Equipment support and vehicle
By integrating wireless charging components and a power plug into the device bracket, the problem of limited battery life for in-vehicle devices is solved, enabling a convenient charging and operation experience.
Patent Information
- Application Number
- CN202423268191.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-27
AI Technical Summary
When electronic devices are used in automotive settings with device brackets, the limited battery life leads to a reduced user experience.
Design a device bracket that includes a bracket body, a wireless charging component, and a power plug. Wireless charging and electrical connection are achieved through a connecting circuit component, avoiding structural interference and space occupation caused by wire connections.
The charging structure has been simplified, the convenience of power access has been improved, and the equipment is easy to operate and use while the vehicle is in motion.
Smart Images

Figure CN223631479U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of support, in particular to a device support and a vehicle. BACKGROUND
[0002] The device support can support and fix electronic devices such as mobile phones and tablets, change the use posture of the electronic devices, and improve the use convenience of the electronic devices in various scenarios.
[0003] Taking a vehicle-mounted scenario as an example, the device support assembled on the vehicle can fix the electronic devices, so that the electronic devices can be conveniently operated and used during the driving of the vehicle. However, the use of the electronic devices in cooperation with the support is limited by the endurance time, and the user experience is reduced. INNOVATION CONTENT
[0004] The present disclosure provides a device support and a vehicle to solve the related technical problems.
[0005] According to a first aspect of the present disclosure, a device support is provided, comprising a support body, a wireless charging assembly, a power taking plug, and a connection line assembly.
[0006] The support body comprises a device cooperation part configured to cooperate with an external device to provide support for the external device.
[0007] The wireless charging assembly is assembled on the device cooperation part; the power taking plug is assembled on the support body; and the power taking plug is configured to be electrically connected with an external power source.
[0008] The connection line assembly is assembled on the support body and is electrically connected with the wireless charging assembly and the power taking plug, respectively.
[0009] Optionally, the device cooperation part comprises a first housing and a mounting substrate arranged in the first housing.
[0010] The wireless charging assembly comprises a charging coil and a first circuit board in conductive connection with the charging coil, the charging coil is assembled on a first side of the mounting substrate facing a device contact surface of the first housing, and the first circuit board is assembled on a second side opposite to the first side.
[0011] Optionally, the wireless charging assembly further comprises a shielding cover assembled on the second side, the first circuit board is provided with electronic components, and the shielding cover covers the electronic components.
[0012] Optionally, the device support further comprises a magnetic attraction assembly assembled on the first side.
[0013] Optionally, the magnetic attraction assembly is arranged at the periphery of the charging coil along the circumferential direction of the charging coil.
[0014] Optionally, the connecting line assembly comprises a first connecting component; the first connecting component comprises a first wire, and the device matching part comprises a mounting base and a press-in wire plate assembled to the mounting base.
[0015] The first wire is conductively connected to the first circuit board, and the end of the first wire and the first circuit board connected to each other abuts against the press-in wire plate and the mounting base.
[0016] Optionally, the support body further comprises a base, and the power taking plug is assembled to the base; the device matching part and the base are rotationally connected.
[0017] Optionally, the support body further comprises a ball head base and a connecting ball head; the ball head base is fixedly connected to the device matching part, the connecting ball head is fixedly connected to the base, and the connecting ball head is rotationally connected to the ball head base.
[0018] Optionally, the base comprises a support part; the support part comprises a second housing and a support frame arranged in the second housing; the connecting line assembly further comprises a second connecting component and a second circuit board assembled to the support frame, and the second connecting component is conductively connected to the second circuit board and the power taking plug respectively.
[0019] Optionally, the base comprises a rotating part; the rotating part comprises a third housing and a base rotationally connected to the third housing, and the power taking plug is fixedly connected to the base; the third housing is fixedly connected to the support frame.
[0020] Optionally, the second connecting component comprises a second wire connecting the power taking plug and the second circuit board.
[0021] Optionally, the power taking plug is provided with a fixed assembly part for assembly and fixation with an external structure.
[0022] Optionally, the fixed assembly part comprises a threaded structure arranged on the power taking plug.
[0023] According to a second aspect of the present disclosure, a vehicle is provided, which comprises any of the device supports according to the first aspect.
[0024] The technical solutions provided by the present disclosure can at least achieve the following beneficial effects:
[0025] The wireless charging assembly of the present disclosure is arranged at the device fitting part of the support main body, and the wireless charging assembly and the power taking plug are conductively connected through the connecting line assembly, so that the device support has the functions of supporting and fixing and charging the device. The power taking plug can be connected with the external power supply when the device support is assembled with the external structure, avoiding the structural interference and space occupation caused by connecting the power supply through the wire, and helping to simplify the charging structure arrangement of the device support and improve the power taking convenience.
[0026] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present specification. BRIEF DESCRIPTION OF DRAWINGS
[0027] The accompanying drawings, which are incorporated into and form part of the specification, illustrate embodiments consistent with the present specification and serve to explain the principles of the present specification together with the specification.
[0028] Figure 1 is a perspective structural schematic view of a device support in an exemplary embodiment of the present disclosure;
[0029] Figure 2 is an exploded structural schematic view of a device support in an exemplary embodiment of the present disclosure;
[0030] Figure 3 is a cross-sectional structural schematic view of a device support in an exemplary embodiment of the present disclosure;
[0031] Figure 4 is a partial exploded structural schematic view of a device support in an exemplary embodiment of the present disclosure;
[0032] Figure 5 is a partial exploded structural schematic view of a device support in an exemplary embodiment of the present disclosure;
[0033] Figure 6 is a perspective structural schematic view of a device support in another exemplary embodiment of the present disclosure;
[0034] Figure 7 is a partial structural schematic view of a device support in an exemplary embodiment of the present disclosure;
[0035] Figure 8 is a partial structural schematic view of a device support in an exemplary embodiment of the present disclosure, when the support clamping jaw is at one target position;
[0036] Figure 9 is a partial structural schematic view of a device support in an exemplary embodiment of the present disclosure, when the support clamping jaw is at another target position;
[0037] Figure 10is a partial perspective view of a device support in an exemplary embodiment of the present disclosure;
[0038] Figure 11 is a perspective view of a ball head seat of a device support in an exemplary embodiment of the present disclosure;
[0039] Figure 12 is a structural view of a connecting ball head of a device support in an exemplary embodiment of the present disclosure;
[0040] Figure 13 is an exploded structural view of a device support in another exemplary embodiment of the present disclosure;
[0041] Figure 14 is a perspective view of a first rotating member and an intermediate rotating member in an initial position in an exemplary embodiment of the present disclosure;
[0042] Figure 15 is a perspective view of a first rotating member and an intermediate rotating member in a limit position in a clockwise direction in an exemplary embodiment of the present disclosure;
[0043] Figure 16 is a partial structural view of a vehicle in an exemplary embodiment of the present disclosure.
[0044] Reference Signs:
[0045] Device support 1;
[0046] Support body 11; device fitting portion 111; mounting base plate 1111; first housing 1112; shield cover 1113; wire pressing plate 1114; fixed assembly portion 112; base 113; support portion 1131; second housing 1131a, support frame 1131b; rotating portion 1132; base 1132a; third housing 1132b; first rotating member 1132c; intermediate rotating member 1132d; first arc-shaped slot 1132e; protruding structure 1132f; structural member 1132g;
[0047] Connecting line assembly 12; first wire 121; first circuit board 122; second circuit board 123; second wire 124; power taking plug 13;
[0048] Ball head assembly 14; ball head seat 141; notch 1412; limiting space 1413; connecting ball head 142; outer surface 1421; second limiting structure 1422; magnetic attraction assembly 15; locking member 143; boss structure 1431; damping member 144;
[0049] Supporting jaw 161; first jaw body 1611; sliding part 1612; fourth limiting structure 1612a; first sliding connector 1613; second sliding connector 1614; first jaw 162; second jaw body 1621; first transmission rack 1622; second jaw 163; third jaw body 1631; second transmission rack 1632; gear structure 164;
[0050] Key assembly 17; key body 171; third limiting structure 1711; reset member 172
[0051] Vehicle 2; instrument panel platform 21; power supply socket 22. DETAILED DESCRIPTION
[0052] The exemplary embodiments will be described in detail herein with reference to the attached drawings. The description of the exemplary embodiments is intended to apply to various alternative embodiments as well. The following description is not limited to the exemplary embodiments, but rather, is applicable to any apparatus and method within the scope of the present disclosure. Although specific terms are used in the following description for the sake of clarity, these terms are not intended to limit the technology described herein, but rather the terms include one or more of any appropriate objects that include the features of the specifically recited object.
[0053] The terminology used in the present disclosure is for the purpose of describing particular embodiments only and is not intended to be limiting of the present disclosure. Unless otherwise defined, technical terms or scientific terms used in the present disclosure are intended to have the meanings commonly understood by one of ordinary skill in the art to which this disclosure pertains. The terms "first", "second", and similar terms are used herein to describe various elements, but the elements should not be construed as being limited to the order indicated. Also, the terms "one" and "another" are used herein to describe various elements, but the terms should not be construed as being limited to only one element. The terms "plurality" or "a plurality" are used herein to describe two or more elements, unless otherwise indicated. The terms "front", "back", "up", "down", and / or similar terms are used herein for the purpose of explanation only and not of limitation, unless otherwise indicated. The terms "include" and / or "comprise", and / or similar terms are used herein and are meant to be construed in a non-limiting manner. The terms "connected" and / or "coupled" are used herein and are meant to be construed in a non-limiting manner.
[0054] The terminology used in this description is for the purpose of describing particular embodiments only and is not intended to be limiting of the disclosure. As used in this description and the appended claims, the singular forms "a," "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will also be understood that the term "and / or" as used herein refers to and encompasses any and all possible combinations of one or more of the associated listed items.
[0055] The device support can support and fix electronic devices such as mobile phones, tablets, etc., change the use posture of the electronic devices, and improve the use convenience of the electronic devices in various scenarios. For example, in a vehicle-mounted scenario, the device support is assembled on a vehicle to fix the electronic devices, so that the electronic devices can be conveniently operated and used during vehicle driving. However, the use of the electronic devices in cooperation with the support is limited by the endurance time, and the user experience is reduced.
[0056] The present disclosure provides a device support. Figure 1 is a perspective structural schematic diagram of a device support in an exemplary embodiment of the present disclosure, Figure 2 is an exploded structural schematic diagram of a device support in an exemplary embodiment of the present disclosure, Figure 3 is a cross-sectional structural schematic diagram of a device support in an exemplary embodiment of the present disclosure, as Figures 1-3 As shown in the figure, the device support 1 includes a support body 11, a wireless charging assembly, a power taking plug 13, and a connection line assembly 12. The support body 11 includes a device cooperation part 111 for cooperating with an external device to provide support for the external device. The wireless charging assembly is assembled on the device cooperation part 111, the power taking plug 13 is assembled on the support body 11, and the power taking plug 13 is used for electrical connection with an external power supply. The connection line assembly 12 is assembled on the support body 11, and the connection line assembly 12 is electrically connected with the wireless charging assembly and the power taking plug 13, respectively.
[0057] In the above embodiment, the wireless charging assembly is arranged on the device cooperation part 111 of the support body 11, and the wireless charging assembly and the power taking plug 13 are conductively connected through the connection line assembly 12, so that the device support 1 has the functions of supporting and fixing and charging the device. The power taking plug 13 can be connected with the external power supply through the assembly of the device support 1 and the external structure, avoiding the structural interference and space occupation caused by the connection of the power supply through the wire, and helping to simplify the charging structure arrangement of the device support 1 and improve the power taking convenience.
[0058] It should be noted that the use scenarios of the device support 1 of the present disclosure can be vehicle-mounted, home, office, etc., and the present disclosure does not limit this.
[0059] In some embodiments, Figure 4is a partially exploded structural schematic diagram of a device support 1 in an example embodiment of the present disclosure, as shown in Figure 3 , As shown in Figure 4 , the device matching portion 111 includes a first housing 1112 and a mounting substrate 1111 disposed in the first housing 1112. The wireless charging assembly includes a charging coil and a first circuit board 122 conductively connected with the charging coil, the charging coil is assembled on the first side of the mounting substrate 1111 facing the device contact surface of the first housing 1112, and the first circuit board 122 is assembled on the second side opposite to the first side. Assembling the charging coil and the first circuit board 122 on opposite sides of the mounting substrate 1111 not only optimizes the structural layout of the device matching portion 111, but also facilitates the conductive connection convenience of the first circuit board 122 with the connection line assembly 12. The first circuit board 122 can be used for wireless charging control.
[0060] The material of the above-mentioned mounting substrate 1111 can be metal to improve the overall structural strength of the device matching portion 111. For example, the material of the mounting substrate 1111 is iron.
[0061] The material of the above-mentioned first housing 1112 can be metal, plastic, etc., and the present disclosure does not limit this. The above-mentioned first housing 1112 can enclose a circular structure, a rectangular structure or other shapes, and the present disclosure does not limit this. The first housing 1112 can include a lower shell and an upper shell, the lower shell enclosing a first space accommodating the charging coil and the first circuit board 122, and the upper shell being assembled with the lower opening of the lower shell to enclose the above-mentioned first space.
[0062] Among them, Figure 5 is a partially exploded structural schematic diagram of a device support 1 in an example embodiment of the present disclosure, as shown in Figure 3 , As shown in Figure 5 , the wireless charging assembly can further include a shielding cover 1113 assembled on the second side, the first circuit board 122 is provided with electronic components, and the shielding cover 1113 covers the electronic components to avoid mutual interference of the electronic components with external devices and other electronic components of the device support 1.
[0063] In some embodiments, as shown in Figure 3 , As shown in Figure 4 , the device support 1 can further include a magnetic attraction assembly 15, and the magnetic attraction assembly 15 is assembled on the first side. By magnetically fixing the external device, the device can be placed conveniently, and the user experience can be improved. The magnetic attraction assembly 15 can improve the alignment accuracy of the external device and the device matching portion 111, and improve the charging efficiency of the charging coil on the external device.
[0064] The magnetic assembly 15 can be arranged at the periphery of the charging coil in the circumferential direction of the charging coil to form a positioning assembly for the external device in the circumferential direction, thereby improving the positioning accuracy of the external device and the device cooperation part 111. The magnetic assembly 15 can be a plurality of block-shaped magnets distributed in the circumferential direction of the charging coil to reduce the cost and facilitate assembly.
[0065] In some other embodiments, Figure 6 is a schematic diagram of a perspective structure of a device support 1 according to another exemplary embodiment of the present disclosure, Figure 7 is a schematic diagram of a partial structure of a device support 1 according to an exemplary embodiment of the present disclosure, Figure 8 is a schematic diagram of a partial structure of a device support 1 according to an exemplary embodiment of the present disclosure, when a support jaw 161 is at a target position, Figure 9 is a schematic diagram of a partial structure of a device support 1 according to an exemplary embodiment of the present disclosure, when a support jaw 161 is at another target position, as Figures 6-9 shown, the device support 1 includes a support jaw 161 and a key assembly 17, the device cooperation part 111 is used to provide structural support for the external device, so that the external device is kept in the expected posture, the support jaw 161 can be movably assembled to the device cooperation part 111 and can be used to support the external device, and the relative position of the external device and the device cooperation part 111 can be adjusted by adjusting the position of the support jaw 161 in the activity direction. Among them, as Figures 6-9 shown, the dashed arrow can represent the activity direction, which can be the longitudinal direction of the support plane of the device cooperation part 111, can also be the direction of gravity, and can also be other directions determined according to the support requirements of the support jaw 161.
[0066] The support jaw 161 is movably assembled to the device cooperation part 111 in the activity direction. The key assembly 17 includes a key body and a reset member 172, the key body is assembled to the device cooperation part 111, and the key body includes a pressing portion protruding from the device cooperation part 111. The reset member 172 is assembled to the device cooperation part 111 and elastically abuts against the key body to switch the key body between the pressed state and the reset state. The key body is provided with a third limiting structure 1711, which is separated from the support jaw 161 in the pressed state to switch the target position of the support jaw 161. The third limiting structure 1711 is in limiting cooperation with the support jaw 161 in the reset state to limit the support jaw 161 in any target position. The support jaw 161 can stay in any target position by limiting cooperation between the third limiting structure 1711 and the support jaw 161 in the initial state of the key body, and can switch between target positions by separating from the limiting relationship formed by the third limiting structure 1711 when the key body is in the pressed state. Therefore, different external devices are provided with a support position matched with the device support 1 by using a simple structure.
[0067] Further, Figure 8 The dotted line can represent the first central axis, and the third limiting structure 1711 can be arranged on both sides of the first central axis parallel to the movement direction of the key body. The first central axis parallel to the movement direction of the key body is provided with the third limiting structure 1711 on both sides, respectively, which improves the movement balance and limiting reliability of the supporting clamping jaw 161.
[0068] In some embodiments, the supporting clamping jaw 161 includes a first clamping jaw body 1611 and a sliding component 1612. The first clamping jaw body 1611 is located outside the device fitting part 111, and the sliding component 1612 is located inside the device fitting part 111. The third limiting structure 1711 is in limiting cooperation with the sliding component 1612 in the reset state. The device fitting part 111 is provided with a first sliding assembly hole communicating the inside and the outside. The sliding component 1612 is connected with the first clamping jaw body 1611 through a first sliding connecting piece 1613 penetrating the first sliding assembly hole. The first sliding connecting piece 1613 can slide relative to the first sliding assembly hole and drive the first clamping jaw body 1611 and the sliding component 1612 to move relative to the device fitting part 111. Through the above first clamping jaw body 1611 and sliding component connection scheme, not only the movable connection of the supporting clamping jaw 161 and the device fitting part 111 is realized, but also the exposure of the sliding component 1612 is avoided, which affects the limiting cooperation of the sliding component 1612 and the first limiting component, and helps to improve the overall aesthetics of the device support 1.
[0069] Among them, Figure 7 The dotted line can represent the second central axis, and the device fitting part 111 can be provided with a first sliding assembly hole on both sides parallel to the movement direction of the second central axis. The sliding component 1612 and the first clamping jaw body 1611 are connected through a pair of first sliding connecting pieces 1613 penetrating the first sliding assembly hole respectively, so as to improve the cooperation stability and reliability of the first sliding connecting piece 1613 and the first sliding assembly hole.
[0070] Further, in the movement direction, the device fitting part 111 can also be provided with a second sliding assembly hole located on one side of the first sliding assembly hole. The first clamping jaw body 1611 is connected with the device fitting part 111 through a second sliding connecting piece 1614 penetrating the second sliding assembly hole, so as to further form a sliding cooperation relationship between the device fitting part 111 and the supporting clamping jaw 161 in the movement direction, improve the balance stability of the supporting clamping jaw 161 in the movement process, and further ensure the limiting reliability of the pair of third limiting structures 1711 and the supporting clamping jaw 161 in the target position.
[0071] Similarly, the equipment matching part 111 can be provided with a second sliding assembly hole on both sides parallel to the second central axis in the movement direction, and the first clamping jaw body 1611 is slidably connected with the equipment matching part 111 through a second sliding connecting piece 1614 penetrating the second sliding assembly hole, so as to improve the cooperation stability and reliability of the second sliding connecting piece 1614 and the second sliding assembly hole.
[0072] In the above, the first sliding connecting piece 1613 and the second sliding connecting piece 1614 can be screws, studs, etc., and the present disclosure does not limit this.
[0073] In some embodiments, the key body includes a third limiting structure 1711 and an avoidance hole position located on one side of the third limiting structure 1711 in the reset movement direction of the key body. The support clamping jaw 161 includes a fourth limiting structure 1612a, which is arranged in position with the avoidance hole position in the movement direction when the key body is in the pressed state, so as to switch the support clamping jaw 161 between the target positions. When the key body is in the reset state, the third limiting structure 1711 and the fourth limiting structure 1612a are in position and abut in the movement direction. By arranging the third limiting structure 1711 and the adjacent avoidance hole position on the key body, the third limiting structure 1711 can be aligned with the fourth limiting structure 1612a or the avoidance hole position by pressing or resetting the key body, which is simple in structure and easy to operate.
[0074] In the above, the support clamping jaw 161 can include a sliding plane arranged towards the key body, and the fourth limiting structure 1612a includes protruding ribs arranged at both ends of the sliding plane, which not only forms a movement guide through the cooperation of the protruding ribs and the avoidance hole position to improve the movement balance, but also improves the stability of the two protruding ribs when they are respectively limited and cooperated with the support clamping jaw 161. For example, when the support clamping jaw 161 includes a first clamping jaw body 1611 located outside the equipment matching part 111 and a sliding part 1612 located inside the equipment matching part 111, the fourth limiting structure 1612a can be protruding ribs arranged at both ends of the sliding plane of the sliding part 1612 towards the key body.
[0075] The key body includes a first side wall and a second side wall arranged opposite in the movement direction, and the third limiting structure 1711 includes a part of the first side wall and / or a part of the second side wall in which the reset state of the key body and the fourth limiting structure 1612a are projected to coincide in the movement direction, so as to simplify the structure arrangement of the key body.
[0076] It should be noted that the two third limiting structures 1711 can be symmetrically arranged relative to the key body along the second middle axis parallel to the movement direction. Alternatively, the two third limiting structures 1711 can be asymmetric. Alternatively, the two third limiting structures 1711 can be connected at the second middle axis to form a whole. Correspondingly, the two fourth limiting structures 1612a can be symmetrically arranged relative to the support clamping jaw 161 along the third middle axis parallel to the movement direction. Alternatively, the two fourth limiting structures 1612a can be asymmetric. Alternatively, the two fourth limiting structures 1612a can be connected at the third middle axis to form a whole.
[0077] In the above embodiment, the reset member 172 can include at least one spring, the key body is provided with a positioning column, the spring is sleeved on the positioning column, and is in abutment with the key body and the device cooperation part 111 respectively. The spring is assembled on the key body through the positioning column, which can simplify the structure of the key body and improve the reset reliability. For example, two springs can be assembled on the key body along the movement direction of the key body to improve the reset reliability.
[0078] In some embodiments, the device support 1 further includes a first clamping jaw 162 and a second clamping jaw 163, and the first clamping jaw 162 and / or the second clamping jaw 163 are movably assembled on the device cooperation part 111. The second clamping jaw body 1621 of the first clamping jaw 162 and the third clamping jaw body 1631 of the second clamping jaw 163 are located on opposite sides of the device cooperation part 111, and when the external device is assembled on the device support 1, the first clamping jaw 162, the second clamping jaw 163 and the support clamping jaw 161 are in abutment and limiting with different sides of the external device respectively, so as to improve the assembly reliability of the external device.
[0079] In the above embodiment, the first clamping jaw 162 and / or the second clamping jaw 163 can be compatible with external devices of different sizes through movement relative to the device cooperation part 111, thereby improving the assembly reliability of the external device.
[0080] Further, when the first clamping jaw 162 and the second clamping jaw 163 are movably assembled on the device cooperation part 111, reset structures can be provided for the first clamping jaw 162 and the second clamping jaw 163 respectively, so that the first clamping jaw 162 and the second clamping jaw 163 can be reset to the initial position when the external force disappears, thereby facilitating the abutment of the reset structures against the external device. The above reset structures can be springs connecting the first clamping jaw 162 and the device cooperation part 111, and springs connecting the second clamping jaw 163 and the device cooperation part 111.
[0081] The first clamping jaw 162 can include a first transmission rack 1622 connected with a second clamping jaw body 1621, the second clamping jaw body 1621 includes a second transmission rack 1632 connected with a third clamping jaw body 1631, and the first transmission rack 1622 and the second transmission rack 1632 are drivingly connected through a gear structure 164 to move synchronously. Through the driving cooperation of the first transmission rack 1622, the second transmission rack 1632 and the gear structure 164, the first clamping jaw 162 and the second clamping jaw 163 can be driven to move synchronously under a force, facilitating the clamping operation on the external device.
[0082] For example, when assembling the external device, the first clamping jaw 162 can be pulled first, so that the first clamping jaw 162 and the second clamping jaw 163 move outward synchronously to expand the transverse distance between them, facilitating the external device to be loaded into the space between them. After the external device is loaded between the first clamping jaw 162 and the second clamping jaw 163, the part of the key body protruding from the device fitting portion 111 can be pressed to make the third limiting structure 1711 and the avoiding hole position, until the supporting clamping jaw 161 is pulled to the target position matched with the size of the external device, and then the key body is released, so that the third limiting structure 1711 and the fourth limiting structure 1612a form a limiting relationship in the active direction to support the external device.
[0083] In some embodiments, the device support 1 can include a magnetic attraction assembly 15, a supporting clamping jaw 161 and a key assembly 17, the magnetic attraction assembly 15 and the supporting clamping jaw 161 can cooperate to enable the external device to be assembled into the device support 1 to obtain magnetic attraction fixation and structural support, which helps to improve the assembly reliability of the external device. In this embodiment, the device support 1 can further include the first clamping jaw 162 and the second clamping jaw 163 described above.
[0084] In some embodiments, the connection line assembly 12 includes a first connection component, which can be a first lead wire 121, and the device fitting portion 111 includes a mounting base plate 1111 and a press-in plate 1114 assembled on the mounting base plate 1111. The first lead wire 121 is conductively connected with the first circuit board 122, and the end of the first lead wire 121 and the first circuit board 122 connected is abutted between the press-in plate 1114 and the mounting base plate 1111. By abutting the first lead wire 121 on the mounting base plate 1111 through the press-in plate 1114, the conductive connection reliability of the first lead wire 121 is improved, and the first lead wire 121 is prevented from being pulled off due to the relative movement between different parts of the support body 11.
[0085] In other embodiments, the first connection component can also be an electrical connector, a flexible circuit board, etc., and the present disclosure does not limit this.
[0086] It should be noted that the first connecting component can be exposed to the bracket body 11 to realize the connection of the first circuit board 122 and other parts of the connecting line assembly 12, or the first connecting component can be arranged inside the bracket body 11 to realize the connection of the first circuit board 122 and other parts of the connecting line assembly 12, and the present disclosure does not limit this.
[0087] In some embodiments, the bracket body 11 further comprises a base 113, the power taking plug 13 is assembled to the base 113, and the device matching part 111 is rotationally connected to the base 113. The rotational connection between the device matching part 111 and the base 113 can make the device matching part 111 rotate relative to the base 113 when subjected to force, and when the external device is assembled to the device matching part 111, the external device can be driven to adjust to a suitable posture for use by the user, thereby improving the flexibility of the device matching part 111.
[0088] wherein, Figure 10 is a partial perspective structural schematic diagram of a device bracket 1 in an example embodiment of the present disclosure, Figure 11 is a perspective structural schematic diagram of a ball head seat 141 of a device bracket 1 in an example embodiment of the present disclosure, Figure 12 is a structural schematic diagram of a connecting ball head 142 of a device bracket 1 in an example embodiment of the present disclosure, as Figure 3 、 Figures 10-12 indicated, the bracket body 11 can further comprise a ball head seat 141 and a connecting ball head 142, the ball head seat 141 is fixedly connected to the device matching part 111, the connecting ball head 142 is fixedly connected to the base 113, and the connecting ball head 142 is rotationally connected to the ball head seat 141. Through the rotational cooperation of the connecting ball head 142 and the ball head seat 141, the omnidirectional rotation effect can be obtained, thereby improving the rotational flexibility of the device matching part 111 relative to the base 113.
[0089] In some embodiments, the connecting ball head 142 is rotationally assembled to the ball head seat 141, one of the connecting ball head 142 and the ball head seat 141 is provided with a first limiting structure surrounding a limiting space 1413, and the other of the connecting ball head 142 and the ball head seat 141 is provided with a second limiting structure 1422. The second limiting structure 1422 is movably cooperated with the first limiting structure, so that the second limiting structure 1422 moves in the limiting space 1413 with the relative rotation of the connecting ball head 142 and the ball head seat 141.
[0090] In the above embodiment, the connecting ball 142 of the ball head assembly 14 is rotatably assembled with the ball head seat 141, one of the connecting ball 142 and the ball head seat 141 is provided with a first limiting structure surrounding a limiting space 1413, and the other is provided with a second limiting structure 1422, which is movably matched with the first limiting structure. The second limiting structure 1422 moves in the limiting space 1413 with the relative rotation of the connecting ball 142 and the ball head seat 141, which does not affect the fixed-point rotation between the connecting ball 142 and the ball head seat 141, and avoids the interference of the unlimited rotation of the connecting ball 142 in the ball head seat 141 to the external wires and structures, thereby improving the reliability of the support.
[0091] In some embodiments, the side wall of the ball head seat 141 surrounds a rotating space for accommodating the connecting ball 142, the first limiting structure includes at least one notch 1412 provided on the side wall, and the second limiting structure 1422 includes at least one protrusion provided on the surface of the connecting ball 142, which moves in the limiting space 1413 surrounded by the notch 1412. The limiting space 1413 is formed by the notch 1412, and the protrusion provided on the surface of the connecting ball 142 moves in the notch 1412, which helps to simplify the structure of the ball head assembly 14 and reduce the improvement cost. For example, the above-mentioned notch 1412 can form an opening at the edge of the side wall, and the left and right rotation angle of the connecting ball 142 can be limited to less than 50° through the above-mentioned notch 1412, and the pitch angle is not limited.
[0092] In some other embodiments, the side wall of the ball head seat 141 surrounds a rotating space for accommodating the connecting ball 142, the first limiting structure includes a recess provided on the outer surface 1421 of the connecting ball 142, and the second limiting structure 1422 includes a protrusion provided on the inner surface of the side wall.
[0093] In some other embodiments, the first limiting structure includes a recess provided on the inner surface of the side wall, and the second limiting structure includes a protrusion provided on the outer surface 1421 of the connecting ball 142.
[0094] The above-mentioned protrusion moves in the limiting space 1413 surrounded by the recess. The movement of the protrusion in the limiting space 1413 formed by the recess can simplify the structure and improve the overall aesthetics of the ball head assembly 14.
[0095] In some embodiments, the outer surface 1421 of the connecting ball 142 can be provided with both protrusions and recesses, and the inner surface of the side wall of the ball head seat 141 can be provided with both protrusions and recesses. The protrusion located on the outer surface 1421 of the connecting ball 142 cooperates with the limiting space 1413 formed by the recess located on the inner surface of the side wall of the ball head seat 141. The protrusion located on the inner surface of the side wall of the ball head seat 141 cooperates with the limiting space 1413 formed by the recess located on the outer surface 1421 of the connecting ball 142.
[0096] In the above embodiments, a pair of first limiting structures can be arranged on one of the connecting ball head 142 and the ball head seat 141, and a pair of second limiting structures 1422 can be arranged on the other one, so as to improve the limiting cooperation reliability of the connecting ball head 142 and the ball head seat 141. For example, a pair of notches 1412 can be arranged on opposite sides of the ball head seat 141, and a pair of protrusions can be arranged on the outer surface 1421 of the connecting ball head 142.
[0097] It should be noted that the protrusions can be circular, rectangular or irregular in shape. The limiting space 1413 formed by the first limiting structure can be circular, rectangular or irregular in shape. The shapes and sizes of the limiting space 1413 and the second limiting structure 1422 can determine the relative rotation range of the connecting ball head 142 and the ball head seat 141.
[0098] In some embodiments, the ball head assembly 14 further comprises a locking member 143, which is sleeved on the outside of the ball head seat 141 and is in locking cooperation with the ball head seat 141, so as to improve the rotation cooperation reliability and structural reliability of the ball head seat 141 and the connecting ball head 142.
[0099] In some embodiments, the ball head seat 141 is externally provided with external threads, and the locking member 143 is internally provided with internal threads facing the inner wall of the ball head seat 141, and the external threads and the internal threads are in fastening cooperation, so as to improve the fastening convenience.
[0100] In some embodiments, the ball head seat 141 comprises a side wall and a top structure, the top structure is located at one end of the side wall, the side wall encloses a rotation space for accommodating the connecting ball head 142, and the top structure is fixedly connected with an external structure to realize the installation of the ball head seat 141.
[0101] In some embodiments, the outer wall of the locking member 143 opposite to the connecting ball head 142 is provided with at least one boss structure 1431, so as to facilitate the force exertion when rotating and tightening the locking member 143, and improve the tightening operation experience. The side surface of the boss structure 1431 connected with the outer wall of the locking member 143 can be an inclined surface or an arc surface, so as to further improve the tightening operation experience and overall aesthetics.
[0102] In some embodiments, the ball head assembly 14 further comprises a damping member 144, which is fixedly assembled in the rotation space enclosed by the inner surface of the ball head seat 141, at least a part of the connecting ball head 142 is assembled in the rotation space, and the damping member 144 is arranged between the connecting ball head 142 and the inner surface of the ball head seat 141, so as to provide damping when the connecting ball head 142 rotates, and improve the operation feeling.
[0103] The connecting ball head 142 can include a top, a bottom, and a through hole connecting the top and the bottom, the top and the bottom are oppositely arranged, and the connecting ball head 142 is fixedly connected with the external structure through a connecting piece assembled in the through hole. The connecting piece is arranged in the through hole, which avoids the structural interference caused by the connection of the connecting piece and the external structure. For example, the above-mentioned connecting piece can be a screw, and the assembly and fixation are realized through the threaded connection of the screw with the through hole and the external structure respectively, which is convenient to operate and has high reliability.
[0104] In some embodiments, the damping member 144 includes an annular structure, which abuts against the outer surface 1421 of the connecting ball head 142. With the annular damping member 144, not only can the rotational interference between the connecting ball head 142 and the ball head seat 141 caused by the structure of the damping member 144 be avoided, but also the operation feeling can be improved. For example, the above-mentioned through hole forms a hole position on the outer surface of the connecting ball head 142, and the annular damping member 144 can abut against the periphery of the hole position.
[0105] In some embodiments, the base 113 can include a support portion 1131, the support portion 1131 includes a second housing 1131a and a support frame 1131b arranged in the second housing 1131a, and the connecting line assembly 12 further includes a second connecting component and a second circuit board 123 assembled on the support frame 1131b, the second connecting component is conductively connected with the second circuit board 123 and the power plug 13 respectively. The second circuit board 123 can be used for power supply control, and assembling the second circuit board 123 on the support frame 1131b improves the assembly reliability of the second circuit board 123 and the connection reliability of the first connecting component and the second connecting component conductively connected with the second circuit board 123 respectively. The second housing 1131a accommodates the support frame 1131b, the second circuit board 123, and part of the first connecting component and part of the second connecting component, which improves the overall aesthetics of the support portion 1131 of the base 113.
[0106] Further, Figure 13 is an exploded structural schematic view of a device support 1 in another exemplary embodiment of the present disclosure, Figure 14 is a three-dimensional structural schematic view of a first rotating member 1132c and an intermediate rotating member 1132d in an initial position in an exemplary embodiment of the present disclosure, Figure 15 is a three-dimensional structural schematic view of a first rotating member 1132c and an intermediate rotating member 1132d in a limit position in a clockwise direction in an exemplary embodiment of the present disclosure, as Figure 3 , Figures 13-15As shown, the base 113 can include a rotating part 1132, which includes a third shell 1132b and a base 1132a rotationally connected with the third shell 1132b, the power plug 13 is fixedly connected with the base 1132a, and the third shell 1132b is fixedly connected with the support frame 1131b. The whole formed by the third shell 1132b, the support frame 1131b and the second shell 1131a can rotate relative to the base 1132a, and can be used to adjust the position of the equipment matching part 111 in the rotating direction during use, thereby improving the use flexibility of the equipment support 1.
[0107] The surface of the third shell 1132b can be provided with a gemstone pattern, a vertical line pattern or the like for generating friction, which is helpful to improve the convenience of user rotation operation.
[0108] In the embodiment, the rotating part 1132 can further include a first rotating piece 1132c and an intermediate rotating piece 1132d, the support frame 1131b is fixedly connected with the first rotating piece 1132c, and the first rotating piece 1132c and the intermediate rotating piece 1132d are respectively rotationally connected with the base 1132a. The base 1132a and the intermediate rotating piece 1132d are circumferentially limited in position, and the first rotating piece 1132c and the intermediate rotating piece 1132d are circumferentially limited in position. The first circumferential limiting angle between the intermediate rotating piece 1132d and the base 1132a is less than 360°, the second circumferential limiting angle between the intermediate rotating piece 1132d and the first rotating piece 1132c is less than 360°, and the third circumferential limiting angle between the first rotating piece 1132c and the base 1132a is greater than or equal to 360°.
[0109] The first rotating piece 1132c and the intermediate rotating piece 1132d are respectively rotationally connected with the base 1132a, and the base 1132a and the first rotating piece 1132c are respectively circumferentially limited in position with the intermediate rotating piece 1132d. The first circumferential limiting angle between the intermediate rotating piece 1132d and the base 1132a is less than 360°, the second circumferential limiting angle between the intermediate rotating piece 1132d and the first rotating piece 1132c is less than 360°, and the third circumferential limiting angle obtained by superimposing the first circumferential limiting angle and the second circumferential limiting angle is also not greater than 720°, so that the rotation cooperation of the first rotating piece 1132c and the intermediate rotating piece 1132d with the base 1132a will not cause problems such as wire winding and structural interference due to unlimited rotation. The third circumferential limiting angle greater than or equal to 360° between the first rotating piece 1132c and the base 1132a obtained by superimposing the first circumferential limiting angle and the second circumferential limiting angle can also make the main structure assembled in the first rotating piece 1132c circulate the whole circumference, which is helpful to improve the user experience of the equipment support 1.
[0110] In the embodiments of the present disclosure, the limiting mode between the base 1132a and the intermediate rotating part 1132d and the first rotating part 1132c and the intermediate rotating part 1132d can be various schemes, as long as the effect of meeting the angle limiting requirement can be achieved, and the present disclosure does not limit this. The first circumferential limiting angle refers to the maximum angle that the intermediate rotating part 1132d can rotate relative to the base 1132a from the initial position relative to the base 1132a, the second circumferential limiting angle refers to the maximum angle that the first rotating part 1132c can rotate relative to the intermediate rotating part 1132d from the initial position relative to the intermediate rotating part 1132d, and the third circumferential limiting angle refers to the maximum angle that the first rotating part 1132c can rotate relative to the base 1132a from the initial position relative to the base 1132a.
[0111] In some embodiments, one of the base 1132a and the intermediate rotating part 1132d is provided with a first arc-shaped groove 1132e, and the other is provided with a structural part 1132g movably assembled in the first arc-shaped groove 1132e, and the central angle corresponding to the first arc-shaped groove 1132e matches the first circumferential limiting angle, so as to form limiting by sliding of the structural part 1132g in the first arc-shaped groove 1132e.
[0112] For example, the intermediate rotating part 1132d is provided with a protruding structure 1132f on the side facing the base 1132a, the protruding structure 1132f forms a first arc-shaped groove 1132e on the opposite two end faces and the side in the circumferential direction, the base 1132a is provided with a structural part 1132g, and the end face of the protruding structure 1132f abuts against the structural part 1132g when the first circumferential limiting angle is reached.
[0113] In some embodiments, one of the first rotating part 1132c and the intermediate rotating part 1132d is provided with a second arc-shaped groove, and the other is provided with a structural part 1132g movably assembled in the second arc-shaped groove, and the central angle corresponding to the second arc-shaped groove matches the second circumferential limiting angle, so as to form limiting by sliding of the structural part 1132g in the second arc-shaped groove.
[0114] For example, the first rotating part 1132c is provided with a protruding structure 1132f on the side facing the intermediate rotating part 1132d, the protruding structure 1132f forms a second arc-shaped groove on the opposite two end faces and the side in the circumferential direction, the intermediate rotating part 1132d is provided with a structural part 1132g, and the end face of the protruding structure 1132f abuts against the structural part 1132g when the second circumferential limiting angle is reached.
[0115] The third shell 1132b movably cooperates with the base 1132a to form a containing space, the first rotating part 1132c and the intermediate rotating part 1132d are accommodated in the containing space, and the power taking plug 13 extends out of the containing space from the assembly hole of the base 1132a. The first rotating part 1132c and the intermediate rotating part 1132d are located at initial positions respectively, in the process of rotating the third shell 1132b clockwise, the support part 1131 and the first rotating part 1132c rotate with the third shell 1132b relative to the base 1132a, the first rotating part 1132c rotates clockwise relative to the intermediate rotating part 1132d from the initial position to the structure part 1132g abuts against the side surface of the second arc-shaped slot, and the intermediate rotating part 1132d continues to rotate clockwise relative to the base 1132a to stop rotating after the structure part 1132g abuts against the side surface of the first arc-shaped slot 1132e by the abutting force. The first rotating part 1132c can stay at any position in the above rotating process.
[0116] For example, the first circumferential limiting angle is 330°, the second circumferential limiting angle is 50°, and the third circumferential limiting angle can reach 380°. The first circumferential limiting angle, the second circumferential limiting angle and the third circumferential limiting angle can be set according to the specific limiting angle requirement. For example, when the base 1132a is locked to the external structure by threads, the clockwise rotation cannot exceed 380°, otherwise the threaded connection of the equipment support 1 will be loosened from the external structure.
[0117] In the above embodiment, the second connecting part can be a second wire 124 connecting the power taking plug 13 and the second circuit board 123, so as to simplify the conductive connection mode.
[0118] Alternatively, the second connecting part can also be an electrical connector, a flexible circuit board and the like, and the present disclosure does not limit this.
[0119] The above second connecting part can pass through the third shell 1132b to be connected with the power taking plug 13, so as to avoid the influence on the appearance of the equipment support 1. Specifically, the base 1132a can be provided with a through hole penetrating the base 1132a along the rotating axis, and the second connecting part can pass through the through hole, so as to avoid the influence on the rotating cooperation.
[0120] In some embodiments, the power taking plug 13 is provided with a fixed assembly part 112 for assembly and fixation with an external structure. The wireless charging assembly is arranged at the device matching part 111 of the support main body 11, the power taking plug 13 is provided with the fixed assembly part 112, and the wireless charging assembly and the power taking plug 13 are conductively connected through the connecting line assembly 12, so that the device support 1 has the functions of supporting and fixing and charging the device. The fixed assembly part 112 is used to fix and assemble the device support 1 to the external structure, and the power taking plug 13 can be connected to the external power supply with the assembly of the fixed assembly part 112 and the external structure, avoiding the structural interference and space occupation caused by connecting the power supply through the wire, which helps to simplify the charging structure of the device support 1 and improve the convenience of taking power.
[0121] In the above embodiment, the fixed assembly part 112 includes a threaded structure arranged on the power taking plug 13.
[0122] It should be noted that the power taking plug 13 and the fixed assembly part 112 can be integrally formed. The external device can be a mobile phone, a tablet computer, a notebook computer, a camera, a projector, etc., and the present disclosure is not limited thereto.
[0123] In other embodiments, the device support 1 can also be fixed to the external structure through a connecting structure arranged at other positions of the support main body 11. The connecting structure can be a threaded structure, a clamping structure, etc., and the present disclosure is not limited thereto.
[0124] The present disclosure further provides a vehicle 2 comprising the above device support 1.
[0125] Since the wireless charging assembly of the device support 1 is arranged at the device matching part 111 of the support main body 11, the wireless charging assembly and the power taking plug 13 are conductively connected through the connecting line assembly 12, so that the device support 1 has the functions of supporting and fixing and charging the device. The power taking plug 13 can be connected to the external power supply with the assembly of the device support 1 and the external structure, avoiding the structural interference and space occupation caused by connecting the power supply through the wire, which helps to simplify the charging structure of the device support 1 and improve the convenience of taking power.
[0126] In some embodiments, Figure 16 is a partial structure schematic view of a vehicle 2 in an exemplary embodiment of the present disclosure, as Figure 16As shown, the vehicle includes a vehicle body, the vehicle body includes a dashboard platform 21, the dashboard platform 21 is provided with a power taking socket 22 which is matched with the structure of the power taking plug 13. For example, the power taking socket 22 can be arranged at the position where the dashboard platform 21 is located at the left side of the steering wheel, when the equipment support 1 is matched with the mobile phone, it is convenient to realize the observation and operation of the mobile phone. Alternatively, the power taking socket 22 can also be arranged at other positions of the dashboard platform 21, and the present disclosure does not limit this.
[0127] In other embodiments, the power taking socket 22 can also be arranged at other positions of the vehicle body, and the present disclosure does not limit this.
[0128] It should be noted that the above vehicle 2 can be a car, an electric bicycle, a scooter, etc., and the present disclosure does not limit this.
[0129] The above is only a preferred embodiment of the present disclosure, and does not limit the present disclosure in any form. Although the present disclosure has been disclosed as above, it is not intended to limit the present disclosure. Any person skilled in the art can make some changes or modifications to the above disclosed technical content without departing from the scope of the technical solution of the present disclosure, and any simple modification, equivalent change and modification of the above embodiment according to the technical essence of the present disclosure are still within the scope of the present disclosure.
Claims
1. A device holder, characterized in that The support body (11) comprises a device matching part (111) for matching with an external device to provide support for the external device. The wireless charging assembly is assembled on the device matching part (111); the power plug (13) is assembled on the support body (11); the power plug (13) is used for electrically connecting with an external power supply. The connection line assembly (12) is assembled on the support body (11), and is electrically connected with the wireless charging assembly and the power plug (13) respectively. The device matching part (111) comprises a first housing (1112) and a mounting substrate (1111) arranged in the first housing (1112).
2. The equipment support of claim 1, wherein, The wireless charging assembly comprises a charging coil and a first circuit board (122) electrically connected with the charging coil; the charging coil is assembled on the first side of the mounting substrate (1111) facing the device contact surface of the first housing (1112); and the first circuit board (122) is assembled on the second side opposite to the first side. The wireless charging assembly further comprises a shielding cover (1113) assembled on the second side; the first circuit board (122) is provided with electronic components; and the shielding cover (1113) covers the electronic components.
3. The equipment support of claim 2, wherein, Further comprising a magnetic attraction assembly assembled on the first side.
4. The equipment support of claim 2, wherein, The magnetic attraction assembly is arranged at the periphery of the charging coil along the circumferential direction of the charging coil.
5. The equipment support of claim 4, wherein, The connection line assembly (12) comprises a first connecting part; the first connecting part comprises a first wire (121); the device matching part (111) comprises a mounting substrate (1111) and a wire pressing plate (1114) assembled on the mounting substrate (1111); 6. The equipment support of claim 2, wherein, The first wire (121) is electrically connected with the first circuit board (122), and the end portion of the first wire (121) and the first circuit board (122) is abutted between the wire pressing plate (1114) and the mounting substrate (1111). The support body (11) further comprises a base (113), and the power plug (13) is assembled on the base (113); the device matching part (111) and the base (113) are rotationally connected.
7. The equipment support of claim 1, wherein, The support body (11) further comprises a ball head seat (141) and a connecting ball head (142); the ball head seat (141) is fixedly connected with the device matching part (111); the connecting ball head (142) is fixedly connected with the base (113); and the connecting ball head (142) is rotationally connected with the ball head seat (141).
8. The equipment support of claim 7, wherein, 9. The equipment support of claim 7, wherein, The base (113) comprises a supporting part (1131); the supporting part (1131) comprises a second shell (1131a) and a supporting frame (1131b) arranged in the second shell (1131a); the connecting line assembly (12) further comprises a second connecting component and a second circuit board (123) assembled to the supporting frame (1131b), and the second connecting component is electrically connected with the second circuit board (123) and the power taking plug (13) respectively.
10. The equipment support of claim 9, wherein, The base (113) comprises a rotating part; the rotating part comprises a third shell and a base rotatably connected with the third shell, the power taking plug (13) is fixedly connected with the base, and the third shell is fixedly connected with the supporting frame (1131b).
11. The equipment support of claim 9, wherein, The second connecting component comprises a second wire (124) connecting the power taking plug (13) and the second circuit board (123).
12. The equipment support of claim 1, wherein, The power taking plug (13) is provided with a fixed assembly part (112) for assembly and fixation with an external structure.
13. The equipment support of claim 12, wherein, The fixed assembly part (112) comprises a threaded structure arranged on the power taking plug (13).
14. A vehicle characterized by comprising: The device support comprises the device support according to any one of claims 1-13.