Multi-fixing-state support

By designing a multi-fixed-state bracket, and utilizing the fact that both the first and second fixing parts are connected to external components, a stable connection between the bracket and the vehicle body is achieved, solving the problem of insufficient connection reliability in the prior art and improving the stability of electronic equipment.

CN223618674UActive Publication Date: 2025-12-02SHENZHEN BASEUS TECH CO LTD
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Patent Information

Application Number
CN202423322646.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-02
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The existing vehicle mounting bracket has poor reliability in its connection between the first fixing part and the vehicle body, resulting in insufficient stability for supporting electronic equipment.

Method used

Design a multi-fixed state bracket, including a first fixing part, a second fixing part, a connecting part and a third fixing part. The first fixing part and the second fixing part can be connected to external components, and the third fixing part can be detachably connected to electronic devices. The bracket has a first fixed state and a second fixed state to adapt to different connection requirements.

Benefits of technology

It improves the reliability and stability of the assembly connection between the bracket and external components, reduces interference with structures in specific locations, meets the fixing requirements of different locations, and improves the stability of electronic equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-fixing-state support which is suitable for being connected with electronic equipment in a separable mode and comprises a first fixing part, a second fixing part, a connecting part and a third fixing part. The first fixing part is suitable for being connected to an external component. The second fixing part is suitable for being connected to an external component. One end of the connecting part is connected to the first fixing part and the other end is connected to the second fixing part. The third fixing part is connected to the connecting part, and the third fixing part is suitable for being detachably connected with the electronic equipment. The multi-fixed-state support has a first fixed state and a second fixed state. In the first fixing state, the first fixing part and the second fixing part are connected with each other; in the second fixing state, the first fixing part and the second fixing part are separated from each other. According to the scheme, the reliability of assembly connection of the support and the external component can be effectively improved, the stability of the support for supporting the electronic equipment is guaranteed, and the support has multiple fixing states and can meet the fixing requirements of different position structures in the external component.
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Description

Technical Field

[0001] This utility model relates to the field of item support technology, and in particular to a multi-fixed state support. Background Technology

[0002] A vehicle mount bracket supports electronic devices on a vehicle body. Specifically, the bracket includes a first fixing part, a second fixing part, and a connecting part, with the first fixing part and a second fixing strap connected to its two ends respectively. The first fixing part is used to securely connect to the vehicle body, and the second fixing part is used to securely support the electronic devices. To ensure the stability of the connection between the first fixing part and the vehicle body, the first fixing part is designed to be relatively large. However, when the first fixing part is assembled and connected to a specific location on the vehicle body, the reliability of the connection between the first fixing part and the vehicle body is poor due to the limitations of the specific structure of that location (such as a recess in the center console or an air conditioning vent), resulting in poor stability of the bracket supporting the electronic devices. Utility Model Content

[0003] The main purpose of this invention is to propose a multi-fixed-state bracket, which aims to solve the technical problem of poor stability of the bracket supporting electronic devices.

[0004] To achieve the above objectives, this utility model provides a multi-fixed-state bracket suitable for detachably connected electronic devices, the multi-fixed-state bracket comprising:

[0005] The first fixing part is adapted to be connected to an external component;

[0006] The second fixing part is adapted to be connected to the external component;

[0007] The connecting part is connected at one end to the first fixing part and at the other end to the second fixing part;

[0008] A third fixing part is connected to the connecting part, and the third fixing part is adapted to be detachably connected to the electronic device;

[0009] The multi-fixed-state bracket has a first fixed state and a second fixed state; in the first fixed state, the first fixed part and the second fixed part are connected to each other; in the second fixed state, the first fixed part and the second fixed part are separated from each other.

[0010] In some embodiments, the first fixing part is provided with a receiving cavity, and in the first fixing state, the second fixing part is at least partially received in the receiving cavity.

[0011] In some embodiments, the first fixing portion includes a base and a cover, the base and the cover together defining the receiving cavity, the base being connected to the connecting portion, the cover being movably connected to the base, and the cover being configured to either enclose the receiving cavity together with the base or move relative to the base to open the receiving cavity.

[0012] In some embodiments, the base is configured to be connected to the external component; and / or, the cover is configured to be connected to the external component.

[0013] In some embodiments, the first fixing portion includes a fixing member and a housing, the housing defining the receiving cavity and the housing configured to close or open the receiving cavity, the fixing member being connected to the connecting portion, the fixing member being disposed in the receiving cavity and connected to the housing, or the fixing member being detachable from the housing, and the connecting portion passing through the housing when the fixing member is disposed in the receiving cavity.

[0014] In some embodiments, the housing is configured to be connected to the external component; and / or, the fixing component is configured to be connected to the external component.

[0015] In some embodiments, the housing is configured to be connected to the external component, and the fixing component is configured to be connected to the second fixing part.

[0016] In some embodiments, the connection includes a flexible segment configured to produce bending deformation to change the relative position of the first fixing portion and the second fixing portion.

[0017] In some embodiments, the third fixing portion is configured to slide relative to the connecting portion along the extending direction of the connecting portion.

[0018] In some embodiments, the multi-fixed-state bracket further includes a locking part, which is connected to the third fixing part and the connecting part respectively. The locking part has a locked state and an unlocked state. When the locking part is in the locked state, it restricts the movement of the third fixing part relative to the connecting part. When the locking part is in the unlocked state, it releases the restriction on the third fixing part.

[0019] Compared with the prior art, the beneficial effects of this utility model include:

[0020] In this invention, the multi-fixed-state bracket includes a first fixing part, a second fixing part, a connecting part, and a third fixing part. The third fixing part is suitable for detachably connecting electronic devices. One end of the connecting part is connected to the first fixing part, and the other end is connected to the second fixing part. The third fixing part is connected to the connecting part. In the prior art, the two ends of the connecting part in the bracket are respectively connected to the first fixing part and the second fixing part. The first fixing part is used to connect to the vehicle body (external components), and the second fixing part is used to connect to electronic devices. Because the reliability of the connection between a single first fixing part and the vehicle body is poor, the stability of the bracket supporting the electronic devices is poor. In this solution, both the first fixing part and the second fixing part are used to connect to external components, that is, the multi-fixed-state bracket can be connected to multiple areas of external components, which can effectively improve the reliability of the assembly connection between the multi-fixed-state bracket and external components and ensure the stability of the multi-fixed-state bracket supporting the electronic devices.

[0021] Furthermore, the multi-fixed-state bracket has a first fixed state and a second fixed state. In the second fixed state, the first and second fixing parts are separated from each other. Compared to existing solutions with a larger first fixing part, the first and second fixing parts in this solution can be made smaller, effectively reducing interference between the multi-fixed-state bracket and specific structural parts of external components, and improving the reliability of the assembly connection between the multi-fixed-state bracket and external components. In the first fixed state, the first and second fixing parts are connected to each other, which improves the stability of the connection between the multi-fixed-state bracket and external components. Therefore, the multi-fixed-state bracket of this solution has multiple fixing states, which can meet the fixing requirements of different structural parts in external components and improve the stability of the multi-fixed-state bracket supporting electronic devices. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of a multi-fixed state bracket according to an embodiment of the present invention; wherein, the fixing component of the first fixing part, the box body, the second fixing part, the connecting part, the third fixing part and the locking part are shown, and the multi-fixed state bracket is in the second fixed state;

[0024] Figure 2 This is a schematic diagram of a multi-fixed state bracket in one embodiment of the present invention; wherein, a lock head, lock seat, lock body, flexible section, first concave shell and second concave shell are shown, and the multi-fixed state bracket is in the first fixed state;

[0025] Figure 3 This is a schematic diagram of a multi-fixed state bracket in one embodiment of the present invention; wherein, the multi-fixed state bracket is in a first fixed state;

[0026] Figure 4 This is a schematic diagram of a multi-fixed state bracket in one embodiment of the present invention; wherein, the base, cover, electronic equipment, and external components of the first fixing part are shown;

[0027] Figure 5 This is a schematic diagram of a multi-fixed state bracket in one embodiment of the present invention; wherein the electronic device is arranged at a small angle relative to the external components;

[0028] Figure 6 This is a schematic diagram of a multi-fixed state bracket in one embodiment of the present invention; wherein the electronic device is arranged at a large angle relative to the external components.

[0029] Explanation of icon numbers:

[0030] 10 multi-fixed state brackets;

[0031] First fixing part 100; receiving cavity 110; base 120; cover 130; fixing component 140; box body 150; first concave shell 151; second concave shell 152;

[0032] Second fixing part 200;

[0033] Connecting part 300; Flexible section 310; First rigid section 320; Second rigid section 330;

[0034] Third fixing part 400;

[0035] Locking part 500; Lock head 510; Lock base 520; Lock body 530;

[0036] 20 electronic devices;

[0037] External component 30;

[0038] First direction X.

[0039] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0040] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0041] A vehicle mount bracket supports electronic devices on a vehicle body. Specifically, the bracket includes a first fixing part, a second fixing part, and a connecting part, with the first fixing part and a second fixing strap connected to its two ends respectively. The first fixing part is used to securely connect to the vehicle body, and the second fixing part is used to securely support the electronic devices. To ensure the stability of the connection between the first fixing part and the vehicle body, the first fixing part is designed to be relatively large. However, when the first fixing part is assembled and connected to a specific location on the vehicle body, the reliability of the connection between the first fixing part and the vehicle body is poor due to the limitations of the specific structure of that location (such as a recess in the center console or an air conditioning vent), resulting in poor stability of the bracket supporting the electronic devices.

[0042] Therefore, this utility model embodiment proposes a multi-fixed-state bracket 10, which is suitable for detachably connecting electronic devices 20. This multi-fixed-state bracket 10 can effectively improve the stability of supporting the electronic devices 20. It should be noted that the electronic device 20 can be a mobile phone, computer, game console, wearable device (smartwatch, electronic glasses), or headphones, etc. This embodiment uses a mobile phone as an example for explanation. The following refers to... Figures 1 to 6 The multi-fixed-state bracket 10 of this application embodiment will be introduced. Specifically, the multi-fixed-state bracket 10 includes a first fixing part 100, a second fixing part 200, a connecting part 300, and a third fixing part 400.

[0043] Reference Figures 4 to 6 The first fixing part 100 is adapted to be connected to the external component 30. It should be noted that in some embodiments, the external component 30 can be a vehicle. Specifically, the vehicle can be a bicycle, electric vehicle, or car, etc. In other embodiments, the external component 30 can also be an object in a work setting, such as a workbench, equipment, or instrument. In other embodiments, the external component 30 can also be an object in a leisure setting, such as a table, chairs, sofa, bookshelf, or bed, etc. The specific orientation of the external component 30 can be determined according to the actual situation; this application embodiment uses a vehicle as an example for illustration.

[0044] The specific connection arrangement between the first fixing part 100 and the external component 30 is described below. In some embodiments, the first fixing part 100 can magnetically connect to the external component 30. In other embodiments, the first fixing part 100 can also snap or adhesively attach to the external component 30. In other embodiments, the first fixing part 100 can also clamp or thread the external component 30, depending on the actual situation. This application embodiment uses the magnetic connection of the first fixing part 100 to the external component 30 as an example for explanation.

[0045] Reference Figures 4 to 6 The second fixing part 200 is adapted to be connected to the external component 30. In some embodiments, the external component 30 to which the second fixing part 200 is connected and the external component 30 to which the first fixing part 100 is connected may be the same external component 30. In other embodiments, the external component 30 to which the second fixing part 200 is connected and the external component 30 to which the first fixing part 100 is connected may be different external components 30. This application embodiment is described using the example that both the second fixing part 200 and the first fixing part 100 are connected to the same external component 30. It should be noted that in some embodiments, the first fixing part 100 and the second fixing part 200 may be connected to the same area of ​​the external component 30. In other embodiments, the first fixing part 100 and the second fixing part 200 may be connected to two different areas of the external component 30. The specific connection position of the second fixing part 200 and the first fixing part 100 may be determined according to the actual situation.

[0046] The specific connection arrangement between the second fixing part 200 and the external component 30 is described below. In some embodiments, the second fixing part 200 can magnetically connect to the external component 30. In other embodiments, the second fixing part 200 can also snap or adhesively attach to the external component 30. In other embodiments, the second fixing part 200 can also clamp or thread-connect the external component 30. The connection arrangement of the second fixing part 200 on the external component 30 can be the same as or different from the connection arrangement of the first fixing part 100 on the external component 30. This application embodiment uses the magnetic connection of the second fixing part 200 to the external component 30 as an example for explanation.

[0047] Reference Figure 1 and Figure 2In some embodiments, the structure of the second fixing part 200 may be the same as that of the first fixing part 100. In other embodiments, the structure of the second fixing part 200 may be different from that of the first fixing part 100. This application embodiment will be described using the example of the second fixing part 200 having a different structure from the first fixing part 100. Furthermore, in some embodiments, the multi-fixed state bracket 10 may be provided with a single first fixing part 100. In other embodiments, the multi-fixed state bracket 10 may also be provided with multiple first fixing parts 100. The number of second fixing parts 200 may be the same as or different from that of the first fixing parts 100. This application embodiment will be described using the example of the multi-fixed state bracket 10 having a single first fixing part 100 and a single second fixing part 200.

[0048] Reference Figures 1 to 3 The connecting portion 300 can connect the first fixing portion 100 and the second fixing portion 200. Specifically, one end of the connecting portion 300 can be connected to the first fixing portion 100 and the other end can be connected to the second fixing portion 200. In some embodiments, the connecting portion 300 has only two opposing ends, and the first fixing portion 100 and the second fixing portion 200 can be connected to opposite ends of the connecting portion 300, respectively. In other embodiments, the connecting portion 300 has multiple ends, and the first fixing portion 100 and the second fixing portion 200 can be connected to any two ends of the connecting portion 300.

[0049] Reference Figures 4 to 6 The third fixing part 400 is adapted to detachably connect to the electronic device 20. Specifically, in some embodiments, the third fixing part 400 can magnetically connect to the electronic device 20. In other embodiments, the third fixing part 400 can also clamp and fix the electronic device 20. In other embodiments, the third fixing part 400 can also snap onto the electronic device 20 or directly support the electronic device 20. The specific connection configuration between the third fixing part 400 and the electronic device 20 can be determined according to the actual situation. This application embodiment uses the magnetic connection of the third fixing part 400 to the electronic device 20 as an example for explanation.

[0050] It should be noted that the structure of the third fixing part 400 can be the same as or different from that of the first fixing part 100. This embodiment of the application uses the example of the third fixing part 400 having a different structure from the first fixing part 100 for illustration. Furthermore, the multi-fixed-state bracket 10 can be provided with a single third fixing part 400 or multiple third fixing parts 400. This embodiment of the application uses the example of the multi-fixed-state bracket 10 providing a single third fixing part 400 for illustration.

[0051] Reference Figures 1 to 3The specific connection arrangements between the fixing parts and the connecting parts 300 of the multi-fixed-state bracket 10 are described below. In some embodiments, the first fixing part 100 may be fixedly connected to the connecting part 300. In other embodiments, the first fixing part 100 may also be movably connected to the connecting part 300. In other embodiments, the first fixing part 100 may also be detachably connected to the connecting part 300. The specific connection arrangements between the first fixing part 100 and the connecting part 300 may vary depending on the actual situation. It should be noted that the specific connection arrangements between the second fixing part 200 and the connecting part 300 may be the same as or different from the specific connection arrangements between the first fixing part 100 and the connecting part 300. The specific connection arrangements between the third fixing part 400 and the connecting part 300 may be the same as or different from the specific connection arrangements between the first fixing part 100 and the connecting part 300.

[0052] The specific connection arrangement between the multi-fixed-state bracket 10 and the external component 30 is described below. The multi-fixed-state bracket 10 has a first fixed state and a second fixed state. (Refer to...) Figure 2 and Figure 3 When the overall structure after the first fixing part 100 and the second fixing part 200 are connected has no interference with the predetermined connection structure on the external component 30, the multi-fixed state bracket 10 can be in the first fixed state, that is, the first fixing part 100 and the second fixing part 200 can be connected to each other, which can ensure the stability of the connection between the multi-fixed state bracket 10 and the external component 30. (Refer to...) Figure 1 When the space of the predetermined connection structure on the external component 30 is limited, that is, when the predetermined connection structure of the external component 30 will interfere with the structure after the first fixing part 100 and the second fixing part 200 are combined, the first fixing part 100 and the second fixing part 200 can be arranged separately from each other, which can ensure the reliability of the connection between the multi-fixed state bracket 10 and the external component 30.

[0053] Refer to 2 to Figure 4The specific configuration of the first fixing part 100 and the second fixing part 200 when they are connected to each other is described below. In some embodiments, the first fixing part 100 and the second fixing part 200 are detachably connected. It can be understood that when the first fixing part 100 and the second fixing part 200 are detachably connected, the user can switch the fixing state of the multi-fixed state bracket 10 multiple times. Specifically, the first fixing part 100 and the second fixing part 200 can be magnetically connected or snap-fitted, etc. In other embodiments, the first fixing part 100 and the second fixing part 200 are not detachably connected, that is, the first fixing part 100 and the second fixing part 200 are arranged separately when the multi-fixed state bracket 10 is manufactured. When the user switches the multi-fixed state bracket 10 to the first fixed state, that is, after the first fixing part 100 and the second fixing part 200 are connected, the state cannot be switched again. This application embodiment uses the detachable connection of the first fixing part 100 and the second fixing part 200 as an example for description.

[0054] In the technical solution of this utility model, the multi-fixed-state bracket 10 includes a first fixing part 100, a second fixing part 200, a connecting part 300, and a third fixing part 400. The third fixing part 400 is adapted to detachably connect to the electronic device 20. One end of the connecting part 300 is connected to the first fixing part 100, and the other end is connected to the second fixing part 200. The third fixing part 400 is connected to the connecting part 300. In the prior art, the two ends of the connecting part in the bracket are respectively connected to the first fixing part and the second fixing part. The first fixing part is used to connect to the vehicle body (external component), and the second fixing part is used to connect to the electronic device. Because the reliability of the connection between a single first fixing part and the vehicle body is poor, the stability of the bracket supporting the electronic device is poor. In this solution, both the first fixing part 100 and the second fixing part 200 are used to connect to the external component 30, that is, the multi-fixed-state bracket 10 can be connected to multiple areas of the external component 30, which can effectively improve the reliability of the assembly connection between the multi-fixed-state bracket 10 and the external component 30, and ensure the stability of the multi-fixed-state bracket 10 supporting the electronic device 20.

[0055] Furthermore, the multi-fixed-state bracket 10 has a first fixed state and a second fixed state. In the second fixed state, the first fixing part 100 and the second fixing part 200 are separated from each other. Compared with the existing solutions with a larger first fixing part, the first fixing part 100 and the second fixing part 200 of this solution can be set to a smaller volume, which can effectively reduce the interference between the multi-fixed-state bracket 10 and the external component 30 at specific positions, and improve the reliability of the assembly connection between the multi-fixed-state bracket 10 and the external component 30. In the first fixed state, the first fixing part 100 and the second fixing part 200 are connected to each other, which can improve the stability of the connection between the multi-fixed-state bracket 10 and the external component 30. Therefore, the multi-fixed-state bracket 10 of this solution has multiple fixed states, which can meet the fixing requirements of different positions of the external component 30, and improve the stability of the multi-fixed-state bracket 10 supporting the electronic device 20.

[0056] Reference Figures 1 to 4 The specific configuration of the first fixing part 100 is described below. In some embodiments, the first fixing part 100 is provided with a receiving cavity 110, which can be adapted to accommodate the second fixing part 200. When the multi-fixed state bracket 10 is in the first fixed state, the second fixing part 200 is at least partially accommodated within the receiving cavity 110. It can be understood that in some embodiments, the second fixing part 200 can be completely accommodated within the receiving cavity 110, that is, the second fixing part 200 can be connected to the external component 30 by means of the first fixing part 100. In other embodiments, the second fixing part 200 can also be only partially accommodated within the receiving cavity 110, that is, the portion of the second fixing part 200 exposed in the receiving cavity 110 can be connected to the external component 30 together with the first fixing part 100. In other embodiments, the second fixing part 200 is provided with a receiving cavity 110, which can be adapted to accommodate the first fixing part 100. When the multi-fixed state bracket 10 is in the first fixed state, the first fixing part 100 is at least partially accommodated within the receiving cavity 110. The specific connection between the first fixing part 100 and the second fixing part 200 can be determined according to the actual situation. In this embodiment, the second fixing part 200 is accommodated in the receiving cavity 110 of the first fixing part 100 as an example. The second fixing part 200 of this solution can be accommodated in the receiving cavity 110 of the first fixing part 100, making the overall structure of the multi-fixed state bracket 10 more compact and stable in the first fixed state, which facilitates the storage and transportation of the multi-fixed state bracket 10.

[0057] Reference Figure 4The specific structural configuration of the first fixing part 100 is described below. In some embodiments, the first fixing part 100 includes a base 120 and a cover 130, wherein the base 120 and the cover 130 can be arranged separately. The base 120 and the cover 130 together define a receiving cavity 110. The base 120 is connected to the connecting part 300, and the cover 130 is movably connected to the base 120. The cover 130 and the base 120 together enclose the receiving cavity 110 to accommodate the second fixing part 200. The cover 130 can move relative to the base 120 to open the receiving cavity 110, thereby enabling the second fixing part 200 to be placed or removed.

[0058] It should be noted that in some embodiments, the cover 130 can be hinged to the base 120, meaning the cover 130 can rotate relative to the base 120 to open the receiving cavity 110. In other embodiments, the cover 130 can be slidably connected to the base 120, meaning the cover 130 can slide relative to the base 120 to open the receiving cavity 110. In other embodiments, the cover 130 can be magnetically connected to the base 120 or snap-fitted, meaning the cover 130 can separate from the base 120 to open the receiving cavity 110. The specific movable connection between the base 120 and the cover 130 can be determined according to the actual situation. The movable connection between the cover 130 and the base 120 in this solution facilitates control of the opening and closing of the receiving cavity 110 and improves the assembly connection efficiency between the second fixing part 200 and the first fixing part 100.

[0059] The base 120 can be connected to the external component 30. Specifically, in some embodiments, the base 120 can be magnetically connected to the external component 30. In other embodiments, the base 120 can be snap-fitted or glued to the external component 30. In other embodiments, the base 120 can also clamp or thread the external component 30, etc. The base 120 of this solution can be directly connected to the external component 30, which can ensure the stability of the assembly connection between the multi-fixed state bracket 10 and the external component 30, and can eliminate the need for the removal operation of the second fixing part 200 from the receiving cavity 110 of the first fixing part 100, thus ensuring the assembly connection efficiency between the multi-fixed state bracket 10 and the external component 30.

[0060] The cover 130 can be connected to the external component 30. Specifically, in some embodiments, the cover 130 can be magnetically connected to the external component 30. In other embodiments, the cover 130 can be snap-fitted or glued to the external component 30. In other embodiments, the cover 130 can also be clamped or threaded to the external component 30, etc. The cover 130 of this solution can be directly connected to the external component 30, which can ensure the stability of the assembly connection between the multi-fixed state bracket 10 and the external component 30, and can eliminate the need for the removal operation of the second fixing part 200 from the receiving cavity 110 of the first fixing part 100, thus ensuring the assembly connection efficiency between the multi-fixed state bracket 10 and the external component 30.

[0061] Reference Figures 1 to 3 The specific configuration of the first fixing part 100 is described below. In some embodiments, the first fixing part 100 includes a fixing member 140 and a housing 150. The housing 150 can define a receiving cavity 110, and the housing 150 is configured to be able to close or open the receiving cavity 110. Specifically, the housing 150 includes a first recess 151 and a second recess 152, the structure of which can be adapted to the arrangement of the first recess 151. The first recess 151 and the second recess 152 are detachably connected, and the first recess 151 and the second recess 152 can jointly define the receiving cavity 110. It should be noted that in some embodiments, the first recess 151 can be snapped onto the second recess 152. In other embodiments, the first recess 151 can be rotatably connected to the second recess 152. In other embodiments, the first recess 151 can be slidably connected to the second recess 152. The specific connection configuration of the first recess 151 and the second recess 152 can be determined according to the actual situation.

[0062] Reference Figure 1 The fixing member 140 is connected to the connecting portion 300. In some embodiments, the fixing member 140 may be fixedly connected to the connecting portion 300. In other embodiments, the fixing member 140 may be detachably connected to the connecting portion 300, and the connection configuration between the fixing member 140 and the connecting portion 300 may be determined according to the actual situation.

[0063] In some embodiments, the fixing member 140 can be disposed in the receiving cavity 110 of the housing 150 and connected to the housing 150, that is, the fixing member 140 can be connected to the external member 30 by relying on the housing 150. This solution can effectively improve the stability of the connection between the multi-fixed state bracket 10 and the external member 30. It can be understood that when the fixing member 140 is disposed in the receiving cavity 110, the connecting part 300 passes through the housing 150. In other embodiments, the fixing member 140 can be separated from the housing 150, that is, the first fixing part 100 can be connected to the external member 30 through the fixing member 140, which can reduce the situation where interference with the predetermined connection structure of the external member 30 occurs due to the large volume of the housing 150.

[0064] The connection arrangement between the first fixing part 100 and the external component 30 is described below. The housing 150 of the first fixing part 100 can be connected to the external component 30. Specifically, in some embodiments, the housing 150 can be magnetically connected to the external component 30. In other embodiments, the housing 150 can be snap-fitted or glued to the external component 30. In other embodiments, the housing 150 can also clamp or thread-connect the external component 30, etc.

[0065] The connection between the first fixing part 100 and the external component 30 is described below. The fixing part 140 of the first fixing part 100 can be connected to the external component 30. Specifically, in some embodiments, the fixing part 140 can be magnetically connected to the external component 30. In other embodiments, the fixing part 140 can be snap-fitted or glued to the external component 30. In other embodiments, the fixing part 140 can also clamp or thread it to the external component 30, etc.

[0066] The connection configuration between the first fixing part 100 and the external component 30 and the second fixing part 200 is described below. In some embodiments, the housing 150 is connected to the external component 30, and the fixing part 140 is connected to the second fixing part 200. Specifically, in some embodiments, the housing 150 can be magnetically connected to the external component 30. In other embodiments, the housing 150 can be snap-fitted or glued to the external component 30. In other embodiments, the housing 150 can also be clamped or threadedly connected to the external component 30, etc. It is understood that the fixing part 140 can only be connected to the external component 30 after being integrated with the second fixing part 200; that is, the fixing part 140 cannot be connected to the external component 30 independently.

[0067] It should be noted that there are multiple ways to connect the fixing component 140 and the second fixing part 200. In some embodiments, the fixing component 140 can be magnetically connected to the external component 30. In other embodiments, the fixing component 140 can be snap-fitted or glued to the external component 30. In other embodiments, the fixing component 140 can also clamp or thread the external component 30, etc.

[0068] In this solution, the housing 150 of the first fixing part 100 can be connected to the external component 30, and the fixing part 140 can be connected to the second fixing part 200 and are both housed in the receiving cavity 110 of the housing 150. That is, the fixing part 140 and the second fixing part 200 can be connected to the external component 30 through the housing 150, thereby improving the stability of the connection between the multi-fixed state bracket 10 and the external component 30.

[0069] Reference Figure 2 and Figure 3 The specific configuration of the connecting portion 300 is described below. In some embodiments, the connecting portion 300 includes a flexible segment 310. In this application embodiment, the flexible segment 310 is defined as follows: the deformation generated by the flexible segment 310 can be recovered by the base of the connecting portion 300. It should be noted that in some embodiments, after the flexible segment 310 deforms, its deformed state can be maintained when no external force is applied. In other embodiments, after the flexible segment 310 deforms, it can freely recover to its original shape when no external force is applied. This application embodiment uses the example of the flexible segment 310 maintaining its original deformed state in a stress-free state after deformation for illustration.

[0070] The flexible segment 310 is capable of bending deformation. In some embodiments, the deformation produced by the flexible segment 310 can be elastic deformation. In other embodiments, the deformation produced by the flexible segment 310 can also be inelastic deformation. The flexible segment 310 can change the relative position between the first fixing part 100 and the second fixing part 200 through deformation. Therefore, when the electronic device 20 needs to be fixed in a specific position, that is, when the third fixing part 400 is fixed, the first fixing part 100 and the second fixing part 200 can freely adjust their respective connection positions on the external component 30 through the flexible segment 310. That is, this solution can avoid the situation where the connection between the first fixing part 100 and the second fixing part 200 is unreliable due to interference from the local structure of the external component 30, and effectively improve the stability of the connection between the multi-fixed state bracket 10 and the external component 30. Furthermore, because the first fixing part 100 and the second fixing part 200 can be flexibly adjusted in their connection positions on the external component 30, the third fixing part 400 can also have multiple arrangement positions. That is, the multi-fixed state bracket 10 can fix the electronic device 20 in multiple positions to meet the actual needs of different application scenarios. Moreover, when the external component 30 vibrates, the flexible section 310 can deform, effectively mitigating the vibration impact of the external component 30 on the electronic device 20, preventing the electronic device 20 from accidentally falling off or colliding with external objects, and ensuring the reliability of the multi-fixed state bracket 10 in supporting the electronic device 20.

[0071] The specific configuration of the connecting part 300 is described below. (Refer to...) Figure 2 In some embodiments, the connecting portion 300 is entirely flexible, meaning the connecting portion 300 is entirely a flexible segment 310. (Refer to...) Figure 1 and Figure 3 In some embodiments, the flexible segment 310 may be located at the joint portion of the connecting portion 300. In other embodiments, the extension length of the flexible segment 310 is less than the length of the connecting portion 300 itself, and the connecting portion 300 includes a plurality of flexible segments 310. The extension lengths of each flexible segment 310 may be the same or different. Adjacent flexible segments 310 may be arranged at intervals. The specific arrangement of the flexible segments 310 on the connecting portion 300 may vary depending on the actual situation.

[0072] Reference Figure 1 and Figure 3The specific structure of the connecting portion 300 is described below. In some embodiments, the connecting portion 300 includes a first rigid segment 320, a second rigid segment 330, and a flexible segment 310. In this application embodiment, the rigid segment is defined as follows: the rigid segment has a higher hardness than the flexible segment 310, and the rigid segment is difficult to recover to its original shape after macroscopic deformation. It should be noted that the deformation recovery mentioned herein can be automatic recovery or recovery after deformation under a reverse force, depending on the actual situation. In some embodiments, the hardness of the first rigid segment 320 can be the same as the hardness of the second rigid segment 330. In other embodiments, the hardness of the first rigid segment 320 can also be greater than or less than the hardness of the second rigid segment 330.

[0073] Reference Figure 1 and Figure 3 The connection configuration between the first rigid segment 320, the second rigid segment 330, and the flexible segment 310 is described below. In some embodiments, one end of the first rigid segment 320 may be connected to the first fixing part 100, and the other end may be connected to one end of the flexible segment 310. One end of the second rigid segment 330 may be connected to the second fixing part 200, and the other end may be connected to the end of the flexible segment 310 that is away from the first fixing part 100.

[0074] It should be noted that in some embodiments, the third fixing part 400 can connect to any one of the first rigid segment 320, the second rigid segment 330, or the flexible segment 310. In other embodiments, the third fixing part 400 can connect to any two of the first rigid segment 320, the second rigid segment 330, or the flexible segment 310. In other embodiments, the first rigid segment 320, the second rigid segment 330, and the flexible segment 310 of the connecting part 300 can be a single segment or multiple segments, and the number of each segment can be determined according to the actual situation.

[0075] The connecting part 300 of this solution includes a rigid section and a flexible section 310, which can effectively suppress large irreversible deformation of the connecting part 300 and ensure the stability of the support for the electronic device 20. It also allows the first fixing part 100 and the second fixing part 200 to flexibly adjust their fixing positions on the external component 30 to meet the actual needs of different application scenarios.

[0076] Reference Figures 1 to 3 The specific connection arrangement between the third fixing part 400 and the connecting part 300 is described below. In some embodiments, the third fixing part 400 can slide relative to the connecting part 300 along the extending direction of the connecting part 300, that is, the specific arrangement position of the third fixing part 400 on the connecting part 300 can be flexibly adjusted. Since the third fixing part 400 can connect to the electronic device 20, the electronic device 20 can be arranged in multiple positions to meet the needs of different application scenarios.

[0077] Reference Figures 1 to 3 In some embodiments, the third fixing part 400 is rotatable relative to the connecting part 300. For ease of description and understanding of the specific rotation configuration of the third fixing part 400, the extension direction of the third fixing part 400 in a straight state is defined as the first direction X, referring to... Figure 2 The orientation, the first direction X, can be left or right. The third fixing part 400 can rotate relative to the connecting part 300 along an axis parallel to the first direction X. It can be understood that the third fixing part 400 can rotate relative to the connecting part 300 in a clockwise direction or in a counterclockwise direction.

[0078] The third fixing part 400 of this solution can rotate relative to the connecting part 300, that is, the support angle of the third fixing part 400 for the electronic device 20 can be adjusted. This can not only meet various support requirements, but also reduce the situation where the third fixing part 400 supports the electronic device 20 poorly due to excessive bending of the connecting part 300, thus ensuring the reliability of the support of the multi-fixed state bracket 10 for the electronic device 20.

[0079] Reference Figures 1 to 3 In some embodiments, the multi-fixed-state bracket 10 further includes a locking part 500, which can lock the third fixing part 400 and the connecting part 300. Specifically, the locking part 500 is connected to both the third fixing part 400 and the connecting part 300. The locking part 500 has a locked state and an unlocked state. When the locking part 500 is in the locked state, it restricts the movement of the third fixing part 400 relative to the connecting part 300, thus ensuring that the third fixing part 400 is stably maintained at a specific position relative to the connecting part 300. When the locking part 500 is in the unlocked state, it releases the restriction on the third fixing part 400, allowing the third fixing part 400 to slide or rotate normally relative to the connecting part 300, thereby changing its arrangement position. The locking part 500 of this solution can realize the locking and unlocking operations of the third fixing part 400 and the connecting part 300, which can improve the stability of the multi-fixed state bracket 10 supporting the electronic device 20 and facilitate the adjustment of the support position of the electronic device 20.

[0080] Reference Figures 1 to 3In some embodiments, the locking part 500 includes a lock head 510, a lock seat 520, and a lock body 530. The lock body 530 can be connected to the third fixing part 400. The lock head 510 and the lock seat 520 can be partially disposed inside the lock body 530. A portion of the connecting part 300 can be disposed between the lock head 510 and the lock seat 520. The lock head 510 can be close to the lock seat 520 to clamp the connecting part 300 for locking, and the lock head 510 can be moved away from the lock seat 520 to release the connecting part 300. In other embodiments, the locking part 500 includes a screw and a threaded sleeve, the threaded sleeve being connected to the third fixing part 400. The connecting part 300 can be arranged with the threaded sleeve passing through it, and locking and releasing the connecting part 300 can be achieved by turning the screw. In other embodiments, the locking part 500 can be a fixing clip, which can be connected to the third fixing part 400. The two clamping ends of the fixing clip can be close to each other to clamp the connecting part 300 to achieve locking, and the two clamping ends of the fixing clip can be far apart to achieve release of the locking part 500. The specific configuration of the locking part 500 can be determined according to the actual situation.

[0081] It should be noted that if any directional indication (such as up, down, left, right, front, back, etc.) is involved in the embodiments of this utility model, such directional indication is only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indication will also change accordingly. When a directional reference is introduced in a specific embodiment, unless the direction is specifically limited to unidirectional, the direction can be unidirectional or bidirectional (two parallel and opposite directions). Whether it is unidirectional or bidirectional depends on what those skilled in the art can achieve. When the directional reference is bidirectional, it should be considered that two parallel and different embodiments have been introduced simultaneously.

[0082] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or," "and / or," or "and / or" throughout the text implies three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where A and B are simultaneously satisfied. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0083] The above are merely preferred embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural transformations made based on the inventive concept of this utility model and the contents of this utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this utility model.

Claims

1. A multi-fixed-state bracket, suitable for detachable connection of electronic devices, characterized in that, The multi-fixed-state support includes: The first fixing part is adapted to be connected to an external component; The second fixing part is adapted to be connected to the external component; The connecting part is connected at one end to the first fixing part and at the other end to the second fixing part; A third fixing part is connected to the connecting part, and the third fixing part is adapted to be detachably connected to the electronic device; The multi-fixed-state bracket has a first fixed state and a second fixed state; in the first fixed state, the first fixed part and the second fixed part are connected to each other; in the second fixed state, the first fixed part and the second fixed part are separated from each other.

2. The multi-fixed-state support as described in claim 1, characterized in that, The first fixing part is provided with a receiving cavity, and in the first fixing state, the second fixing part is at least partially received in the receiving cavity.

3. The multi-fixed-state support as described in claim 2, characterized in that, The first fixing part includes a base and a cover. The base and the cover together define the receiving cavity. The base is connected to the connecting part, and the cover is movably connected to the base. The cover is configured to be able to enclose the receiving cavity together with the base, or to move relative to the base to open the receiving cavity.

4. The multi-fixed-state support as described in claim 3, characterized in that, The base is configured to be connected to the external component; and / or the cover is configured to be connected to the external component.

5. The multi-fixed-state support as described in claim 2, characterized in that, The first fixing part includes a fixing component and a box body. The box body defines the receiving cavity and is configured to close or open the receiving cavity. The fixing component is connected to the connecting part. The fixing component can be disposed in the receiving cavity and connected to the box body, or the fixing component can be separated from the box body. When the fixing component is disposed in the receiving cavity, the connecting part passes through the box body.

6. The multi-fixed-state support as described in claim 5, characterized in that, The housing is configured to be connected to the external component; and / or the fixing component is configured to be connected to the external component.

7. The multi-fixed-state support as described in claim 5, characterized in that, The housing is configured to be connected to the external component, and the fixing component is configured to be connected to the second fixing part.

8. The multi-fixed-state support as described in claim 5, characterized in that, The connecting portion includes a flexible segment configured to undergo bending deformation to change the relative position of the first fixing portion and the second fixing portion.

9. The multi-fixed-state support as described in claim 1, characterized in that, The third fixing part is configured to slide relative to the connecting part along the extension direction of the connecting part.

10. The multi-fixed-state support as described in claim 9, characterized in that, The multi-fixed-state bracket further includes a locking part, which is connected to the third fixing part and the connecting part respectively. The locking part has a locked state and an unlocked state. When the locking part is in the locked state, it restricts the movement of the third fixing part relative to the connecting part. When the locking part is in the unlocked state, it releases the restriction on the third fixing part.

Citation Information

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