Support device and electronic device
Patent Information
- Application Number
- CN202211268927.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-10-17
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2042-10-17
AI Technical Summary
[0002]支撑装置是经常使用的装置;然而,目前的支撑装置的形式单一,适应性差
[0046]本申请实施例中的所述支撑装置包括:第一本体,用于承载显示装置;第二本体,与所述第一本体转动连接,用于与承载面抵接而支撑所述第一本体;其中,靠近所述第二本体与所述第一本体连接处形成有容纳空间;所述容纳空间能够容纳放置于所述显示装置第一侧边的输入装置,使得所述第一本体承载所述显示装置相对所述第二本体转动时不影响所述输入装置放置于所述显示装置第一侧边;支撑装置通过容纳空间能够容纳放置于所述显示装置第一侧边的输入装置,且所述第一本体承载所述显示装置相对所述第二本体转动时不影响所述输入装置放置于所述显示装置第一侧边,能够防止输入装置从显示装置取下而丢失,大大地提高了支撑装置的适应能力。
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Figure CN115574215B_ABST
Abstract
Description
Technical Field
[0001] This application relates to a support device and an electronic device. Background Technology
[0002] Support devices are frequently 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 provides a support device, including:
[0006] The first body is used to support the display device;
[0007] The second body is rotatably connected to the first body and is used to abut against the bearing surface to support the first body;
[0008] A receiving space is formed near the connection between the second body and the first body;
[0009] The accommodating space is capable of accommodating an input device placed on the first side of the display device, so that when the first body carries the display device and rotates relative to the second body, it does not affect the placement of the input device on the first side of the display device.
[0010] In some alternative implementations, among which,
[0011] The second body has a first fixing shell and a second fixing shell spaced apart on the side near the connection point, and the receiving space is formed between the first fixing shell and the second fixing shell.
[0012] In some alternative implementations, a rotation axis is also included, which allows the first body and the second body to rotate relative to the rotation axis;
[0013] The first fixed shell has an adjacent first portion and a second portion in a first direction;
[0014] The second fixed shell has adjacent third and fourth portions in the first direction;
[0015] The first direction and the axis containing the rotation axis satisfy the perpendicular condition; the axis passes through the first part and the third part;
[0016] The receiving space is formed in the space between the fourth part and the second part, parallel to the axis of rotation.
[0017] In some alternative implementations, the length of the first fixing shell in the first direction is greater than its length in the second direction; the length of the second fixing shell in the first direction is greater than its length in the second direction.
[0018] Wherein, the second direction is perpendicular to the bearing surface, and the second direction is perpendicular to both the first direction and the rotation axis.
[0019] In some alternative implementations, the rotating shaft includes:
[0020] The first rotating shaft assembly is at least partially located inside the first fixed housing and is connected to the first body and the second body, respectively.
[0021] The second rotating shaft assembly is at least partially located inside the second fixed housing and is connected to the first body and the second body, respectively.
[0022] The first body can rotate relative to the second body via the first rotating shaft assembly and the second rotating shaft assembly.
[0023] In some alternative implementations, the length of the first fixing shell in the first direction is greater than its length in the second direction; the length of the second fixing shell in the first direction is greater than its length in the second direction.
[0024] Wherein, the second direction is perpendicular to the bearing surface, and the second direction is perpendicular to the first direction and the axis respectively.
[0025] In some alternative implementations, the surface of the first body has a first receiving groove near the connection between the first body and the second body, and the first receiving groove is in communication with the receiving space; the first receiving groove is used to receive a first part of the input device.
[0026] In some alternative implementations, the surface of the second body has a second receiving groove, which communicates with a portion forming the receiving space; the second receiving groove is used to receive a second portion of the input device.
[0027] In some alternative implementations,
[0028] The surface of the first body has a first receiving groove, which is located near the connection between the first body and the second body, and the first receiving groove can communicate with the receiving space; the first receiving groove is used to receive a first part of the input device.
[0029] The surface of the second body has a second receiving groove, which communicates with a portion forming the receiving space; the second receiving groove is used to receive a second portion of the input device;
[0030] Both the surface of the first receiving groove and the surface of the second receiving groove are curved surfaces;
[0031] When the first body is rotated relative to the second body to a parallel closed state, the surfaces of the first receiving groove and the second receiving groove form different portions of the same cylindrical surface.
[0032] In some alternative implementations,
[0033] The first body includes:
[0034] The first plate can be detachably connected to the display device;
[0035] The second plate can be detachably connected to the display device and rotatably connected to the first plate.
[0036] The second body is rotatably connected to the first plate.
[0037] The first body carrying the display device can rotate relative to the second body to be in a first state, a second state, or a third state;
[0038] In the first state, the second plate portion is not coplanar with respect to the first plate portion; in the second state, the second plate portion is coplanar with respect to the first plate portion; in the third state, the second plate portion is coplanar with respect to the first plate portion and is parallel and closed to the second body.
[0039] During the process of the first body carrying the display device rotating relative to the second body from the second state to the third state, the accommodating space can accommodate the input device placed on the first side of the display device without affecting the movement of the input device with the display device.
[0040] In some alternative implementations, the first plate portion has a first magnetic component for adsorbing the display device;
[0041] The second plate has a second magnetic component, which is used to attract the display device;
[0042] The second magnetic component includes:
[0043] At least two sets of second sub-magnetic components are spaced apart on the second plate and have at least two magnetic units for corresponding connection with the third magnetic component of the display device;
[0044] The at least two magnetic monomers have opposite magnetic properties.
[0045] This application also provides an electronic device, including: a display device and the support device described in this application embodiment; the support device is used to support the display device.
[0046] The supporting device in this embodiment includes: a first body for supporting a display device; and a second body rotatably connected to the first body for abutting against a supporting surface to support the first body. A receiving space is formed near the connection between the second body and the first body. The receiving space can accommodate an input device placed on the first side of the display device, ensuring that the first body rotating relative to the second body while supporting the display device does not affect the placement of the input device on the first side of the display device. The supporting device, through the receiving space, can accommodate the input device placed on the first side of the display device, and the rotation of the first body relative to the second body while supporting the display device does not affect the placement of the input device on the first side of the display device, thus preventing the input device from being removed from the display device and lost, greatly improving the adaptability of the supporting device. Attached Figure Description
[0047] Figure 1 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;
[0048] Figure 2 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;
[0049] Figure 3 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;
[0050] Figure 4 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;
[0051] Figure 5 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;
[0052] Figure 6 This is an optional structural cross-sectional view of the support device in an embodiment of this application;
[0053] Figure 7 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;
[0054] Figure 8 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;
[0055] Figure 9This is a schematic diagram of an optional structure of the support device in an embodiment of this application;
[0056] Figure 10 This is a schematic diagram of an optional structure of the support device in an embodiment of this application;
[0057] Figure 11 This is a schematic diagram of an optional structure of the display device in an embodiment of this application.
[0058] Reference numerals: 101, receiving space; 110, first body; 111, first plate; 112, second plate; 114, first communication interface; 115, first receiving groove; 120, second body; 121, input component; 122, second receiving groove; 130, first fixing shell; 131, first part; 132, second part; 140, second fixing shell; 151, first rotating shaft assembly; 152, second rotating shaft assembly; 160, second submagnetic assembly; 300, display device; 350, third magnetic assembly; 400, input device. Detailed Implementation
[0059] The technical solution of this application will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0060] 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.
[0061] 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.
[0062] The following combination Figures 1 to 11 The support device described in the embodiments of this application will be described in detail.
[0063] The support device includes: a first body 110 and a second body 120. The first body 110 is used to support the display device 300; the second body 120 is rotatably connected to the first body 110, and the second body 120 is used to abut against the bearing surface to support the first body 110; wherein, a receiving space 101 is formed near the connection between the second body 120 and the first body 110; the receiving space 101 can accommodate the input device 400 placed on the first side of the display device 300, so that when the first body 110 carries the display device 300 and rotates relative to the second body 120, it does not affect the placement of the input device 400 on the first side of the display device 300. The support device can accommodate the input device 400 placed on the first side of the display device 300 through the receiving space 101, and when the first body 110 carries the display device 300 and rotates relative to the second body 120, it does not affect the placement of the input device 400 on the first side of the display device 300, which can prevent the input device 400 from being removed from the display device 300 and lost, greatly improving the adaptability of the support device.
[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] 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.
[0066] 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 structure.
[0067] 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.
[0068] A receiving space 101 is formed near the connection between the second body 120 and the first body 110. The receiving space 101 can accommodate the input device 400 placed on the first side of the display device 300, so that when the first body 110 carries the display device 300 and rotates relative to the second body 120, it does not affect the placement of the input device 400 on the first side of the display device 300.
[0069] The first body 110 may have a connecting end and a free end that are arranged opposite to each other; the second body 120 may have a connecting end and a free end that are arranged opposite to each other, the connecting end of the first body 110 and the connecting end of the second body 120 are rotatably connected, and the accommodating space 101 is located near the connecting end of the first body 110 and the connecting end of the second body 120.
[0070] The first side of the display device is near the connection end of the first body 110.
[0071] The shape of the receiving space 101 is not limited. For example, the receiving space 101 can be strip-shaped.
[0072] The structure of the display device 300 is not limited. For example, the display device 300 can be a tablet computer. The structure of the input device 400 is not limited. For example, the input device 400 can be an input pen.
[0073] In some optional implementations of the embodiments of this application, such as Figure 2 As shown, the second body 120 is provided with a first fixing shell 130 and a second fixing shell 140 at intervals on the side near the connection point. The first fixing shell 130 and the second fixing shell 140 form the receiving space 101. The first fixing shell 130 and the second fixing shell 140 can prevent the input device 400 from falling out of the receiving space 101.
[0074] In this implementation, the shape of the first fixing shell 130 is not limited. For example, the first fixing shell 130 can be a cuboid or a flattened cylinder. As another example, the first fixing shell 130 can be spherical.
[0075] In this implementation, the shape of the second fixing shell 140 is not limited. For example, the second fixing shell 140 can be a cuboid or a flattened cylinder. As another example, the second fixing shell 140 can be spherical.
[0076] The shape of the second fixing shell 140 may be the same as or different from the shape of the first fixing shell 130.
[0077] like Figure 3As shown, in this implementation, the support device may further include a rotation shaft, and the first body 110 and the second body 120 are rotatable relative to the rotation shaft; the first fixed shell 130 has an adjacent first portion 131 and a second portion 132 in a first direction; similarly, the second fixed shell 140 has an adjacent third portion and a fourth portion (not shown) in a first direction; the first direction and the axis of the rotation shaft satisfy the perpendicular condition; the axis passes through the first portion 131 and the third portion; a receiving space 101 is formed in the space between the fourth portion and the second portion 132 that is parallel to the rotation axis.
[0078] The structure and position of the rotating shaft are not limited. For example, such as Figure 4 As shown, the rotating shaft may include a first rotating shaft assembly 151 and a second rotating shaft assembly 152. The first rotating shaft assembly 151 is at least partially located within the first fixed housing 130 and is connected to the first body 110 and the second body 120 respectively. The second rotating shaft assembly 152 is at least partially located within the second fixed housing 140 and is connected to the first body 110 and the second body 120 respectively. The first body 110 can rotate relative to the second body 120 via the first rotating shaft assembly 151 and the second rotating shaft assembly 152. A receiving space 101 can be formed between the first fixed housing 130 and the second fixed housing 140, while also being able to accommodate the first rotating shaft assembly 151 and the second rotating shaft assembly 152, greatly simplifying the structure of the support device.
[0079] The structures of the first rotating shaft assembly 151 and the second rotating shaft assembly 152 are not limited.
[0080] In one embodiment, the length of the first fixing shell 130 in the first direction can be greater than its length in the second direction; the length of the second fixing shell 140 in the first direction can be greater than its length in the second direction; wherein, the second direction is perpendicular to the bearing surface, and the second direction is perpendicular to both the first direction and the axis; so that the elongated first fixing shell 130 and the second fixing shell 140 can accommodate the rotating shaft and form a receiving space 101 in the first direction, and match the thickness of the display device in the second direction. As an example, the first fixing shell 130 has the same shape as the second fixing shell 140, and the cross-sections of the first fixing shell 130 and the second fixing shell 140 are both elliptical, such as... Figure 2 and Figure 3 As shown.
[0081] like Figure 3As 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. The direction between the connecting end of the second body 120 and the free end of the second body 120 can be the width direction.
[0082] In some optional implementations of the embodiments of this application, the surface of the first body 110 has a first receiving groove 115, the first receiving groove 115 is close to the connection between the first body 110 and the second body 120, and the first receiving groove 115 can communicate with the receiving space 101; the first receiving groove 115 is used to receive a first part of the input device 400, and the first receiving groove 115 is used to increase the space for receiving the input device 400. When the width of the input device is greater than the thickness of the display device, the part of the input device that is wider than the display device can be received by the first receiving groove 115, so that the receiving space 101 can accommodate input devices of different widths.
[0083] In this implementation, the shape of the first receiving groove 115 is not limited. For example, the first receiving groove 115 can be cuboid. As an example, the surface of the first receiving groove 115 is curved, such as... Figure 5 As shown.
[0084] In some optional implementations of the embodiments of this application, the surface of the second body 120 has a second receiving groove 122, which forms a part of the receiving space 101; the second receiving groove 122 is used to receive a second part of the input device 400; the second receiving groove 122 is located in the receiving space 101 and is used to define the position of the input device 400 and prevent the input device 400 from shaking in the receiving space 101; at the same time, when the width of the input device is greater than the thickness of the display device, the part of the input device that is wider than the display device can be accommodated by the second receiving groove 122, so that the receiving space 101 can accommodate input devices of different widths.
[0085] In this implementation, the shape of the second receiving groove 122 is not limited. For example, the second receiving groove 122 can be cuboid. As an example, the surface of the second receiving groove 122 is curved, such as... Figure 5 As shown.
[0086] In this implementation, when the surface of the first body 110 has a first receiving groove 115, the surfaces of the first receiving groove 115 and the second receiving groove 122 can both be arc surfaces; when the first body 110 is rotated relative to the second body 120 to a closed state, the surfaces of the first receiving groove 115 and the second receiving groove 122 can form different parts of the same cylindrical surface, such as... Figure 6 As shown, this is to make the space for accommodating the input device match the shape of the input device; at the same time, since the space for accommodating the input device is a cylindrical surface, it can also reduce the collision of the input device during the rotation of the display device.
[0087] The first body 110 rotating to a closed state relative to the second body 120 means that the free end of the first body 110 rotates to its limit position relative to the free end of the second body 120. The free end of the first body 110 refers to the opposite end where the first body 110 and the second body 120 are connected, and the free end of the second body 120 refers to the opposite end where the second body 120 and the first body 110 are connected.
[0088] Of course, the first body 110 can also be rotated relative to the second body 120 to be in an unfolded state. The first body 110 being rotated relative to the second body 120 to be in an unfolded state is the unfolded state.
[0089] 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 can be detachably connected to the display device 300; the second plate portion 112 can also be detachably connected to the display device 300; the second plate portion 112 is rotatably connected to the first plate portion 111; the second body 120 is rotatably connected to the first plate portion 111; the first body 110 carries the display device 300 and can rotate relative to the second body 120 to be in a first state, a second state, or a third state; the support device can be in a first state, a second state, or a third state through the first plate portion 111, the second plate portion 112, and the third plate portion, which greatly improves the adaptability of the support device.
[0090] 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.
[0091] 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 via a first pivot structure. As an example, such as Figure 4As shown, the first plate portion 111 and the second body 120 can be rotatably connected through the first pivot assembly 151 and the second pivot assembly 152.
[0092] 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.
[0093] The method by which the second plate portion 112 is rotatably connected to the first plate portion 111 is not limited. For example, the second plate portion 112 and the first plate portion 111 can be rotatably connected by a second pivot structure.
[0094] In this implementation, the first state, the second state, and the third state are not limited, as long as the first state, the second state, and the third state are all different.
[0095] like Figure 7 As shown, in the first state, the second plate portion 112 is not coplanar with respect to the first plate portion 111, and the second body 120 supports the second plate portion 112 through the first plate portion 111; a first included angle is formed between the second body 120 and the second plate portion 112, and the value of the first included angle is not limited. As an example, for instance... Figure 3 As shown, the first included angle C can be 120 degrees.
[0096] like Figure 8 As shown, in the second state, the second plate portion 112 is coplanar with respect to the first plate portion 111, and the second plate portion 112 and the second body 120 are in a non-closed state. The second plate portion 112 and the second body 120 being in a closed state means that the free end of the second plate portion 112 rotates to its limit position relative to the free end of the second body 120. The free end of the second plate portion 112 refers to the opposite end where the second plate portion 112 is connected to the first plate portion 111. At this time, the first plate portion 111 and the display device 300 can be detachably connected via a magnetic structure, so that the first plate portion 111, the second plate portion 112, and the display device 300 as a whole can rotate relative to the second body 120; of course, the first plate portion 111 and the display device 300 may also be unconnected. A second angle is formed between the second body 120 and the second plate portion 112. The value of the second angle is not limited; as an example, such as... Figure 8 As shown, the second included angle D can be 70 degrees.
[0097] For example, such as Figure 9As shown, in the third state, the second plate portion 112 is coplanar with respect to the first plate portion 111 and closed with the second body 120; the second plate portion 112 and the second body 120 are in a closed state. At this time, the first plate portion 111 and the display device 300 can be detachably connected through a magnetic structure, so that the first plate portion 111, the second plate portion 112, and the display device 300 as a whole can rotate relative to the second body 120; of course, the first plate portion 111 and the display device 300 may also be unconnected. A third angle is formed between the second body 120 and the second plate portion 112. The value of the third angle is not limited. As an example, such as... Figure 9 As shown, the third included angle can be 0 degrees.
[0098] During the process of the first body 110 carrying the display device 300 rotating relative to the second body 120 from the second state to the third state, the accommodating space 101 can accommodate the input device 400 placed on the first side of the display device 300 without affecting the movement of the input device 400 with the display device 300.
[0099] like Figures 7 to 8 As shown, during the process of the first body 110 carrying the display device 300 rotating relative to the second body 120 from a first state to a second state, the second plate portion 112 rotates relative to the first plate portion 111 from non-coplanar to coplanar, and the input device 400 enters the first receiving groove 115 from outside the first receiving groove 115; as Figures 8 to 9 As shown, during the process of the first body 110 carrying the display device 300 rotating relative to the second body 120 from the second state to the third state, the input device 400 enters the second receiving groove 122 from outside the second receiving groove 122.
[0100] In this implementation, the first plate portion 111 and the display device 300 can have a first connecting force; the first plate portion 111 and the second body 120 have a first rotational resistance; the first plate portion 111 and the second plate portion 112 have a second rotational resistance; the first rotational resistance is greater than the second rotational resistance, and the first connecting force is greater than the first rotational resistance; when the second plate portion 112 is coplanar with respect to the first plate portion 111, since the first connecting force is greater than the first rotational resistance, the first connecting force causes the first plate portion 111, the second plate portion 112 and the display device 300 to rotate as a whole relative to the second body 120.
[0101] A first limiting structure is provided between the second body 120 and the first plate portion 111. The first limiting structure is used to limit the maximum rotation angle of the first plate portion 111 relative to the second body 120, such as... Figure 7 and Figure 8 As shown, during the process of the first body 110 carrying the display device 300 rotating relative to the second body 120 from the second state to the first state, due to the restriction of the first limiting structure, the first plate portion 111 cannot rotate relative to the second body 120. When the external force overcomes the first connecting force, the second plate portion 112 rotates relative to the first plate portion 111, and the second plate portion 112 carrying the display device 300 rotates relative to the second body 120 from the second state to the first state.
[0102] The first limiting structure is not limited, as long as it can limit the maximum rotation angle of the first plate portion 111 relative to the second body 120. For example, the first limiting structure can be a first protrusion structure provided in the rotation direction of the first plate portion 111 relative to the second body 120.
[0103] A second limiting structure is provided between the second plate portion 112 and the first plate portion 111. The second limiting structure is used to limit the maximum rotation angle of the second plate portion 112 relative to the first plate portion 111, such as... Figure 7 As shown, when the first body 110 carries the display device 300 and rotates to the first state relative to the second body 120, the second plate portion 112 cannot rotate relative to the first plate portion 111 due to the limiting effect of the second limiting structure, so that the second plate portion 112 carries the display device 300 and remains in the first state relative to the second body 120.
[0104] The second limiting structure is not limited, as long as it can limit the maximum rotation angle of the second plate portion 112 relative to the first plate portion 111. For example, the second limiting structure can be a second protrusion structure provided in the rotation direction of the second plate portion 112 relative to the first plate portion 111.
[0105] In this implementation, the first plate portion 111 has a first magnetic component that can be connected to the display device 300; the second plate portion 112 has a second magnetic component that can be connected to the display device 300.
[0106] The structure of the first magnetic component is not limited, as long as the first magnetic component can be connected to the display device 300 magnetically. For example, the first magnetic component can be a first magnet.
[0107] The structure of the second magnetic component is not limited, as long as it can be connected to the display device 300 magnetically. For example, the second magnetic component can be a second magnet.
[0108] As an example, the second magnetic component may include: at least two sets of second sub-magnetic components 160, the at least two sets of second sub-magnetic components 160 being spaced apart on the second plate portion 112, the at least two sets of second sub-magnetic components 160 being used to correspondingly connect with the third magnetic component 350 of the display device 300 to maintain the positional relationship between the second plate portion 112 and the display device 300.
[0109] The structure of the second sub-magnetic component 160 is not limited. For example, the second sub-magnetic component 160 has at least two first magnetic units, wherein the at least two first magnetic units have opposite magnetisms, so that when there is a positional deviation between the second plate portion 112 and the display device 300, the second plate portion 112 and the display device 300 are separated; when there is no positional deviation between the second plate portion 112 and the display device 300, the second plate portion 112 and the display device 300 are connected.
[0110] When the first body 110 is a structural component, the second magnetic component is disposed on the first body 110, such as... Figure 10 and Figure 11 As shown, the second magnetic component may include: four sets of second sub-magnetic components 160, which are correspondingly disposed at the four corners of the first body 110. Each second sub-magnetic component 160 includes five first magnetic units, which include three positive units and two negative units. The second sub-magnetic component 160 is cuboid in shape. The three positive units are located at the three corners of the second sub-magnetic component 160, one of the two negative units is located at one corner of the second sub-magnetic component 160, and the other of the two negative units is located in the middle of the second sub-magnetic component 160. The arrangement of the five first magnetic units in each of the four sets of second sub-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 between the first body 110 and the display device 300, the first body 110 and the display device 300 are connected. The third magnetic component 350 includes: four sets of third sub-magnetic components, the four sets of third sub-magnetic components corresponding to the positions of the four sets of second sub-magnetic components 160, and the third sub-magnetic component including 5 second magnetic units, the polarity of the 5 second magnetic units being opposite to the polarity of the 5 first magnetic units at the corresponding positions.
[0111] The first body 110 may have a first communication interface 114, the end of which is exposed on a first surface of the first body 110 for interfacing with a second communication interface of the display device 300; the second body 120 has an input component 121, the input component 121 (such as...) Figure 4(As shown) 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 connected 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.
[0112] The structure of the first communication interface 114 is not limited. For example, the first communication interface 114 can be a spring-loaded interface (PogoPin interface).
[0113] 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 4 As shown.
[0114] 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.
[0115] In another embodiment, the second body has a third communication interface (not shown), the display device has a third communication interface, and the third and fourth communication interfaces are wireless communication interfaces, such as Bluetooth or WiFi. The input component 121 sends input information to the fourth communication interface of the display device through the third communication interface.
[0116] When the first body 110 is connected to the display device 300 through the second magnetic component and the third magnetic component 350, 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 second magnetic component and the third magnetic component 350, so as to prevent the first communication interface 114 and the second communication interface from being misaligned and thus unable to be electrically connected.
[0117] The support device of this application embodiment includes: a first body 110 for supporting a display device 300; and a second body 120 rotatably connected to the first body 110 for abutting against a bearing surface to support the first body 110. A receiving space 101 is formed near the connection between the second body 120 and the first body 110. The receiving space 101 can accommodate an input device 400 placed on the first side of the display device 300, so that when the first body 110 supports the display device 300 and rotates relative to the second body 120, it does not affect the placement of the input device 400 on the first side of the display device 300. The support device, through the receiving space 101, can accommodate the input device 400 placed on the first side of the display device 300, and when the first body 110 supports the display device 300 and rotates relative to the second body 120, it does not affect the placement of the input device 400 on the first side of the display device 300, thus preventing the input device 400 from being removed from the display device 300 and lost, greatly improving the adaptability of the support device.
[0118] This application also describes an electronic device, including: a display device 300 and the support device described in this application embodiment; the support device is used to support the display device 300.
[0119] The structure of the display device 300 is not limited. For example, the display device 300 can be a flat-panel display device such as a tablet computer or a smartphone, and the support device forms a notebook electronic device by supporting the display device 300.
[0120] 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, comprising: The first body is used to support the display device; The first body can be detachably connected to the display device; The second body is rotatably connected to the first body and is used to abut against the bearing surface to support the first body; A receiving space is formed near the connection between the second body and the first body; The accommodating space can accommodate the input device placed on the first side of the display device, so that when the first body carries the display device and rotates relative to the second body, it does not affect the position of the input device on the first side of the display device and its movement with the display device. The first body and the second body are capable of rotating relative to each other about an axis, and the accommodating space is formed as a space parallel to the axis. The surface of the second body has a second receiving groove, which forms part of the receiving space; during the process of the first body carrying the display device rotating relative to the second body from a second state to a third state, the input device enters the second receiving groove from outside the second receiving groove. In the second state, the first body and the second body are in a non-closed state, and in the third state, the first body and the second body are in a closed state.
2. The support device according to claim 1, wherein, The second body has a first fixing shell and a second fixing shell spaced apart on the side near the connection point, and the receiving space is formed between the first fixing shell and the second fixing shell.
3. The support device according to claim 2 further includes a rotating shaft, wherein the first body and the second body are rotatable relative to the rotating shaft; The first fixed shell has an adjacent first portion and a second portion in a first direction; The second fixed shell has adjacent third and fourth portions in the first direction; The first direction and the axis where the rotation axis is located satisfy the perpendicular condition; The axis passes through the first part and the third part; The receiving space is formed in the space between the fourth part and the second part, parallel to the axis of rotation.
4. The support device according to claim 3, wherein the rotating shaft comprises: The first rotating shaft assembly is at least partially located inside the first fixed housing and is connected to the first body and the second body, respectively. The second rotating shaft assembly is at least partially located inside the second fixed housing and is connected to the first body and the second body, respectively. The first body can rotate relative to the second body via the first rotating shaft assembly and the second rotating shaft assembly.
5. The support device according to claim 3, wherein the length of the first fixing shell in the first direction is greater than the length in the second direction; and the length of the second fixing shell in the first direction is greater than the length in the second direction. in, The second direction is perpendicular to the bearing surface, and the second direction is perpendicular to both the first direction and the axis.
6. The support device according to any one of claims 1 to 5, wherein the surface of the first body has a first receiving groove, the first receiving groove is close to the connection between the first body and the second body, and the first receiving groove is in communication with the receiving space; the first receiving groove is used to receive a first part of the input device.
7. The support device according to claim 6, wherein the second receiving groove is used to receive a second portion of the input device.
8. The support device according to claim 7, Both the surface of the first receiving groove and the surface of the second receiving groove are curved surfaces; When the first body is rotated relative to the second body to a closed state, the surfaces of the first receiving groove and the second receiving groove form different portions of the same cylindrical surface.
9. The support device according to any one of claims 1-5, The first body includes: The first plate can be detachably connected to the display device; The second plate is rotatably connected to the first plate. The second body is rotatably connected to the first plate. The first body carrying the display device can rotate relative to the second body to be in a first state, a second state, or a third state; In the first state, the second plate portion is not coplanar with respect to the first plate portion; in the second state, the second plate portion is coplanar with respect to the first plate portion; in the third state, the second plate portion is coplanar with respect to the first plate portion and is closed with the second body. During the process of the first body carrying the display device rotating relative to the second body from the second state to the third state, the accommodating space can accommodate the input device placed on the first side of the display device without affecting the movement of the input device with the display device.
10. An electronic device, comprising: The display device and the support device according to any one of claims 1 to 9; The support device is used to support the display device.
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