An electronic device and electronic system

CN224816697UActive Publication Date: 2026-09-29LENOVO (BEIJING) LTD
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Patent Information

Application Number
CN202522048074.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-23
Publication Date
2026-09-29
Estimated Expiration
2035-09-23

AI Technical Summary

Technical Problem

[0003]相关技术中,保护结构的功能单一,导致其不能满足用户的需求

Benefits of technology

[0015]上述说明仅是本公开技术方案的概述,为了能够更清楚了解本公开的技术手段,并可依照说明书的内容予以实施,以下以本公开的较佳实施例并配合附图详细说明如后。

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Abstract

The present disclosure provides an electronic device and an electronic system, the electronic device can include: a body, a first transmission part and a second transmission part, the body has a first connecting surface and a second connecting surface, the first connecting surface is used for detachable connection with a first electronic device, the second connecting surface is used for detachable connection with a second electronic device, and the body is provided with an energy conversion module for converting solar energy into electrical energy; the first transmission part is arranged on the body and corresponds to the first connecting surface, is electrically connected with the energy conversion module, the first transmission part is configured to supply power to the first electronic device, and data communication can be performed between the first electronic device and the second electronic device through the first transmission part; the second transmission part is arranged on the body and corresponds to the second connecting surface, is electrically connected with the energy conversion module, and the second transmission part is configured to supply power to the second electronic device.
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Description

Technical Field

[0001] This disclosure relates to the field of electronic equipment technology, and more particularly to an electronic device and electronic system. Background Technology

[0002] The protective structure connected to the outside of electronic devices can provide physical protection for the electronic devices.

[0003] In related technologies, the protective structure has a single function, which makes it unable to meet the needs of users. Utility Model Content

[0004] This disclosure provides an electronic device and an electronic system, the technical solution of which is as follows:

[0005] In a first aspect, this disclosure provides an electronic device, which may include: a body, a first transmission unit, and a second transmission unit. The body has a first connecting surface and a second connecting surface. The first connecting surface is used for detachably connecting a first electronic device, and the second connecting surface is used for detachably connecting a second electronic device. The body is provided with an energy conversion module for converting solar energy into electrical energy. The first transmission unit is disposed on the body and corresponds to the first connecting surface, and is electrically connected to the energy conversion module. The first transmission unit is configured to supply power to the first electronic device, and the first electronic device and the second electronic device can communicate data through the first transmission unit. The second transmission unit is disposed on the body and corresponds to the second connecting surface, and is electrically connected to the energy conversion module. The second transmission unit is configured to supply power to the second electronic device.

[0006] In some embodiments, the main body is provided with a first adsorption component for adsorbing the first electronic device at the position corresponding to the first connecting surface, and a second adsorption component for adsorbing the second electronic device at the position corresponding to the second connecting surface; the first transmission part is a connecting post, and the connecting post is configured to engage with the connecting recess of the first electronic device.

[0007] In some embodiments, the second transmission unit is disposed within the body and is a wireless power supply module; the first transmission unit further includes a wireless transmission module configured to transmit data with the second electronic device and the first transmission unit.

[0008] In some embodiments, the body includes: a first plate, a second plate, and a third plate. The first plate is provided with a first connecting surface, and the second plate and the third plate are respectively provided with second connecting surfaces. The second plate, the first plate, and the third plate are sequentially and movably connected, so that the electronic device has a first usage mode and a second usage mode. In the first usage mode, the second connecting surfaces of the second plate and the third plate are coplanar and are either opposite to or opposite to the first connecting surface of the first plate. In the second usage mode, the first connecting surface of the first plate, the second connecting surface of the second plate, and the second connecting surface of the third plate are coplanar, and the first connecting surface, the second connecting surface of the second plate, and the second connecting surface of the third plate respectively form a first support surface, a second support surface, and a third support surface. The energy conversion module, including a photovoltaic panel, is provided on the surface of the first plate opposite to the first connecting surface.

[0009] In some embodiments, the body includes: a fourth plate, a fifth plate, and a sixth plate. The fourth plate has a first surface and a second surface facing away from each other. The fifth plate has a third surface and a fourth surface facing away from each other. The sixth plate has a fifth surface and a sixth surface facing away from each other. The fourth plate, the fifth plate, and the sixth plate are sequentially and movably connected to each other, enabling the electronic device to have a third usage mode and a fourth usage mode. In the third usage mode, the first surface and the third surface are coplanar, and the fifth surface is opposite to at least a portion of the third surface. The first surface, the third surface, and the fifth surface constitute the first connecting surface, and the second surface and / or the fourth surface constitute the second connecting surface. In the fourth usage mode, there is an angle between the first surface and the third surface, and an angle between the third surface and the fifth surface. The sixth surface and the end of the fourth plate away from the fifth plate are coplanar to form a fourth support surface supporting the first electronic device; wherein the second surface and / or the fourth surface are provided with the energy conversion module, the energy conversion module including a photovoltaic panel; or, in the third usage mode, the first surface and the third surface are coplanar, the fifth surface is opposite to the first surface and the third surface, the first surface, the third surface and the fifth surface constitute the first connecting surface, and the sixth surface forms the second connecting surface; in the fourth usage mode, the second surface, the fourth surface and the sixth surface form a triangle, and the third surface forms the fifth support surface supporting the first electronic device; wherein at least one of the sixth surface and the first surface is provided with the energy conversion module, the energy conversion module including a photovoltaic panel.

[0010] In some embodiments, the body includes a seventh plate, an eighth plate, and a ninth plate. The seventh plate has a seventh surface and an eighth surface facing away from each other. The eighth plate has a ninth surface and a tenth surface facing away from each other. The ninth plate has an eleventh surface and a twelfth surface facing away from each other. The eighth plate and the ninth plate are movably connected to two adjacent sides of the seventh plate, respectively, so that the electronic device has a fifth usage mode and a sixth usage mode. In the fifth usage mode, the seventh surface and the ninth surface are coplanar, and the eighth surface and the twelfth surface have an included angle. The seventh surface forms the first connecting surface, and the ninth surface forms the second connecting surface. In the sixth usage mode, the seventh surface is opposite to the ninth surface, and the eleventh surface is opposite to both the tenth and seventh surfaces.

[0011] In some embodiments, in the fifth usage mode, the target portion of the seventh plate is movable relative to the seventh plate and supported between the eighth surface and the twelfth surface, and the target portion is provided with the energy conversion module, the energy conversion module including a photovoltaic panel.

[0012] In some embodiments, the body includes a tenth plate, an eleventh plate, and a twelfth plate. The tenth plate has a thirteenth and a fourteenth surface facing away from each other. The eleventh plate has a fifteenth and a sixteenth surface facing away from each other. The twelfth plate has a seventeenth and an eighteenth surface facing away from each other. One end of the tenth plate and one end of the eleventh plate are movably connected. The twelfth plate is movably connected to the fourteenth surface of the tenth plate, so that the electronic device has a seventh usage mode and an eighth usage mode. In the seventh usage mode, the seventeenth surface and the thirteenth surface are located on the same side, and there is an angle between the fourteenth surface and the sixteenth surface. The thirteenth surface forms the first connecting surface, and the seventeenth surface forms the second connecting surface. In the eighth usage mode, the seventeenth surface is attached to the fourteenth surface, and there is an angle between the eighteenth surface and the sixteenth surface. The fifteenth surface is provided with the energy conversion module, which includes a photovoltaic panel.

[0013] In some embodiments, the body includes a thirteenth plate, a fourteenth plate, and a fifteenth plate. The thirteenth plate has a nineteenth surface, the fourteenth plate has a twentieth surface, and the fifteenth plate has a twenty-first surface. The thirteenth, fourteenth, and fifteenth plates are sequentially and movably connected to each other, enabling the electronic device to have a ninth usage mode and a tenth usage mode. In the ninth usage mode, the nineteenth, twentieth, and twenty-first surfaces are coplanar, and a portion of the nineteenth, twentieth, and twenty-first surfaces forms the first connecting surface and a portion of the second connecting surface. In the tenth usage mode, the nineteenth and twenty-first surfaces are opposite to the twenty-first surface to form an accommodating space between the nineteenth, twentieth, and twenty-first surfaces. The energy conversion module, including a photovoltaic panel, is disposed on the coplanar side.

[0014] This disclosure provides an electronic system, which may include: a first electronic device and an electronic device. The electronic device may include: a body, a first transmission unit, and a second transmission unit. The body has a first connecting surface and a second connecting surface. The first connecting surface is used for detachably connecting the first electronic device, and the second connecting surface is used for detachably connecting a second electronic device. The body is provided with an energy conversion module for converting solar energy into electrical energy. The first transmission unit is disposed on the body and corresponds to the first connecting surface, and is electrically connected to the energy conversion module. The first transmission unit is configured to supply power to the first electronic device, and the first electronic device and the second electronic device can communicate data through the first transmission unit. The second transmission unit is disposed on the body and corresponds to the second connecting surface, and is electrically connected to the energy conversion module. The second transmission unit is configured to supply power to the second electronic device.

[0015] The above description is only an overview of the technical solution of this disclosure. In order to better understand the technical means of this disclosure and to implement it in accordance with the contents of the specification, the preferred embodiments of this disclosure are described in detail below with reference to the accompanying drawings. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in this disclosure or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this disclosure. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the structure of the electronic device provided in the first embodiment of the present disclosure;

[0018] Figure 2 A schematic diagram of the structure of the electronic device provided in the first embodiment of this disclosure, which is connected to a first electronic device and a second electronic device. Figure 1 ;

[0019] Figure 3 A schematic diagram of the structure of the electronic device provided in the first embodiment of this disclosure, which is connected to a first electronic device and a second electronic device. Figure 2 ;

[0020] Figure 4 Schematic diagram of the structure of the electronic device provided in the second embodiment of this disclosure Figure 1 ;

[0021] Figure 5 Schematic diagram of the structure of the electronic device provided in the second embodiment of this disclosure Figure 2 ;

[0022] Figure 6 A schematic diagram of an electronic device connected to a first electronic device, provided in the second embodiment of this disclosure;

[0023] Figure 7 A schematic diagram of an electronic device connected to a first electronic device and a second electronic device, provided in the second embodiment of this disclosure;

[0024] Figure 8 A schematic diagram of the structure of the electronic device provided in the third embodiment of this disclosure;

[0025] Figure 9 A schematic diagram of the structure of the electronic device provided in the third embodiment of this disclosure, which is connected to a first electronic device. Figure 1 ;

[0026] Figure 10 A schematic diagram of the structure of the electronic device provided in the third embodiment of this disclosure, which is connected to a first electronic device. Figure 2 ;

[0027] Figure 11 Schematic diagram of the structure of the electronic device provided in the fourth embodiment of this disclosure Figure 1 ;

[0028] Figure 12 Schematic diagram of the structure of the electronic device provided in the fourth embodiment of this disclosure Figure 2 ;

[0029] Figure 13 A schematic diagram of an electronic device connected to a first electronic device, provided in the fourth embodiment of this disclosure;

[0030] Figure 14 This is a schematic diagram of the structure of the electronic device provided in the fifth embodiment of the present disclosure;

[0031] Figure 15 A schematic diagram of an electronic device connected to a first electronic device and a second electronic device, provided in the fifth embodiment of this disclosure;

[0032] Figure 16 A schematic diagram of the structure of the electronic device provided in the fifth embodiment of this disclosure, connected to a first electronic device. Figure 1 ;

[0033] Figure 17 A schematic diagram of the structure of the electronic device provided in the fifth embodiment of this disclosure, connected to a first electronic device. Figure 2 ;

[0034] Figure 18 Schematic diagram of the structure of the electronic device provided in the sixth embodiment of this disclosure Figure 1 ;

[0035] Figure 19 Schematic diagram of the structure of the electronic device provided in the sixth embodiment of this disclosure Figure 2 ;

[0036] Figure 20 A schematic diagram of an electronic device connected to a first electronic device and a second electronic device, provided in the sixth embodiment of this disclosure;

[0037] Figure 21 A schematic diagram of an electronic device connected to a first electronic device, provided in the sixth embodiment of this disclosure;

[0038] Figure 22 This is a schematic diagram of the structure of the electronic device provided in the seventh embodiment of the present disclosure;

[0039] Figure 23 A schematic diagram of an electronic device connected to a first electronic device and a second electronic device, provided in the seventh embodiment of this disclosure;

[0040] Figure 24 This is a schematic diagram of an electronic device connected to a first electronic device, provided in the seventh embodiment of this disclosure.

[0041] Explanation of reference numerals in the attached figures:

[0042] 10. Electronic device; 11. Body; 111. First connecting surface; 112. Second connecting surface; 113. First plate; 114. Second plate; 115. Third plate; 116. Fourth plate; 1161. First surface; 1162. Second surface; 117. Fifth plate; 1171. Fourth surface; 1172. Third surface; 118. Sixth plate; 1181. Fifth surface; 1182. Sixth surface; 119. Seventh plate; 1191. Seventh surface; 1192. Eighth surface; 1193. Target part; 120. Eighth plate; 1201. Ninth surface; 1202. Tenth surface; 1 21. Ninth plate; 1211. Eleventh surface; 1212. Twelfth surface; 122. Tenth plate; 1221. Thirteenth surface; 1222. Fourteenth surface; 123. Eleventh plate; 1231. Fifteenth surface; 1232. Sixteenth surface; 124. Twelfth plate; 1241. Seventeenth surface; 1242. Eighteenth surface; 125. Thirteenth plate; 1251. Nineteenth surface; 126. Fourteenth plate; 1261. Twentieth surface; 127. Fifteenth plate; 1271. Twenty-first surface; 12. First transmission unit; 20. First electronic device; 30. Second electronic device. Detailed Implementation

[0043] The embodiments of this disclosure will be further described in detail below with reference to the accompanying drawings and examples. The detailed description of the embodiments and the accompanying drawings are used to illustrate the principles of this disclosure by way of example, but should not be used to limit the scope of this disclosure. This disclosure can be implemented in many different forms and is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

[0044] These embodiments are provided to make the disclosure thorough and complete, and to fully express the scope of the disclosure to those skilled in the art. It should be noted that, unless otherwise specifically stated, the relative arrangement of components and steps, material composition, numerical expressions, and values ​​set forth in these embodiments should be interpreted as exemplary only and not as limiting.

[0045] It should be noted that, in the description of this disclosure, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," and "outer," etc., indicating orientation or positional relationship, are only for the convenience of describing this disclosure and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this disclosure. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0046] Furthermore, the terms "first," "second," and similar terms used in this disclosure do not indicate any order, quantity, or importance, but are merely used to distinguish different parts. "Vertical" is not strictly vertical, but within the permissible margin of error. "Parallel" is not strictly parallel, but within the permissible margin of error. Terms such as "including" or "contains" mean that the element preceding the word encompasses the element listed after the word, and do not exclude the possibility of encompassing other elements as well.

[0047] It should also be noted that, in the description of this disclosure, unless otherwise expressly specified and limited, the terms "installed," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this disclosure depending on the specific circumstances. When a particular device is described as being located between a first device and a second device, an intermediary device may or may not be present between the particular device and the first or second device.

[0048] All terms used in this disclosure have the same meaning as understood by one of ordinary skill in the art to which this disclosure pertains, unless otherwise specifically defined. It should also be understood that terms defined in general dictionaries should be interpreted as having meanings consistent with their meanings in the context of the relevant art, and not as idealized or highly formalized, unless expressly defined herein.

[0049] Techniques, methods, and equipment known to those skilled in the art may not be discussed in detail, but where appropriate, they should be considered part of the specification.

[0050] The protective structure connected to the outside of electronic devices can provide physical protection for the electronic devices.

[0051] In related technologies, the protective structure has a single function, which makes it unable to meet the needs of users.

[0052] The inventors of this disclosure have discovered that an electronic device and electronic system can be provided. The electronic device may include a body, a first transmission unit, and a second transmission unit. The body may have a first connecting surface and a second connecting surface. The first connecting surface is used for detachably connecting a first electronic device, and the second connecting surface is used for detachably connecting a second electronic device. The body is provided with an energy conversion module capable of converting solar energy into electrical energy. The first transmission unit can transmit the electrical energy converted by the energy conversion module to the first electronic device connected to the first connecting surface, and the second transmission unit can transmit the electrical energy converted by the energy conversion module to the second electronic device connected to the second connecting surface. Furthermore, the first transmission unit can also realize data transmission between the first electronic device on the first connecting surface and the second electronic device on the second connecting surface. In this design, the surface of the first electronic device connected to the first connecting surface can be covered by the first connecting surface to protect the main body, and the surface of the second electronic device connected to the second connecting surface can be covered by the second connecting surface to protect the main body. This allows the electronic device to act as a protective structure to protect both the first and second electronic devices. Furthermore, the energy conversion module, the first transmission unit, and the second transmission unit on the main body can utilize natural resources to charge both the first and second electronic devices. The first transmission unit can also enable data transmission between the first and second electronic devices, thus providing both protection and power supply and data transmission functions. This enriches the functionality, expands the application scenarios, and effectively meets users' needs for portability and multi-functional integration.

[0053] First aspect

[0054] This disclosure provides an electronic device 10, see [link to previous document]. Figures 1 to 24 The electronic device 10 may include: a body 11, a first transmission unit 12, and a second transmission unit (not shown in the figure). The body 11 has a first connecting surface 111 and a second connecting surface 112. The first connecting surface 111 is used for detachably connecting a first electronic device 20, and the second connecting surface 112 is used for detachably connecting a second electronic device 30. The body 11 is provided with an energy conversion module for converting solar energy into electrical energy. The first transmission unit 12 is disposed on the body 11 and corresponds to the first connecting surface 111. It is electrically connected to the energy conversion module. The first transmission unit 12 is configured to supply power to the first electronic device 20, and the first electronic device 20 and the second electronic device 30 can communicate data through the first transmission unit 12. The second transmission unit is disposed on the body 11 and corresponds to the second connecting surface 112. It is electrically connected to the energy conversion module. The second transmission unit is configured to supply power to the second electronic device 30.

[0055] The body 11 may have a first connecting surface 111 and a second connecting surface 112. The first connecting surface 111 and the second connecting surface 112 may be different areas of the surface of the body 11. The first connecting surface 111 is used to connect a first electronic device 20 (such as a laptop computer), and the first electronic device 20 can be detached from the first connecting surface 111. The second connecting surface 112 is used to connect a second electronic device 30 (such as a mobile phone, tablet computer, etc.), and the second electronic device 30 can be detached from the second connecting surface 112. The body 11 may also be provided with an energy conversion module, which can convert solar energy into electrical energy, for example, the energy conversion module is a photovoltaic module.

[0056] The first transmission unit 12 can be disposed on the first connecting surface 111 of the main body 11, or disposed inside the main body 11 corresponding to the first connecting surface 111, so that the position of the first transmission unit 12 corresponds to the first connecting surface 111. This allows the first electronic device 20 to connect synchronously with the first transmission unit 12 when it is connected to the first connecting surface 111. The first transmission unit 12 is electrically connected to the energy conversion module and can also be electrically connected to the first electronic device 20 connected to the first connecting surface 111 to provide the electrical energy converted by the energy conversion module to the first electronic device 20, thereby charging the first electronic device 20. Furthermore, the first transmission unit 12 can be signal-connected to the first electronic device 20 connected to the first connecting surface 111 and the second electronic device 30 connected to the second connecting surface 112, respectively, to realize data transmission between the first electronic device 20 and the second electronic device 30 through the first transmission unit 12. The first transmission unit 12 may include a connecting post that can be physically connected to the first electronic device 20, the connecting post enabling the transmission of electrical energy converted by the energy conversion module to the first electronic device 20; and / or, the first transmission unit 12 may include a wireless coil that can be wirelessly connected to the first electronic device 20, the wireless coil enabling the transmission of electrical energy converted by the energy conversion module to the first electronic device 20. The first transmission unit 12 may include a wireless transmission module (such as a WIFI module, Bluetooth module, etc.) to enable data exchange between the first electronic device 20 and the second electronic device 30; and / or, the first transmission unit 12 may include a transmission cable, the two ends of which can be connected to the first electronic device 20 on the first connecting surface 111 and the second electronic device 30 on the second connecting surface 112, respectively, to enable data exchange between the first electronic device 20 and the second electronic device 30.

[0057] The second transmission unit can be disposed on the second connecting surface 112 of the main body 11, or it can be disposed inside the main body 11 corresponding to the second connecting surface 112, so that the position of the second transmission unit corresponds to the second connecting surface 112. This allows the second electronic device 30 to connect synchronously with the second transmission unit when connected to the second connecting surface 112. The second transmission unit is electrically connected to the energy conversion module, so that when the second electronic device 30 is connected to the second connecting surface 112, the second transmission unit can transmit electrical energy from the energy conversion module to the second electronic device 30, thereby charging the second electronic device 30. The second transmission unit may include a connecting post that can be physically connected to the second electronic device 30, which can transmit electrical energy converted by the energy conversion module to the second electronic device 30; and / or, the first transmission unit 12 may include a wireless coil that can be wirelessly connected to the second electronic device 30, which can transmit electrical energy converted by the energy conversion module to the second electronic device 30.

[0058] In this embodiment, the electronic device 10 may include a body 11, a first transmission unit 12, and a second transmission unit. The body 11 has a first connecting surface 111 and a second connecting surface 112. The first connecting surface 111 is used to detachably connect to a first electronic device 20, and the second connecting surface 112 is used to detachably connect to a second electronic device 30. The body 11 is also provided with an energy conversion module that can convert solar energy into electrical energy. The first transmission unit 12 is used to transmit the electrical energy generated by the energy conversion module to the first electronic device 20 connected to the first connecting surface 111, and the second transmission unit is used to transmit the electrical energy generated by the energy conversion module to the second electronic device 30 connected to the second connecting surface 112. In addition, the first transmission unit 12 also supports data transmission between the first electronic device 20 and the second electronic device 30. When the first electronic device 20 is connected to the first connecting surface 111, at least a portion of the surface of the first electronic device 20 is covered by the first connecting surface 111, thereby being protected by the body 11. Similarly, when the second electronic device 30 is connected to the second connecting surface 112, at least a portion of the surface of the second electronic device 30 is covered by the second connecting surface 112, thereby being protected by the body 11. Thus, the electronic device 10 can act as a protective structure to provide physical protection for at least a portion of the surfaces of the first electronic device 20 and the second electronic device 30. Furthermore, through the integrated energy conversion module, the first transmission unit 12, and the second transmission unit, it can utilize natural energy to charge the connected first electronic device 20 and the second electronic device 30, and support data transmission between the first electronic device 20 and the second electronic device 30. As a result, the electronic device 10 provides protection while also possessing power supply and data transmission capabilities, making its functions richer and its application scenarios more extensive, effectively meeting users' needs for portability and multi-functional integration.

[0059] In some embodiments, the body 11 is provided with a first adsorption component for adsorbing the first electronic device 20 at the position corresponding to the first connecting surface 111, and a second adsorption component for adsorbing the second electronic device 30 at the position corresponding to the second connecting surface 112; the first transmission part 12 is a connecting post, and the connecting post is configured to cooperate with the connecting recess of the first electronic device 20.

[0060] In other words, the main body 11 is provided with a first adsorption component inside the first connecting surface 111 or on the first connecting surface 111. When the first electronic device 20 is connected to the first connecting surface 111, the first electronic device 20 is adsorbed onto the first adsorption component, so that the first electronic device 20 can be more firmly connected to the first connecting surface 111. The adsorption setting can also allow the first electronic device 20 to be separated from the first connecting surface 111. Similarly, the main body 11 is provided with a second adsorption component inside the second connecting surface 112 or on the second connecting surface 112. When the second electronic device 30 is connected to the second connecting surface 112, the second electronic device 30 is adsorbed onto the second adsorption component, so that the second electronic device 30 can be more firmly connected to the second connecting surface 112. The adsorption setting can also allow the second electronic device 30 to be separated from the second connecting surface 112.

[0061] The first adsorption component can be a magnet, and the housing of the first electronic device 20 can be made of metal, so that the first electronic device 20 can be adsorbed onto the first adsorption component; the second adsorption component can be a magnet, and the housing of the second electronic device 30 can be made of metal, so that the second electronic device 30 can be adsorbed onto the second adsorption component.

[0062] The first transmission unit 12 can be a cylindrical or prismatic column that protrudes from the first connecting surface 111. The first electronic device 20 can be provided with a connecting recess. When the first electronic device 20 is connected to the first connecting surface 111, the position of the connecting column corresponds to the position of the connecting recess. The column can be inserted into the connecting recess to achieve electrical connection (supporting charging) and signal connection (supporting data transmission) with the first electronic device 20. In this way, the first transmission unit 12 can transmit electrical energy to the first electronic device 20 and transmit data from the second electronic device 30 to the first electronic device 20, or transmit data from the first electronic device 20 to the second electronic device 30.

[0063] In this embodiment, the first adsorption component provided on the body 11 can make the connection between the first electronic device 20 and the first connecting surface 111 more secure when the first electronic device 20 is connected to the first connecting surface 111. The first transmission part 12 is a connecting post and can be in concave-convex cooperation with the first electronic device 20 to reduce the probability of the first electronic device 20 sliding relative to the first connecting surface 111. The second adsorption component can make the connection between the second electronic device 30 and the second connecting surface 112 more secure when the second electronic device 30 is connected to the second connecting surface 112.

[0064] In some embodiments, the second transmission unit is disposed within the body 11 and is a wireless power supply module; the first transmission unit 12 further includes a wireless transmission module configured to transmit data with the second electronic device 30 and the first transmission unit 12.

[0065] The second transmission unit is a wireless power supply module. When the second electronic device 30 is connected to the second connection surface 112, the position of the second electronic device 30 is opposite to the position of the wireless power supply module. When the second electronic device 30 is connected to the second connection surface 112, the electrical energy converted by the energy conversion module can be transmitted to the second electronic device 30 through the wireless power supply module. The wireless power supply module can be a wireless coil.

[0066] The first transmission unit 12 may include a wireless transmission module, which enables data transmission between the first electronic device 20 and the second electronic device 30 via wireless means, such as a WIFI module, a Bluetooth module, etc.

[0067] In this embodiment, the second transmission unit is a wireless power supply module, which makes the connection between the second electronic device 30 and the second transmission unit more convenient; the first transmission unit 12 also includes a wireless transmission module, which enables data transmission between the first electronic device 20 and the second electronic device 30 through wireless transmission, thereby reducing the installation of cables and simplifying the structure of the electronic device 10.

[0068] In some embodiments, see Figures 1 to 7The main body 11 may include a first plate 113, a second plate 114, and a third plate 115. The first plate 113 is provided with a first connecting surface 111, and the second plate 114 and the third plate 115 are respectively provided with second connecting surfaces 112. The second plate 114, the first plate 113, and the third plate 115 are sequentially and movably connected, so that the electronic device 10 has a first usage mode and a second usage mode. In the first usage mode, the second connecting surfaces 112 of the second plate 114 and the second connecting surfaces 112 of the third plate 115 are coplanar and both are connected to the first plate 113. The first connecting surfaces 111 of the first plate 113 are opposite to or opposite to each other; in the second usage mode, the first connecting surface 111 of the first plate 113, the second connecting surface 112 of the second plate 114, and the second connecting surface 112 of the third plate 115 are coplanar, and the first connecting surface 111, the second connecting surface 112 of the second plate 114, and the second connecting surface 112 of the third plate 115 respectively form the first support surface, the second support surface, and the third support surface; wherein, an energy conversion module is provided on the surface of the first plate 113 opposite to the first connecting surface 111, and the energy conversion module includes a photovoltaic panel.

[0069] The main body 11 may also include a covering layer, which covers the outer sides of the second plate 114, the first plate 113, and the third plate 115 to enable the sequential connection of the second plate 114, the first plate 113, and the third plate 115. The covering layer may be made of a flexible material, allowing the second plate 114 to rotate relative to the first plate 113 and the third plate 115 to rotate relative to the first plate 113, thereby enabling switching between different usage modes. Furthermore, the flexible material reduces the probability of scratching the first electronic device 20 and the second electronic device 30 when they come into contact with each other. The connection methods of the different plates described below can all employ a covering layer, which not only protects the plates but also allows for movement between them; further details will not be elaborated upon below.

[0070] When the second plate 114, the first plate 113 and the third plate 115 are connected, the first connecting surface 111 of the first plate 113 may be on the same side or on different sides as the second connecting surface 112 of the second plate 114 and the second connecting surface 112 of the third plate 115.

[0071] See one example. Figures 1 to 3 The main body 11 may include: a first plate 113, a second plate 114, and a third plate 115. The first plate 113 is provided with a first connecting surface 111, and the second plate 114 and the third plate 115 are respectively provided with second connecting surfaces 112. The second plate 114, the first plate 113, and the third plate 115 are arranged along a first direction (e.g., Figure 1The electronic device 10 is connected by sequential rotation (e.g., through a covering layer) in the X direction. The width between the two sides of the second plate 114 extending in the first direction is equal to the width between the two sides of the third plate 115 extending in the first direction, and less than the width between the two sides of the first plate 113 extending in the first direction. This allows the electronic device 10 to have a first usage mode and a second usage mode. See also... Figure 1 In the first usage mode, the second connecting surface 112 of the second plate 114 and the second connecting surface 112 of the third plate 115 are coplanar and both face away from the first connecting surface 111 of the first plate 113. Thus, the first electronic device 20 can be connected to the first connecting surface 111, and the second electronic device 30 can be connected to the second connecting surface 112. The connected first electronic device 20 and second electronic device 30 correspond to opposite sides of the electronic device 10 in this first usage mode. (See also...) Figure 2 and Figure 3 In the second usage mode, the first connecting surface 111 of the first plate 113, the second connecting surface 112 of the second plate 114, and the second connecting surface 112 of the third plate 115 are coplanar, and the first connecting surface 111, the second connecting surface 112 of the second plate 114, and the second connecting surface 112 of the third plate 115 respectively form a first support surface, a second support surface, and a third support surface. The first support surface can be connected to a first electronic device 20, the second support surface can be connected to a second electronic device 30, and the third support surface can be connected to another second electronic device 30. The second electronic devices 30 connected to the second support surface and the third support surface can be the same or different. Among them, an energy conversion module is provided on the surface of the first plate 113 opposite to the first connecting surface 111. The energy conversion module includes a photovoltaic panel.

[0072] See one example. Figures 4 to 7 The main body 11 may include: a first plate 113, a second plate 114, and a third plate 115. The first plate 113 is provided with a first connecting surface 111, and the second plate 114 and the third plate 115 are respectively provided with second connecting surfaces 112. The second plate 114, the first plate 113, and the third plate 115 are arranged along a second direction (e.g., Figure 4 The components are connected by sequential rotation (e.g., through a covering layer) in the Y direction. The widths between the two sides of the first plate 113 extending in the second direction, the widths between the two sides of the second plate 114 extending in the second direction, and the widths between the two sides of the third plate 115 extending in the second direction are all the same, giving the electronic device 10 a first usage mode and a second usage mode; see also Figures 4 to 6In the first usage mode, the second connecting surface 112 of the second plate 114 and the second connecting surface 112 of the third plate 115 are coplanar and both face the first connecting surface 111 of the first plate 113. Thus, a protective space can be formed between the first plate 113, the second plate 114, and the third plate 115 to accommodate and protect any electronic device. (See also...) Figure 7 In the second usage mode, the first connecting surface 111 of the first plate 113, the second connecting surface 112 of the second plate 114, and the second connecting surface 112 of the third plate 115 are coplanar, and the first connecting surface 111, the second connecting surface 112 of the second plate 114, and the second connecting surface 112 of the third plate 115 respectively form a first support surface, a second support surface, and a third support surface. The first support surface can be connected to a first electronic device 20, the second support surface can be connected to a second electronic device 30, and the third support surface can be connected to another second electronic device 30. The second electronic devices 30 connected to the second support surface and the third support surface can be the same or different. Among them, an energy conversion module is provided on the surface of the first plate 113 opposite to the first connecting surface 111. The energy conversion module includes a photovoltaic panel.

[0073] In this embodiment, the main body 11 may include a first plate 113, a second plate 114 and a third plate 115, which are rotatably connected to facilitate the switching of the electronic device 10 between a first usage mode and a second usage mode, so as to meet the user's needs for different postures of the electronic device 10.

[0074] In some embodiments, see Figures 8 to 13 The main body 11 may include a fourth plate 116, a fifth plate 117, and a sixth plate 118. The fourth plate 116 has a first surface 1161 and a second surface 1162 facing away from each other. The fifth plate 117 has a third surface 1172 and a fourth surface 1171 facing away from each other. The sixth plate 118 has a fifth surface 1181 and a sixth surface 1182 facing away from each other. The fourth plate 116, the fifth plate 117, and the sixth plate 118 are sequentially and movably connected, enabling the electronic device 10 to have a third usage mode and a fourth usage mode. In the third usage mode, see [link to relevant documentation]. Figure 10 The first surface 1161 and the third surface 1172 are coplanar, and the fifth surface 1181 is opposite to at least a portion of the third surface 1172. The first surface 1161, the third surface 1172, and the fifth surface 1181 constitute a first connecting surface 111, and the second surface 1162 and / or the fourth surface 1171 constitute a second connecting surface 112; see also Figure 8 and Figure 9In the fourth usage mode, the second surface 1162 and the fourth surface 1171 form an angle, the fourth surface 1171 and the sixth surface 1182 form an angle, and the fifth surface 1181 and the end of the fourth plate 116 away from the fifth plate 117 are coplanar, thus forming a fourth support surface for supporting the first electronic device 20; wherein, the second surface 1162 and / or the fourth surface 1171 are provided with an energy conversion module, the energy conversion module including a photovoltaic panel; or, in the third usage mode, the first surface 1161 and the third surface 1172 are coplanar, and the fifth surface 1181... Opposite to the first surface 1161 and the third surface 1172, the first surface 1161, the third surface 1172 and the fifth surface 1181 form a first connecting surface 111, and the sixth surface 1182 forms a second connecting surface 112; in the fourth usage mode, the second surface 1162, the fourth surface 1171 and the sixth surface 1182 form a triangle, and the third surface 1172 forms a fifth supporting surface for supporting the first electronic device 20; wherein, at least one of the sixth surface 1182 and the first surface 1161 is provided with an energy conversion module, and the energy conversion module includes a photovoltaic panel.

[0075] See one example. Figures 8 to 10 The main body 11 may include a fourth plate 116, a fifth plate 117, and a sixth plate 118. The fourth plate 116 has a first surface 1161 and a second surface 1162 facing away from each other. The fifth plate 117 has a third surface 1172 and a fourth surface 1171 facing away from each other. The sixth plate 118 has a fifth surface 1181 and a sixth surface 1182 facing away from each other. The fourth plate 116, the fifth plate 117, and the sixth plate 118 are sequentially and movably connected, enabling the electronic device 10 to have a third usage mode and a fourth usage mode. In the third usage mode, see [link to relevant documentation]. Figure 10 The first surface 1161 and the third surface 1172 are coplanar, and the fifth surface 1181 is opposite to at least a portion of the third surface 1172. The first surface 1161, the third surface 1172, and the fifth surface 1181 constitute a first connecting surface 111, enabling the first electronic device 20 to be placed within the space formed by the first surface 1161, the third surface 1172, and the fifth surface 1181. The second surface 1162 and / or the fourth surface 1171 constitute a second connecting surface 112, enabling the connection of the second electronic device 30. See also... Figure 8 and Figure 9In the fourth usage mode, there is an angle between the first surface 1161 and the third surface 1172, an angle between the third surface 1172 and the fifth surface 1181, and the sixth surface 1182 and the end of the fourth plate 116 away from the fifth plate 117 are coplanar, so as to form a fourth support surface for supporting the first electronic device 20. The fourth support surface can support the first electronic device 20. Among them, the second surface 1162 and / or the fourth surface 1171 are provided with energy conversion modules, and the energy conversion modules include photovoltaic panels.

[0076] See one example. Figures 11 to 13 The main body 11 may include a fourth plate 116, a fifth plate 117, and a sixth plate 118. The fourth plate 116 has a first surface 1161 and a second surface 1162 facing away from each other. The fifth plate 117 has a third surface 1172 and a fourth surface 1171 facing away from each other. The sixth plate 118 has a fifth surface 1181 and a sixth surface 1182 facing away from each other. The fourth plate 116, the fifth plate 117, and the sixth plate 118 are sequentially and movably connected, enabling the electronic device 10 to have a third usage mode and a fourth usage mode. See also Figure 11 In the third usage mode, the first surface 1161 and the third surface 1172 are coplanar, and the fifth surface 1181 is opposite to the first surface 1161 and the third surface 1172. The first surface 1161, the third surface 1172, and the fifth surface 1181 constitute the first connecting surface 111. When the first electronic device 20 is connected to the first connecting surface 111, the first surface 1161 and the third surface 1172 cover one side of the first electronic device 20, and the fifth surface 1181 covers the other side of the first electronic device 20 to provide encapsulation protection for the first electronic device 20. The sixth surface 1182 forms the second connecting surface 112 to enable connection of the second electronic device 30. See also Figure 12 and Figure 13 In the fourth usage mode, the second surface 1162, the fourth surface 1171 and the sixth surface 1182 form a triangle, and the third surface 1172 forms a fifth support surface for supporting the first electronic device 20; wherein, at least one of the sixth surface 1182 and the first surface 1161 is provided with an energy conversion module, the energy conversion module including a photovoltaic panel.

[0077] In this embodiment, the main body 11 may include a fourth plate 116, a fifth plate 117 and a sixth plate 118, which are rotatably connected to facilitate the switching of the electronic device 10 between the third and fourth usage modes, so as to meet the user's needs for different postures of the electronic device 10.

[0078] In some embodiments, see Figures 14 to 17The main body 11 includes a seventh plate 119, an eighth plate 120, and a ninth plate 121. The seventh plate 119 has a seventh surface 1191 and an eighth surface 1192 facing away from each other. The eighth plate 120 has a ninth surface 1201 and a tenth surface 1202 facing away from each other. The ninth plate 121 has an eleventh surface 1211 and a twelfth surface 1212 facing away from each other. The eighth plate 120 and the ninth plate 121 are movably connected to two adjacent sides of the seventh plate 119, respectively, so that the electronic device 10 has a fifth usage mode and a sixth usage mode. In the fifth usage mode, see... Figure 14 , Figure 15 and Figure 17 The seventh surface 1191 and the ninth surface 1201 are coplanar, and the eighth surface 1192 and the twelfth surface 1212 have an included angle. The seventh surface 1191 forms the first connecting surface 111, and the ninth surface 1201 forms the second connecting surface 112. In the sixth usage mode, the seventh surface 1191 is opposite to the ninth surface 1201, and the eleventh surface 1211 is opposite to the tenth surface 1202 and the seventh surface 1191.

[0079] Here, the sixth usage mode can be as follows: Figure 16 The usage mode after the eighth plate 120 continues to rotate towards the seventh plate 119 and the ninth plate 121 continues to rotate towards the seventh plate 119 is such that the first electronic device 20 can be placed in the space formed by the seventh plate 119, the eighth plate 120, and the ninth plate 121 to provide physical protection for the first electronic device 20. In the sixth usage mode, such as... Figure 16 As shown, the orthographic projection of the ninth plate 121 onto the seventh plate 119 can coincide with the seventh plate 119, while the orthographic projection of the eighth plate 120 onto the seventh plate 119 can be smaller than the seventh plate 119.

[0080] In this embodiment, the main body 11 may include a seventh plate 119, an eighth plate 120 and a ninth plate 121, which are rotatably connected to facilitate the switching of the electronic device 10 between the fifth and sixth usage modes, so as to meet the user's needs for different postures of the electronic device 10.

[0081] In some embodiments, see Figure 17 In the fifth usage mode, the target portion 1193 of the seventh plate 119 is movable relative to the seventh plate 119 and supported between the eighth surface 1192 and the twelfth surface 1212, and the target portion 1193 is provided with an energy conversion module, which includes a photovoltaic panel.

[0082] The seventh plate 119 can be a single layer, and the target portion 1193 is rectangular (e.g., Figure 17The target portion 1193 in region A is rotatably connected to the seventh plate 119, while the other three edges of the target portion 1193 are disconnected from the seventh plate 119. This allows the target portion 1193 to rotate with the seventh plate 119 to be supported between the eighth surface 1192 and the twelfth surface 1212; alternatively, the seventh plate 119 can be two layers, with the target portion 1193 being one of them (e.g., ...). Figure 17 The target portion 1193 in region B is able to rotate relative to another layer to be supported between the eighth surface 1192 and the twelfth surface 1212.

[0083] In this embodiment, the target portion 1193 provided on the seventh plate 119 can support the seventh plate 119 and the first electronic device 20 thereon.

[0084] In some embodiments, see Figures 18 to 21 The main body 11 may include a tenth plate 122, an eleventh plate 123, and a twelfth plate 124. The tenth plate 122 has opposing thirteenth and fourteenth surfaces 1222, the eleventh plate 123 has opposing fifteenth and sixteenth surfaces 1232, and the twelfth plate 124 has opposing seventeenth and eighteenth surfaces 1242. One end of the tenth plate 122 is movably connected to one end of the eleventh plate 123, and the twelfth plate 124 is movably connected to the fourteenth surface 1222 of the tenth plate 122, enabling the electronic device 10 to have a seventh usage mode and an eighth usage mode. In the seventh usage mode, see [link to documentation]. Figure 19 , Figure 20 The seventeenth surface 1241 and the thirteenth surface 1221 are located on the same side, and the fourteenth surface 1222 and the sixteenth surface 1232 have an included angle. The thirteenth surface 1221 forms the first connecting surface 111, and the seventeenth surface 1241 forms the second connecting surface 112. In the eighth usage mode, see [reference needed]. Figure 18 and Figure 21 The seventeenth surface 1241 is attached to the fourteenth surface 1222, and the eighteenth surface 1242 and the sixteenth surface 1232 have an included angle; wherein, the fifteenth surface 1231 is provided with an energy conversion module, the energy conversion module including a photovoltaic panel.

[0085] Here, the twelfth plate 124 can be a structure with a constant length, so that in the seventh usage mode, the entire twelfth plate 124 is located at one end of the extension direction of the tenth plate 122; or, the twelfth plate 124 can be a telescopic structure, so that in the seventh usage mode, such as Figure 19 and Figure 20As shown, there are twelfth plates 124 at both ends of the tenth plate 122 extending in the direction of extension. With this configuration, second electronic devices 30 can be connected to the twelfth plates 124 at both ends of the tenth plate 122 extending in the direction of extension. The tenth plate 122 can be provided with a slide rail, and the twelfth plates 124 can be slidably connected to the slide rail to realize switching between different usage modes.

[0086] In this embodiment, the main body 11 may include a tenth plate 122, an eleventh plate 123 and a twelfth plate 124, which are rotatably connected to facilitate the switching of the electronic device 10 between the seventh and eighth usage modes, so as to meet the user's needs for different postures of the electronic device 10.

[0087] In some embodiments, see Figures 22 to 24 The main body 11 may include a thirteenth plate 125, a fourteenth plate 126, and a fifteenth plate 127. The thirteenth plate 125 has a nineteenth surface 1251, the fourteenth plate 126 has a twentieth surface 1261, and the fifteenth plate 127 has a twenty-first surface 1271. The thirteenth plate 125, the fourteenth plate 126, and the fifteenth plate 127 are sequentially and movably connected, enabling the electronic device 10 to have a ninth usage mode and a tenth usage mode. In the ninth usage mode, see... Figure 22 and Figure 23 The nineteenth surface 1251, the twentieth surface 1261, and the twenty-first surface 1271 are coplanar, and a portion of the nineteenth surface 1251, the twentieth surface 1261, and the twenty-first surface 1271 forms a first connecting surface 111, and a portion of the twentieth surface 1261 forms a second connecting surface 112; in the tenth usage mode, see Figure 24 The nineteenth surface 1251 and the twenty-first surface 1271 are both opposite to the twentieth surface 1261, so as to form an accommodating space between the nineteenth surface 1251, the twentieth surface 1261 and the twenty-first surface 1271; wherein, an energy conversion module is provided on the coplanar side, and the energy conversion module includes a photovoltaic panel.

[0088] Here, the storage space can accommodate the first electronic device 20, the second electronic device 30, or other electronic devices.

[0089] In this embodiment, the main body 11 may include a thirteenth plate 125, a fourteenth plate 126 and a fifteenth plate 127, which are rotatably connected to facilitate the switching of the electronic device 10 between the ninth and tenth usage modes, so as to meet the user's needs for different postures of the electronic device 10.

[0090] Second aspect

[0091] This disclosure provides an electronic system, which may include a first electronic device 20 and an electronic device 10. The electronic device 10 may include a body 11, a first transmission unit 12, and a second transmission unit. The body 11 has a first connecting surface 111 and a second connecting surface 112. The first connecting surface 111 is used for detachably connecting the first electronic device 20, and the second connecting surface 112 is used for detachably connecting the second electronic device 30. The body 11 is provided with an energy conversion module for converting solar energy into electrical energy. The first transmission unit 12 is disposed on the body 11 and corresponds to the first connecting surface 111, and is electrically connected to the energy conversion module. The first transmission unit 12 is configured to supply power to the first electronic device 20, and the first electronic device 20 and the second electronic device 30 can communicate data through the first transmission unit 12. The second transmission unit is disposed on the body 11 and corresponds to the second connecting surface 112, and is electrically connected to the energy conversion module. The second transmission unit is configured to supply power to the second electronic device 30.

[0092] The first electronic device 20 can be a laptop, tablet, or other similar device.

[0093] It should be noted that the electronic devices in the electronic systems provided in this disclosure are similar to those described in the above-described embodiments of electronic devices, and have similar beneficial effects. For technical details not disclosed in the embodiments of the electronic systems in this disclosure, please refer to the description of the electronic device embodiments in this disclosure for understanding; they will not be repeated here.

[0094] The embodiments of this disclosure have now been described in detail. To avoid obscuring the concept of this disclosure, some details known in the art have not been described. Those skilled in the art can fully understand how to implement the technical solutions disclosed herein based on the above description.

[0095] While specific embodiments of this disclosure have been described in detail by way of examples, those skilled in the art should understand that the examples are for illustrative purposes only and not intended to limit the scope of this disclosure. Those skilled in the art should understand that modifications can be made to the above embodiments or equivalent substitutions can be made to some technical features without departing from the scope and spirit of this disclosure. In particular, as long as there is no structural conflict, the technical features mentioned in the various embodiments can be combined in any manner.

Claims

1. An electronic device, characterized in that, include: The body has a first connecting surface and a second connecting surface. The first connecting surface is used for detachably connecting a first electronic device, and the second connecting surface is used for detachably connecting a second electronic device. The body is also provided with an energy conversion module for converting solar energy into electrical energy. A first transmission unit is disposed on the main body and corresponds to the first connection surface, and is electrically connected to the energy conversion module. The first transmission unit is configured to supply power to the first electronic device, and the first electronic device and the second electronic device can communicate data through the first transmission unit. The second transmission unit is disposed on the main body and corresponds to the second connection surface, and is electrically connected to the energy conversion module. The second transmission unit is configured to supply power to the second electronic device.

2. The electronic device according to claim 1, characterized in that, The main body is provided with a first adsorption component for adsorbing the first electronic device at the position corresponding to the first connecting surface, and a second adsorption component for adsorbing the second electronic device at the position corresponding to the second connecting surface; The first transmission part is a connecting post, and the connecting post is configured to engage with the connecting recess of the first electronic device.

3. The electronic device according to claim 2, characterized in that, The second transmission unit is disposed within the main body and is a wireless power supply module; The first transmission unit further includes a wireless transmission module configured to transmit data with the second electronic device and the first transmission unit.

4. The electronic device according to claim 2, characterized in that, The main body includes: a first plate, a second plate, and a third plate. The first plate is provided with the first connecting surface, and the second plate and the third plate are respectively provided with the second connecting surface. The second plate, the first plate, and the third plate are movably connected in sequence, so that the electronic device has a first usage mode and a second usage mode. In the first usage mode, the second connecting surface of the second plate and the second connecting surface of the third plate are coplanar, and both are opposite to or opposite to the first connecting surface of the first plate. In the second usage mode, the first connecting surface of the first plate, the second connecting surface of the second plate, and the second connecting surface of the third plate are coplanar, and the first connecting surface, the second connecting surface of the second plate, and the second connecting surface of the third plate respectively form a first support surface, a second support surface, and a third support surface; The energy conversion module, including a photovoltaic panel, is disposed on the surface of the first plate opposite to the first connecting surface.

5. The electronic device according to claim 2, characterized in that, The main body includes a fourth plate, a fifth plate, and a sixth plate. The fourth plate has a first surface and a second surface facing away from each other. The fifth plate has a third surface and a fourth surface facing away from each other. The sixth plate has a fifth surface and a sixth surface facing away from each other. The fourth plate, the fifth plate, and the sixth plate are sequentially and movably connected to each other, so that the electronic device has a third usage mode and a fourth usage mode. In the third usage mode, the first surface and the third surface are coplanar, the fifth surface is opposite to at least a portion of the third surface, the first surface, the third surface, and the fifth surface constitute the first connecting surface, and the second surface and / or the fourth surface constitute the second connecting surface; in the fourth usage mode, the first surface and the third surface have an included angle, the third surface and the fifth surface have an included angle, and the sixth surface and the end of the fourth plate away from the fifth plate are coplanar to form a fourth support surface supporting the first electronic device; wherein the second surface and / or the fourth surface are provided with the energy conversion module, and the energy conversion module includes a photovoltaic panel; or, In the third usage mode, the first surface and the third surface are coplanar, the fifth surface is opposite to the first surface and the third surface, the first surface, the third surface and the fifth surface constitute the first connecting surface, and the sixth surface forms the second connecting surface; in the fourth usage mode, the second surface, the fourth surface and the sixth surface form a triangle, and the third surface forms a fifth supporting surface for supporting the first electronic device; wherein, at least one of the sixth surface and the first surface is provided with the energy conversion module, and the energy conversion module includes a photovoltaic panel.

6. The electronic device according to claim 2, characterized in that, The main body includes a seventh plate, an eighth plate, and a ninth plate. The seventh plate has a seventh surface and an eighth surface facing away from each other. The eighth plate has a ninth surface and a tenth surface facing away from each other. The ninth plate has an eleventh surface and a twelfth surface facing away from each other. The eighth plate and the ninth plate are movably connected to two adjacent sides of the seventh plate, respectively, so that the electronic device has a fifth usage mode and a sixth usage mode. In the fifth usage mode, the seventh surface and the ninth surface are coplanar, the eighth surface and the twelfth surface have an included angle, the seventh surface forms the first connecting surface, and the ninth surface forms the second connecting surface; In the sixth usage mode, the seventh surface is opposite to the ninth surface, and the eleventh surface is opposite to both the tenth and seventh surfaces.

7. The electronic device according to claim 6, characterized in that, In the fifth usage mode, the target portion of the seventh plate is movable relative to the seventh plate and supported between the eighth surface and the twelfth surface, and the target portion is provided with the energy conversion module, which includes a photovoltaic panel.

8. The electronic device according to claim 2, characterized in that, The main body includes a tenth plate, an eleventh plate, and a twelfth plate. The tenth plate has a thirteenth and fourteenth opposing surfaces, the eleventh plate has a fifteenth and sixteenth opposing surfaces, and the twelfth plate has a seventeenth and eighteenth opposing surfaces. One end of the tenth plate and one end of the eleventh plate are movably connected, and the twelfth plate is movably connected to the fourteenth surface of the tenth plate, so that the electronic device has a seventh usage mode and an eighth usage mode. In the seventh usage mode, the seventeenth surface and the thirteenth surface are located on the same side, the fourteenth surface and the sixteenth surface have an included angle, the thirteenth surface forms the first connecting surface, and the seventeenth surface forms the second connecting surface; In the eighth usage mode, the seventeenth surface is attached to the fourteenth surface, and there is an angle between the eighteenth surface and the sixteenth surface; The energy conversion module, including a photovoltaic panel, is provided on the fifteenth surface.

9. The electronic device according to claim 2, characterized in that, The main body includes a thirteenth plate, a fourteenth plate, and a fifteenth plate. The thirteenth plate has a nineteenth surface, the fourteenth plate has a twentieth surface, and the fifteenth plate has a twenty-first surface. The thirteenth plate, the fourteenth plate, and the fifteenth plate are sequentially and movably connected to each other, so that the electronic device has a ninth usage mode and a tenth usage mode. In the ninth usage mode, the nineteenth surface, the twentieth surface, and the twenty-first surface are coplanar, and a portion of the nineteenth surface, the twentieth surface, and the twenty-first surface forms the first connecting surface, and a portion of the second connecting surface forms the second connecting surface. In the tenth usage mode, both the nineteenth surface and the twenty-first surface are opposite to the twenty surface to form an accommodating space between the nineteenth surface, the twenty surface and the twenty-first surface; The energy conversion module, which includes a photovoltaic panel, is provided on the coplanar side.

10. An electronic system, characterized in that, include: First electronic device; Electronic devices, including: The body has a first connecting surface and a second connecting surface. The first connecting surface is used to detachably connect the first electronic device, and the second connecting surface is used to detachably connect the second electronic device. The body is also provided with an energy conversion module for converting solar energy into electrical energy. A first transmission unit is disposed on the main body and corresponds to the first connection surface, and is electrically connected to the energy conversion module. The first transmission unit is configured to supply power to the first electronic device, and the first electronic device and the second electronic device can communicate data through the first transmission unit. The second transmission unit is disposed on the main body and corresponds to the second connection surface, and is electrically connected to the energy conversion module. The second transmission unit is configured to supply power to the second electronic device.