Support devices and electronic equipment

By designing a detachable and rotatable support structure, the problem of poor adaptability of the support device is solved, achieving stable support and neatness under multiple postures, and meeting the needs of various usage scenarios.

CN115681701BActive Publication Date: 2026-05-26LENOVO (BEIJING) LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
LENOVO (BEIJING) LTD
Filing Date
2022-10-17
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing support devices are limited in form and have poor adaptability, failing to meet the needs of various application scenarios.

Method used

A support device is designed, including a first support body and a second support body. The first support body is detachably connected to the display device, and the second support body is rotatably connected and in contact with the bearing surface. A portion of the second support body matches the first accommodating space to ensure that the connection between the display device and the first support body is not affected. The support device can support the display device separately or simultaneously through the two support bodies, thereby improving its adaptability.

Benefits of technology

It achieves stable support for the support device in different postures, enhances adaptability, can adapt to various usage scenarios, and maintains the cleanliness and functional versatility of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a support device and an electronic device. The support device includes: a first support body, comprising: a first body for detachably connecting to a display device and having a first accommodating space; a second body rotatably connected to the first body for contacting a supporting surface to maintain the spatial posture of the first body or the first body connected to the display device; and a second support body for detachably connecting to the display device and for contacting a supporting surface to maintain the spatial posture of the display device; wherein at least a portion of the second support body matches the first accommodating space, such that when the second support body is connected to the display device, it does not affect the connection between the display device and the first body.
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Description

Technical Field

[0001] This application relates to a support device and an electronic device. Background Technology

[0002] Support devices are commonly used; however, current support devices are limited in form and have poor adaptability. Summary of the Invention

[0003] In view of this, embodiments of this application aim to provide a support device and an electronic device.

[0004] To achieve the above objectives, the technical solution of this application is implemented as follows:

[0005] This application embodiment provides a support device, the support device comprising:

[0006] The first support includes:

[0007] A first body, for detachable connection with a display device, has a first receiving space;

[0008] The second body is rotatably connected to the first body and is used to contact the bearing surface to maintain the spatial posture of the first body or the first body connected to the display device.

[0009] The second support is used to be detachably connected to the display device and to contact the supporting surface to maintain the spatial orientation of the display device.

[0010] Wherein, at least a portion of the second support body matches the first accommodating space, such that when the second support body is connected to the display device, it does not affect the connection between the display device and the first body.

[0011] In some optional implementations, the first ontology includes:

[0012] The first plate is rotatably connected to the second body;

[0013] The second plate is rotatably connected to the first plate and is used to connect to the display device and support the display device.

[0014] The second plate can rotate relative to the first plate to satisfy the condition of non-coplanarity with the first plate, and the second body maintains the spatial posture of the second plate or the second plate connected to the display device through the first plate.

[0015] In some alternative implementations, the first plate portion has a first space near the second plate portion, and the second plate portion has a second space near the first plate portion; the first space and the second space are connected to form the first accommodating space.

[0016] In some alternative implementations, the second support includes:

[0017] A connecting part for detachably connecting to a display device;

[0018] The support portion is rotatably connected to the connecting portion and has at least two support modes;

[0019] In the first support mode, the first part of the support portion contacts the bearing surface to maintain the first spatial posture of the display device;

[0020] In the second support mode, the second part of the support contacts the bearing surface to maintain the second spatial posture of the display device, and the first spatial posture and the second spatial posture satisfy the vertical condition.

[0021] In some alternative implementations, the first receiving space connects a first surface of the first body and a second surface of the first body; the second surface and the first surface are arranged back to back.

[0022] When at least a portion of the second support is located in the first accommodating space and connected to the display device, the third surface of the second support and the first surface are coplanar, and the fourth surface of the second support and the second surface are coplanar; wherein, the first surface is the surface on the side where the first body is connected to the display device, the third surface is the surface on the side where the second support is connected to the display device, and the fourth surface is disposed opposite to the third surface.

[0023] In some alternative implementations, the support device further includes:

[0024] Two fixed shells are fixed to the second body at a distance from each other, located at the connection between the second body and the first body;

[0025] A third receiving space is formed between the two fixed shells, the third receiving space being used to receive the input device.

[0026] In some alternative implementations, the length of the fixed shell in the first direction is greater than its length in the second direction; the first body and the second body are rotatably connected by a first rotating shaft assembly;

[0027] The fixed shell has an adjacent first part and a second part in a first direction; the first part is used to accommodate a first rotating shaft assembly; the second part is used to form the third accommodating space; the first direction and the first rotation axis satisfy a perpendicular condition, and the first rotation axis is the axis on which the first body rotates relative to the second body.

[0028] In some alternative implementations, the second body and the first body have the same length in the direction of the first rotation axis, the connecting end of the first body to the free end of the first body has a first length along the first body, the connecting end of the second body to the free end of the second body has a second length along the second body, and the first length is less than the second length.

[0029] Wherein, the first rotation axis is the axis on which the first body rotates relative to the second body, the connecting end of the first body is the end where the first body and the second body are connected, and the connecting end of the second body is the end where the second body and the first body are connected.

[0030] In some optional implementations,

[0031] The first body has a first communication interface, the end of which is exposed on a first surface of the first body for docking with a second communication interface of the display device.

[0032] The second body has an input component, which is electrically connected to the first communication interface;

[0033] The first body has a first connector, which can act on a first surface of the first body to maintain the positional relationship between the first body and the display device; when the first body is connected to the display device through the first connector, the first communication interface and the second communication interface are docked.

[0034] This application also provides an electronic device, including a display device and the support device described in this application embodiment.

[0035] The support device in this embodiment includes: a first support body, comprising: a first body for detachably connecting to a display device and having a first accommodating space; a second body rotatably connected to the first body for contacting a bearing surface to maintain the spatial posture of the first body or the first body connected to the display device; and a second support body for detachably connecting to the display device and for contacting a bearing surface to maintain the spatial posture of the display device; wherein at least a portion of the second support body matches the first accommodating space, such that when the second support body is connected to the display device, it does not affect the connection between the display device and the first body; the support device can support the display device through both the first support body and the second support body; simultaneously, when the second support body is connected to the display device, it does not affect the connection between the display device and the first body; greatly improving the adaptability of the support device. Attached Figure Description

[0036] Figure 1 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0037] Figure 2 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0038] Figure 3 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0039] Figure 4 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0040] Figure 5 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0041] Figure 6 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0042] Figure 7 This is a schematic diagram of an optional structure of the second support body of the support device in the embodiments of this application;

[0043] Figure 8 This is a schematic diagram of an optional structure of the second support body of the support device in the embodiments of this application;

[0044] Figure 9 This is a schematic diagram of an optional structure of the second support body of the support device in the embodiments of this application;

[0045] Figure 10 This is a schematic diagram of an optional structure of the second support body of the support device in the embodiments of this application;

[0046] Figure 11 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0047] Figure 12 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0048] Figure 13 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0049] Figure 14 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;

[0050] Figure 15 This is a schematic diagram of an optional structure of the display device in an embodiment of this application;

[0051] Figure 16This is a schematic diagram of an optional structure of the electronic device in an embodiment of this application;

[0052] Figure 17 This is a schematic diagram of an optional structure of the electronic device in an embodiment of this application;

[0053] Figure 18 This is a schematic diagram of an optional structure of the electronic device in an embodiment of this application;

[0054] Figure 19 This is a schematic diagram of an optional structure of the electronic device in an embodiment of this application;

[0055] Figure 20 This is a schematic diagram of an optional structure of the electronic device in an embodiment of this application.

[0056] Reference numerals: 101, first surface; 102, end face; 103, third surface; 100, first support; 110, first body; 111, first plate portion; 1111, first space; 112, second plate portion; 1121, second space; 113, first receiving space; 114, first communication interface; 120, second body; 121, input component; 130, fixing shell; 131, first part; 132, second part; 133, third receiving space; 1 60. First magnetic component; 200. Second support; 210. Connecting part; 211. Second receiving space; 220. Support part; 300. Display device; 301. First surface; 302. Second surface; 310. First side; 320. Second side; 330. Third side; 340. Fourth side; 350. Second magnetic component; 360. First structural part; 370. Second structural part; 380. Connecting part; 400. Input device; 500. Support device. Detailed Implementation

[0057] The technical solution of this application will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0058] In the embodiments described in this application, it should be noted that, unless otherwise stated and limited, the term "connection" should be interpreted broadly. For example, it can be an electrical connection, or a connection between two internal components. It can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above term according to the specific circumstances.

[0059] It should be noted that the terms "first" and "second" used in the embodiments of this application are merely used to distinguish similar objects and do not represent a specific order of objects. It is understood that "first" and "second" can be interchanged in a specific order or sequence where permitted. It should be understood that the objects distinguished by "first" and "second" can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in an order other than those illustrated or described herein.

[0060] The following combination Figures 1 to 15 The support device described in the embodiments of this application will be described in detail.

[0061] The support device includes a first support body 100 and a second support body 200. The first support body 100 includes a first body 110 and a second body 120. The first body 110 is detachably connected to the display device 300 and has a first receiving space 113. The second body 120 is rotatably connected to the first body 110 and is used to contact a bearing surface to maintain the spatial posture of the first body 110 or the first body 110 connected to the display device 300. The second support 200 is detachably connected to the display device 300 and is used to contact the bearing surface to maintain the spatial orientation of the display device 300. At least a portion of the second support 200 matches the first accommodating space 113, such that when the second support 200 is connected to the display device 300, it does not affect the connection between the display device 300 and the first body 110. The support device can support the display device 300 via both the first support 100 and the second support 200. Simultaneously, when the second support 200 is connected to the display device 300, it does not affect the connection between the display device 300 and the first body 110, greatly improving the adaptability of the support device.

[0062] In the embodiments of this application, the structure of the display device is not limited. For example, the display device can be a tablet computer or a mobile phone. As another example, the display device can have opposite first surfaces 301 and 302, where the first surface 301 has a display component, and the second surface 302 has at least a first structural portion 360 and a second structural portion 370, wherein there is a height difference between the first structural portion 360 and the first surface 301 at a first height and the second structural portion 370 and the first surface 301 at a second height. The shapes of the first structural portion 360 and the second structural portion 370 are not limited, as long as there is a height difference between the first structural portion 360 and the second structural portion 370 relative to the first surface 301. For example, such as... Figure 16As shown, the first structural portion 360 can be flat, and the second structural portion 370 can be flat. The first height can be greater than the second height, and the first structural portion 360 can be a protruding structure formed on the second surface 302. Of course, the first height can also be less than the second height.

[0063] In this embodiment of the application, when the first body 110 is detachably connected to the display device 300, at least a portion of the second support 200 can be located within the first accommodating space 113 and connected to the display device 300. At this time, the second support 200 is in a stored state, and the second support 200 is stored in the first accommodating space 113 so that the support device is neater; the first accommodating space 113 is used to store the second support 200.

[0064] In this embodiment, the structure of the first body 110 is not limited. For example, the first body 110 can be a plate-like structure. As an example, such as Figure 1 As shown, the first body 110 can be a cuboid structure.

[0065] The shape of the first accommodating space 113 is not limited. For example, such as Figure 1 As shown, the first accommodating space 113 can be rectangular.

[0066] The first receiving space 113 can be a through slot, in which case the first receiving space 113 connects two back-to-back surfaces of the first body 110. For example, the first receiving space 113 connects the first surface 101 and the second surface of the first body 110; the second surface and the first surface 101 are arranged back-to-back; wherein, the first surface 101 is the surface of the first body 110 on the side connected to the display device 300, such as... Figure 1 As shown. Of course, the first receiving space 113 can be a groove, in which case the surface of the first body 110 is only provided with an opening that communicates with the first receiving space 113.

[0067] In this embodiment, the structure of the second body 120 is not limited. For example, the second body 120 can be a plate-like structure. As an example, such as Figure 1 As shown, the second body 120 can be a cuboid structure.

[0068] The method by which the second body 120 is rotatably connected to the first body 110 is not limited. For example, the second body 120 and the first body 110 can be rotatably connected through a first rotating shaft assembly.

[0069] The second body 120 is used to maintain the spatial posture of the first body 110 or the first body 110 connected to the display device 300 by contacting the supporting surface. When the second body 120 is in contact with the supporting surface, there may be a gap between the first body 110 and the supporting surface. The supporting surface refers to the surface that supports the support device; for example, the supporting surface can be a desktop.

[0070] At least a portion of the second support 200 mates with the first receiving space 113, such that when the second support 200 is connected to the display device 300, it does not affect the connection between the display device 300 and the first body 110. The matching of at least a portion of the second support 200 with the first receiving space 113 can mean that a portion of the second support 200 can be accommodated within the first receiving space 113, so that when a portion of the second support 200 is connected to the display device 300 within the first receiving space 113, it does not affect the connection between the display device 300 and the first body 110. Alternatively, the matching of at least a portion of the second support 200 with the first receiving space 113 can mean that the entire second support 200 can be accommodated within the first receiving space 113, so that when the second support 200 is connected to the display device 300 within the first receiving space 113, it does not affect the connection between the display device 300 and the first body 110.

[0071] For example, the first receiving space 113 connects the first surface 101 of the first body 110 and the second surface of the first body 110; the second surface and the first surface 101 are arranged back to back; when at least a portion of the second support 200 is located in the first receiving space 113 and connected to the display device 300, the third surface 103 of the second support 200 and the first surface 101 satisfy the coplanar condition, wherein the first surface 101 is the surface on the side where the first body 110 is connected to the display device 300, and the third surface 103 is the surface on the side where the second support 200 is connected to the display device 300, such as... Figure 1 As shown; so that the display device 300 can simultaneously contact the first surface 101 and the third surface 103 that satisfy the coplanar condition. The coplanar condition means coplanar or substantially coplanar.

[0072] The fourth surface of the second support 200 can be coplanar with the second surface; the fourth surface and the third surface 103 are arranged back to back; so that the second support 200 is located in the first receiving space 113 and maintains the same shape as the first body 110, improving the neatness of the support device. Of course, the fourth surface of the second support 200 may not be coplanar with the second surface.

[0073] For example, if the first opening of the first accommodating space 113 is located on the second surface, and at least a portion of the second support 200 is located in the first accommodating space 113 and connected to the display device 300, the second support 200 is not in contact with the display device 300 within the first accommodating space 113. The second support 200 can be connected to the display device 300 via a magnetic structure. The portion of the first body 110 located between the second support 200 and the display device 300 does not affect the connection between the second support 200 and the display device 300.

[0074] The fourth surface of the second support 200 and the second surface of the first body 110 can be coplanar; the fourth surface of the second support 200 is the surface of the second support 200 that is exposed on the outside when at least a portion of the second support 200 is located within the first receiving space 113; so that the second support 200 maintains a consistent shape with the first body 110 in the first receiving space 113, improving the neatness of the support device. Of course, the fourth surface of the second support 200 and the second surface may not necessarily be coplanar.

[0075] Of course, if at least a portion of the second support 200 is located within the first receiving space 113, the second support 200 can also be snapped into the first receiving space 113 so that the second support 200 can also be stored in the first receiving space 113 when the first body 110 is not connected to the display device 300; the second support 200 can be snapped into the first receiving space 113 by a snapping structure.

[0076] In some optional implementations of the embodiments of this application, the first body 110 may include: a first plate portion 111 and a second plate portion 112. The first plate portion 111 is rotatably connected to the second body 120; the second plate portion 112 is rotatably connected to the first plate portion 111, and the second plate portion 112 is used to connect to the display device 300 and support the display device 300; the second plate portion 112 can rotate relative to the first plate portion 111 to satisfy the non-coplanar condition with the first plate portion 111, and the second body 120 maintains the spatial posture of the second plate portion 112 or the second plate portion 112 connected to the display device 300 through the first plate portion 111. Based on the rotation of the second plate portion 112 relative to the first plate portion 111 to satisfy the non-coplanar condition with the first plate portion 111, the spatial posture of the support device supporting the display device 300 can be increased.

[0077] In this implementation, since the first plate portion 111 is rotatably connected to the second body 120, and the second plate portion 112 is rotatably connected to the first plate portion 111, and the second plate portion 112 is connected to the display device 300 to support the display device 300, the support device can support the display device 300 at different display angles, such as... Figure 4 As shown.

[0078] In this implementation, the shape of the first plate portion 111 is not limited. For example, the first plate portion 111 can be a cuboid structure.

[0079] The method by which the first plate portion 111 and the second body 120 are rotatably connected is not limited. For example, the first plate portion 111 and the second body 120 can be rotatably connected through a first pivot assembly.

[0080] In this implementation, the shape of the second plate portion 112 is not limited. For example, the second plate portion 112 can be a cuboid structure.

[0081] The first accommodating space 113 can be disposed in the first plate portion 111 or in the second plate portion 112. Of course, the first accommodating space 113 can also be disposed in the first plate portion 111 and the second plate portion 112.

[0082] For example, the first plate portion 111 has a first space 1111 on the side near the second plate portion 112, and the second plate portion 112 has a second space 1121 on the side near the first plate portion 111; the first space 1111 and the second space 1121 are connected to form the first accommodating space 113.

[0083] The first space 1111 can be a through groove, in which case the first space 1111 connects the two back-to-back surfaces of the first plate portion 111. Of course, the first space 1111 can also be a recess, in which case the surface of the first plate portion 111 is provided with only one opening communicating with the first space 1111.

[0084] The second space 1121 can be a through groove, in which case the second space 1121 connects the two back-to-back surfaces of the second plate portion 112. Of course, the second space 1121 can also be a recess, in which case the surface of the second plate portion 112 is provided with only one opening communicating with the second space 1121.

[0085] The first space 1111 and the second space 1121 can both be through slots or both be recesses. Of course, the first space 1111 and the second space 1121 can also have one being a through slot and the other a recess. As an example, for instance... Figure 6 As shown, both the first space 1111 and the second space 1121 can be through slots.

[0086] When the second plate portion 112 rotates relative to the first plate portion 111 to a position where it is not coplanar with the first plate portion 111, the first space 1111 and the second space 1121 are not on the same plane. In this case, at least a portion of the second support body 200 matches the second space 1121, ensuring that when the second support body 200 is connected to the display device 300, it does not affect the connection between the display device 300 and the second plate portion 112. Figure 2 and Figure 3 As shown. The first surface 101 and the second surface described above are the surfaces of the second plate portion 112, and will not be described again here.

[0087] In this implementation, the second plate portion 112 can rotate relative to the first plate portion 111 until it satisfies the coplanar condition with the first plate portion 111, such as... Figure 5 As shown, the first plate portion 111 and the second plate portion 112 are on the same plane. The first plate portion 111 can be connected to the display device 300. When both the first plate portion 111 and the second plate portion 112 are connected to the display device 300, the first plate portion 111 and the second plate portion 112 are similar to a single plate. In this case, the first plate portion 111, the second plate portion 112, and the display device 300 can rotate together relative to the second body 120. Of course, if the second plate portion 112 rotates relative to the first plate portion 111 to satisfy the coplanar condition with the first plate portion 111, the first plate portion 111 may not be connected to the display device 300.

[0088] Of course, in other implementations of this application, the first body 110 can also be formed by a structural component, such as... Figure 1 As shown.

[0089] In some optional implementations of this application, the second support 200 may include a connecting portion 210 and a supporting portion 220. The connecting portion 210 is detachably connected to the display device 300; the supporting portion 220 is rotatably connected to the connecting portion 210, and the supporting portion 220 has at least two support modes; wherein, in the first support mode, the first portion 131 of the supporting portion 220 contacts the bearing surface to maintain the first spatial posture of the display device 300; in the second support mode, the second portion 132 of the supporting portion 220 contacts the bearing surface to maintain the second spatial posture of the display device 300, the first spatial posture and the second spatial posture satisfy a vertical condition, and the support device, through the contact between the second supporting portion 200 and the bearing surface, enables the display device 300 to be in the first spatial posture and the second spatial posture, thereby greatly improving the adaptability of the support device.

[0090] In this implementation, the structure of the connecting part 210 is not limited. For example, the connecting part 210 can be a plate-like structure.

[0091] The method by which the connecting part 210 is detachably connected to the display device 300 is not limited. For example, the connecting part 210 and the display device 300 can be detachably connected by a magnetic structure or a snap-fit ​​structure.

[0092] In this implementation, the structure of the support portion 220 is not limited. For example, the support portion 220 can be a plate-like structure.

[0093] The method by which the support portion 220 and the connecting portion 210 are rotatably connected is not limited. For example, the support portion 220 and the connecting portion 210 can be rotatably connected through a third rotating shaft assembly.

[0094] The position where the support portion 220 connects to the connecting portion 210 is not limited. For example, the side of the support portion 220 can be rotatably connected to the side of the connecting portion 210.

[0095] For example, such as Figure 7 and Figure 8 As shown, the connecting portion 210 has a second receiving space 211, and the supporting portion 220 is connected to the connecting portion 210 in the second receiving space 211. The supporting portion 220 is rotatable relative to the connecting portion 210 until it is located within the second receiving space 211 and flush with the outer surface of the connecting portion 210. Figure 9 As shown, the support portion 220 and the connecting portion 210 are approximately a single plate, and the support portion 220 and the connecting portion 210 are in a closed state.

[0096] The shape of the second accommodating space 211 is not limited. For example, such as Figure 8 As shown, the second accommodating space 211 can be rectangular.

[0097] The condition of being level refers to being level or roughly level.

[0098] In this implementation, the first portion 131 and the second portion 132 of the support portion 220 are not limited. For example, as Figure 8 As shown, the first part 131 of the support 220 can be the side of the support 220, and the second part 132 of the support 220 can be the corner of the support 220.

[0099] In this implementation, the vertical condition refers to being vertical or approximately vertical.

[0100] In this implementation, the display device 300 has a plate-like shape and has a first side portion 310, a second side portion 320, a third side portion 330, and a fourth side portion 340 connected in sequence. The lengths of the first side portion 310 and the third side portion 330 satisfy the same condition, and the lengths of the second side portion 320 and the fourth side portion 340 also satisfy the same condition. Adjacent sides of the first side portion 310, the second side portion 320, the third side portion 330, and the fourth side portion 340 satisfy the perpendicular condition. In the first spatial posture, the first side portion 310 and the third side portion 330 satisfy the parallel condition with the bearing surface. In the second spatial posture, the second side portion 320 and the fourth side portion 340 satisfy the parallel condition with the bearing surface.

[0101] Here, "same condition" means identical or largely identical. "Parallel condition" means parallel or largely parallel.

[0102] Here, the length of the first side portion 310 can be greater than the length of the second side portion 320, such as... Figure 8 and Figure 10 As shown. Of course, the length of the first side portion 310 can also be less than or equal to the length of the second side portion 320.

[0103] As an example, the display device 300 has a cuboid structure. The first spatial orientation can be a landscape orientation, such as... Figure 8 As shown. The second spatial pose can be a portrait pose, such as... Figure 10 As shown.

[0104] In this implementation, at least a portion of the second support 200 can be matched with the first accommodating space 113 by the connecting portion 210 matching the first accommodating space 113. At least a portion of the connecting portion 210 can be detachably connected to the display device 300 within the first accommodating space 113. Of course, the support portion 220 and the connecting portion 210 can be in a closed state. In this case, the support device mainly supports the display device 300 through the first support 100, and the second support 200 is housed within the first accommodating space 113. The closed state of the support portion 220 and the connecting portion 210 is more conducive to the housing of the support portion and the connecting portion 210.

[0105] In this implementation, the third surface 103 and the fourth surface refer to the third surface 103 and the fourth surface of the connecting portion 210.

[0106] In some optional implementations of the embodiments of this application, the support device may further include: two fixed shells 130. The two fixed shells 130 are fixedly fixed to the second body 120 at a distance, and the two fixed shells 130 are located at the connection between the second body 120 and the first body 110; a third accommodating space 133 is formed between the two fixed shells 130, and the third accommodating space 133 is used to accommodate the input device 400; so that the support device can also accommodate the input device 400.

[0107] In this implementation, the shape of the fixing shell 130 is not limited. For example, the fixing shell 130 can be a cuboid. Or, for example, the fixing shell 130 can be a sphere.

[0108] For example, the length of the fixed shell 130 in the first direction is greater than its length in the second direction; the first direction and the first axis of rotation can satisfy the perpendicular condition; the first axis of rotation is the axis of rotation of the first body 110 relative to the second body 120; the second direction can satisfy the perpendicular condition with both the first direction and the first axis of rotation; the second direction can satisfy the perpendicular condition with the bearing surface. As an example, such as Figure 4 As shown, the second direction B can be the height direction of the second body 120. When the second body 120 is a cuboid structure, the first direction A can be the width direction of the second body 120, and the first rotation axis can be the length direction of the second body 120.

[0109] In this implementation, the first body 110 and the second body 120 can be rotatably connected by a first rotating shaft assembly, and at least a portion of the first rotating shaft assembly can be located inside the fixed shell 130; at this time, the fixed shell 130 is used to form a third receiving space 133 and to receive at least a portion of the first rotating shaft assembly.

[0110] As an example, the fixed housing 130 has adjacent first portions 131 and second portions 132 in a first direction; the first portion 131 is used to accommodate the first rotating shaft assembly; the second portion 132 is used to form the third accommodating space 133; at this time, the second portion 132 forming the third accommodating space 133 is closer to the free end of the second body 120, and the first portion 131 accommodating the first rotating shaft assembly is farther away from the free end of the second body 120, where the free end of the second body 120 refers to the opposite end of the connecting end of the second body 120, and the connecting end of the second body 120 refers to the end where the second body 120 is connected to the first body 110. In one application, such as Figure 4 As shown, the cross-section of the fixed shell 130 is elliptical.

[0111] The number of first rotating shaft assemblies is not limited. For example, the support device may include two first rotating shaft assemblies. The first part 131 of one of the two fixed shells 130 accommodates one of the two first rotating shaft assemblies. The first part 131 of the other fixed shell 130 accommodates the other first rotating shaft assembly. A third receiving space 133 is formed between the second part 132 of one of the two fixed shells 130 and the second part 132 of the other fixed shell 130. The third receiving space 133 may be a strip-shaped space formed along the direction of the first rotation axis. The strip-shaped space may be parallel to the first rotation axis.

[0112] In this implementation, the structure of the input device 400 is not limited. For example, the input device 400 can be an input pen used to input information into the display device 300. The input device 400 can be detachably connected to the first or third side of the display device; if the first or third side of the display device is the side of the display device closer to the second body 120 when the display device 300 is detachably connected to the first body 110, then the input device 400 located on the first or third side of the display device 300 can be accommodated in the third accommodating space 133. Of course, the input device 400 can also be directly placed in the third accommodating space 133.

[0113] In some optional implementations of the embodiments of this application, the first body 110 has a first communication interface 114, the end of the first communication interface 114 is exposed on the first surface 101 of the first body 110 for docking with the second communication interface of the display device 300; the second body 120 has an input component 121, the input component 121 is electrically connected to the first communication interface 114; when the first body 110 is connected to the display device 300, the first communication interface 114 and the second communication interface are docked and electrically connected, and the input component 121 can input information to the display device 300 through the first communication interface 114 and the second communication interface.

[0114] In this implementation, the structure of the first communication interface 114 is not limited. For example, the first communication interface 114 can be a spring-loaded interface (Pogo Pin interface).

[0115] When the first body 110 includes a first plate portion 111 and a second plate portion 112, the first communication interface 114 can be disposed on the second plate portion 112, such as... Figure 3 As shown.

[0116] In this implementation, the structure of the input component 121 is not limited. For example, the input component 121 can be a physical keyboard or a touch input pad.

[0117] In this implementation, the first body 110 may have a first connector, which acts on the first surface 101 of the first body 110 to maintain the positional relationship between the first body 110 and the display device 300. When the first body 110 is connected to the display device 300 through the first connector, the first communication interface 114 and the second communication interface are docked so that the first communication interface 114 and the second communication interface are accurately docked through the first connector, preventing the first communication interface 114 and the second communication interface from being misaligned and thus unable to be electrically connected.

[0118] The structure of the first connector is not limited. For example, the first connector may include at least two first magnetic components, which are spaced apart from each other on the first body 110. Each first magnetic component has at least two first magnetic units with opposite magnetism, so that when there is a positional deviation between the first communication interface 114 and the second communication interface, the first body 110 and the display device 300 are separated; when there is no positional deviation between the first communication interface 114 and the second communication interface, the first body 110 and the display device 300 are connected. The display device may include at least two second magnetic components 350, which correspond to the positions of the at least two first magnetic components, and the at least two first magnetic components can be attracted and connected to the at least two second magnetic components 350.

[0119] As an example, such as Figure 14 and Figure 15As shown, the first connector may include: four sets of first magnetic components 160, which are disposed at the four corners of the first body 110. Each first magnetic component 160 includes five first magnetic units, three of which are positive and two are negative. The first magnetic component 160 is rectangular, with the three positive units located at the three corners, one of the two negative units located at one corner, and the other at the center. The arrangement of the five first magnetic units in each of the four sets of first magnetic components 160 is different, so that when there is a positional deviation between the first body 110 and the display device 300, the first body 110 and the display device 300 are separated; when there is no positional deviation, the first body 110 and the display device 300 are connected. The display device may include: four sets of second magnetic components 350, the four sets of second magnetic components 350 being positioned corresponding to four sets of first magnetic components 160, each second magnetic component 350 including five second magnetic units, the polarity of the five second magnetic units being opposite to the polarity of the five first magnetic units at the corresponding positions.

[0120] When the first body 110 includes a first plate portion 111 and a second plate portion 112, the first communication interface 114 may be provided on the second plate portion 112, and the first connector may be provided on the second plate portion 112.

[0121] In some optional implementations of this application, the second body 120 and the first body 110 have the same length in the first rotation axis direction. The connection end of the first body 110 to its free end has a first length L1 along the first body 110, and the connection end of the second body 120 to its free end has a second length L2 along the second body 120. The first length L1 is smaller than the second length L2. Figure 11 As shown; so that the second surface of the first body 110 and the surface of the first structural part 360 of the second surface of the display device 300 satisfy the coplanar condition, so that the support device and the display device 300 form a neat structural shape.

[0122] In this implementation, the connecting end of the first body 110 refers to the end where the first body 110 is connected to the second body 120, and the free end of the first body 110 refers to the end of the first body 110 opposite to the connecting end of the first body 110.

[0123] When the first body 110 includes a first plate portion 111 and a second plate portion 112, the connecting end of the first body 110 refers to the end where the first plate portion 111 is connected to the second body 120, and the free end of the first body 110 refers to the free end of the second plate portion 112; the first plate portion 111 rotates relative to the second plate portion 112 about a second rotation axis, and the second rotation axis satisfies the condition of parallelism with the first rotation axis; the first length is the sum of the distance between the connecting end of the first plate portion 111 and the second rotation axis and the distance between the free end of the second plate portion 112 and the second rotation axis; of course, when the second plate portion 112 rotates relative to the first plate portion 111 to satisfy the condition of coplanarity, the first length L1 is the distance between the connecting end of the first plate portion 111 and the free end of the second plate portion 112, such as... Figure 11 As shown.

[0124] When the first body 110 is a structural component, the first length is the distance between the connecting end of the first body 110 and the free end of the first body 110.

[0125] In this implementation, the connecting end of the second body 120 refers to the end where the second body 120 is connected to the first body 110, and the free end of the second body 120 refers to the end of the second body 120 opposite to the connecting end of the first body 110. The second length is the distance between the connecting end of the second body 120 and the free end of the second body 120.

[0126] In this implementation, the free end of the first body 110 can contact the first structural portion 360 of the second surface of the display device 300, so that the first body 110 supports the display device 300 through the free end of the first body 110.

[0127] In this embodiment, the first body 110 is rotatable relative to the second body 120 to a retracted state; in the retracted state, the first surface 101 faces the second body 120, and a fourth accommodating space is formed between the first body 110 and the second body 120, the fourth accommodating space being capable of accommodating the display device 300, such as... Figure 11 and Figure 12 As shown.

[0128] In the stored state, when the first body 110 includes a first plate portion 111 and a second plate portion 112, the first plate portion 111 and the second plate portion 112 satisfy the coplanar condition.

[0129] In the stored state, when the second support 200 includes a connecting portion 210 and a support portion 220, the connecting portion 210 and the support portion 220 are in a closed state.

[0130] The first body 110 is connected to the display device 300. When the first body 110 can rotate relative to the second body 120, the first body 110 and the second body 120 can form a laptop posture, such as... Figure 5 As shown; at this time, when the first body 110 includes a first plate portion 111 and a second plate portion 112, the first plate portion 111 and the second plate portion 112 satisfy the coplanar condition.

[0131] The second plate portion 112 is connected to the display device 300. When the first plate portion 111 is separated from the display device 300, the second plate portion 112 can rotate relative to the first plate portion 111, and the first plate portion 111 can rotate relative to the second body 120. At this time, the second body 120 can support the display device 300 at various angles via the first plate portion 111 and the second plate portion 112, such as... Figure 13 and Figure 4 As shown. Simultaneously, the second support 200 can also support the display device 300 in a flat, tablet-like position, as... Figure 7 and Figure 10 .

[0132] In this embodiment, the supporting device includes: a first support body 100, comprising: a first body 110 for detachably connecting to the display device 300, having a first accommodating space 113; a second body 120 rotatably connected to the first body 110, for contacting a bearing surface to maintain the spatial posture of the first body 110 or the first body 110 connected to the display device 300; and a second support body 200 for detachably connecting to the display device 300 and for contacting a bearing surface to maintain the spatial posture of the display device 300; wherein... At least a portion of the second support 200 matches the first accommodating space 113, such that when the second support 200 is connected to the display device 300, it does not affect the connection between the display device 300 and the first body 110; the support device can support the display device 300 through both the first support 100 and the second support 200; at the same time, when the second support 200 is connected to the display device 300, it does not affect the connection between the display device 300 and the first body 110; thus greatly improving the adaptability of the support device.

[0133] This application also describes an electronic device, which includes a display device 300 and the support device described in this application embodiment.

[0134] In the embodiments of this application, the structure of the display device 300 is not limited. For example, the display device 300 can be a tablet computer.

[0135] In some optional implementations of the embodiments of this application, the display device has an opposite first surface 301 and a second surface 302. The first surface 301 has a display component, and the second surface 302 has at least a first structural portion 360 and a second structural portion 370. A height difference exists between a first height of the first structural portion 360 and the first surface 301 and a second height of the second structural portion 370 and the first surface 301. A support device 500 is used to contact the second surface 302 of the display device and is able to maintain the spatial orientation of the display device at least using the connecting portion 380 of the first structural portion 360 and the second structural portion 370. The connecting portion 380 embodies the height difference, so that the support device 500 can maintain the spatial orientation of the display device at least using the connecting portion 380 of the first structural portion 360 and the second structural portion 370, greatly improving the adaptability of the electronic device.

[0136] In this implementation, the spatial orientation of the display device maintained by the connection portion 380 of the first structural part 360 and the second structural part 370 can be a second support body, such as... Figure 16 and Figure 17 As shown. Of course, the first support body can be used to maintain the spatial orientation of the display device by utilizing the connection portion 380 of the first structural part 360 and the second structural part 370, such as... Figure 18 As shown.

[0137] In this implementation, the structure of the display device is not limited. For example, such as Figure 16 As shown, the display device has a plate-like shape and has a first side, a second side, a third side, and a fourth side connected in sequence.

[0138] The shapes of the first structural portion 360 and the second structural portion 370 are not limited, as long as there is a height difference between the first structural portion 360 and the second structural portion 370 relative to the first surface 301. For example, such as Figure 16 As shown, the first structural part 360 can be in the shape of a flat plate, and the second structural part 370 can be in the shape of a flat plate.

[0139] The first height can be greater than the second height, and the first structural part 360 can be a protrusion formed on the second surface 302. Of course, the first height can also be less than the second height.

[0140] The location of the first structural portion 360 is not limited. For example, the first structural portion 360 may be located at the end of the display device. As an example, Figure 16 As shown, the first structural part 360 is located on the first side.

[0141] The size of the first structural section 360 is not limited. For example, as... Figure 16As shown, the lengths of the first structural portion 360 and the display device in the third direction satisfy the same condition, so as to increase the length of the first structural portion 360 in the third direction. The same condition means that they are the same or substantially the same. The third direction can be the direction where the first side and the third side are located, or it can be the direction formed between the second side and the fourth side.

[0142] The connecting portion 380 can be arranged along a third direction to increase the contact area between the support device 500 and the connecting portion 380, thereby improving the support stability of the support device 500.

[0143] In this implementation, the structure of the support device 500 is not limited, as long as the support device 500 can contact the second surface 302 of the display device, and can at least maintain the spatial orientation of the display device using the connecting portion 380 of the first structural part 360 and the second structural part 370. For example, such as Figure 16 As shown, when the support device 500 is a second support body, the third surface of the second support body contacts the second surface 302, and the end face 102 of the support device 500 contacts the connecting portion 380 to maintain the spatial orientation of the display device. In this case, the support device 500 mainly supports the display device through its end face 102, and the support device 500 mainly maintains the positional relationship between the support device 500 and the display device through its third surface contacting the second surface 302. The third surface 103 of the support device 500 and the end face 102 of the support device 500 can be adjacent surfaces of the support device 500. For example, as... Figure 18 As shown, when the support device 500 is the first support body, the first surface 101 of the first body contacts the second surface 302, and the end surface 102 of the first body contacts the connecting portion 380 to maintain the spatial orientation of the display device. At this time, the support device 500 mainly supports the display device through the end surface 102, and the support device 500 mainly maintains the positional relationship between the support device 500 and the display device through the contact between the first surface 101 and the second surface 302. The first surface 101 of the support device 500 and the end surface 102 of the support device 500 can be adjacent surfaces of the support device 500.

[0144] The lengths of the end face 102 of the support device 500 and the connecting portion 380 in the third direction can meet the same conditions, as shown in Figure 17, in order to increase the contact area between the support device 500 and the connecting portion 380 and improve the support performance. Of course, the length of the end face 102 of the support device 500 in the third direction can also be less than the length of the connecting portion 380 in the third direction, such as... Figure 16 As shown.

[0145] In some optional implementations of the embodiments of this application, the end face 102 of the support device 500 can contact the connecting portion 380; the support device 500 has a first connector, which can act on the first surface 101 or the third surface 103 of the support device 500 to detachably connect the first surface 101 or the third surface 103 to the second surface 302 of the display device, so as to maintain the spatial posture of the display device; the support device 500 can maintain the spatial posture of the display device together through the first surface 101 or the third surface 103 and the end face 102.

[0146] In this implementation, the structure of the first connector is not limited. For example, the first connector can be a magnetic structure; in this case, the second surface 302 of the display device can be an iron structure. Of course, the second surface 302 of the display device can also be a magnetic surface.

[0147] In this implementation, the first surface 101 or the third surface 103 of the support device 500 and the end face 102 of the support device 500 can be adjacent surfaces of the support device 500. For example, the first surface 101 or the third surface 103 of the support device 500 and the end face 102 of the support device 500 form a first included angle, the value of which is not limited; as an example, the first included angle can be 90 degrees.

[0148] In this implementation, the support device 500 may include a first body 110 and a second body 120. A first surface 101 of the first body 110 is detachably connected to a second surface 302, and an end face 102 of the first body 110 is in contact with the connecting portion 380. The second body 120 is rotatably connected to the first body 110 and is used to maintain the spatial orientation of the first body 110 or the first body 110 connected to the display device by contacting the supporting surface; so that the display device forms a notebook-like structural form through the first body 110 and the second body 120.

[0149] like Figure 20 As shown, the first body 110 may include a first plate portion and a second plate portion. The first plate portion is rotatably connected to the second body 120; the second plate portion is rotatably connected to the first plate portion, the first surface 101 of the second plate portion can be detachably connected to the second surface 302, and the end face 102 of the second plate portion can contact the connecting portion 380; the second plate portion can rotate relative to the first plate portion to satisfy the non-coplanar condition with the first plate portion, and the second body 120 maintains the spatial orientation of the second plate portion or the second plate portion connected to the display device through the first plate portion.

[0150] The thickness of the first body 110 is not limited. For example, the thickness of the first body 110 and the height difference can satisfy the same condition so that the first surface 101 of the first body 110 and the second surface 302 can be detachably connected. When the end face 102 of the first body 110 is in contact with the connecting portion 380, the second surface of the first body 110 and the first surface 301 satisfy the coplanar condition so that the electronic device is more organized. The coplanar condition means coplanar or substantially coplanar, and the second surface of the first body 110 is set back to back with the first surface 101 of the first body 110.

[0151] In this implementation, the connecting end of the first structural portion 360 to the first end of the first structural portion 360 may have a third length. The connecting end of the first structural portion 360 is the end where the first structural portion 360 connects to the second structural portion 370, and the first end of the first structural portion 360 is disposed opposite to the connecting end of the first structural portion 360.

[0152] The value of the third length is not limited. For example, such as Figure 19 As shown, the difference between the second length and the first length can satisfy the same condition as the third length L3, so that the length of the structure composed of the display device and the first body 110 is approximately the same as the length of the second body 120.

[0153] The first body 110 is rotatable to a retracted state relative to the second body 120. In this retracted state, the first surface 101 of the first body 110 faces the second body 120, and a fourth receiving space is formed between the first body 110 and the second body 120. When the display device is located within the fourth receiving space, the first structural portion 360 is exposed. The first end of the first structural portion 360 and the free end of the second body 120 satisfy an alignment condition, which means alignment or substantial alignment, such as... Figure 19 As shown, at this time, the first structural part 360 is located at the end of the display device, and the end of the display device and the free end of the second body 120 can also meet the alignment conditions.

[0154] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A support device, the support device comprising: The first support includes: A first body, for detachable connection with a display device, has a first receiving space; The second body is rotatably connected to the first body and is used to contact the bearing surface to maintain the spatial posture of the first body or the first body connected to the display device. The second support is used to be detachably connected to the display device and to contact the supporting surface to maintain the spatial orientation of the display device. Wherein, at least a portion of the second support body matches the first accommodating space, such that when the second support body is connected to the display device, it does not affect the connection between the display device and the first body. When the first body is detachably connected to the display device, the support device can support the display device through the first support body. At least a portion of the second support body is located in the first receiving space and connected to the display device. The third surface of the second support body and the first surface of the first body satisfy the coplanar condition, wherein the first surface is the surface on the side where the first body is connected to the display device, and the third surface is the surface on the side where the second support body is connected to the display device. When the first body is separated from the display device and the second support body is detachably connected to the display device, the second support body is separated from the first body, and the support device can support the display device through the second support body.

2. The support device according to claim 1, wherein the first body comprises: The first plate is rotatably connected to the second body; The second plate is rotatably connected to the first plate and is used to connect to the display device and support the display device. The second plate can rotate relative to the first plate to satisfy the condition of non-coplanarity with the first plate, and the second body maintains the spatial posture of the second plate or the second plate connected to the display device through the first plate.

3. The support device according to claim 2, wherein the first plate portion has a first space near the second plate portion, and the second plate portion has a second space near the first plate portion; the first space and the second space are connected to form the first receiving space.

4. The support device according to claim 1, wherein the second support body comprises: A connecting part for detachably connecting to a display device; The support portion is rotatably connected to the connecting portion and has at least two support modes; In the first support mode, the first part of the support portion contacts the bearing surface to maintain the first spatial posture of the display device; In the second support mode, the second part of the support contacts the bearing surface to maintain the second spatial posture of the display device, and the first spatial posture and the second spatial posture satisfy the vertical condition.

5. The support device according to claim 1, wherein the first accommodating space connects the first surface of the first body and the second surface of the first body; the second surface and the first surface are disposed back to back; When at least a portion of the second support is located within the first receiving space and connected to the display device, the fourth surface of the second support and the second surface are coplanar; wherein, The fourth surface is positioned opposite to the third surface.

6. The support device according to claim 1, further comprising: Two fixed shells are fixed to the second body at a distance from each other, located at the connection between the second body and the first body; A third receiving space is formed between the two fixed shells, the third receiving space being used to receive the input device.

7. The support device according to claim 6, wherein the length of the fixed shell in the first direction is greater than the length in the second direction; the first body and the second body are rotatably connected by a first rotating shaft assembly; The fixed shell has an adjacent first part and a second part in a first direction; the first part is used to accommodate a first rotating shaft assembly; the second part is used to form the third accommodating space; the first direction and the first rotation axis satisfy a perpendicular condition, and the first rotation axis is the axis on which the first body rotates relative to the second body.

8. The support device according to claim 1, wherein the second body and the first body have the same length in the direction of the first rotation axis, the connecting end of the first body to the free end of the first body has a first length along the first body, the connecting end of the second body to the free end of the second body has a second length along the second body, and the first length is less than the second length; in, The first rotation axis is the axis on which the first body rotates relative to the second body, the connecting end of the first body is the end where the first body and the second body are connected, and the connecting end of the second body is the end where the second body and the first body are connected.

9. The support device according to any one of claims 1 to 8, The first body has a first communication interface, the end of which is exposed on a first surface of the first body for docking with a second communication interface of the display device. The second body has an input component, which is electrically connected to the first communication interface; The first body has a first connector, which can act on a first surface of the first body to maintain the positional relationship between the first body and the display device; when the first body is connected to the display device through the first connector, the first communication interface and the second communication interface are docked.

10. An electronic device comprising a display device and a support device as described in any one of claims 1 to 9.