Support for electronic mobile devices

By introducing a drive component into the bracket for electronic mobile devices, the automatic unlocking and locking of moving parts is achieved, solving the problem of loosening caused by accidental contact and improving the stability and convenience of the bracket.

CN224589051UActive Publication Date: 2026-08-04SHENZHEN SENKEMU TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN SENKEMU TECH CO LTD
Filing Date
2025-09-15
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

Existing holders for electronic mobile devices are prone to loosening due to accidental contact at the unlocking point, affecting safety and convenience.

Method used

The design includes a first connecting component, a second connecting component, and a driving component. The driving component reciprocates along the central axis, driving the movable part to move in the unlocking or locking direction, thereby switching the bracket between the unlocked and locked states and preventing loosening caused by accidental contact.

Benefits of technology

It improves the stability and reliability of the bracket connection, and enhances the safety and convenience of using electronic mobile devices.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224589051U_ABST
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Abstract

The application relates to the technical field of electronic mobile device fixing, and provides an electronic mobile device support, which comprises a first connecting assembly, a second connecting assembly and a driving assembly, the first connecting assembly comprises a fixing seat and a movable piece arranged on the fixing seat, the movable piece is provided with a first buckling structure; the second connecting assembly comprises a connecting seat, and the connecting seat is provided with a second buckling structure; the driving assembly is arranged outside the movable piece; the driving assembly can reciprocate along the central axis of the electronic mobile device support and drive the movable piece to move in an unlocking direction or a locking direction, so that the electronic mobile device support is switched between an unlocking state and a locking state; in the unlocking state, the first buckling structure is separated from the second buckling structure; in the locking state, the first buckling structure is buckled and connected with the second buckling structure. Due to the arrangement of the driving assembly, not only is it convenient to switch between the unlocking state and the locking state, but also the safety and convenience of the electronic mobile device are improved.
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Description

Technical Field

[0001] This application relates to the field of electronic mobile device mounting technology, and more specifically to a bracket for electronic mobile devices. Background Technology

[0002] Drivers often need to use mobile electronic devices for navigation or Bluetooth calls while driving, thus requiring a mount to secure these devices and ensure driving safety. To facilitate installation and removal without damaging the dashboard, mounts are typically installed in the grille of the front air vents. Existing mounts generally consist of a part that connects to the phone and another part that connects to the vehicle body. These two parts are interlocked, and the driver needs to manually press the exposed unlocking part to separate them. However, in daily use, this exposed unlocking part is prone to accidental contact, causing the interlocking part to loosen, affecting the safety and ease of use of the electronic device. Utility Model Content

[0003] This application provides a bracket for electronic mobile devices that can solve the problem of accidental unlocking due to accidental contact.

[0004] This application provides a stand for electronic mobile devices, comprising:

[0005] A first connecting component, the first connecting component including a fixed base and a movable member movably disposed on the fixed base, the movable member having a first fastening structure;

[0006] A second connecting assembly, the second connecting assembly including a connecting seat having a second fastening structure; and

[0007] A driving assembly is disposed outside the movable member; the driving assembly is capable of reciprocating along the central axis of the electronic mobile device bracket and driving the movable member to move in an unlocking direction or a locking direction, so that the electronic mobile device bracket switches between an unlocked state and a locked state; in the unlocked state, the first fastening structure is separated from the second fastening structure; in the locked state, the first fastening structure is fastened to the second fastening structure.

[0008] One of the first connection component and the second connection component is used to connect to an electronic mobile device, and the other is used to connect to a carrier.

[0009] In some optional embodiments, the drive assembly includes a drive housing that is movably fitted onto the outside of the fixed base and the movable member; the inner wall of the drive housing is provided with a first mating structure, and the outside of the movable member is provided with a second mating structure. When the drive housing reciprocates along the central axis, the first mating structure and the second mating structure can abut against each other to drive the movable member closer to or away from the central axis.

[0010] In some optional embodiments, the drive assembly includes a drive housing and an elastic element. The drive housing is movably sleeved outside the fixed base and the movable element, and the elastic element is disposed between the movable element and the fixed base. A first mating structure is provided on the inner wall of the drive housing, and a second mating structure is provided on the movable element. The first mating structure and the second mating structure can abut against each other to drive the movable element to move along the unlocking direction or the locking direction. After the drive housing is released, the elastic element has an elastic restoring force that drives the movable element to move in the locking direction or the unlocking direction.

[0011] In some optional embodiments, the first mating structure includes a first mating ramp, and the second mating structure includes a second mating ramp, wherein the first mating ramp can abut against the second mating ramp to drive the movable member to move along the unlocking direction or the locking direction.

[0012] In some optional embodiments, the first mating structure further includes a first guide portion, and the second mating structure includes a second guide portion, wherein the first guide portion and the second guide portion are slidably disposed in the direction of the central axis.

[0013] In some optional embodiments, the movable component includes a movable part and a fixed part, the fixed part having a second guide part on its side facing the drive housing; the movable part includes a first movable part and a second movable part, the drive assembly being capable of driving the first movable part and the second movable part to move closer to or further away from each other, so as to switch the electronic mobile device bracket between an unlocked state and a locked state.

[0014] In some optional embodiments, the fixed base is provided with a mounting groove, and the movable part is movably disposed within the mounting groove.

[0015] In some optional embodiments, the exterior of the drive housing is provided with a plurality of drive protrusions, which are arranged in a ring array around the central axis.

[0016] In some optional embodiments, one of the first and second fastening structures includes a snap-fit ​​protrusion and a first mating tooth, and the other includes a slot and a second mating tooth. The snap-fit ​​protrusion has a first guide slope, and the sidewall of the slot has a second guide slope. When the electronic mobile device bracket switches between an unlocked state and a locked state, the first guide slope and the second guide slope abut and can slide relative to each other, so that the snap-fit ​​protrusion can exit or be inserted into the slot; the first mating tooth and the second mating tooth can mesh with each other.

[0017] In some optional embodiments, the fixing base is provided with a first magnetic attraction part, and the connecting base is provided with a second magnetic attraction part, wherein the first magnetic attraction part is used to magnetically connect with the second magnetic attraction part.

[0018] The electronic mobile device bracket according to this embodiment includes a first connecting component, a second connecting component, and a driving component. The first and second connecting components are provided with a matching snap-fit ​​structure to achieve a fixed connection between them. The driving component can drive the movable part in the first connecting component to move in the unlocking or locking direction, thereby causing the snap-fit ​​structure on the first and second connecting components to snap or separate, so as to realize the switching of the electronic mobile device bracket between the unlocked and locked states. This operation is convenient, and the setting of the driving component can protect the movable part, preventing the movable part from being accidentally touched and switching to the unlocked state. This can improve the stability and reliability of the bracket connection, and help improve the safety and convenience of using electronic mobile devices. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of a bracket for an electronic mobile device in one embodiment;

[0020] Figure 2 This is a structural cross-sectional view of a bracket for an electronic mobile device in one embodiment;

[0021] Figure 3 This is a structural cross-sectional view of the first connecting component in one embodiment;

[0022] Figure 4 for Figure 3 A magnified view of a portion of point A in the middle;

[0023] Figure 5 This is a cross-sectional view of a portion of the structure of the bracket for an electronic mobile device in a locked state, according to one embodiment.

[0024] Figure 6 This is a schematic diagram of a portion of the structure of a bracket for an electronic mobile device in a locked state, according to one embodiment.

[0025] Figure 7This is a schematic diagram of a portion of the structure of a bracket for an electronic mobile device in an unlocked state, according to one embodiment.

[0026] Figure 8 This is a cross-sectional view of a portion of the structure of the bracket for an electronic mobile device in one embodiment when it is in the unlocked state;

[0027] Figure 9 This is a schematic diagram of the structure of the drive component and the moving part cooperating in one embodiment;

[0028] Figure 10 This is a schematic diagram of the structure of the fixing base in one embodiment;

[0029] Figure 11 This is a schematic diagram of the structure of the first connecting component and the driving component after assembly in one embodiment;

[0030] Figure 12 This is a schematic diagram of the structure of the second connecting component in one embodiment.

[0031] Among them: 1. Bracket;

[0032] 10. First connecting assembly; 11. Fixing base; 111. Mounting groove; 112. Fixing post; 113. Connector; 114. First magnetic suction part; 12. Movable part; 121. First fastening structure; 1211. Snap-fit ​​protrusion; 1212. First guide slope; 1213. First mating tooth; 122. Second mating structure; 1221. Second mating slope; 1222. Second guide part; 123. Movable part; 1231. First movable part; 1232. Second movable part; 124. Fixing part; 13. Mounting base; 14. Fixing part;

[0033] 20. Second connecting component; 21. Connecting seat; 211. Second fastening structure; 2111. Slot; 2112. Second guide slope; 2113. Second mating tooth; 212. Mounting cavity; 213. Second magnetic suction part;

[0034] 30. Drive assembly; 31. Drive housing; 311. First mating structure; 3111. First mating inclined surface; 3112. First guide portion; 312. Drive protrusion; 32. Elastic element; 321. First elastic portion; 322. Second elastic portion;

[0035] OO, central axis. Detailed Implementation

[0036] The present application will now be described in further detail with reference to the accompanying drawings and specific embodiments. Similar elements in different embodiments are referred to by related similar element reference numerals. In the following embodiments, many details are described to facilitate a better understanding of the present application. However, those skilled in the art will readily recognize that some features may be omitted in different situations, or may be replaced by other elements, materials, or methods. In some cases, certain operations related to the present application are not shown or described in the specification. This is to avoid obscuring the core parts of the present application with excessive description. For those skilled in the art, detailed description of these related operations is not necessary; they can fully understand the related operations based on the description in the specification and general technical knowledge in the art.

[0037] Furthermore, the features, operations, or characteristics described in the specification can be combined in any suitable manner to form various embodiments, and the operational steps involved in each embodiment can also be rearranged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for clearly describing a particular embodiment and do not imply that they represent the necessary components and / or order.

[0038] The serial numbers assigned to components in this document, such as "first," "second," etc., are used only to distinguish the objects being described and have no sequential or technical meaning.

[0039] Please see Figures 1 to 12 This application provides a bracket 1 for electronic mobile devices (hereinafter referred to as "bracket 1"). The bracket 1 is used to fix electronic mobile devices (including tablets, mobile phones, etc.) onto a carrier, which includes a vehicle body. For example, the bracket 1 can be used to fix a mobile phone to the grille of the air vent of the vehicle body. Based on this, the bracket 1 includes a first connecting component 10 and a second connecting component 20. The first connecting component 10 is used to connect the electronic mobile device, and the second connecting component 20 is used to connect the carrier.

[0040] It should be noted that the connection described in this application includes both direct and indirect connections. That is, the first connection component 10 can be directly connected to the electronic mobile device, and the second connection component 20 can be directly connected to the carrier. The first connection component 10 can also be connected to the electronic mobile device through an intermediate medium (such as a protective sleeve, clamp, etc.), and the second connection component 20 can also be connected to the carrier through an intermediate medium (such as a hook, clamp, etc.).

[0041] Please see Figure 2In some embodiments, the first connecting component 10 includes a fixed base 11 and a movable member 12 movably disposed on the fixed base 11, the movable member 12 having a first fastening structure 121; the second connecting component 20 includes a connecting base 11, the connecting base 11 having a second fastening structure 211, the bracket 1 having an unlocked state and a locked state, in the locked state, the first fastening structure 121 and the second fastening structure 211 are fastened together, so that the first connecting component 10 is assembled on the second connecting component 20, thereby enabling the electronic mobile device connected to the first connecting component 10 to be installed on the carrier, in the unlocked state, the first fastening structure 121 and the second fastening structure 211 are separated, so that the first connecting component 10 is separated from the second connecting component 20, thereby facilitating the removal of the electronic mobile device connected to the first connecting component 10 from the carrier.

[0042] Furthermore, in order to improve the stability and reliability of the connection between the first fastening structure 121 and the second fastening structure 211, and to avoid instability in the connection due to misoperation or accidental contact, thereby affecting the safety and convenience of using electronic mobile devices, please continue to refer to... Figure 2 In some embodiments, the bracket 1 further includes a drive assembly 30, which is disposed outside the movable member 12 and is capable of reciprocating along the central axis OO of the bracket 1 for use with the electronic mobile device. This drive assembly 30 drives the movable member 12 to move in either an unlocking or locking direction, allowing the bracket 1 to switch between an unlocked and locked state. Unlike exposed movable members 12 and manual pressing methods, the drive assembly 30 outside the movable member 12 protects it from accidental contact that could switch it to the unlocked state. This improves the stability and reliability of the bracket 1 connection and enhances the safety and convenience of using the electronic mobile device.

[0043] In some embodiments, the drive assembly 30 includes a drive housing 31, which is movably sleeved on the outside of the fixed base 11 and the movable member 12. A first mating structure 311 is provided on the inner wall of the drive housing 31, and a second mating structure 122 is provided on the movable member 12. When the drive housing 31 reciprocates along the central axis OO of the electronic mobile device support 1, the first mating structure 311 and the second mating structure 122 abut against each other, driving the movable member 12 to move in the unlocking or locking direction, thereby switching the electronic mobile device from a locked state to an unlocked state. In this embodiment, the drive housing 31 directly enables the movement of the movable member 12. Specifically, when the drive housing 31 reciprocates along the central axis OO under external force (such as human power or electricity), after the first mating structure 311 and the second mating structure 122 come into contact, as the movement continues, the first mating structure 311 and the second mating structure 122 abut against each other, using the force between them to move the movable member 12 in the unlocking or locking direction, thereby achieving the switching between the locked and unlocked states. For example, when the first fastening structure 121 of the movable member 12 includes a protrusion that protrudes towards the central axis OO, and the second fastening structure 211 also includes a protrusion, the two are hooked together. In this embodiment, when the drive housing 31 moves along one direction on the central axis OO, the first engaging structure 311 and the second engaging structure 122 abut against each other and push the movable member 12 towards the direction closer to the central axis OO (locking direction), so that the first fastening structure 121 and the second fastening structure 211 are connected, so that the electronic mobile device bracket 1 is in a locked state. When the drive housing 31 is pushed to move in the opposite direction on the central axis OO, the first engaging structure 311 and the second engaging structure 122 abut against each other and push the movable member 12 towards the direction away from the central axis OO (unlocking direction), so that the first fastening structure 121 and the second fastening structure 211 are separated, so that the electronic mobile device bracket 1 is in an unlocked state.In another embodiment, when the first fastening structure 121 of the movable member 12 includes a protrusion that protrudes in a direction away from the central axis OO, and the second fastening structure 211 includes a groove, the protrusion can be embedded in the groove. When the drive housing 31 moves along one direction on the central axis OO, the first engaging structure 311 and the second engaging structure 122 abut against each other and push the movable member 12 towards the direction closer to the central axis OO (unlocking direction), which can separate the first fastening structure 121 and the second fastening structure 211, so that the bracket 1 for the electronic mobile device is in an unlocked state. When the drive housing 31 is pushed to move in the opposite direction on the central axis OO, the first engaging structure 311 and the second engaging structure 122 abut against each other and push the movable member 12 towards the direction away from the central axis OO (locking direction), which can fasten the first fastening structure 121 and the second fastening structure 211, so that the bracket 1 for the electronic mobile device is in a locked state.

[0044] Please see Figure 3In some embodiments, the drive assembly 30 includes a drive housing 31 and an elastic member 32. The drive housing 31 is movably sleeved on the outside of the fixed base 11 and the movable member 12. The elastic member 32 is disposed between the movable member 12 and the fixed base 11. A first mating structure 311 is provided on the inner wall of the drive housing 31, and a second mating structure 122 is provided on the movable member 12. The first mating structure 311 and the second mating structure 122 can abut against each other to drive the movable member 12 to move along the unlocking direction or the locking direction X. After the drive housing 31 is released, the elastic member 32 has an elastic restoring force to drive the movable member 12 to move in the locking direction or the unlocking direction. Specifically, when the user operates the drive housing 31 to move in any direction (such as downward) along the direction Y of the central axis OO, the user pushes the movable member 12 to move in one direction (such as the direction close to the central axis OO). At this time, the elastic member 32 is in a compressed state. After the user releases the drive housing 31, the elastic member 32 can push the movable member 12 to move in the opposite direction, and at the same time push the drive housing 31 to move in the opposite direction from its initial direction. For example, one end of the elastic element 32 is disposed in the middle of the fixed base 11, and the other end is connected to the movable element 12. A drive housing 31 is disposed outside the movable element 12. When the drive housing 31 moves in one direction, it drives the movable element 12 to move closer to the central axis OO. Similar to the above embodiment, when the first fastening structure 121 includes a protrusion or a groove, the movement closer to the central axis OO causes the bracket 1 to be in a locked state (when both the first fastening structure 121 and the second fastening structure 211 include protrusions) or an unlocked state (when the first fastening structure 121 includes a protrusion and the second fastening structure 211 includes a groove) corresponding to the structure of the first fastening structure 121. For details, please refer to the above description, which will not be elaborated further here. In this embodiment, the setting of the elastic element 32 replaces the user's operation of the drive housing 31, which can realize the automatic reset of the drive housing 31, simplify the operation steps, reduce the operation difficulty, and bring more convenience to the user.

[0045] The elastic element 32 may include a spring, an elastic rope, or other elastic structure to use its elastic restoring force to drive the movable element 12 to move in the opposite direction, while simultaneously causing the drive housing 32 to reset.

[0046] Please see Figure 4In some embodiments, the first mating structure 311 includes a first mating inclined surface 3111, and the second mating structure 122 includes a second mating inclined surface 1221. The first mating inclined surface 3111 can abut against the second mating inclined surface 1221 to drive the movable member 12 to move along the unlocking direction or the locking direction, so that the bracket 1 switches between the unlocked state and the locked state. The first mating inclined surface 3111 and the second mating inclined surface 1221 are two parallel inclined surfaces, and their inclination directions are consistent. In a specific embodiment, when the bracket 1 is in the locked state, and the drive housing 31 moves downward (with the plane of the paper as a reference), that is, the direction of movement of the drive housing 31 is as follows: Figure 5 As indicated by the arrow, the first mating inclined surface 3111 pushes the second mating inclined surface 1221 closer to the central axis OO, causing the moving part 12 to move in the direction shown by the arrow. Figure 6 As indicated by the arrow, even if bracket 1 is in Figure 7 and Figure 8 The unlocked state is shown. After releasing the drive housing 31, the elastic element 31 can drive the movable element 12 away from the central axis OO, and the direction of movement of the movable element 12 is as follows. Figure 7 As shown by the arrow, the second mating inclined surface 1221 pushes the first mating inclined surface 3111 to move and pushes the drive housing 31 back to its original position. The direction of movement of the drive housing 31 is as follows. Figure 8 As shown by the arrow, this operation can also switch bracket 1 to the position shown. Figure 5 and 6 The locked state is shown. The drive housing 31 can also be manually reset, and with the cooperation of the second mating inclined surface 1221 and the first mating inclined surface 3111, the moving part 12 is moved away from the central axis OO.

[0047] Please see Figure 9 To guide the reciprocating movement of the drive housing 31, the first mating structure 311 further includes a first guide portion 3112, and the second mating structure 122 includes a second guide portion 1222. The first guide portion 3112 and the second guide portion 1222 are slidably disposed in the direction of the central axis OO. The first guide portion 3112 and the second guide portion 1222 can be relatively parallel and can slide relative to each other as guide surfaces, or one of the first guide portion 3112 and the second guide portion 1222 can include a slide groove, and the other includes a slider. The slide rail and the slider cooperate with each other to guide the reciprocating movement of the drive housing 31.

[0048] Please continue reading. Figure 3 and Figure 9The movable part 12 includes a movable part 123 and a fixed part 124. The fixed part 124 has a second guide part 1222 on the side facing the drive housing 31. The first guide part 3112 includes a first slider and a first slide groove, and the second guide part 1222 includes a second slider and a second slide groove. When the drive housing 31 moves, the slider can slide along the slide groove, that is, the first slider and the second slide groove cooperate, and the first slide groove and the second slider cooperate. At the same time, the second cooperation inclined surface 1221 is provided on the movable part 123, so that the drive housing 31 can drive the movable part 123 to move. The fixed part 124 is fixedly provided on the fixed base 11. Of course, the fixed part 124 can also move (move or rotate) relative to the fixed base 11.

[0049] To achieve a stable and uniform connection between the first connecting component 10 and the second connecting component 20, the movable part 123 includes a first movable part 1231 and a second movable part 1232, which are symmetrically arranged along the central axis OO. The drive housing 31, or the drive housing 31 and the elastic element 32, can cooperate to drive the first movable part 1231 and the second movable part 1232 to move closer or further apart, thereby switching the bracket 1 between an unlocked state and a locked state. In embodiments where the drive housing 31 and the elastic element 32 cooperate, at least two corresponding elastic elements 32 are also provided. Each of the first movable part 1231 and the second movable part 1232 is provided with at least one elastic element 32, namely, a first elastic part 321 and a second elastic part 322. The first elastic part 321 is disposed between the first movable part 1231 and the fixed base 11, and the second elastic part 322 is disposed between the second movable part 1232 and the fixed base 11. In some embodiments, the first movable part 1231 and the second movable part 1232 are each provided with a first fastening structure 121. When switched to the unlocked state, the first movable part 1231 and the second movable part 1232 move closer to each other. When switched to the locked state, the first movable part 1231 and the second movable part 1232 move further away from each other under the action of the elastic member 32.

[0050] Please continue reading. Figure 9 In some embodiments, the drive housing 31 has multiple drive protrusions 311 on its exterior, arranged in a circular array around the central axis OO. The arrangement of these multiple drive protrusions 311 helps increase the friction between the user's operating part (e.g., hand) and the drive housing 31, thereby reducing resistance to the movement of the drive housing 31 and facilitating easy movement of the movable part 12. The circular array of drive protrusions 311 around the central axis OO on the exterior of the drive housing 31 helps to distribute the driving force more evenly, preventing uneven force distribution from affecting the switching between the unlocked and locked states of the bracket 1.

[0051] In other embodiments, a drive handle may be provided on the outside of the drive housing 31. The drive handle provides an operating force point to facilitate the movement of the drive housing 31.

[0052] Please see Figure 10 The fixed base 11 is provided with a mounting groove 111, and a fixed post 112 is provided in the middle of the mounting groove 111. One end of the elastic element 32 is connected to the fixed post 112, and the other end is connected to the movable part 123. Connectors 113 are symmetrically provided on both sides of the fixed post 112. These connectors 113 are used to connect the elastic element 32 to the fixed post 112. In embodiments where the elastic element 32 is a spring, the connector 113 can be a cylinder, and the spring is sleeved on the connector 113. The axis of the fixed base coincides with the central axis OO of the bracket 1. The fixed post 112 can also be used to connect the fixed base 11 to other structural components shown in the figure, such as connecting the fixed part 124 and the fixed base 11 into a single structure.

[0053] Furthermore, one of the first fastening structure 121 and the second fastening structure 211 includes a snap-fit ​​protrusion 1211, and the other includes a slot 2111. In the locked state, the snap-fit ​​protrusion 1211 is embedded in the slot 2111, and in the unlocked state, the snap-fit ​​protrusion 1211 is disengaged from the slot 2111. Specifically, the first fastening structure 121 may include the snap-fit ​​protrusion 1211, and the second fastening structure 211 includes the slot 2111. (See also...) Figure 4 , Figure 7 and Figure 8The first fastening structure 121 includes a snap-fit ​​protrusion 1211, and the second fastening structure 211 includes a slot 2111. The connecting seat 11 has a mounting cavity 112, with the slot 2111 recessed into the side wall of the mounting cavity 112. Both the first movable part 1231 and the second movable part 1232 have a snap-fit ​​protrusion 1211. When assembling the first connecting assembly 10 and the second connecting assembly 20, the snap-fit ​​protrusion 1211 first extends into the mounting cavity 112. Under the rotation of the driving housing 31, the first movable part 1231 and the second movable part 1232 move closer to each other, causing the snap-fit ​​protrusion 1211 to further extend inward to the slot 2111 position. At this point, the driving housing 31 is released, and the first movable part 1231 and the second movable part 1232 move away from each other until the snap-fit ​​protrusion 1211 abuts against the bottom wall of the slot 2111, thus achieving locking. In this embodiment, there may be two slots 2111, symmetrically arranged around the central axis OO. The slot 2111 can also be an annular slot 2111 that circles around the central axis OO. In this way, the snap-fit ​​protrusion 1211 can snap into the slot 2111 at any position, thereby allowing the first connecting component 10 to be installed on the second connecting component 20 at any angle, which improves the flexibility of the bracket 1.

[0054] Please continue reading. Figure 4 , Figure 11 and Figure 12 The latching protrusion 1211 has a first guide slope 1212, and the side wall of the slot 2111 has a second guide slope 2112. When the electronic mobile device bracket switches between an unlocked state and a locked state, the first guide slope 1212 and the second guide slope 2112 abut and slide relative to each other, allowing the latching protrusion 1211 to exit or enter the slot 2111. The cooperation of the first guide slope 1212 and the second guide slope 2112 guides the engagement of the latching protrusion 1211 and the slot 2111. Furthermore, the arrangement of the first guide slope 1212 and the second guide slope 2112 ensures the continuity of the movement during the exiting or entering of the latching protrusion 1211. This design effectively avoids vibration caused by abrupt movements during engagement, thus preventing adverse effects on the connection stability of other structural components.

[0055] Please see Figure 11 and Figure 12One of the first engaging structure 121 and the second engaging structure 211 includes a first mating tooth 1213, and the other includes a second mating tooth 2113. The first mating tooth 1213 and the second mating tooth 2113 can mesh with each other. The engagement of the first mating tooth 1213 and the second mating tooth 2113 can further improve the stability of the connection between the first connecting assembly 10 and the second connecting assembly 20. The first mating tooth 1213 is disposed on the end face opposite to the fixed seat 11 and the connecting seat 11, and the second mating tooth 2113 is disposed on the end face opposite to the fixed seat 11. The first mating tooth 1213 and the second mating tooth 2113 can be arc-shaped structures, or they can form a ring structure around the central axis OO. The cross-section of the first mating tooth 1213 and the second mating tooth 2113 can be triangular, trapezoidal, semi-circular, or other irregular shapes, without much restriction.

[0056] To eliminate the gap during the connection of the first connecting assembly 10 and the second connecting assembly 20, and to ensure precise positioning of their connection, the fixing base 11 is provided with a first magnetic attraction part 114, and the connecting base 11 is provided with a second magnetic attraction part 213. The first magnetic attraction part 114 is used for magnetic connection with the second magnetic attraction part 213. Specifically, the first magnetic attraction part 114 and the second magnetic attraction part 213 can be made of magnetic material. The first magnetic attraction part 114 is located at the center of the end face opposite to the fixing base 11 and the connecting base 11, and the second magnetic attraction part 213 is located at the center of the end face opposite to the connecting base 11 and the fixing base 11, that is, the second magnetic attraction part 213 can be located in the center of the mounting cavity 112. The cross-sectional shape of the first magnetic attraction part 114 and the second magnetic attraction part 213 perpendicular to the central axis OO is circular, rectangular, elliptical, or polygonal. For example, the first magnetic attraction part 114 and the second magnetic attraction part 213 have a circular cross-sectional shape profile perpendicular to the central axis OO, so that the magnetic force between the first connecting component 10 and the second connecting component 20 is uniform, thereby making the two tightly connected.

[0057] In some embodiments, the first connecting assembly 10 further includes a mounting base 13 and a fixing member 14, which are fixedly connected by the fixing member 14. Two fixing members 14 may be provided and symmetrically arranged along the central axis OO to facilitate the connection between the mounting base 13 and the fixing base 11. The fixing member 14 can be a bolt, screw, or pin. Correspondingly, the mounting base 13 and the fixing base 11 are provided with mounting holes to facilitate the installation of the fixing member 14.

[0058] Mounting base 13 is used to connect to an electronic mobile device. Mounting base 13 may include a ball joint that connects to a protective cover or clamp of the electronic mobile device. The ball joint allows the electronic mobile device to rotate freely relative to the bracket 1, enabling the user to view information on the screen of the electronic mobile device from different angles. Mounting base 13 may also include a threaded component that is threadedly connected to the protective cover or clamp of the electronic mobile device. Mounting base 13 may also include a snap-fit ​​component that snaps into the protective cover or clamp of the electronic mobile device.

[0059] In some embodiments, the second connecting component 20 is used to connect to a carrier, and the second connecting component 20 includes a hook or clamping structure, such that the second connecting component 20 is detachably fixed to the carrier.

[0060] The above embodiments are described with the first connecting component 10 connecting to the electronic mobile device and the second connecting component 20 connecting to the carrier; similarly, it is also feasible for the first connecting component 10 to connect to the carrier and the second connecting component 20 to connect to the electronic mobile device.

[0061] This application primarily describes mobile device holders for in-vehicle use. It should be understood that the technical solutions of this application are also applicable to mobile device holders for cycling, desktop placement, and other scenarios.

[0062] The above examples illustrate this application only to aid understanding and are not intended to limit its scope. Those skilled in the art to which this application pertains can make various simple deductions, modifications, or substitutions based on the ideas presented.

Claims

1. A stand for an electronic mobile device, characterized in that, include: A first connecting component, the first connecting component including a fixed base and a movable member movably disposed on the fixed base, the movable member having a first fastening structure; A second connecting component, the second connecting component including a connecting seat having a second fastening structure; as well as A driving component is disposed outside the movable component; the driving component is capable of reciprocating along the central axis of the electronic mobile device bracket and driving the movable component to move in an unlocking direction or a locking direction, so that the electronic mobile device bracket switches between an unlocked state and a locked state; in the unlocked state, the first fastening structure is separated from the second fastening structure; In the locked state, the first fastening structure and the second fastening structure are fastened together. One of the first connection component and the second connection component is used to connect to an electronic mobile device, and the other is used to connect to a carrier.

2. The stand for an electronic mobile device of claim 1, wherein, The drive assembly includes a drive housing, which is movably sleeved on the outside of the fixed base and the movable component. The inner wall of the drive housing is provided with a first mating structure, and the movable component is provided with a second mating structure. When the drive housing reciprocates along the central axis, the first mating structure and the second mating structure can abut against each other to drive the movable component to move along the unlocking direction or the locking direction.

3. The stand for an electronic mobile device of claim 1, wherein, The driving assembly includes a driving housing and an elastic element. The driving housing is movably sleeved on the outside of the fixed base and the movable element. The elastic element is disposed between the movable element and the fixed base. A first mating structure is provided on the inner wall of the driving housing, and a second mating structure is provided on the movable element. The first mating structure and the second mating structure can abut against each other to drive the movable element to move along the unlocking direction or the locking direction. After the driving housing is released, the elastic element has an elastic restoring force that drives the movable element to move in the locking direction or the unlocking direction.

4. The stand for an electronic mobile device according to claim 2 or 3, wherein The first mating structure includes a first mating inclined surface, and the second mating structure includes a second mating inclined surface. The first mating inclined surface can abut against the second mating inclined surface to drive the movable member to move along the unlocking direction or the locking direction.

5. The stand for an electronic mobile device of claim 4, wherein, The first mating structure further includes a first guide portion, and the second mating structure includes a second guide portion, wherein the first guide portion and the second guide portion are slidably disposed in the direction of the central axis.

6. The support for an electronic mobile device of claim 5, wherein, The movable component includes a movable part and a fixed part. The fixed part has a second guide part on its side facing the drive housing. The movable part includes a first movable part and a second movable part. The drive assembly can drive the first movable part and the second movable part to move closer to each other or further away from each other, so that the electronic mobile device bracket switches between an unlocked state and a locked state.

7. The support for an electronic mobile device of claim 6, wherein, The fixed base is provided with a mounting groove, and the first movable part and the second movable part are movably disposed in the mounting groove.

8. The stand for an electronic mobile device according to claim 2 or 3, wherein The drive housing has multiple drive protrusions on its exterior, and these drive protrusions are arranged in a ring array around the central axis.

9. The support for an electronic mobile device of claim 1, wherein, One of the first and second fastening structures includes a snap-fit ​​protrusion and a first mating tooth, and the other includes a slot and a second mating tooth. The snap-fit ​​protrusion has a first guide slope, and the side wall of the slot has a second guide slope. When the electronic mobile device bracket switches between an unlocked state and a locked state, the first guide slope and the second guide slope abut against each other and can slide relative to each other, so that the snap-fit ​​protrusion can exit or be inserted into the slot; the first mating tooth and the second mating tooth can mesh with each other.

10. The support for an electronic mobile device according to any one of claims 1, 2, 3, 9, wherein The fixed base is provided with a first magnetic attraction part, and the connecting base is provided with a second magnetic attraction part. The first magnetic attraction part is used to magnetically connect with the second magnetic attraction part.