the movableness of the movable buckle, which makes the bracket body easily fall off the base and the mobile device falls, bringing users a bad experience.

Method used

A base of a mobile device bracket is designed, including a support, a first snap assembly, a second snap assembly and a switch. The first snap assembly and the second snap assembly are installed on the base, at least one of which is a movable buckle. The movable buckle moves in the unlocking direction and generates an elastic recovery force to unsnap the buckle between the base and the bracket body. The switch member has an open and closed state. Through the reciprocating motion switching state, the abutment part limits the movable buckle in the unlocking direction to prevent the base from being unblocked from being unblocked.

Benefits of technology

Through the design of the switch parts, we ensure that the movable buckle is limited when the buckle is connected, preventing the base from being unblocked from the bracket body, thereby improving the stability of the buckle connection, reducing the risk of mobile devices falling, and improving user experience.

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Abstract

The utility model provides a base of a mobile equipment support and the mobile equipment support. The base comprises a bearing platform, a first buckle assembly, a second buckle assembly and a switch piece. The first buckle assembly and the second buckle assembly are used for being connected with a support body of the mobile equipment support in a clamped mode. At least one of the first buckle assembly and the second buckle assembly is a movable buckle, and the movable buckle can move in the unlocking direction and generate elastic restoring force so that the base and the support body can be unbuckled. The switch piece has an opening state and a closing state; in the opening state, the movement path of the abutting part and the movement path of the movable buckle are staggered, so that the movable buckle can move in the unlocking direction; in the closed state, the abutting portion abuts against the movable buckle so as to limit the movable buckle in the unlocking direction, and therefore the base and the support body cannot be clamped. The switch piece of the base of the mobile equipment support can prevent the movable buckle from being disconnected from the support body, so that the buckle connection between the base and the support body is more stable.
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Description

Technical Field

[0001] The present application relates to the technical field of mobile device brackets, and in particular to a base of a mobile device bracket and a mobile device bracket. Background Art

[0002] When people are driving or riding in a vehicle, they often need to use mobile devices for navigation or entertainment. Therefore, a mobile device holder for fixing a mobile device on a car is developed. The connection between the mobile device holder and the vehicle is usually first fixedly connected to the vehicle by the base of the mobile device holder, and then the holder body of the mobile device holder is buckled on the base.

[0003] The buckle assembly on the base can be set as a movable buckle with elastic restoring force. By pushing the movable buckle in the unlocking direction, the base can release the buckle connection with the buckle part of the bracket body through the movement of the movable buckle. The elastic restoring force can be reset after the movable buckle is unlocked. The movable buckle can make the operation of the bracket body and the base contacting the buckle connection more convenient. However, due to the movable nature of the movable buckle, the buckle connection between the base and the bracket body is not stable enough, and the bracket body is easy to fall off from the base, causing the mobile device to fall, which brings a bad experience to the user. Utility Model Content

[0004] The present application provides a base of a mobile device stand and a mobile device stand, which can solve the problem that the snap connection between the base of the mobile device stand and the stand body is not stable enough due to the movable buckle.

[0005] In order to solve the above technical problems, the present application provides a base of a mobile device support, including a support platform, a first buckle assembly, a second buckle assembly and a switch. The support platform is used to be set on a carrier; the first buckle assembly and the second buckle assembly are installed on the support platform; the first buckle assembly and the second buckle assembly are used to be clamped with the support body of the mobile device support; at least one of the first buckle assembly and the second buckle assembly is a movable buckle, which can move along the unlocking direction and generate an elastic restoring force so that the base and the support body can be released from the buckle, and the elastic restoring force of the movable buckle is used to reset the movable buckle; the switch is installed on the support platform; the switch has an open state and a closed state; the switch can reciprocate so that the switch switches between the open state and the closed state; the switch has an abutment portion, and in the open state, the abutment portion and the movement path of the movable buckle are staggered so that the movable buckle can move along the unlocking direction; in the closed state, the abutment portion abuts the movable buckle to limit the movable buckle in the unlocking direction so that the base and the support body cannot be released from the clamping.

[0006] In one embodiment, the base of the mobile device bracket further includes a toggle member, which is mounted on the support platform and abuts against the switch member. The toggle member can reciprocate to drive the switch member to reciprocate.

[0007] In one embodiment, the base of the mobile device holder also includes a first elastic member; the toggle member has a protrusion; the switch member has a first recessed structure and a second recessed structure, the recessed depth of the first recessed structure is greater than the recessed depth of the second recessed structure, and the first recessed structure and the second recessed structure are smoothly connected; the first elastic member is sleeved on the switch member, and the first elastic member is used to drive the switch member to maintain abutment with the protrusion; the protrusion can perform reciprocating linear motion in a direction parallel to the unlocking direction to switch between an open state and a closed state; in the open state, the protrusion abuts against the first recessed structure; in the closed state, the protrusion abuts against the second recessed structure.

[0008] In one embodiment, the first buckle assembly and the second buckle assembly are both movable buckles; the unlocking direction of the first buckle assembly and the unlocking direction of the second buckle assembly are in opposite directions; at least a portion of the switch member is arranged between the first buckle assembly and the second buckle assembly; in the closed state, the abutting portion abuts against the first buckle assembly and the second buckle assembly.

[0009] In one embodiment, the first recessed structure and the second recessed structure are arranged on a side of the abutting portion away from the first elastic member; the switch member also includes an assembly portion connected to the abutting portion, and the first elastic member is sleeved on the assembly portion; the support platform has a mounting groove, the abutting portion is arranged outside the mounting groove, at least part of the assembly portion and at least part of the first elastic member are arranged in the mounting groove, and the switch member can perform reciprocating linear motion relative to the mounting groove.

[0010] In one embodiment, the support platform has a first limiting groove and a second limiting groove, at least a portion of the first snap assembly is arranged in the first limiting groove, and at least a portion of the second snap assembly is arranged in the second limiting groove; along a direction perpendicular to the unlocking direction of the first snap assembly, the first limiting groove is used to limit the first snap assembly; along a direction perpendicular to the unlocking direction of the second snap assembly, the second limiting groove is used to limit the second snap assembly.

[0011] In one embodiment, a first through groove is formed on the groove wall of the first limiting groove, and a second through groove is formed on the groove wall of the second limiting groove, the length direction of the first through groove is parallel to the unlocking direction of the first snap assembly, and the length direction of the second through groove is parallel to the unlocking direction of the second snap assembly; the first snap assembly includes a first snap member and a second elastic member connected to each other, and the second snap assembly includes a second snap member and a third elastic member connected to each other; the first snap member and the second snap member are used to be snapped with the bracket body, and the second elastic member and the third elastic member are used to generate elastic restoring force; the first snap member has a first limiting portion inserted in the first through groove, and the second snap member has a second limiting portion inserted in the second through groove; the first through groove is used to limit the movement of the first snap member in the unlocking direction of the first snap member; the second through groove is used to limit the movement of the second snap member in the unlocking direction of the second snap member.

[0012] In one embodiment, the toggle member is arranged outside the first limiting groove and the second limiting groove, and the toggle member has a first buckle portion and a second buckle portion, the first buckle portion is buckled connected to the first through groove, and the second buckle portion is buckled connected to the second through groove, the first limiting portion abuts against the first buckle portion along the width direction of the first through groove, and the second limiting portion abuts against the second buckle portion along the width direction of the second through groove.

[0013] In one embodiment, a third limiting portion is further provided on the groove wall of the first limiting groove, and a fourth limiting portion is further provided on the groove wall of the second limiting groove; the first snap-fit ​​component has a first slot, and the second snap-fit ​​component has a second slot, and the groove wall of the first slot can abut against the third limiting portion under the action of the restoring force of the second elastic component; the groove wall of the second slot can abut against the fourth limiting portion under the action of the restoring force of the third elastic component.

[0014] In one embodiment, the base of the mobile device bracket also includes a fixing member, which is used to be attached to a carrier; the support platform is arranged on the fixing member and is rotatably connected to the fixing member.

[0015] In one embodiment, the fixing member includes a flexible portion and a fixed portion connected to each other, the flexible portion is made of a flexible material, and the flexible portion is used to fit onto a carrier; the fixed portion is rotatably connected to the support platform.

[0016] In one embodiment, the base of the mobile device bracket also includes a threaded member; the platform has a recessed portion on one side facing the fixing member, at least a portion of the fixing member is inserted into the recessed portion, a threaded hole is provided in the recessed portion, and the threaded member passes through the fixing member and is threadedly connected to the threaded hole so that the fixing member is rotatably connected to the platform.

[0017] In one embodiment, the base of the mobile device holder also includes an elastic locking piece, which includes a ball and a fourth elastic piece; the fixed portion has at least two recessed locking positions on one side facing the base, one end of the fourth elastic piece is connected to the base, and the other end of the fourth elastic piece is connected to the ball; the recessed depth of the locking position is smaller than the radius of the ball; when the fixed portion and the base rotate relative to each other, the ball can disengage from the locking position and cause the fourth elastic piece to generate an elastic restoring force, and the base can drive the elastic locking piece to rotate to a position relative to a different locking position, and the elastic restoring force of the fourth elastic piece is used to drive a part of the ball to embed into the locking position.

[0018] In order to solve the above technical problems, the present application also provides a mobile device bracket, including a bracket body and a base. The bracket body includes a first buckle portion and a second buckle portion, and the bracket body is used to install the mobile device; the base is the base of the mobile device bracket involved in any of the above embodiments, and the first buckle component of the base is used to buckle with the first buckle portion, and the second buckle component is used to buckle with the second buckle portion.

[0019] The present application provides a base of a mobile device support and a mobile device support, the base includes a support platform, a first buckle assembly, a second buckle assembly and a switch. The support platform is used to be set on a carrier; the first buckle assembly and the second buckle assembly are installed on the support platform; the first buckle assembly and the second buckle assembly are used to be clamped with the support body of the mobile device support; at least one of the first buckle assembly and the second buckle assembly is a movable buckle, which can move along the unlocking direction and generate an elastic restoring force so that the base and the support body can be released, and the elastic restoring force of the movable buckle is used to reset the movable buckle; the switch is installed on the support platform; the switch has an open state and a closed state; the switch can reciprocate so that the switch switches between the open state and the closed state; the switch has an abutment portion, and in the open state, the abutment portion and the movement path of the movable buckle are staggered so that the movable buckle can move along the unlocking direction; in the closed state, the abutment portion abuts the movable buckle to limit the movable buckle in the unlocking direction so that the movable buckle and the support body cannot be released. Since the base of the present application is provided with a switch component, when the movable buckle is snapped with the bracket body, the abutment portion of the switch component can abut the movable buckle to limit the movable buckle and prevent the base from being released from the bracket body, thereby making the snap connection between the base and the bracket body more stable and improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 A schematic diagram of the structure of a mobile device bracket provided in one embodiment of the present application;

[0021] Figure 2 A schematic diagram of the structure of a base of a mobile device stand provided in an embodiment of the present application in an open state;

[0022] Figure 3 for Figure 2 A cross-sectional view of

[0023] Figure 4 A schematic diagram of the structure of a base of a mobile device holder in a closed state provided by an embodiment of the present application;

[0024] Figure 5 for Figure 4 A cross-sectional view of

[0025] Figure 6 for Figure 2 Schematic diagram of the explosion structure;

[0026] Figure 7 A schematic diagram of the structure of a switch element provided in one embodiment of the present application;

[0027] Figure 8 A schematic diagram of the structure of a toggle member provided in one embodiment of the present application;

[0028] Fig. 9 Another structural schematic diagram of a switch element provided in one embodiment of the present application;

[0029] Fig.10 A cross-sectional view of a support provided in one embodiment of the present application;

[0030] Fig.11 A structural schematic diagram of a support platform provided by an embodiment of the present application from one perspective;

[0031] Fig.12 A schematic diagram of the structure of a second fastener provided in one embodiment of the present application;

[0032] Fig.13 A cross-sectional view of a base provided in one embodiment of the present application;

[0033] Fig.14 A schematic diagram of the structure of a fixing member provided in one embodiment of the present application;

[0034] Fig.15 A schematic structural diagram of a support platform from another perspective provided in one embodiment of the present application.

[0035] Description of the drawings: mobile device bracket 10, base 20, support platform 21, mounting groove 211, first limiting groove 212, second limiting groove 213, first through groove 214, second through groove 215, third limiting portion 216, fourth limiting portion 217, recessed portion 218, first buckle assembly 22, first buckle member 221, first limiting portion 2211, first slot 2212, second elastic member 222, second buckle assembly 23, second buckle member 231, second limiting portion 2311, second slot 2312, third elastic member 232, switch member 24, abutting portion 241, first The recessed structure 242, the ridge 2421, the second recessed structure 243, the assembly portion 244, the toggle member 25, the protruding portion 251, the first buckling portion 252, the second buckling portion 253, the first elastic member 26, the fixing member 27, the flexible portion 271, the groove 2711, the fixing portion 272, the mounting hole 2721, the locking position 2722, the threaded member 28, the gasket 29, the through hole 291, the elastic locking member 40, the fourth elastic member 41, the ball 42, the bracket body 30, the first buckling portion 31, the second buckling portion 32, the first connecting portion 33, the flexible portion 34, and the second connecting portion 35. DETAILED DESCRIPTION

[0036] The present application is further described in detail below by specific embodiments in conjunction with the accompanying drawings. Wherein similar elements in different embodiments adopt associated similar element numbers. In the following embodiments, many detailed descriptions are intended to enable the present application to be better understood. However, those skilled in the art can easily recognize that some of the features can be omitted in different situations, or can be replaced by other elements, materials, and methods. In some cases, some operations related to the present application are not shown or described in the specification, in order to avoid the core part of the present application being overwhelmed by too much description, and for those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.

[0037] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate manner to form various implementations, and the operation steps involved in each embodiment can also be replaced or adjusted in a sequence in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for the purpose of clearly describing a certain embodiment and do not mean that the composition and / or sequence are necessary.

[0038] The serial numbers of the components in this document, such as "first", "second", etc., are only used to distinguish the objects described and do not have any order or technical meaning. The "connection" and "coupling" mentioned in this application, unless otherwise specified, include direct and indirect connections (couplings).

[0039] The terms "parallel", "vertical", etc. are defined for the current state of the art, rather than being absolutely strict definitions in a mathematical sense. A small amount of deviation is allowed, and approximately parallel, approximately vertical, etc. are all acceptable. For example, A and B are parallel, which means that A and B are parallel or approximately parallel, and the angle between A and B can be between 0° and 10°. For example, A and B are perpendicular, which means that A and B are perpendicular or approximately perpendicular, and the angle between A and B can be between 80° and 100°. The directional terms mentioned in the embodiments of the present application, such as "upper", "inner", "outer", "side", etc., are only reference to the directions of the accompanying drawings. Therefore, the directional terms used are for better and clearer explanation and understanding of the embodiments of the present application, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the embodiments of the present application.

[0040] Please refer to Figure 1 The present application provides a mobile device holder 10. The mobile device holder 10 includes a holder body 30 and a base 20 that can be connected by snapping. The holder body 30 is used to install a mobile device. Among them, the base 20 can be the base 20 involved in any of the following embodiments. Specifically, the base 20 includes a support 21. The support 21 is used to be set on a carrier, wherein the carrier can be, for example, a vehicle body, a vehicle dashboard, a desktop, a wall or other carrier. The support 21 can be directly attached to the carrier, or it can be indirectly set on the carrier. The user can fix the mobile device on the holder body 30, and then snap-connect the holder body 30 and the base 20, so that the mobile device can be indirectly set on the carrier, so that the user can watch the mobile device with both hands free.

[0041] Among them, Figure 1 As shown, the bracket body 30 includes a first buckle portion 31 and a second buckle portion 32 that are arranged oppositely. The base 20 includes a first buckle assembly 22 and a second buckle assembly 23 that are arranged oppositely, and the first buckle assembly 22 and the second buckle assembly 23 are installed on the support 21. The first buckle assembly 22 of the base 20 is used to snap with the first buckle portion 31, and the second buckle assembly 23 is used to snap with the second buckle portion 32, so as to achieve a firm connection between the base 20 and the bracket body 30. Among them, the first buckle assembly 22 and the first buckle portion 31 can be engaged with each other by using a convex and concave structure to complete the buckle; the second buckle assembly 23 and the second buckle portion 32 can be engaged with each other by using a convex and concave structure to complete the buckle.

[0042] At least one of the first buckle assembly 22 and the second buckle assembly 23 is a movable buckle, which can move along the unlocking direction and generate an elastic restoring force so that the base 20 and the bracket body 30 can be released from the buckle, and the elastic restoring force generated by the movable buckle during the unlocking movement is used to reset the movable buckle after unlocking, so that the movable buckle can continue to achieve the buckle connection later. Among them, when the first buckle assembly 22 and the second buckle assembly 23 are both movable buckles, the unlocking direction of the first buckle assembly 22 is opposite to the unlocking direction of the second buckle assembly 23. The way in which the movable buckle generates the elastic restoring force can be: the movable buckle realizes the elastic restoring force through an elastic member, for example, the elastic restoring force can be realized by compressing a spring during the unlocking movement, or the movable buckle can be supported by an elastic material, and unlocking and resetting are realized through the elastic deformation and elastic recovery of the elastic material itself.

[0043] After the bracket body 30 and the base 20 are buckled, there is a gap for relative displacement between the bracket body 30 and the base 20. The relative displacement of the bracket body 30 and the base 20 can make the movable buckle move so that the bracket body 30 and the base 20 are released. Specifically, assuming that the first buckle assembly 22 is a movable buckle, after the bracket body 30 and the base 20 are buckled, by making the bracket body 30 relative to the base 20 displace toward the unlocking direction of the first buckle assembly 22, the first buckle part 31 can push the first buckle assembly 22 to move in its unlocking direction, and the first buckle assembly 22 generates an elastic restoring force. Since the bracket body 30 is displaced toward the unlocking direction of the first buckle assembly 22, the second buckle part 32 is also displaced toward the unlocking direction of the first buckle assembly 22, and the second buckle part 32 can be released from the second buckle assembly 23. When the second buckle part 32 and the second buckle assembly 23 are released, the first buckle part 31 and the first buckle assembly 22 can also be released. When the second buckle assembly 23 is a movable buckle, its unlocking principle is the same as the above principle and will not be repeated here.

[0044] In one embodiment, if Figure 1 As shown, the bracket body 30 may include a first connection portion 33, a flexible portion 34, and a second connection portion 35 connected in sequence. The first buckle portion 31 and the second buckle portion 32 are arranged on the first connection portion 33, and the flexible portion 34 has a certain flexibility and plasticity, and can be deformed by force, so as to achieve the angle adjustment of the bracket body 30. The second connection portion 35 is used to connect the mobile device, and the second connection portion 35 can fix the mobile device by magnetic connection or clamping connection.

[0045] Since at least one of the first snap assembly 22 and the second snap assembly 23 is a movable buckle, when the bracket body 30 and the base 20 are buckled together, the movable buckle can make the unfastening between the bracket body 30 and the base 20 easier and more labor-saving. However, when the bracket body 30 and the base 20 are buckled together, the movable buckle may also act as an unstable factor, resulting in reduced reliability of the buckling between the bracket body 30 and the base 20. Based on this, the base 20 of the present application may also include a switch member 24.

[0046] like Figure 3 , Figure 5 and Figure 6 As shown, the switch member 24 is mounted on the support 21. The switch member 24 has an open state and a closed state. The switch member 24 can reciprocate to switch between the open state and the closed state. The switch member 24 has an abutment portion 241, such as Figure 2 and Figure 3 As shown, in the open state, the abutment portion 241 and the movement path of the movable buckle are staggered so that the movable buckle can move along the unlocking direction, thereby realizing that the base 20 and the bracket body 30 can be unlocked; Figure 4 and Figure 5 As shown, in the closed state, the abutment portion 241 abuts against the movable buckle to limit the movable buckle in the unlocking direction, so that the base 20 and the bracket body 30 cannot be released from the clamping connection. Specifically, in the closed state, along the unlocking direction, the abutment portion 241 and the movable buckle are sequentially arranged and the abutment portion 241 abuts against the movable buckle, so that the movable buckle cannot move along the unlocking direction, thereby making it impossible for the base 20 and the bracket to be released from the clamping connection.

[0047] In one embodiment, if Figure 2-5 As shown, when the first buckle assembly 22 and the second buckle assembly 23 are both movable buckles, the unlocking direction of the first buckle assembly 22 and the unlocking direction of the second buckle assembly 23 are two opposite directions. At least part of the switch member 24 is disposed between the first buckle assembly 22 and the second buckle assembly 23 so that in the closed state, Figure 5 As shown, the two ends of the abutting portion 241 can abut against the first buckle assembly 22 and the second buckle assembly 23 respectively, so that the abutting portion 241 can abut against the first buckle assembly 22 and the second buckle assembly 23 at the same time, so that the first buckle assembly 22 and the second buckle assembly 23 cannot move along their respective unlocking directions, so that the base 20 and the bracket cannot be released. Figure 3As shown, the abutment portion 241 is staggered with the movement path of the first buckle assembly 22 and the movement path of the second buckle assembly 23, so that the first buckle assembly 22 and the second buckle assembly 23 can move along their respective unlocking directions, thereby achieving the unlocking of the base 20 and the bracket body 30. In this way, the first buckle assembly 22 and the second buckle assembly 23 can be unlocked or locked at the same time.

[0048] Since the base 20 of the present application is provided with a switch member 24, when the movable buckle is buckled with the bracket body 30, the abutment portion 241 of the switch member 24 can abut the movable buckle to limit the movable buckle and prevent the base 20 from being released from the bracket body 30, thereby making the buckle connection between the base 20 and the bracket body 30 more stable and improving the user experience. The switch member 24 can also be moved to the point where the abutment portion 241 of the switch member 24 is staggered with the movement path of the movable buckle to release the limit on the movable buckle, so that the movable buckle can achieve the release of the base 20 and the bracket through movement.

[0049] like Figure 2-6 As shown, in one embodiment, the base 20 further includes a toggle 25, the toggle 25 is mounted on the support 21, and the toggle 25 abuts against the switch 24, and the toggle 25 can reciprocate under the action of an external force to drive the switch 24 to reciprocate, so that the switch 24 can switch between an open state and a closed state. Preferably, the toggle 25 can reciprocate linearly to drive the switch 24 to reciprocate linearly, and the reciprocating linear motion of the switch 24 can enter or exit the motion path of the active buckle, thereby locking and unlocking the active buckle. In other embodiments, the toggle 25 can also rotate reciprocatingly to drive the switch 24 to reciprocate linearly. By providing the toggle 25, the user can control the switch 24 to open or close by toggling the toggle 25 from the outside of the base 20.

[0050] In other embodiments, the base 20 may not be provided with the toggle member 25, and the user may directly drive the switch member 24 to move. The switch member 24 may be a self-locking switch, so that when the self-locking switch is pressed, the switch member 24 can sink, so that the abutment portion 241 remains in the position of abutting the movable portion, so that the switch member 24 is in the closed state; when the self-locking switch is pressed again, the switch member 24 rebounds upward to a position where the abutment portion 241 and the movement path of the movable buckle are staggered, so that the switch is in the open state.

[0051] like Figure 3 , 5As shown in FIGS. 6-8 , in one embodiment, the toggle member 25 has a protrusion 251. The switch member 24 has a first recessed structure 242 and a second recessed structure 243. The recessed depth of the first recessed structure 242 is greater than the recessed depth of the second recessed structure 243. The first recessed structure 242 and the second recessed structure 243 are smoothly connected. The protrusion 251 can abut against the first recessed structure 242 or the second recessed structure 243. The protrusion 251 can slide smoothly from the first recessed structure 242 to the second recessed structure 243, and the protrusion 251 can also slide smoothly from the second recessed structure 243 to the first recessed structure 242. Among them, the recess depth of the first recess structure 242 refers to: the longitudinal height difference between the highest position of the first recess structure 242 and the second recess structure 243 and the deepest position of the first recess structure 242; the recess depth of the second recess structure 243 refers to the longitudinal height difference between the highest position of the first recess structure 242 and the second recess structure 243 and the deepest position of the second recess structure 243.

[0052] The base 20 of the mobile device holder 10 further includes a first elastic member 26, which is sleeved on one end of the switch member 24 away from the toggle member 25. The first elastic member 26 is used to drive the switch member 24 to maintain contact with the protrusion 251, that is, the first elastic member 26 can maintain an elastic restoring force toward the toggle member 25. When the first elastic member 26 is a spring, the first elastic member 26 can maintain a compressed state. The protrusion 251 can make reciprocating linear motion in a direction parallel to the unlocking direction, so as to smoothly slide from the first recessed structure 242 to the second recessed structure 243, or smoothly slide from the second recessed structure 243 to the first recessed structure 242, so as to switch the switch member 24 between the on state and the off state.

[0053] like Figure 3 As shown, in the open state, the protrusion 251 abuts against the deepest part of the first recessed structure 242. Since the recessed depth of the first recessed structure 242 is relatively deep, the switch member 24 is closer to the toggle member 25 under the action of the first elastic member 26, so that the abutting portion 241 of the switch member 24 can be moved out of the movement path of the movable buckle to allow the movable buckle to move.

[0054] like Figure 5 As shown, in the closed state, the protrusion 251 abuts against the deepest part of the second recessed structure 243. Since the recessed depth of the second recessed structure 243 is relatively shallow, the switch member 24 is further away from the toggle member 25 under the action of the first elastic member 26 than in the open state, so that the abutting portion 241 of the switch member 24 abuts against the movable buckle to prevent the movable buckle from moving.

[0055] In this way, the uneven structure on the switch member 24 cooperates with the protruding portion 251 of the toggle member 25, so that when the user toggles the toggle member 25 back and forth to make a linear motion, the protruding portion 251 reciprocates in the uneven structure under the action of the first elastic member 26. Figure 3 and Figure 5 As shown, this method can convert the linear motion of the toggle member 25 in the left and right direction into the linear motion of the switch member 24 in the up and down direction. The toggle member 25 controls the movement of the protrusion 251 through a simple mechanical structure, and the user can operate the movement of the toggle member 25 in a simple and labor-saving manner.

[0056] Figure 7 and Fig. 9 The first recessed structure 242 and the second recessed structure 243 of the switch member 24 are shown in two embodiments, wherein: Figure 7 and Fig. 9 The difference is that Fig. 9 A ridge 2421 is further provided in the first recessed structure 242. The ridge 2421 can buffer the movement of the protrusion 251 from the second recessed structure 243 to the deep part of the first recessed structure 242. When the protrusion 251 abuts against the deepest part of the first recessed structure 242, it can also abut against the ridge 2421. The ridge 2421 can prevent the protrusion 251 from shaking in the recessed structure.

[0057] like Figure 7 As shown, in one embodiment, the first recessed structure 242 and the second recessed structure 243 are arranged on the side of the abutting portion 241 away from the first elastic member 26, so that the first elastic member 26 can tightly abut the first recessed structure 242 or the second recessed structure 243 with the protruding portion 251 through elastic restoring force. Specifically, the switch member 24 also includes an assembly portion 244 connected to the abutting portion 241, and the first elastic member 26 is sleeved on the assembly portion 244. Fig.10 As shown, the support platform 21 has a mounting groove 211, the abutment portion 241 is arranged outside the mounting groove 211, at least part of the assembly portion 244 and at least part of the first elastic member 26 are arranged in the mounting groove 211, and the switch member 24 can make reciprocating linear motion relative to the mounting groove 211. The mounting groove 211 can limit the switch member 24 to only make linear motion relative to the mounting groove 211 to approach or move away from the toggle member 25.

[0058] like Fig.10 and Fig.11As shown, in one embodiment, the support platform 21 has a first limiting groove 212 and a second limiting groove 213, at least part of the first buckle assembly 22 is arranged in the first limiting groove 212, and at least part of the second buckle assembly 23 is arranged in the second limiting groove 213. Along the direction perpendicular to the unlocking direction of the first buckle assembly 22, the first limiting groove 212 is used to limit the first buckle assembly 22; along the direction perpendicular to the unlocking direction of the second buckle assembly 23, the second limiting groove 213 is used to limit the second buckle assembly 23. Thus, the first limiting groove 212 can limit the first buckle assembly 22 to move only in a direction parallel to the unlocking direction of the first buckle assembly 22, and the second limiting groove 213 can limit the second buckle assembly 23 to move only in a direction parallel to the unlocking direction of the second buckle assembly 23.

[0059] like Fig.10 and Fig.11 As shown, in one embodiment, a first through slot 214 is formed on the slot wall of the first limiting slot 212, and a second through slot 215 is formed on the slot wall of the second limiting slot 213. The length direction of the first through slot 214 is parallel to the unlocking direction of the first buckle assembly 22, and the length direction of the second through slot 215 is parallel to the unlocking direction of the second buckle assembly 23. Figure 6 As shown, the first buckle assembly 22 includes a first buckle member 221 and a second elastic member 222 connected to each other, and the second buckle assembly 23 includes a second buckle member 231 and a third elastic member 232 connected to each other. The first buckle member 221 and the second buckle member 231 are respectively used to buckle with the first buckle portion 31 and the second buckle portion 32 of the bracket body 30, and the second elastic member 222 and the third elastic member 232 are used to generate elastic restoring force so that the first buckle portion 31 and the second buckle portion 32 can be reset after the activity.

[0060] like Fig.12 and Fig.13 As shown, the first latch 221 has a first limiting portion 2211 inserted in the first through slot 214, and the second latch 231 has a second limiting portion 2311 inserted in the second through slot 215. The first latch 221 can move in the first through slot 214, and the first through slot 214 is used to limit the movement of the first latch 221 in the unlocking direction of the first latch 221, and the second latch 231 can move in the second through slot 215, and the second through slot 215 is used to limit the movement of the second latch 231 in the unlocking direction of the second latch 231.

[0061] In one embodiment, if Figure 8 and Fig.13As shown, the toggle member 25 is disposed outside the first limiting groove 212 and the second limiting groove 213, and the toggle member 25 has a first buckle portion 252 and a second buckle portion 253. The first buckle portion 252 is buckled with the first through groove 214, and the second buckle portion 253 is buckled with the second through groove 215. In order to ensure the stability of the toggle member 25 being buckled on the support 21, the buckling directions of the first buckle portion 252 and the second buckle portion 253 can be opposite. Fig.13 As shown, in one embodiment, the first limiting portion 2211 abuts against the first snap-fit ​​portion 252 along the width direction of the first through groove 214, and the second limiting portion 2311 abuts against the second snap-fit ​​portion 253 along the width direction of the second through groove 215. By abutting the limiting portion against the snap-fit ​​portion, the snap-fit ​​portion can be prevented from falling off the through groove, thereby improving the stability of the installation of the toggle member 25 on the base 21.

[0062] like Figure 5 and Fig.10 In one embodiment, a third limiting portion 216 is further provided on the groove wall of the first limiting groove 212, and a fourth limiting portion 217 is further provided on the groove wall of the second limiting groove 213; the first latch 221 has a first latch 2212, and the second latch 231 has a second latch 2312. The groove wall of the first latch 2212 can abut against the third limiting portion 216 under the action of the restoring force of the second elastic member 222. Along the opposite direction of the unlocking direction of the first latch 221, the third limiting portion 216 can limit the first latch 221 to limit the movement of the first latch 221 in the opposite direction of its unlocking direction. The groove wall of the second slot 2312 can abut against the fourth limiting portion 217 under the action of the restoring force of the third elastic member 232. The fourth limiting portion 217 can limit the second latch member 231 in the opposite direction of the unlocking direction of the second latch member 231 to restrict the movement of the second latch member 231 in the opposite direction of its unlocking direction.

[0063] like Figure 1-6 As shown, in one embodiment, the base 20 of the mobile device bracket 10 further includes a fixing member 27, and the fixing member 27 is used to be attached to the load. The support platform 21 is disposed on the fixing member 27 and is rotatably connected to the fixing member 27. By arranging the fixing member 27 and the support platform 21 to be rotatably connected, the user can adjust the support platform 21 to rotate relative to the fixing member 27, thereby adjusting the rotation of the bracket body to adjust the position of the mobile device.

[0064] like Fig.14As shown, in one embodiment, the fixing member 27 includes a flexible portion 271 and a fixing portion 272 connected to each other, the flexible portion 271 is made of a flexible material, and the flexible portion 271 is used to fit on the support; the fixing portion 272 is rotatably connected to the support platform 21. By setting a part of the fixing member 27 as a flexible material, the flexible material can be more adaptable to the changes in the surface of the support than the hard material. When the surface of the support is a curved surface, the flexible material can change its shape and fit on the curved surface.

[0065] Furthermore, the flexible portion 271 may also have a plurality of strip-shaped grooves 2711, and the flexible portion 271 may be deformed along the contour of the strip-shaped grooves 2711. The arrangement of the grooves 2711 reduces the pulling force of the structure around the grooves 2711 on the shape of the grooves 2711 when the flexible portion 271 is deformed along the grooves 2711, so that the flexible portion 271 may be deformed into more shapes and more easily fit with the complex shape of the surface of the load. Furthermore, the grooves 2711 may be arranged on the flexible portion 271 horizontally and / or vertically.

[0066] In one embodiment, if Figure 6 As shown, the base 20 of the mobile device holder 10 also includes a screw member 28. Fig.15 As shown, the support platform 21 has a recessed portion 218 on one side facing the fixing member 27. Figure 6 and Fig.15 As shown, at least a portion of the fixing portion 272 is inserted into the recessed portion 218 , a threaded hole is provided in the recessed portion 218 , and the threaded member 28 passes through the fixing portion 272 and is threadedly connected to the threaded hole, so that the fixing portion 272 is rotatably connected to the support platform 21 .

[0067] Furthermore, a mounting hole 2721 is provided in the middle of the fixing portion 272, and a limiting step is provided on the hole wall of the mounting hole 2721. The base 20 further includes a gasket 29, which abuts against the limiting step in the mounting hole 2721. The gasket 29 is provided with a through hole 291, and the threaded member 28 passes through the through hole 291 and the mounting hole 2721 in sequence to be threadedly connected with the threaded hole. In other embodiments, the gasket 29 can also be integrally formed with the fixing portion 272.

[0068] like Figure 6 and Fig.14As shown, in one embodiment, the base 20 of the mobile device holder 10 further includes an elastic locking member 40, and the elastic locking member 40 includes a ball 42 and a fourth elastic member 41. The fixing portion 272 has at least two recessed locking positions 2722 on one side facing the support platform 21, one end of the fourth elastic member 41 is connected to the support platform 21, and the other end of the fourth elastic member 41 is connected to the ball 42. The recessed depth of the locking position 2722 is less than the radius of the ball 42, so that the ball 42 can be disengaged from the locking position 2722 when the fixing portion 272 and the support platform 21 rotate relative to each other. When the support platform 21 is manually driven to rotate circumferentially, the support platform 21 rotates relative to the fixing portion 272, the ball 42 is disengaged from the locking position 2722 and the fourth elastic member 41 generates an elastic restoring force, the support platform 21 can drive the elastic locking member 40 to rotate to a position opposite to different locking positions 2722, and the elastic restoring force of the fourth elastic member 41 is used to drive a part of the ball 42 to be embedded in the locking position 2722. When the fixing portion 272 and the support platform 21 rotate relative to each other, the ball 42 can be repeatedly embedded in and disengaged from the locking position 2722, thereby increasing the resistance to the rotation of the fixing portion 272 and the support platform 21. Moreover, when the fixing portion 272 and the support platform 21 are fixed at a certain angle, the ball 42 embedded in the locking position 2722 can also ensure that the support platform 21 does not rotate relative to the fixing portion 272, thereby ensuring the stability between the support platform 21 and the fixing portion 272.

[0069] The above specific examples are used to illustrate the present application, which is only used to help understand the present invention and is not intended to limit the present application. For those skilled in the art of the present application, some simple deductions, modifications or substitutions can be made based on the idea of ​​the present application.

Claims

1. A base of a mobile device stand, characterized in that: include: A support platform, the support platform is used to be arranged on a supporting object; a first buckle assembly and a second buckle assembly, wherein the first buckle assembly and the second buckle assembly are mounted on the support platform; the first buckle assembly and the second buckle assembly are used to be buckled with the bracket body of the mobile device bracket; at least one of the first buckle assembly and the second buckle assembly is a movable buckle, which can move along the unlocking direction and generate an elastic restoring force so that the base and the bracket body can be unbuckled, and the elastic restoring force of the movable buckle is used to reset the movable buckle; and a switch member, the switch member being mounted on the support platform; the switch member having an on state and a off state; the switch member being capable of reciprocating motion so as to switch the switch member between the on state and the off state; The switch member has an abutment portion. In the open state, the abutment portion and the movement path of the movable buckle are staggered so that the movable buckle can move along the unlocking direction; in the closed state, the abutment portion abuts against the movable buckle to limit the movable buckle in the unlocking direction so that the base and the bracket body cannot be released from the clamping connection.

2. The base of the mobile device support according to claim 1, characterized in that: It also includes a toggle member, which is installed on the support platform and abuts against the switch member. The toggle member can reciprocate to drive the switch member to reciprocate.

3. The base of the mobile device support according to claim 2, characterized in that: The invention also includes a first elastic member; the toggle member has a protruding portion; the switch member has a first concave structure and a second concave structure, the concave depth of the first concave structure is greater than the concave depth of the second concave structure, and the first concave structure and the second concave structure are smoothly connected; the first elastic member is sleeved on the switch member, and the first elastic member is used to drive the switch member to maintain contact with the protruding portion; The protrusion can perform reciprocating linear motion in a direction parallel to the unlocking direction to switch the open state and the closed state; in the open state, the protrusion abuts against the first recessed structure; in the closed state, the protrusion abuts against the second recessed structure.

4. The base of the mobile device support according to claim 3, characterized in that: The first buckle assembly and the second buckle assembly are both movable buckles; the unlocking direction of the first buckle assembly and the unlocking direction of the second buckle assembly are two opposite directions; at least part of the switch member is arranged between the first buckle assembly and the second buckle assembly; in the closed state, the abutting portion abuts against the first buckle assembly and abuts against the second buckle assembly.

5. The base of the mobile device support according to claim 3, characterized in that: The first recessed structure and the second recessed structure are arranged on a side of the abutting portion away from the first elastic member; the switch member also includes an assembly portion connected to the abutting portion, and the first elastic member is sleeved on the assembly portion; the support platform has a mounting groove, the abutting portion is arranged outside the mounting groove, at least part of the assembly portion and at least part of the first elastic member are arranged in the mounting groove, and the switch member can perform reciprocating linear motion relative to the mounting groove.

6. The base of the mobile device support according to any one of claims 2 to 5, characterized in that: The support platform has a first limiting groove and a second limiting groove, at least a portion of the first snap assembly is arranged in the first limiting groove, and at least a portion of the second snap assembly is arranged in the second limiting groove; along a direction perpendicular to the unlocking direction of the first snap assembly, the first limiting groove is used to limit the first snap assembly; along a direction perpendicular to the unlocking direction of the second snap assembly, the second limiting groove is used to limit the second snap assembly.

7. The base of the mobile device support according to claim 6, characterized in that: A first through slot is provided on the slot wall of the first limiting slot, and a second through slot is provided on the slot wall of the second limiting slot, the length direction of the first through slot is parallel to the unlocking direction of the first snap assembly, and the length direction of the second through slot is parallel to the unlocking direction of the second snap assembly; the first snap assembly includes a first snap member and a second elastic member connected thereto, and the second snap assembly includes a second snap member and a third elastic member connected thereto; the first snap member and the second snap member are used to be snapped with the bracket body, and the second elastic member and the third elastic member are used to generate elastic restoring force; the first snap member has a first limiting portion inserted in the first through slot, and the second snap member has a second limiting portion inserted in the second through slot; the first through slot is used to limit the movement of the first snap member in the unlocking direction of the first snap member; the second through slot is used to limit the movement of the second snap member in the unlocking direction of the second snap member.

8. The base of the mobile device support according to claim 7, characterized in that: The toggle member is arranged outside the first limiting groove and the second limiting groove, and the toggle member has a first buckle portion and a second buckle portion, the first buckle portion is buckled connected to the first through groove, the second buckle portion is buckled connected to the second through groove, the first limiting portion abuts against the first buckle portion along the width direction of the first through groove, and the second limiting portion abuts against the second buckle portion along the width direction of the second through groove.

9. The base of the mobile device support according to claim 7, characterized in that: A third limiting portion is also provided on the groove wall of the first limiting groove, and a fourth limiting portion is also provided on the groove wall of the second limiting groove; the first snap-fit ​​component has a first slot, and the second snap-fit ​​component has a second slot, and the groove wall of the first slot can abut against the third limiting portion under the action of the restoring force of the second elastic component; the groove wall of the second slot can abut against the fourth limiting portion under the action of the restoring force of the third elastic component.

10. The base of the mobile device support according to any one of claims 1 to 5, characterized in that: It also includes a fixing member, which is used to be attached to the support object; the support platform is arranged on the fixing member and is rotatably connected to the fixing member.

11. The base of the mobile device support according to claim 10, characterized in that: The fixing member comprises a flexible portion and a fixed portion which are connected to each other. The flexible portion is made of a flexible material and is used to fit onto the supporting object. The fixed portion is rotatably connected to the support platform.

12. The base of the mobile device support according to claim 11, characterized in that: It also includes a threaded member; the platform has a recessed portion on one side facing the fixing member, at least part of the fixing member is inserted into the recessed portion, a threaded hole is provided in the recessed portion, the threaded member passes through the fixing member and is threadedly connected to the threaded hole so that the fixing member is rotatably connected to the platform.

13. The base of the mobile device support according to claim 11, characterized in that: It also includes an elastic locking piece, which includes a ball and a fourth elastic piece; the fixed part has at least two recessed locking positions on one side facing the support platform, one end of the fourth elastic piece is connected to the support platform, and the other end of the fourth elastic piece is connected to the ball; the recessed depth of the locking position is smaller than the radius of the ball; when the fixed part and the support platform rotate relative to each other, the ball can be disengaged from the locking position and the fourth elastic piece can generate an elastic restoring force, and the support platform can drive the elastic locking piece to rotate to a position relative to different locking positions, and the elastic restoring force of the fourth elastic piece is used to drive a part of the ball to embed into the locking position.

14. A mobile device stand, characterized in that: include: A bracket body, the bracket body comprising a first buckle portion and a second buckle portion, and the bracket body is used to install a mobile device; and a base, wherein the base is the base of the mobile device bracket as described in any one of claims 1-13, the first buckle assembly of the base is used to be buckled with the first buckle part, and the second buckle assembly is used to be buckled with the second buckle part.