Support and electronic equipment

By designing a sliding and rotating support plate structure with adjustable height and angle, the problem of limited adjustment in existing brackets is solved, providing diversified support and functions and improving the user experience.

CN223690723UActive Publication Date: 2025-12-19LENOVO (BEIJING) LTD
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Patent Information

Application Number
CN202520332688.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2025-12-19
Estimated Expiration
2035-02-27

AI Technical Summary

Technical Problem

Existing stands cannot flexibly adjust the support angle and height, making it difficult to meet the diverse usage needs of users. Furthermore, the need for separate stands and digital pens leads to cumbersome accessory storage.

Method used

A bracket was designed, comprising a sliding support plate and a rotating support plate. The sliding support plate is height-adjustable, and the rotating support plate is angle-adjustable. Combined with a limiting part and a locking component, it can support multiple devices and is equipped with a functional interface and a heat dissipation structure.

Benefits of technology

It enables flexible adjustment of support height and angle, adapts to the needs of various devices and scenarios, simplifies the use of accessories, and improves user comfort and functional versatility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a support and electronic equipment, and relates to the technical field of electronic equipment accessories. The support comprises a supporting body which is provided with a first connecting surface and a second connecting surface which are arranged back to back; the sliding supporting plate is slidably connected to the first connecting surface, so that the first supporting surface, deviating from the first connecting surface, of the sliding supporting plate has different supporting heights; one end of the rotary supporting plate is rotationally connected to the second connecting surface, and the other end of the rotary supporting plate and the supporting body jointly support the bearing surface; the rotary supporting plate can rotate relative to the second connecting face when the sliding supporting plate is at any height, so that the included angle between the first supporting face and the bearing face is changed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electronic device accessories, and in particular to a support and an electronic device. BACKGROUND

[0002] Currently, double-screen computers and tablet computers on the market are often equipped with digital pens to support handwriting functions, but they also need to use independent supports to support the devices to achieve a suitable use angle, which makes the storage and use process of the accessories relatively cumbersome. In addition, the supports currently used for devices such as mobile phones and tablet computers can usually only provide a fixed support angle and use height when supporting the devices, and cannot flexibly meet the various needs of users. CONTENT OF THE UTILITY MODEL

[0003] To solve the above technical problems, the embodiments of the present application provide the following technical solutions:

[0004] The first aspect of the present application provides a support, comprising: a support body having a first connecting surface and a second connecting surface arranged opposite to each other; a sliding support plate slidably connected to the first connecting surface, so that the first support surface of the sliding support plate away from the first connecting surface has different support heights; a rotating support plate having one end rotatably connected to the second connecting surface and the other end used for being supported on a bearing surface together with the support body; wherein the rotating support plate can rotate relative to the second connecting surface when the sliding support plate is at any height, so as to change the included angle between the first support surface and the bearing surface.

[0005] In some modified embodiments of the first aspect of the present application, the support further comprises: a second support surface arranged on the first connecting surface, the second support surface having a first state and a second state; wherein in the case that the second support surface is in the first state, the orthogonal projection of the first support surface to the second support surface overlaps with the orthogonal projection of the second support surface to the first support surface; and in the case that the second support surface is in the second state, the orthogonal projection of the first support surface to the second support surface at least partially intersects with the orthogonal projection of the second support surface to the first support surface.

[0006] In some embodiments, the support further comprises: a first limiting part detachably connected to the first support surface; the first limiting part has a first limiting surface, and the first support surface and the first limiting surface together support a first to-be-supported device; and a second limiting part detachably connected to the second support surface; the second limiting part has a second limiting surface, and the second support surface and the second limiting surface together support a second to-be-supported device.

[0007] In some embodiments, the first support surface is used to support the first to-be-supported device, and the second support surface is used to support the second to-be-supported device; and / or the first support surface and the second support surface are used to together support a third to-be-supported device.

[0008] In some embodiments, the support further comprises: a receiving cavity arranged on the support body, one end of the receiving cavity being provided with an outlet; a first elastic member arranged in the receiving cavity and located at an end of the receiving cavity opposite to the outlet, the first elastic member being capable of extending and retracting along the extension direction of the receiving cavity; a sliding part movably arranged in the receiving cavity and abutting against the first elastic member, the extension and retraction of the first elastic member being capable of driving the sliding part to slide in the receiving cavity; and a locking assembly arranged on the support body and used for locking the sliding part in the receiving cavity.

[0009] In some embodiments, the locking assembly comprises: a pressing part, one end of the pressing part being connected to an end of the first elastic member opposite to the sliding part and the other end of the pressing part being exposed on the support body; a limiting cavity arranged in the receiving cavity and having the same extension direction as the receiving cavity, the limiting cavity having an opening facing the sliding part; and a second elastic member arranged on the sliding part and capable of extending and retracting along a direction perpendicular to the extension direction of the first elastic member; wherein, in the case that the end of the sliding part away from the first elastic member is subjected to a first force or the pressing part is subjected to a second force, the two ends of the second elastic member are capable of slidingly abutting against the inner cavity wall of the limiting cavity so as to make the sliding part in a locked state or an unlocked state.

[0010] In some embodiments, the support further comprises: a rack, the two sides of the support body being provided with racks extending along the sliding direction of the first support surface; and gears, the two sides of the rotating support plate being provided with gears, and the two gears being respectively engaged with the racks on the corresponding sides.

[0011] In some embodiments, the support further comprises: a first functional interface used for connecting a device to be supported; and a second functional interface in signal connection with the first functional interface and used for signal input and output.

[0012] In some embodiments, the support further comprises: a receiving cavity arranged on the support body; a fan assembly arranged in the receiving cavity; and a plurality of heat dissipation holes arranged on the first connecting surface and the second connecting surface. The second aspect of the present application provides an electronic device, which comprises: a support body having a first connecting surface and a second connecting surface arranged opposite to each other; a sliding support plate slidably connected to the first connecting surface, the first support surface of the sliding support plate away from the first connecting surface having different support heights; a rotating support plate, one end of the rotating support plate being rotatably connected to the second connecting surface and the other end of the rotating support plate being used for supporting the support body on a bearing surface together; wherein, the rotating support plate is capable of rotating relative to the second connecting surface when the sliding support plate is at any height, so as to change the included angle between the first support surface and the bearing surface; a device body; a first reinforcing part arranged on the first support surface and / or the second support surface; and a second reinforcing part arranged on the device body, the second reinforcing part corresponding to and cooperating with the first reinforcing part to lock the device body on the support body. BRIEF DESCRIPTION OF DRAWINGS

[0013] The above and other objects, features and advantages of the present application will become readily apparent from the detailed description that follows, read in conjunction with the accompanying drawings. In the drawings, various embodiments of the application are illustrated by way of example, not by way of limitation, in which like reference numerals indicate similar, or corresponding, elements:

[0014] Figure 1 A first angle structural schematic diagram of a first state of a stent provided by the present application is schematically shown;

[0015] Figure 2 A second angle structural schematic diagram of a first state of a stent provided by the present application is schematically shown;

[0016] Figure 3 A third angle structural schematic diagram of a first state of a stent provided by the present application is schematically shown;

[0017] Figure 4 A first angle structural schematic diagram of a second state of a stent provided by the present application is schematically shown;

[0018] Figure 5 A second angle structural schematic diagram of a second state of a stent provided by the present application is schematically shown;

[0019] Figure 6 A third angle structural schematic diagram of a second state of a stent provided by the present application is schematically shown;

[0020] Figure 7 A first cross-sectional structural schematic diagram of a receiving cavity of a stent provided by the present application is schematically shown;

[0021] Figure 8 A second cross-sectional structural schematic diagram of a receiving cavity of a stent provided by the present application is schematically shown;

[0022] Figure 9 A first cross-sectional structural schematic diagram of a receiving cavity of another stent provided by the present application is schematically shown;

[0023] Figure 10 A second cross-sectional structural schematic diagram of a receiving cavity of another stent provided by the present application is schematically shown;

[0024] Figure 11 A partial structural schematic diagram of a stent provided by the present application is schematically shown.

[0025] BRIEF DESCRIPTION OF DRAWINGS

[0026] 1, support body; 101, first connecting surface; 102, second connecting surface; 2, sliding support plate; 21, first support surface; 3, rotating support plate; 31, second support surface; 4, first limiting portion; 41, first limiting surface; 5, second limiting portion; 51, second limiting surface; 6, accommodating cavity; 61, outlet; 7, first elastic member; 8, sliding portion; 91, plug-in portion; 92, positioning member; 93, lock tongue; 94, groove; 95, pressing portion; 96, limiting cavity; 97, second elastic member; 98, wedge-shaped block; 961, opening; 10, rack; 11, gear; 12, first functional interface; 13, second functional interface; 14, heat dissipation hole; 15, to be received pen; 16, arc surface; 17, to be supported equipment; 18, first mounting port; 19, second mounting port; A, first force direction; B, second force direction. DETAILED DESCRIPTION

[0027] Exemplary embodiments of the present disclosure will be described in greater detail below with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it is understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided so that the present disclosure can be more thoroughly understood, and the scope of the present disclosure can be accurately conveyed to those skilled in the art.

[0028] It should be noted that, unless otherwise specified, the technical terms or scientific terms used in the present application should be understood as the usual meaning understood by those skilled in the art to which the present application belongs.

[0029] The inventors found that the current support used by mobile phones, tablets and other devices can usually only provide fixed support angle and use height when supporting the equipment. This limitation makes it difficult to flexibly meet the various needs of users in different scenarios.

[0030] Embodiment one

[0031] Reference to the accompanying drawings Figure 1 - the accompanying drawings Figure 6 Embodiment one of the utility model provides a support, which comprises: a support body 1, which has a first connecting surface 101 and a second connecting surface 102 arranged opposite to each other; a sliding support plate 2, which is slidingly connected to the first connecting surface 101, so that the first support surface 21 of the sliding support plate 2, which is away from the first connecting surface 101, has different support heights; a rotating support plate 3, one end of which is rotatably connected to the second connecting surface 102, and the other end is used to be supported on a bearing surface together with the support body 1; wherein the rotating support plate 3 can rotate relative to the second connecting surface 102 when the sliding support plate 2 is at any height, so as to change the included angle between the first support surface 21 and the bearing surface.

[0032] In a possible case, the application object of the support includes, but is not limited to, electronic devices such as mobile phones, notebook computers, scroll screen computers, etc., and non-electronic products such as books, drawing boards, etc. The support body 1 provides structural support for the entire support, ensuring that the support can remain stable and firm during use. The support body 1 can be a plate structure, occupying a small space, suitable for limited space environments such as desktops. The support body 1 can also be a block structure, and the thickness of the bottom can be increased to offset the center of gravity to the bottom of the block structure, thereby enhancing the overall stability and reducing the risk of the support toppling due to external forces.

[0033] The support body 1 has a first connecting surface 101 for mounting the sliding support plate 2. The sliding support plate 2 and the first connecting surface 101 can be connected by a sliding block and a sliding rail, or can be connected by a ball and a guide rail (not shown in the figure). The shape of the sliding support plate 2 can be any shape, such as a rectangular plate structure, a square plate structure, an arched plate structure, etc. The size and dimensions of the first connecting surface 101 can be set according to actual needs, which are not specifically limited here. The support body 1 has a second connecting surface 102 opposite the first connecting surface 101, i.e., the second connecting surface 102 and the first connecting surface 101 are two opposite but opposite surfaces, each of which has a different function, and they are located on different sides of the support body 1.

[0034] The second connecting surface 102 is used to mount the rotating support plate 3. The second connecting surface 102 and the rotating support plate 3 can be connected by rotating in the following ways: one or more hinges are installed between the second connecting surface 102 and the rotating support plate 3, allowing the rotating support plate 3 to rotate around the hinge axis; a damping shaft is provided on the second connecting surface 102, and a shaft sleeve is provided at the corresponding position on the rotating support plate 3, so that the rotating support plate 3 can freely rotate in the shaft sleeve through the damping shaft. The damping shaft combines the function of a common shaft and adds damping characteristics, so that the rotating support plate 3 receives uniform resistance when rotating, so that it can smoothly stay at any position. The rotating support plate 3 plays the role of a support foot in the support, and together with the support body 1 supports the bearing surface to support the device to be supported 17. The device to be supported here includes, but is not limited to, electronic devices such as mobile phones, notebook computers, scroll screen computers, and non-electronic products such as books, drawing boards, etc. The rotating support plate 3 can be any shape, such as a rectangular plate structure, a triangular plate structure, a columnar structure, etc. The bearing surface is the surface on which the rotating support plate 3 and the support body 1 are placed together, that is, the plane or uneven curved surface on which the support is placed, such as a flat desktop, an uneven lawn, a beach, or other special use scenarios, such as the palm of a user's hand, etc.

[0035] The sliding support plate 2 can slide along the first connecting surface 101 to adapt to different thicknesses or sizes of the to-be-supported device 17 and provide different support heights. That is, the user can adjust the sliding support plate 2 to a suitable height as needed to facilitate watching or operating the to-be-supported device 17 (such as a mobile phone, a notebook computer, etc.) placed thereon. And no matter what height the sliding support plate 2 is adjusted to, such as the bottom of the sliding support plate 2 being located at the middle position of the first connecting surface 101 or the sliding support plate 2 being located at the top end of the first connecting surface, the rotating support plate 3 can be freely rotated around the connecting point thereof with the second connecting surface 102. Even if the height of the sliding support plate 2 changes, the rotating support plate 3 can still be flexibly adjusted in angle.

[0036] The present application sets the sliding support plate 2 and the rotating support plate 3 on the opposite first connecting surface 101 and second connecting surface 102 of the support body 1 respectively. The sliding support plate 2 can slide relative to the first connecting surface 101 to adjust the support height of the first support surface 21 according to the user's needs, and at the same time, the rotating support plate 3 can rotate relative to the second connecting surface 102. After the user adjusts the support height, the user can adjust the support angle by adjusting the rotating support plate 3. When the user uses the support to support the electronic device, the user can flexibly adjust the support height and the support angle according to his own needs, and the two do not affect each other. The user can more conveniently and quickly find the most suitable use posture for himself, which is suitable for a variety of different devices and use scenarios, and greatly improves the overall use comfort.

[0037] In some modified embodiments of the first aspect of the present application, the support further comprises: a second support surface 31 provided on the first connecting surface 101, the second support surface 31 having a first state and a second state; wherein in the case that the second support surface 31 is in the first state, the orthogonal projection of the first support surface 21 onto the second support surface 31 overlaps with the orthogonal projection of the second support surface 31 onto the first support surface 21; and in the case that the second support surface 31 is in the second state, the orthogonal projection of the first support surface 21 onto the second support surface 31 at least partially intersects with the orthogonal projection of the second support surface 31 onto the first support surface 21.

[0038] In one possible case, as Figure 3 -attached Figure 6As shown, the second support surface 31 can be integrated on the first connecting surface 101, and the second support surface 31 can be switched between a first state and a second state. When the second support surface 31 is in the first state, the bracket is also in the first state, and when the second support surface 31 is in the second state, the bracket is also in the second state. When the second support surface 31 is in the first state, the orthographic projection of the first support surface 21 to the second support surface 31 overlaps with the orthographic projection of the second support surface 31 to the first support surface 21, that is, the sliding support plate 2 does not slide relative to the first connecting surface 101 and is in the initial position, and the second support surface 31 is hidden on the side of the sliding support plate 2 away from the first support surface 21. When the second support surface 31 is in the second state, the orthographic projection of the first support surface 21 to the second support surface 31 at least partially overlaps with the orthographic projection of the second support surface 31 to the first support surface 21, that is, the sliding support plate 2 slides relative to the first connecting surface 101 and partially or completely exposes the second support surface 31, so that the second support surface 31 and the first support surface 21 form a multi-layer stepped surface structure. At this time, not only can the first electronic device be supported by the first support surface 21, but also the second electronic device can be supported by the second support surface 31. By introducing the second support surface 31, the bracket can effectively support a single or multiple devices, and meet the diversified needs of users in different scenarios.

[0039] In some embodiments, the bracket further comprises: a first limiting part 4 detachably connected to the first support surface 21; the first limiting part 4 has a first limiting surface 41, which supports the first to-be-supported device 17 together with the first support surface 21; and a second limiting part 5 detachably connected to the second support surface 31; the second limiting part 5 has a second limiting surface 51, which supports the second to-be-supported device 17 together with the second support surface 31.

[0040] In one possible case, as Figures 3-4As shown, the first limiting part 4 and the second limiting part 5 are respectively used for mounting on the first support surface 21 and the second support surface 31, and are used for supporting the electronic device or non-electronic device to be supported. The first device to be supported and the second device to be supported here can be electronic devices or non-electronic devices. The first limiting part 4 and the second limiting part 5 can be of any shape, such as a plate structure, a block structure, etc. The first limiting part 4 and the second limiting part 5 can be detachably connected to the first support surface 21 or the second support surface 31 (not shown in the figure) through a slot and a protruding structure, such as a plurality of slots arranged on the first support surface 21 and the second support surface 31 in the sliding direction of the sliding support plate 2, and the first limiting part 4 and the second limiting part 5 are provided with protrusions matched with the slots, and the user can select any one slot on the first support surface 21 to install the first limiting part 4 according to the size of the device to be supported 17 actually needed to be supported, or select any one slot on the second support surface 31 to install the second limiting part 5. In addition, the first limiting part 4 and the second limiting part 5 can also be detachably connected with the first support surface 21 and the second support surface 31 respectively through bolts or magnetic attraction structures.

[0041] The first limiting surface 41 and the second limiting surface 51 can be flat surfaces, for example, placing a tablet computer on the first support surface 21, the first limiting surface 41 of the first limiting part 4 is located at the bottom of the device, and the first limiting surface 41 and the first support surface 21 together form an L-shaped support surface, which ensures that the device will not slide to the bottom along the first support surface 21. The first limiting surface 41 and the second limiting surface 51 can be L-shaped surfaces, when the first limiting part 4 is installed on the first support surface 21 and the second limiting part 5 is installed on the second support surface 31, the first limiting surface 41 and the first support surface 21 can form a U-shaped support surface, and the second limiting surface 51 and the second support surface 31 can form a U-shaped support surface. For example, placing a tablet computer on the first support surface 21, the first limiting surface 41 of the first limiting part 4 surrounds the device from the front end and the bottom of the tablet computer, and forms a U-shaped support surface with the first support surface 21, providing all-around support and protection.

[0042] The first support surface 21 can be used to support a first device to be supported, such as a mobile phone, tablet, or drawing board. The second support surface 31 can be used to support a second device to be supported, such as a mobile phone, tablet, or drawing board. The first support surface 21 and the second support surface 31 can independently support two devices to be supported 17 or simultaneously support a third device to be supported. For example, a user can place a laptop on the first support surface 21 and a mobile phone on the second support surface 31. Or, when a user wants to support a larger device to be supported 17 (such as a large-size monitor or a rollable screen computer), the second limiting part 5 can be installed on the second support surface 31, and the first limiting part 4 can be removed from the first support surface 21. Then, the first support surface 21 and the second support surface 31 can jointly support the larger device. By flexibly installing and removing the first limiting part 4 and the second limiting part 5, the needs of various usage scenarios can be met, whether it is the stable support of a single device or the simultaneous support of multiple devices.

[0043] In some embodiments, the bracket further includes: a receiving cavity 6 disposed on the support body 1, one end of the receiving cavity 6 having an outlet 61; a first elastic member 7 disposed on the receiving cavity 6 and located at the end of the receiving cavity 6 opposite to the outlet 61, and the first elastic member 7 being extendable and retractable along the extending direction of the receiving cavity 6; a sliding part 8 movably disposed on the receiving cavity 6, and the sliding part 8 abutting against the first elastic member 7, the extension and retraction of the first elastic member 7 being able to drive the sliding part 8 to slide within the receiving cavity 6; and a locking assembly disposed on the support body 1 for locking the sliding part 8 within the receiving cavity 6.

[0044] In one possible case, such as Figure 7 , Figure 8 As shown, the receiving cavity 6 is disposed within the support body 1. The receiving cavity 6 is used to store the pen 15 to be stored, and the receiving cavity 6 has an outlet 61 for inserting or removing the pen 15. The receiving cavity 6 can be located at the top or bottom of the support body 1, etc., depending on the user's operating habits. The shape of the receiving cavity 6 can be a cylindrical cavity or other irregular cavity, etc., depending on the shape of the pen 15 to be stored. The end of the receiving cavity 6 opposite to its outlet 61 is provided with an active space for the sliding part 8 and the first elastic member 7 to move, and the extension direction of the active space is the same as the extension direction of the receiving cavity 6. The first elastic member 7 is disposed within the active space, and the first elastic member 7 can extend and retract along the extension direction of the active space. The sliding part 8 can be a slider, disposed within the receiving cavity 6, and one end of it can contact or connect with the first elastic member 7. The sliding part 8 can slide relative to the receiving cavity 6 under the action of the first elastic member 7, and the end of the sliding part 8 opposite to the first elastic member 7 is used to contact the pen 15 to be stored.

[0045] In addition, the end of the sliding part 8 in contact with the pen 15 to be received can be provided with an arc-shaped slot adapted to the pen 15 to be received. In order to prevent the sliding part 8 from wearing the pen 15 to be received, a rubber pad can be arranged in the arc-shaped slot. In order to prevent the pen 15 to be received from falling off, a first magnetic attraction structure can be arranged at the end of the sliding part 8 in contact with the pen 15 to be received, and a second magnetic attraction structure can be arranged on the pen 15 to be received to cooperate with the first magnetic attraction structure. The first magnetic attraction structure and the second magnetic attraction structure can be magnets that attract each other.

[0046] The outer circumferential surface of the sliding part 8 is provided with a plurality of grooves 94 spaced apart along the direction in which the first elastic member 7 extends. The locking assembly includes a plug-in part 91 arranged at a first mounting port 18 on the support body 1, the position of the first mounting port 18 corresponding to the sliding part 8. The plug-in part 91 can slide relative to the support body 1 along a direction perpendicular to the extension direction of the first elastic member 7 through the cooperation of a sliding rail and a sliding block. The plug-in part 91 can be a block structure or a columnar structure, etc. It has a plug-in part 91 exposed to the first mounting port 18, and a locking tongue 93 cooperating with the grooves 94 on the sliding part 8. The locking tongue 93 cooperating with the grooves 94 can lock the sliding part 8. The locking assembly further includes a positioning member 92 arranged on the inner wall of the accommodating cavity 6 and covering part of the extension path of the first elastic member 7. When the sliding block slides to the target position, the sliding block abuts against the positioning member 92 to limit the sliding block from continuing to slide in the direction of the first elastic member 7. When the sliding part 8 slides to the target position, the locking tongue 93 corresponds to and is clamped in at least one of the grooves 94.

[0047] In the unused state, the sliding part 8 is pushed by the first elastic member 7 to the outlet 61 end of the accommodating cavity 6, but is locked by the locking tongue 93 in one of the grooves 94 in the locking assembly, preventing it from automatically sliding out. When the user needs to insert the pen 15 to be received, the plug-in part 91 is pulled away from the sliding part 8, causing the locking tongue 93 to disengage from the current groove 94. The user applies a first force to the sliding part 8 in the extension direction of the accommodating cavity 6 by inserting the pen 15 to be received, causing the sliding part 8 to slide and the first elastic member 7 to contract until the sliding part 8 slides to a position in contact with the positioning member 92. The user presses the plug-in part 91 to cause the locking tongue 93 to be inserted into one of the grooves 94, locking the sliding part 8, and the pen 15 to be received is completely received in the accommodating cavity 6. Figure 7 As shown, the direction of the arrow marked A is the first force direction A. When the pen 15 to be received needs to be taken out, the plug-in part 91 is again pulled away from the sliding part 8, causing the locking tongue 93 to disengage from the current groove 94. The first elastic member 7 is elongated, and the sliding part 8 slides in the direction of the outlet 61, thereby causing the pen 15 to be received to be ejected. The plurality of grooves 94 on the sliding part 8 provides multiple locking position options, ensuring that the user can fine-tune according to specific needs, and can also adapt to different lengths of the pen 15 to be received.

[0048] In some embodiments, the locking assembly comprises a pressing portion 95 connected to one end of the first elastic member 7 opposite to the sliding portion 8, and the other end of the pressing portion 95 is exposed to the support body 1; a limiting cavity 96 arranged in the accommodating cavity 6 and extending in the same direction as the accommodating cavity 6, and the limiting cavity 96 has an opening 961 facing the sliding portion 8; and a second elastic member 97 arranged in the sliding portion 8 and capable of extending and contracting in a direction perpendicular to the extending direction of the first elastic member 7. When the end of the sliding portion 8 opposite to the first elastic member 7 is subjected to a first force or the pressing portion 95 is subjected to a second force, the two ends of the second elastic member 97 can slide against the inner cavity wall of the limiting cavity 96, so that the sliding portion 8 is in a locked state or an unlocked state.

[0049] In a possible case, as shown in Figures 9-10 The support body 1 is provided with a second mounting port 19 located at one end of the accommodating cavity 6 opposite to the outlet 61 and corresponding to the first elastic member 7. The locking assembly further comprises a pressing portion 95 arranged at the second mounting port 19 and capable of sliding relative to the second mounting port 19 in the extending and contracting direction of the first elastic member 7 to push the first elastic member 7 to extend and contract. The shape of the pressing portion 95 can be any shape, such as a cylindrical structure, and the outer peripheral surface of the cylindrical structure is provided with an annular protrusion structure to cooperate with the second mounting port 19 to limit the sliding track of the pressing portion 95 and prevent the pressing portion from popping out of the second mounting port 19. The limiting cavity 96 can be a cavity integrated with the accommodating cavity 6, or can also be a cavity structure embedded in the accommodating cavity 6, and the limiting cavity 96 is arranged around the first elastic member 7 with a predetermined gap between the limiting cavity 96 and the first elastic member 7. The opening 961 of the limiting cavity 96 is a tapered opening 961 with a cavity diameter decreasing in the direction from the outlet 61 to the first elastic member 7, and has an inclined side wall. The second elastic member 97 is arranged in the sliding portion 8 and can penetrate the sliding portion 8 in a direction perpendicular to the extending and contracting direction of the first elastic member 7, or can also be two elastic members arranged opposite to each other around the sliding portion 8. The two ends of the second elastic member 97 are provided with wedge-shaped blocks 98, and the wedge-shaped blocks 98 have sliding surfaces matched with the inclined side wall of the opening 961. When the to-be-stored pen 15 needs to be stored, the sliding block is subjected to a first force by inserting the to-be-stored pen 15, and as the sliding portion 8 slides away from the outlet 61, the sliding surfaces of the wedge-shaped blocks 98 at the two ends of the second elastic member 97 slide against the inclined side wall at the opening 961, the second elastic member 97 contracts in a direction perpendicular to the first elastic member 7, the first elastic member 7 contracts, and the two wedge-shaped blocks 98 are located in the limiting cavity 96 and abut against the inner wall of the limiting cavity 96, so that the sliding block is locked. When the to-be-stored pen 15 needs to be taken out, the user applies a second force to the pressing portion 95 in a direction opposite to the extending direction of the first elastic member 7, the pressing portion 95 pushes the first elastic member 7 and indirectly pushes the two wedge-shaped blocks 98 to slide relative to the limiting cavity 96 until the two wedge-shaped blocks 98 are separated from the limiting cavity 96, the sliding portion 8 slides towards the outlet 61, and the to-be-stored pen 15 is pushed out of the accommodating cavity 6.Figure 10 As shown, the direction of the arrow labeled B is the second force direction B.

[0050] In some embodiments, the support further comprises: a rack 10, the rack 10 extending along the sliding direction of the first support surface 21 is arranged on both sides of the support body 1; a gear 11, the gear 11 is arranged on both sides of the rotating support plate 3 and meshes with the rack 10 on the corresponding side.

[0051] In a possible case, as Figure 11 As shown, the rack 10 is fixed on the support body 1 and extends along the sliding direction of the first support surface 21. The gear 11 is installed on both sides of the rotating support plate 3 and meshes with the rack 10, so that the rotating support plate 3 can move or rotate along the rack 10 through the gear 11. The user can manually push or rotate the rotating support plate 3 to make the gear 11 roll along the rack 10, thereby changing the position or angle of the rotating support plate 3. Through the precise matching of the gear 11 and the rack 10, the rotating support plate 3 can realize fine angle or height adjustment to meet the diversified needs of users. In addition, the gear 11 and the rack 10 can be selected by selecting appropriate module and pressure angle, so that the gear 11 will not easily slide without external force. When the gear 11 bears a certain load (such as the weight of the device 17 to be supported), the friction between the gear 11 and the rack 10 increases, forming a natural self-locking state. In addition, a series of clamping slots or holes can be arranged on the support body 1 and distributed along the direction of the rack 10. Corresponding buckles or pins are arranged on both sides of the rotating support plate 3. When the rotating support plate 3 is adjusted to the required position, the buckles or pins are automatically clamped into the nearest clamping slot or hole, realizing locking.

[0052] In some embodiments, the support further comprises: a first functional interface 12 for connecting the device 17 to be supported; and a second functional interface 13 connected in signal with the first functional interface 12 for signal input and output.

[0053] In a possible case, as shown in the figure, the number of first functional interfaces 12 can be one or more, which can be arranged on the first limiting portion 4, the first supporting surface 21, the second limiting portion 5, or the second supporting surface 31. The first functional interface 12 can be a USB, HDMI, Type-C, or other suitable interface type for the device to be supported 17, which is used to physically connect the device to be supported 17, such as a tablet, a mobile phone, a display, etc. The number of second functional interfaces 13 can be multiple, and the multiple second functional interfaces 13 are signal connected with the first functional interface 12 for signal input and output. The types of the multiple second functional interfaces 13 include but are not limited to USB, HDMI, audio interface, network interface, etc. The user can connect the device to be supported 17 (for example, a tablet) to the first functional interface 12 (for example, a Type-C interface) through a cable. At the same time, the second functional interface 13 (for example, HDMI, USB, etc.) can be connected to an external device (for example, a television, a keyboard, a mouse, etc.). The support bracket integrates multiple functional interfaces, enhances its practicability in multiple scenarios such as office, home entertainment, and education, solves the limitation of the single supporting function of the traditional support bracket, and makes the interaction between the device to be supported 17 more smooth and natural.

[0054] In some embodiments, the support bracket further comprises: a receiving cavity, the supporting body 1 is provided with the receiving cavity; a fan assembly, the fan assembly is arranged in the receiving cavity; and a plurality of heat dissipation holes 14, the first connecting surface 101 and the second connecting surface 102 are provided with the plurality of heat dissipation holes 14.

[0055] In a possible case, as shown in the figure, the supporting body 1 is provided with a receiving cavity, and the receiving cavity is used to accommodate a fan assembly. The fan assembly can include a fan body, which is used to generate airflow and can be an axial fan, a centrifugal fan, etc. The fan assembly further includes a motor, which is a driving source of the fan and is used to drive the rotation of the fan blades. A plurality of heat dissipation holes 14 are arranged on the first connecting surface 101 and the second connecting surface 102, and these holes allow air to flow freely, helping the device to be supported 17 to dissipate heat better. When the device to be supported 17 is placed on the second supporting surface 31, the fan assembly can operate to generate airflow that enters the inside of the device to be supported 17 or directly blows to the surface of the device to be supported 17 through the heat dissipation holes 14 on the first connecting surface 101 and the second connecting surface 102, thereby taking away the heat generated by the device to be supported 17 during operation. When the sliding support plate 2 is in the initial position, that is, the sliding support plate 2 covers the second supporting surface 31, the fan assembly can drive the airflow to pass through the heat dissipation holes 14 on the second connecting surface 102 to take away the heat from the device to be supported 17 transferred to the upper surface of the sliding support plate 2. When the sliding support plate 2 is at any supporting height, the fan assembly can take away the heat on the device to be supported 17 through the heat dissipation holes 14. The support bracket not only can provide necessary physical support, but also can significantly improve the heat dissipation performance of the device to be supported 17, so as to ensure that the device to be supported 17 can operate in the best state.

[0056] In addition, the arc-shaped surface 16 at one end of the support body 1 supporting the bearing surface can better disperse the pressure and reduce the risk of sliding or tilting of the support. The arc-shaped surface 16 can also reduce the pressure marks or scratches on the bearing surface.

[0057] The second aspect of the present application provides an electronic device, which comprises: a support body 1 having a first connecting surface 101 and a second connecting surface 102 arranged opposite to each other; a sliding support plate 2 connected to the first connecting surface 101, so that the first support surface 21 of the sliding support plate 2 away from the first connecting surface 101 has different support heights; a rotating support plate 3 having one end rotatably connected to the second connecting surface 102 and the other end used for supporting the support body 1 together on the bearing surface; wherein the rotating support plate 3 can rotate relative to the second connecting surface 102 when the sliding support plate 2 is at any height, so as to change the included angle between the first support surface 21 and the bearing surface; a device body; a first reinforcing part arranged on the first support surface 21 and / or the second support surface 31; and a second reinforcing part arranged on the device body, the second reinforcing part corresponding to and cooperating with the first reinforcing part to lock the device body to the support body 1.

[0058] The second aspect of the present application provides an electronic device, which includes but is not limited to a mobile phone, a tablet, a notebook computer, etc. The device body can be an entity part that directly provides services, performs tasks or operates. For example, in the example of a notebook computer support, the device body refers to the notebook computer itself, which is responsible for processing data, running software and providing user interfaces, etc. The first reinforcing part can be a magnetic structure, which can be directly pasted or embedded on the first support surface 21 and the second support surface 31. The magnetic structure herein can be a strong magnet, and the second reinforcing part can be a metal structure, which can also be installed on the device body by pasting or embedding. The strong magnet and the metal structure utilize the attractive force between them to achieve quick and stable connection between the device body and the support body 1.

[0059] The present application provides an electronic device, which realizes free combination and adaptation of height and angle through the independent adjustment mechanism of the sliding support plate 2 and the rotating support plate 3, and integrates multiple device support, heat dissipation and reinforcement functions, thereby solving the problems of limited adjustment, poor stability and single function in the prior art.

[0060] It should be noted that in the description of the present application, the terms "upper", "lower" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application; the terms "connection", "installation", "fixation" and the like should be understood in a broad sense, for example, "connection" can be fixed connection, can also be detachable connection, or integral connection; can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0061] In the description of the present application, the terms "one embodiment", "some embodiments", "a specific embodiment" and the like mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0062] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto, and any skilled person in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A stent, characterized by, The support body has a first connecting surface and a second connecting surface arranged oppositely; The sliding support plate is connected to the first connecting surface, and a first support surface of the sliding support plate away from the first connecting surface has different support heights; The rotating support plate is rotatably connected to the second connecting surface at one end and is used for being commonly supported with the support body on a bearing surface at the other end; The rotating support plate can rotate relative to the second connecting surface when the sliding support plate is at any height, so as to change the included angle between the first support surface and the bearing surface. Further comprising:

2. The stent of claim 1, wherein The second support surface is arranged on the first connecting surface, and the second support surface has a first state and a second state; When the second support surface is in the first state, the orthogonal projection of the first support surface on the second support surface overlaps the orthogonal projection of the second support surface on the first support surface; When the second support surface is in the second state, the orthogonal projection of the first support surface on the second support surface at least partially intersects the orthogonal projection of the second support surface on the first support surface. Further comprising:

3. The stent of claim 2, wherein, The first limiting part is detachably connected to the first support surface; The first limiting part has a first limiting surface, and the first limiting surface commonly supports a first to-be-supported equipment with the first support surface; The second limiting part is detachably connected to the second support surface; The second limiting part has a second limiting surface, and the second limiting surface commonly supports a second to-be-supported equipment with the second support surface.

4. The support according to claim 2, wherein The first support surface is used for supporting a first to-be-supported equipment, and the second support surface is used for supporting a second to-be-supported equipment; and / or The first support surface and the second support surface are used for commonly supporting a third to-be-supported equipment. Further comprising:

5. The stent defined in Claim 1, wherein, The accommodating cavity is arranged on the support body, and one end of the accommodating cavity is provided with an outlet; The first elastic member is arranged in the accommodating cavity and located at an end of the accommodating cavity away from the outlet, and the first elastic member can stretch and contract along the extension direction of the accommodating cavity; The sliding part is movably arranged in the accommodating cavity, and the first elastic member abuts against the sliding part, and the stretching and contraction of the first elastic member can drive the sliding part to slide in the accommodating cavity; The locking assembly is arranged on the support body and is used for locking the sliding part in the accommodating cavity. The locking assembly comprises:

6. The stent defined in Claim 5, wherein, The pressing part is connected to one end of the first elastic member away from the sliding part and is exposed on the support body at the other end; The limiting cavity is arranged in the accommodating cavity and has the same extension direction as the accommodating cavity, and the limiting cavity has an opening facing the sliding part; The second elastic member is arranged on the sliding part, and the second elastic member can stretch and contract perpendicularly to the extension direction of the first elastic member; When the end of the sliding part away from the first elastic member is subjected to a first acting force or the pressing part is subjected to a second acting force, the two ends of the second elastic member can slide and abut against the inner cavity wall of the limiting cavity, so that the sliding part is in a locked state or an unlocked state. Further comprising:

7. The stent defined in Claim 1, wherein, ​ A rack is arranged on both sides of the support body and extends along the direction in which the first support surface slides; A gear is arranged on both sides of the rotating support plate and meshes with the rack on the corresponding side.

8. The stent defined in Claim 1, wherein, Further comprising: A first functional interface for connecting a device to be supported; A second functional interface connected to the first functional interface for signal input and output.

9. The stent defined in Claim 1, wherein, Further comprising: A receiving cavity is arranged in the support body; A fan assembly is arranged in the receiving cavity; A plurality of heat dissipation holes are arranged on the first connecting surface and the second connecting surface.

10. An electronic device, comprising: Comprising: A support body having a first connecting surface and a second connecting surface arranged opposite to each other; A sliding support plate is slidably connected to the first connecting surface, so that the first support surface of the sliding support plate away from the first connecting surface has different support heights; A rotating support plate is rotatably connected to the second connecting surface at one end and is used to support the support body together on a bearing surface at the other end; Wherein, the rotating support plate can rotate relative to the second connecting surface when the sliding support plate is at any height, so as to change the included angle between the first support surface and the bearing surface; A device body; A first reinforcing part is arranged on the first support surface and / or the second support surface; A second reinforcing part is arranged on the device body, and the second reinforcing part corresponds to and cooperates with the first reinforcing part to lock the device body to the support body.