Electronic device

By designing the computing device and display device to be detachably connected and using wireless communication and magnetic parts to achieve state switching, the problem of heat impact caused by high computing power of electronic devices is solved, and the user experience and signal transmission efficiency are improved.

CN223362551UActive Publication Date: 2025-09-19HUAWEI TECH CO LTD
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Patent Information

Application Number
CN202422533550.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-09-19
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

The heat generated by electronic devices during high-computing power calculations affects the user experience.

Method used

The computing device and the display device are designed to be detachably connected, computing signals are transmitted through wireless communication, and magnetic parts and connecting devices are set between the computing device and the display device to achieve switching between the separate and combined states, thereby preventing heat from being transferred to the display device.

Benefits of technology

It improves the user experience, avoids the user from coming into contact with high-temperature computing devices, and enhances the device's usage scenarios and signal transmission efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides electronic equipment, and aims to improve the use experience of a user. In the electronic equipment provided by the embodiment of the invention, a computing chip is arranged in a first shell, a display panel is arranged in a second shell, and the first shell and the second shell are detachably connected, so that a computing device and a display device are in a split state or a combined state; signals processed by a computing chip in the computing device can be transmitted to a display panel of the display device through wireless communication between the first communication device and the second communication device, the computing chip can generate heat in the process of processing the signals, but the heat generated by the computing chip cannot be transmitted to the display device. In the process of using the electronic equipment by the user, the user can only hold the display device, so that the user is prevented from touching a computing device with relatively high calorific value, and the use experience of the user is improved.
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Description

Technical Field

[0001] The embodiments of the present application relate to the field of terminal technology, and specifically to an electronic device. Background Art

[0002] As users pursue higher visual effects produced by display panels, electronic devices will have higher computing power requirements. However, higher computing power will cause electronic devices to generate more heat, affecting the user experience. Utility Model Content

[0003] The embodiments of the present application provide an electronic device, aiming to improve the user experience.

[0004] To achieve the above objectives, the embodiments of the present application adopt the following technical solutions:

[0005] On the one hand, an embodiment of the present application provides an electronic device, which includes a computing device and a display device, the computing device includes a computing chip, a first shell and a first communication device, the computing chip and the first communication device are both arranged in the first shell, and the first communication device is connected to the computing chip; the display device includes a display panel, a second shell and a second communication device, the display panel and the second communication device are both arranged in the second shell, and the display panel is connected to the second communication device; wherein the first shell and the second shell are detachably connected, and the first communication device and the second communication device are used for wireless communication.

[0006] In the electronic device provided in the embodiment of the present application, a computing chip is arranged in a first shell, and a display panel is arranged in a second shell. The first shell and the second shell are detachably connected so that the computing device and the display device are in a separated state or a combined state; the signal processed by the computing chip in the computing device can be transmitted to the display panel of the display device through wireless communication between the first communication device and the second communication device, and the computing chip generates heat in the process of processing the signal, but the heat generated by the computing chip will not be transmitted to the display device. When the user uses the electronic device, the user can only hold the display device to avoid the user from contacting the computing device with higher heat generation, thereby improving the user's usage experience.

[0007] In some embodiments, the computing device and the display device are arranged separately or adjacently. The computing device is used to calculate data required by the electronic device. The data is transmitted to the display panel via a wireless communication connection between the first communication device and the second communication device. The display panel then displays a corresponding image based on the data. With this arrangement, when the computing device and the display device are arranged separately, the first housing and the second housing are separated, and the computing device and the display device are in a separate state. When the computing device and the display device are arranged adjacently, the first housing and the second housing are physically connected, so that the computing device and the display device are in a combined state.

[0008] In some embodiments, the first communication device includes a first radio frequency chip and a first radiating component, both of which are connected to the computing chip; the second communication device includes a second radio frequency chip and a second radiating component, both of which are connected to the display panel; wherein the first radiating component is used to transmit wireless signals to the second radiating component and / or receive wireless signals from the second radiating component, and the second radiating component is used to transmit wireless signals to the first radiating component and / or receive wireless signals from the first radiating component. Through the above configuration, a communication connection between the computing device and the display device can be achieved.

[0009] In some embodiments, the computing device further includes a first magnetic component disposed in the first shell, and the display device further includes a second magnetic component disposed in the second shell. When the computing device and the display device are separately disposed, the first magnetic component and the second magnetic component are separately disposed. When the computing device and the display device are adjacent to each other, the first magnetic component and the second magnetic component are magnetically connected.

[0010] The above arrangement can facilitate the conversion of the computing device and the display device in the electronic device between the separated state and the combined state.

[0011] In some embodiments, the display device further includes a display chip disposed in the second housing, and the display panel and the second communication device are both connected to the display chip.

[0012] Through the above-mentioned arrangement, the display chip is arranged in the second shell, and the computing chip is arranged in the first shell. The computing chip in the computing device performs media encoding (media codec encoder) on the signal and then transmits it to the display device. The display chip in the display device decodes the signal, which can improve the efficiency of signal transmission between the computing device and the display device. The heat generated by the display chip is smaller than that generated by the computing chip. When the user uses the electronic device, the user can only hold the display device, avoiding the user from contacting the computing device with higher heat generation, thereby improving the user's usage experience.

[0013] In some embodiments, the computing device includes a first connector, which is disposed in the first shell and connected to the computing chip; the display device includes a second connector, which is disposed in the second shell and connected to the display panel; when the computing device and the display device are disposed adjacent to each other, the first connector is connected to the second connector, and the computing device is used to calculate data required by the electronic device. The data is transmitted to the display panel through a wired connection between the first connector and the second connector, and the display panel displays a corresponding image based on the data.

[0014] Through the above-mentioned setting, when the computing device and the display device are in a combined state, the first connector and the second connector are connected, and the signal processed by the computing chip can be directly transmitted to the display panel through the wired communication between the first connector and the second connector, thereby improving the transmission efficiency of the signal between the computing chip and the display panel when the computing device and the display device are in a combined state.

[0015] In some embodiments, the first connector includes a fixing member, a connecting member and a spring. The fixing member is located in the first shell. The fixing member has an active cavity opening toward the second shell. The connecting member and the spring are located in the active cavity. One end of the connecting member is connected to the computing chip. The spring abuts against the connecting member to drive the connecting member to move out of the active cavity. The second connector includes a metal gasket connected to the display panel. The other end of the connecting member abuts against the metal gasket.

[0016] Through the above arrangement, when the computing device and the display device are in the combined state, the first shell and the second shell fit together, and the spring drives the connecting member to move out of the movable cavity, so that the end of the connecting member close to the second connector abuts against the metal gasket, thereby realizing the connection between the first connector and the second connector.

[0017] In the above embodiment, when the computing device and the display device are in a separated state, the spring is used to drive the connecting member to move out of the active cavity so that the end of the connecting member close to the second shell is located outside the first shell.

[0018] In some embodiments, the computing device further includes a first battery, to which the computing chip and the first communication device are both connected, and the first battery is used to supply power to the computing chip and the first communication device; the display device further includes a second battery, to which the display panel and the second communication device are both connected, and the second battery is used to supply power to the display panel and the second communication device.

[0019] With the above arrangement, the first battery and the second battery are respectively arranged in the computing device and the display device, and can provide power to the computing device and the display device separately when the computing device and the display device are in a separated state.

[0020] In some embodiments, the computing device further includes a first coil connected to the first battery; the display device further includes a second coil connected to the second battery; wherein the first coil and the second coil are coupled, and the first battery can supply power to the second battery through the first coil and the second coil.

[0021] Through the above arrangement, it is avoided to provide a charging port on the display device, thus streamlining the structure of the display device; at the same time, it is also avoided to charge the display device separately, thus improving the user experience.

[0022] In some embodiments, the computing device also includes a first camera, and the computing device also includes a first camera. The first camera is used to collect first image information. The first camera is arranged on the first shell and is connected to the computing chip; the first image information is calculated by the computing chip and transmitted to the display device through the first communication device and the second communication device, and the display panel of the display device is used to display the first image information.

[0023] In some embodiments, the display device also includes a second camera, which is used to collect second image information. The second camera is arranged on the second shell, and the second camera is connected to the second communication device; the second image information is transmitted to the computing chip in the computing device through the second communication device and the first communication device, and the second image information is calculated by the computing chip and transmitted to the display device through the first communication device and the second communication device. The display panel of the display device is used to display the second image information.

[0024] Through the above arrangement, when the computing device and the display device are in a separate state, the first camera can still be controlled by the display device to take pictures, which increases the usage scenarios of the electronic device and improves the user experience.

[0025] In some embodiments, the display device also includes a sound output device and a sound input device. The sound input device is used to receive sound and convert it into input sound information. The sound input device is connected to the second communication device. The input sound information is transmitted to the computing chip through the second communication device and the first communication device. The computing chip is used to process the input sound information. The computing chip is also used to form output sound information. The sound output device is also connected to the second communication device. The output sound information is transmitted to the sound output device through the first communication device and the second communication device. The sound output device is used to convert the sound information into output sound.

[0026] With the above arrangement, when the computing device and the display device are separated, the user can use the sound output device and the sound input device by holding only the display device, thereby preventing the computing device and the display device from being separated from each other and affecting the user's use of the sound output device and the sound input device of the electronic device.

[0027] In some embodiments, the second shell includes a first middle frame and a second middle frame, the first middle frame and the second middle frame are connected, the display panel includes a first display part and a second display part, the first display part is arranged in the first middle frame, and the second display part is arranged in the second middle frame; the display panel has a folded state and an unfolded state, the display panel is in the folded state, the first display part and the second display part are attached; when the display panel is in the unfolded state, the first display part and the second display part are located in the same plane.

[0028] Through the above arrangement, the display panel on the display device in the electronic device can be unfolded or folded, which increases the usage scenarios of the electronic device and improves the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] To more clearly illustrate the technical solutions of this application, the following briefly introduces the drawings required for use in some embodiments of this application. Obviously, the drawings described below are only drawings of some embodiments of this application, and those skilled in the art can also derive other drawings based on these drawings. Furthermore, the drawings described below are schematic diagrams and are not intended to limit the actual dimensions of the products, actual processes of the methods, actual timing of signals, and the like involved in the embodiments of this application.

[0030] Figure 1 This is a schematic diagram of the structure of the computing device and the display device in the electronic device in the embodiment of the present application in a separated state. Figure 1 ;

[0031] Figure 2 This is a schematic diagram of the structure of a computing device and a display device in an embodiment of the present application;

[0032] Figure 3 This is a schematic diagram of the structure of the computing device and the display device in the electronic device in the embodiment of the present application in the combined state. Figure 1 ;

[0033] Figure 4 To show the structure of the computing device and the display device in the separated state in the embodiment of the present application Figure 2 ;

[0034] Figure 5 To show the structure of the computing device and the display device in the separated state in the embodiment of the present application Figure 3 ;

[0035] Figure 6 This is a schematic diagram of the structure of the computing device and the display device in the electronic device in the embodiment of the present application in a separated state. Figure 4 ;

[0036] Figure 7 This is a schematic diagram of the structure of the computing device and the display device in the electronic device in the embodiment of the present application in a separated state. Figure 5 ;

[0037] Figure 8 A schematic diagram of wireless communication between a computing device and a display device according to an embodiment of the present application;

[0038] Figure 9 This is a schematic diagram of the structure of the computing device and the display device in the electronic device in the embodiment of the present application in a separated state. Figure 6 ;

[0039] Figure 10 A schematic cross-sectional view showing a computing device and a display device in an electronic device in an embodiment of the present application in a combined state;

[0040] Figure 11 This is a schematic diagram of the structure of the computing device and the display device in the electronic device in the embodiment of the present application in a separated state. Figure 7 ;

[0041] Figure 12 This is a schematic diagram of the structure of the computing device and the display device in the electronic device in the embodiment of the present application in the combined state. Figure 2 ;

[0042] Figure 13 This is a schematic diagram of the structure of the computing device and the display device in the electronic device in the embodiment of the present application in a separated state. Figure 8 ;

[0043] Figure 14 This is a schematic diagram of the structure of the computing device and the display device in the electronic device in the embodiment of the present application in a separated state. Figure 9 .

[0044] Explanation of reference numerals: 100, electronic device; 10, computing device; 11, computing chip; 12, first communication device; 13, first housing; 131, placement slot; 14, first magnetic member; 15, first buckle; 16, first connector; 161, connecting line; 162, connector; 163, fixing member; 164, connecting member; 165, spring; 171, first battery; 172, first coil; 18, first camera; 20, display device; 21, display chip; 22, first 2. Communication device; 23. Second shell; 231. Groove; 232. First middle frame; 233. Second middle frame; 24. Second magnetic part; 25. Second buckle; 26. Second connector; 261. Interface; 262. Metal gasket; 271. Second battery; 272. Second coil; 28. Second camera; 30. Display panel; 31. First display part; 32. Second display part; 41. Charging port; 42. Sound output device; 43. Sound input device; 44. Antenna board. DETAILED DESCRIPTION

[0045] To make the purpose, technical solutions, and advantages of the embodiments of this application more clear, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the drawings in the embodiments of this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0046] In the following, the terms "first," "second," etc. are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the quantity of the technical features indicated. Therefore, a feature specified as "first," "second," etc. may explicitly or implicitly include one or more of the features.

[0047] In addition, in the embodiments of the present application, directional terms such as "up", "down", "left", "right", "horizontal" and "vertical" are defined relative to the orientation of the components in the drawings. It should be understood that these directional terms are relative concepts. They are used for relative description and clarification, and they can change accordingly according to changes in the orientation of the components in the drawings.

[0048] In the embodiments of the present application, unless otherwise clearly specified and limited, the term "connection" should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integrated connection; it can be a direct connection or an indirect connection through an intermediate medium.

[0049] It should be noted that, in the description of the embodiments of the present application, unless otherwise clearly specified or limited, the terms "connected" and "connection" should be understood in a broad sense. For example, it can be a fixed connection or an integral connection; it can also be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, or it can be a communication between two components. For those skilled in the art, the specific meanings of the above terms in the embodiments of the present application can be understood according to the specific circumstances.

[0050] Reference Figure 1 The embodiment of the present application provides an electronic device 100, which includes a computing device 10 and a display device 20; wherein the display device 20 includes a display panel 30. In some embodiments, the display panel 30 may include a display screen that is only used to display images (a display tool that displays certain electronic files on the screen through a specific transmission device); in other embodiments, the display panel 30 may also include a touch screen and a display screen arranged in a stacked manner, so that the display panel 30 can not only display images but also realize human-computer interaction such as touch. The electronic device 100 provided in the embodiment of the present application may include mobile phones, tablet computers, e-books, smart watches, AR (Augmented Reality) glasses, and other electronic devices 100 with display functions and computing requirements.

[0051] Reference Figure 1 and Figure 2The computing device 10 includes a computing chip 11 and a first communication device 12. The computing chip 11 is used to calculate the data required by the electronic device 100 during operation. In some embodiments, the computing chip 11 may include a SOC (System on Chip, referred to as a system on chip) chip. The SOC chip is a chip that integrates CPU, GPU, communication and other modules; in other embodiments, the computing chip 11 may also include other chips with computing functions; wherein the computing chip 11 is connected to the first communication device 12; the display device 20 also includes a second communication device 22, and the display panel 30 is connected to the second communication device 22. The first communication device 12 and the second communication device 22 are used for wireless communication. The signal processed by the computing chip 11 can be transmitted to the display panel 30 through the wireless communication between the first communication device 12 and the second communication device 22, so that the display panel 30 displays the corresponding picture.

[0052] In some embodiments, the first communication device 12 and the second communication device 22 may implement wireless communication via wireless signals or other wireless communication technologies. The wireless communication technologies may include one or more of star flash technology, Bluetooth, Wi-Fi, and terahertz technology, and both the first communication device 12 and the second communication device 22 may include communication devices using wireless communication technologies.

[0053] In an embodiment in which the first communication device 12 and the second communication device 22 implement wireless communication via wireless signals, the first communication device 12 includes a first radio frequency chip and a first radiation component, the first radio frequency chip is connected to the computing chip 11, and the first radiation component is connected to the computing chip 11 via the first radio frequency chip; the second communication device 22 includes a second radio frequency chip and a second radiation component, the second radio frequency chip is connected to the display panel 30, and the second radiation component is connected to the display panel 30 via the second radio frequency chip; wherein the first radiation component is used to transmit wireless signals to the second radiation component and can also be used to receive wireless signals from the second radiation component, and similarly, the second radiation component is used to transmit wireless signals to the first radiation component and can also be used to receive wireless signals from the first radiation component. wherein the wireless signal can be understood as an electromagnetic wave; the first radiation component and the second radiation component can each include one or more radiators, and the radiators are used to transmit or receive electromagnetic waves.

[0054] In an embodiment in which the computing device 10 and the display device 20 are communicatively connected, on one hand, the computing chip 11 transmits a signal to the first RF chip, which converts the signal into an RF signal and transmits the RF signal to the first radiating element, which converts the RF signal into an electromagnetic wave and radiates it. The second radiating element receives the electromagnetic wave from the first radiating element, converts it into an RF signal, transmits it to the second RF chip, and transmits the signal to the display panel 30. On the other hand, in an embodiment in which the display panel 30 includes a touch screen, a user touches the display panel 30 to generate a touch signal, which is transmitted to the second RF chip. The second RF chip converts the touch signal into an RF signal and transmits it to the second radiating element, which converts the RF signal into an electromagnetic wave and radiates it. The first radiating element receives the electromagnetic wave from the second radiating element, converts it into an RF signal, and transmits it to the first RF chip, which transmits the signal to the computing chip 11. This enables communication between the computing device 10 and the display device 20.

[0055] In the above embodiment, the first communication device 12 can not only communicate with the second communication device 22 , but also communicate with other electronic devices 100 , such as routers, mobile phones, etc.

[0056] Reference Figure 1 、 Figure 2 and Figure 3 In some embodiments, the computing device 10 further includes a first housing 13, in which the computing chip 11 and the first communication device 12 are both disposed, and the display device 20 further includes a second housing 23, in which the display panel 30 and the second communication device 22 are both disposed. The computing device 10 and the display device 20 may be disposed separately (e.g., Figure 1 as shown) or adjacent settings (as shown Figure 3As shown), the first shell 13 and the second shell 23 are detachably connected. When the computing device 10 and the display device 20 are separately arranged, the first shell 13 and the second shell 23 are separately arranged, and the computing device 10 and the display device 20 are in a separated state; when the computing device 10 and the display device 20 are adjacent to each other, the first shell 13 and the second shell 23 are physically connected, so that the computing device 10 and the display device 20 are in a combined state. When the computing device 10 and the display device 20 are in a separated state, the data calculated by the computing chip 11 in the computing device 10 is transmitted to the display panel 30 through the wireless communication connection between the first communication device 12 and the second communication device 22, and the display panel 30 displays the corresponding image according to the data. Optionally, when the computing device 10 and the display device 20 are in a separated state, the distance between the computing device 10 and the display device 20 is less than 10 meters to improve the stability of data transmission between the first communication device 12 and the second communication device 22. When the computing device 10 and the display device 20 are in a combined state, data calculated by the computing chip 11 in the computing device 10 can also be transmitted to the display panel 30 via a wireless communication connection between the first communication device 12 and the second communication device 22. When the computing device 10 and the display device 20 are in a combined state, the computing device 10 and the display device can also communicate via a wired connection. Specific embodiments are described in the following embodiments and are not repeated here.

[0057] In the above embodiments, the computing device 10 and the display device 20 are in a separated state, indicating that the computing device 10 and the display device 20 are relatively independent, and there is no physical connection between the computing device 10 and the display device 20; the computing device 10 and the display device 20 are in a combined state, indicating that there is a physical connection between the computing device 10 and the display device 20, including a physical connection between the first shell 13 and the second shell 23, or the computing device 10 and the display device communicate through a wired connection.

[0058] In the above embodiment, the first shell 13 and the second shell 23 can be detachably connected by one or more of the following connection methods, including snap connection, magnetic connection, etc.

[0059] Reference Figure 4 and Figure 5 , it should be noted that, Figure 4 and Figure 5The figure shows two sides of the computing device 10 and the display device 20 that are close to each other in the combined state. In some embodiments, the first shell 13 and the second shell 23 are detachably connected by a magnetic connection. The computing device 10 also includes a first magnetic member 14 provided on the first shell 13, and the display device 20 also includes a second magnetic member 24 provided on the second shell 23. When the computing device 10 and the display device 20 are separately provided, the first magnetic member 14 and the second magnetic member 24 are separately provided. When the computing device 10 and the display device 20 are adjacent to each other, the first magnetic member 14 and the second magnetic member 24 are magnetically connected, which can facilitate the conversion of the computing device 10 and the display device 20 in the electronic device 100 between the separated state and the combined state.

[0060] For example, the first shell 13 and the second shell 23 can be set to the same size (eg Figure 4 As shown), the area of ​​the first shell 13 facing the second shell 23 is the same as the area of ​​the second shell 23 facing the first shell 13, the first magnetic member 14 is arranged on the side of the first shell 13 facing the second shell 23, and the second magnetic member 24 is arranged on the side of the second shell 23 facing the first shell 13, and the first magnetic member 14 and the second magnetic member 24 are arranged correspondingly; or, the volume of the first shell 13 can be larger than the volume of the second shell 23 (as shown). Figure 5 As shown in FIG. 1 , a placement groove 131 for accommodating the second shell 23 may be provided on the first shell 13. The first magnetic member 14 is provided in the placement groove 131 and is provided corresponding to the second magnetic member 24. The first magnetic member 14 provided on the first shell 13 is flush with the surface of the first shell 13, and the second magnetic member 24 provided on the second shell 23 is flush with the surface of the second shell 23, so that the second shell 23 can be embedded in the first shell 13, thereby improving the stability of the computing device 10 and the display device 20 in the combined state. The depth of the placement groove 131 can be the same as the thickness of the second shell 23, so that after the second shell 23 is embedded in the first shell 13, the computing device 10 and the display device 20 in the combined state have a flush surface. The flush surface can not only improve the appearance refinement of the electronic device 100, but also improve the user experience when holding the electronic device 100.

[0061] Reference Figure 6 and Figure 7 , it should be noted that, Figure 6 and Figure 7 The figure also shows the two sides of the computing device 10 and display device 20 in a combined state, approaching each other. In other embodiments, the first housing 13 and the second housing 23 are detachably connected by snapping. The computing device 10 also includes a first snap 15 provided on the first housing 13, and the display device 20 also includes a second snap 25 provided on the second housing 23. The first snap 15 and the second snap 25 are snapped together.

[0062] Exemplarily, the first shell 13 and the second shell 23 can be set to the same size, the area of ​​the first shell 13 facing the second shell 23 is the same as the area of ​​the second shell 23 facing the first shell 13, the first clip 15 is set on the side of the first shell 13 facing the second shell 23, and the second clip 25 is set on the side of the second shell 23 facing the first shell 13, and the first clip 15 and the second clip 25 are set correspondingly; or, the volume of the first shell 13 can be larger than the volume of the second shell 23, and a placement groove 131 for accommodating the second shell 23 can be set on the first shell 13, and similarly, the depth of the placement groove 131 is the same as the thickness of the second shell 23.

[0063] The second snap 25 can be positioned on the surface where the second housing 23 and the first housing 13 meet, with the first snap 15 positioned correspondingly to the second snap 25. Furthermore, the second housing 23 is provided with a groove, within which the second snap 25 is positioned, and which can accommodate the first snap 15. This arrangement reduces the gap between the first housing 13 and the second housing 23 when the computing device 10 and the display device 20 are combined, enhancing the refined appearance of the electronic device 100. Furthermore, when the computing device 10 and the display device 20 are separated, the second snap 25 positioned within the groove prevents it from interfering with user experience, thereby improving the user experience.

[0064] Continue to refer to Figure 1 and Figure 2 In the electronic device 100 provided in the embodiment of the present application, the computing chip 11 is arranged in the first shell 13, and the display panel 30 is arranged in the second shell 23. The first shell 13 and the second shell 23 are detachably connected. The signal processed by the computing chip 11 in the computing device 10 can be transmitted to the display panel 30 of the display device 20 through wireless communication between the first communication device 12 and the second communication device 22. The computing chip 11 generates heat in the process of processing the signal, but the heat generated by the computing chip 11 will not be transmitted to the display device 20. When the user uses the electronic device 100, the user can only hold the display device 20 to avoid the user from contacting the computing device 10 with higher heat generation, thereby improving the user's usage experience.

[0065] In the above embodiment, the display device 20 may further include a display chip 21 , and the display panel 30 and the second communication device 22 are both connected to the display chip 21 ; the display chip 21 may also include a SOC chip.

[0066] In the above embodiment, the computing chip 11 also includes a GPU and an encoder, which can realize GPU rendering and encoding of media signals; the computing chip 11 can also include a PCIE (Peripheral Component Interconnect Express, a high-speed serial computer expansion bus standard) interface and a Wi-Fi driver, and the computing chip 11 is connected to the first communication device 12 through the PCIE interface and the Wi-Fi driver.

[0067] In the above embodiment, the display chip 21 also includes a decoder, which can realize decoding of media signals (including decoding of audio signals and decoding of video signals); the display chip 21 can also include a PCIE (Peripheral Component Interconnect Express, a high-speed serial computer expansion bus standard) interface and a Wi-Fi driver, and the display chip 21 can also be connected to the second communication device 22 through the PCIE interface and the Wi-Fi driver.

[0068] In combination with the above embodiments, the computing chip 11 can realize media encoding of the media signal, convert the signal through the communication protocol, and then transmit the signal to the second communication device 22 through the first communication device 12. The second communication device 22 is used to transmit the signal to the display chip 21. The display chip 21 correspondingly restores the signal through the communication protocol, decodes the media signal, and then transmits the signal to the display panel 30. Through the above-mentioned setting, the display chip 21 is arranged in the second shell 23, and the computing chip 11 is arranged in the first shell 13. The computing chip 11 in the computing device 10 performs media encoding on the signal and then transmits it to the display device 20. The display chip 21 in the display device 20 decodes the signal, which can improve the efficiency of signal transmission between the computing device 10 and the display device 20. It can be understood that the display chip 21 is used to decode the signal, and the computing chip 11 can include functions such as computing and GPU rendering in addition to media encoding the signal. The heat generated by the display chip 21 is smaller than the heat generated by the computing chip 11. When the user uses the electronic device 100, the user can only hold the display device 20 to avoid the user from contacting the computing device 10 with higher heat generation, thereby improving the user's usage experience.

[0069] Combine Figure 1 and Figure 2 And refer to Figure 8In an embodiment where the display panel 30 includes a touch screen, a touch event caused by a user touching the display panel 30 of the display device 20 generates a touch signal, and the touch signal is transmitted to the computing device 10 through wireless communication (first signal flow) between the second communication device 22 and the first communication device 12; the computing device 10 includes an event receiving and processing module, which is used to control the computing chip 11 to start a program according to the signal received by the first communication device 12, and the computing chip 11 starts to perform SOC calculation, GPU rendering and other operations, and then media encodes the signal and converts it according to the communication protocol; the processed signal is transmitted to the display chip 21 in the display device 20 through wireless communication (second signal flow) between the first communication device 12 and the second communication device 22, and the display chip 21 restores the signal through the communication protocol, decodes the media signal, and then transmits the signal to the display panel 30, so that the display panel 30 presents the picture.

[0070] Reference Figure 9 and Figure 10 In some embodiments, the computing device 10 may further include a first connector 16 disposed on the first housing 13, and the display device 20 may further include a second connector 26 disposed on the second housing 23. One end of the first connector 16 is located inside the first housing 13 for connecting to the computing chip 11, and the other end of the first connector 16 is located outside the first housing 13 or on a surface of the first housing 13 for connecting to the second connector 26. One end of the second connector 26 is located inside the second housing 23 for connecting to the display panel 30, and the other end of the second connector 26 is located outside the second housing 23 or on a surface of the second housing 23 for connecting to the first connector 16. In an implementation in which the display device 20 includes a display chip 21, the second connector 26 connects the first connector 16 and the display chip 21. Data processed by the computing device 10 is transmitted to the display chip 21 via a wired connection between the first connector 16 and the second connector 26, and is further processed by the display chip 21 before being transmitted to the display panel 30.

[0071] It is understood that when the computing device 10 and the display device 20 in the electronic device 100 are in a separate state, the signals processed by the computing chip 11 can be transmitted to the display panel 30 via wireless communication between the first communication device 12 and the second communication device 22; when the computing device 10 and the display device 20 are in a combined state, the communication connection between the computing device 10 and the display device 20 can be achieved by wireless communication between the first communication device 12 and the second communication device 22, and / or can be achieved by wired communication between the first connector 16 and the second connector 26. That is, when the computing device 10 and the display device 20 are arranged adjacent to each other, the first connector 16 is connected to the second connector 26, and the data processed by the computing device 10 can be transmitted to the display panel 30 via the wired connection between the first connector 16 and the second connector 26, and the display panel 30 displays the corresponding image based on the data. The signals processed by the computing chip 11 are directly transmitted to the display panel 30 via wired communication between the first connector 16 and the second connector 26, thereby improving the transmission efficiency of the signals between the computing chip 11 and the display panel 30 when the computing device 10 and the display device 20 are in the combined state. Among them, the signals transmitted between the computing device 10 and the display device 20 may include high-speed data signals, clock synchronization signals, etc.; when the computing device 10 and the display device 20 are in a combined state, the high-speed data signals can be transmitted through wireless communication, and the clock synchronization signals can be transmitted through wired communication.

[0072] Reference Figure 9 In some embodiments, the first connector 16 is provided at any position on the first housing 13, and the second connector 26 is provided at any position on the second housing 23; wherein the first connector 16 may include a connecting wire 161 and a connector 162, one end of the connecting wire 161 is connected to the computing chip 11, and the other end of the connecting wire 161 is led out of the first housing 13 and connected to the connector 162; the second connector 26 may include an interface 261 that matches the connector 162. One end of the interface 261 is located inside the second housing 23 for connecting to the display panel 30, and the other end of the interface 261 is located outside the second housing 23 or on the surface of the second housing 23 for connecting to the interface 261. The connection between the first connector 16 and the second connector 26 can be understood as the plugging of the connector 162 and the interface 261.

[0073] Reference Figure 4 and Figure 10 , Figure 10shows a cross-sectional schematic diagram of the computing device 10 and display device 20 in the electronic device 100 in a combined state. In other embodiments, the first connector 16 is disposed on the side of the first housing 13 facing the second housing 23, and the second connector 26 is disposed on the side of the second housing 23 facing the first housing 13; the position of the first connector 16 on the first housing 13 corresponds to the position of the second connector 26 on the second housing 23. Each of the first connector 16 and the second connector 26 can include multiple first connectors 16 and 26, and the number of first connectors 16 and the number of second connectors 26 are the same.

[0074] The first connector 16 may include a fixing member 163, a connecting member 164 and a spring 165. The fixing member 163 is located in the first shell 13, and the fixing member 163 has an active cavity opening toward the second shell 23. The connecting member 164 and the spring 165 are both located in the active cavity. The connecting member 164 has an end relatively close to the computing chip 11 and an end relatively close to the second connector 26. The end of the connecting member 164 close to the computing chip 11 is connected to the computing chip 11 (for example, the computing chip 11 includes a computing PCB, and a contact point is provided on the computing PCB. The end of the connecting member 164 close to the computing chip 11 is connected to the contact point). The end of the connecting member 164 close to the second connector 26 is used to connect to the second connector 26; and the spring 165 abuts against the connecting member 164, and the spring 165 is used to drive the connecting member 164 to move out of the active cavity. The second connector 26 may include a metal gasket 262 connected to the display panel 30; in an embodiment where the display device 20 includes a display chip 21, the display chip 21 includes a display PCB, and the display PCB can be connected to the display panel 30 through a board-to-board connector and an FPC; and the metal gasket 262 can be connected to the display PCB through a metal spring, wherein the metal spring can be connected to the display PCB through surface mount technology (SMT). When the computing device 10 and the display device 20 are in a combined state, the first shell 13 and the second shell 23 fit together, and the spring 165 drives the connector 164 to move out of the active cavity, so that the end of the connector 164 close to the second connector 26 abuts against the metal gasket 262, thereby realizing the connection between the first connector 16 and the second connector 26. Exemplarily, the first connector 16 may include a pogo pin.

[0075] In some embodiments, the metal gasket 262 can be flush with the surface of the second housing 23, allowing the computing device 10 and display device 20 to be separated, thereby improving the user experience of the display device 20. Alternatively, the metal gasket 262 can form a groove with the second housing 23 to accommodate the end of the connector 164 away from the first housing 13, thereby improving the connection strength between the computing device 10 and display device 20 when they are combined.

[0076] When the computing device 10 and display device 20 are separated, the first connector 16 and the second connector 26 are separated. When the computing device 10 and display device 20 are combined, the first housing 13 and the second housing 23 are adjacent to each other, the metal gasket 262 abuts one end of the connector 164, and the connector 164 compresses the spring 165 into the first housing 13, electrically connecting the other end of the connector 164 to the computing chip 11. In embodiments where the computing device 10 and display device 20 are connected via the first connector 16 and the second connector 26, the computing chip 11 transmits signals to the display panel 30 via the connector 164 and the metal gasket 262. Furthermore, in embodiments where the display panel 30 includes a touch screen, a user touches the display panel 30 to generate a touch signal, which is then transmitted to the computing chip 11 via the metal gasket 262 and the connector 164, thereby also achieving communication between the computing device 10 and the display device 20. In combination with the above embodiments, the computing device 10 and the display device 20 are in a separated state and can achieve communication connection through the first communication device 12 and the second communication device 22. The computing device 10 and the display device 20 are in a combined state and can achieve communication connection through the first connector 164 and the second connector 164.

[0077] Combine Figure 2 And refer to Figure 11 and Figure 12 In some embodiments, the computing device 10 further includes a first battery 171, to which the computing chip 11 and the first communication device 12 are both connected, and the first battery 171 is used to supply power to the computing chip 11 and the first communication device 12. The display device 20 further includes a second battery 271, to which the display panel 30 and the second communication device 22 are both connected, and the second battery 271 is used to supply power to the display panel 30 and the second communication device 22. With the above arrangement, the first battery 171 and the second battery 271 are separately provided in the computing device 10 and the display device 20, and can independently provide power to the computing device 10 and the display device 20 when the computing device 10 and the display device 20 are separated.

[0078] In the embodiment where the computing device 10 includes a computing chip 11, the computing chip 11 and the first battery 171 are separated in the length direction of the electronic device 100, which can reduce the thickness of the computing device and thus reduce the thickness of the entire electronic device. Figure 11 As shown in , the computing chip 11 can be located above or below the first battery 171. Similarly, in an embodiment where the computing device 10 includes the computing chip 11, the computing chip 11 and the first battery 171 are separated in the length direction of the electronic device 100, which can reduce the thickness of the computing device and thus reduce the thickness of the entire electronic device. Figure 11 As shown in , the computing chip 11 can be located above the first battery 171 or below the first battery 171 .

[0079] In an embodiment where the electronic device 100 includes the first connector 16 and the second connector 26, the first battery 171 can be connected to the second battery 271 through the first connector 16 and the second connector 26. When the computing device 10 and the display device 20 are in a combined state, the first battery 171 can charge the second battery 271 through the first connector 16 and the second connector 26, and the second battery 271 can charge the first battery 171 through the second connector 26 and the first connector 16.

[0080] In some implementations of the above embodiments, regardless of whether the computing device 10 and the display device 20 are in a separate state or a combined state, the first battery 171 alone powers the components in the computing device 10, and the second battery 271 alone powers the components in the display device 20. In other implementations of the above embodiments, when the computing device 10 and the display device 20 are in a separate state, the first battery 171 alone powers the components in the computing device 10, and the second battery 271 alone powers the components in the display device 20; whereas when the computing device 10 and the display device 20 are in a combined state, the first battery 171 can power all components in the computing device 10 and the display device 20, and the second battery 271 can also power all components in the computing device 10 and the display device 20. Specifically, when the computing device 10 and the display device 20 are in a combined state, the first battery 171 preferentially powers all components in the computing device 10 and the display device 20. Since the display device 20 in the separated state can be held in hand, based on the lightweight design of the display device 20, the capacity of the second battery 271 will not be too large, but the capacity of the first battery 171 can be increased. Then, when the computing device 10 and the display device 20 are in the combined state, the first battery 171 is used to give priority to power supply, which can increase the comprehensive battery life of the electronic device 100.

[0081] In some embodiments, charging ports may be provided on both the computing device 10 and the display device 20. Exemplarily, the charging ports include a first charging port and a second charging port. The computing device 10 is provided with a first charging port connected to the first battery 171 , and the first charging port is used to connect to an external charger to charge the first battery 171 ; the display device 20 is provided with a second charging port connected to the second battery 271 , and the second charging port is used to connect to an external charger to charge the second battery 271 .

[0082] In other embodiments, only the charging port 41 may be provided on the computing device 10. For example, the charging port 41 connected to the first battery 171 is provided on the computing device 10, and the charging port 41 is used to connect an external charger to charge the first battery 171. Figure 11 The charging port 41 is shown as being located below the computing device 10. The charging port 41 includes one or more of a Micro USB port, a Type-C port, and a Lightning port. Similarly, a charging port may be provided only on the display device 20, which will not be described in detail here.

[0083] In some embodiments, the computing device 10 further includes a first coil 172 connected to the first battery 171; the display device 20 further includes a second coil 272 connected to the second battery 271. The first battery 171 can be coupled to the second battery 271 via the first and second coils 172, 272. The first battery 171 can supply power to the second battery 271 via the first and second coils 172, 272, or the first battery 171 can receive power from the second battery 271 via the first and second coils 172, 272. When the computing device 10 and the display device 20 are combined, the first and second coils 172, 272 are aligned, and the first and second coils 172, 272 charge the first battery 171 to the second battery 271 via the principle of electromagnetic induction. This configuration eliminates the need for a charging port on the display device 20, streamlining the structure of the display device 20. It also eliminates the need to charge the display device 20 separately, improving the user experience.

[0084] In the above embodiment, the first coil 172 can also realize wireless charging of the first battery 171. Similarly, the second coil 272 can also realize wireless charging of the second battery 271, thereby increasing the charging method of the electronic device 100 and improving the user experience.

[0085] In some embodiments in which the electronic device 100 includes a mobile phone, the computing device 10 further includes a first camera 18, which is used to collect first image information. The first camera 18 is disposed on the first housing 13, and the first camera 18 is connected to the computing chip 11. After the first image information is calculated by the computing chip 11, it is transmitted to the display device 20 through the first communication device 12 and the second communication device 22. The display panel 30 of the display device 20 is used to display the first image information.

[0086] In the above embodiment, the first camera 18 includes a primary rear camera and / or a secondary front camera. The primary rear camera is disposed on the side of the first housing 13 facing away from the second housing 23, and the secondary front camera is disposed on the side of the first housing 13 facing the second housing 23. When the computing device 10 and the display device 20 are in a separate state, the primary rear camera and the secondary front camera can be used normally. When the computing device 10 and the display device 20 are in a combined state, the primary rear camera can be used normally, and the secondary front camera is not used.

[0087] In other embodiments, the display device 20 also includes a second camera 28, which is used to collect second image information. The second camera 28 is arranged on the second shell 23, and the second camera 28 is connected to the second communication device 22. The second image information is transmitted to the computing chip 11 in the computing device 10 via the second communication device 22 and the first communication device 12. After the second image information is calculated by the computing chip 11, it is transmitted to the display device 20 through the first communication device 12 and the second communication device 22. The display panel 30 of the display device 20 is used to display the second image information.

[0088] In the above embodiment, the second camera 28 includes a primary front-facing camera and / or a secondary rear-facing camera. The primary front-facing camera is disposed on a side of the second housing 23 facing away from the first housing 13, and the secondary rear-facing camera is disposed on a side of the second housing 23 facing the first housing 13. When the computing device 10 and the display device 20 are in a separate state, the primary front-facing camera and the secondary rear-facing camera can be used normally; when the computing device 10 and the display device 20 are in a combined state, the primary front-facing camera can be used normally, and the secondary rear-facing camera is not used.

[0089] In some embodiments, in conjunction with an embodiment in which the computing device 10 further includes a first camera 18 and the display device 20 further includes a second camera 28, the first camera 18 is located on a side of the first housing 13 facing away from the second housing 23, and the second camera 28 is located on a side of the second housing 23 facing away from the first housing 13. When the computing device 10 and the display device 20 are in a combined state, the first camera 18 acts as a rear camera of the electronic device 100, and the second camera 28 acts as a front camera of the electronic device 100. Whether the computing device 10 and the display device 20 are in a separate state or a combined state, both the first camera 18 and the second camera 28 can function normally. Furthermore, in the separate state (i.e., when the computing device 10 and the display device 20 are a distance apart), the first camera 18 can be controlled by the display device 20 to capture images, thereby expanding the usage scenarios of the electronic device 100 and improving the user experience.

[0090] In other embodiments where the electronic device 100 includes a mobile phone, the display device 20 further includes a sound output device 42 and a sound input device 43. The sound input device 43 is configured to convert received sound into input sound information. The sound input device 43 is connected to the second communication device 22. The input sound information is transmitted to the computing chip 11 via the second communication device 22 and the first communication device 12. The computing chip 11 is configured to process the input sound information. The computing chip 11 is also configured to generate output sound information. The sound output device 42 is also connected to the second communication device 22. The output sound information is transmitted to the sound output device 42 via the first communication device 12 and the second communication device 22. The sound output device 42 is configured to convert the sound information into output sound. Since the sound output device 42 and the sound input device 43 of the electronic device 100 are both provided on the display device 20, when the computing device 10 and the display device 20 are separated, the user can use the sound output device 42 and the sound input device 43 by simply holding the display device 20. This prevents the separation of the computing device 10 and the display device 20 from affecting the user's use of the sound output device 42 and the sound input device 43 of the electronic device 100. The sound output device 42 may include a speaker, etc., and the sound input device 43 may include a microphone, etc. Figure 11 As shown, the sound output device 42 is located above the display device 20, and the sound input device 43 is located below the display device 20, so as to cooperate with the normal use of the user in the scenario of making and receiving calls through the display device.

[0091] In an embodiment where the computing device 10 includes the first communication device 12, the first communication device 12 is located below the computing chip 11 and the first battery 171. A SIM card slot 44 is also provided within the computing device 10. The SIM card slot 44 is disposed near an edge of the first housing 13. Exemplarily, the opening of the SIM card slot 44 faces downwardly of the computing device 10.

[0092] Reference Figure 13 In other embodiments where the electronic device 100 includes a mobile phone, the display panel 30 in the display device 20 may include different types of screens, such as a mobile phone LCD screen, an ink screen, a folding screen, etc. In other words, display devices 20 with different screens can all be detachably connected to the same computing device 10, thereby improving the adaptability of the electronic device 100 to different display devices 20.

[0093] In an embodiment where the display panel 30 includes a folding screen, the second housing 23 includes a first middle frame 232 and a second middle frame 233, which are connected. The display panel 30 includes a first display portion 31 and a second display portion 32, with the first display portion 31 being disposed on the first middle frame 232 and the second display portion 32 being disposed on the second middle frame 233. The display panel 30 has an unfolded state and a folded state. When the display panel 30 is in the unfolded state, the first display portion 31 and the second display portion 32 are located in the same plane. When the display panel 30 is in the folded state, the first display portion 31 and the second display portion 32 are attached to each other. Through the above arrangement, the display panel 30 on the display device 20 in the electronic device 100 can be unfolded or folded, which increases the usage scenarios of the electronic device 100 and improves the user experience.

[0094] Reference Figure 14 In the above embodiment, when the display panel 30 is in a folded state, the display device 20 can be combined with the computing device 10. For example, the first middle frame 232 in the second shell 23 is connected to the first shell 13; the above-mentioned display chip 21, second magnetic component, second battery 271, sound output device 42 and sound input device 43 are all arranged in the first middle frame 232.

[0095] Alternatively, in the above embodiment, when the display panel 30 is in the unfolded state, the display device 20 can be integrated with the computing device 10. For example, the first middle frame 232 and the second middle frame 233 in the second housing 23 are both connected to the first housing 13. When the display device 20 and the computing device 10 are separated, the display panel 30 can be in the unfolded state or the folded state. In one possible embodiment, the dimension of the first housing 13 facing the second housing 23 is the same as the area of ​​the first middle frame 232 and the second middle frame 233.

[0096] In some embodiments, the electronic device 100 may include a computing device 10 and a display device 20, and the computing device 10 and the display device 20 are connected to each other.

[0097] In other embodiments, the electronic device 100 may include a computing device 10 and at least two display devices 20, and the computing device 10 may be connected to any one of the display devices 20. In one possible implementation, the computing device 10 may only be connected to one display device 20 at a time.

[0098] In some other embodiments, the electronic device 100 may include at least two computing devices 10 and one display device 20, and any one of the computing devices 10 may be connected to the display device 20. In one possible implementation, only one computing device 10 may be connected to the display device 20 at the same time.

[0099] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the embodiments of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, ordinary technicians in this field should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. An electronic device, characterized in that: include: A computing device, comprising a computing chip, a first housing, and a first communication device, wherein the computing chip and the first communication device are both disposed in the first housing, and the first communication device is connected to the computing chip; A display device, the display device comprising a display panel, a second housing, and a second communication device, the display panel and the second communication device being both disposed in the second housing, the display panel being connected to the second communication device; The first shell and the second shell are detachably connected, and the first communication device and the second communication device are used for wireless communication.

2. The electronic device according to claim 1, wherein The computing device and the display device are arranged separately or adjacently, and the computing device is used to calculate data required by the electronic device. The data is transmitted to the display panel through the wireless communication connection between the first communication device and the second communication device, and the display panel displays a corresponding image according to the data.

3. The electronic device according to claim 1 or 2, characterized in that: The first communication device includes a first radio frequency chip and a first radiation component, and the first radio frequency chip and the first radiation component are both connected to the computing chip; the second communication device includes a second radio frequency chip and a second radiation component, and the second radio frequency chip and the second radiation component are both connected to the display panel; The first radiation component is used to transmit wireless signals to the second radiation component and / or receive wireless signals from the second radiation component, and the second radiation component is used to transmit wireless signals to the first radiation component and / or receive wireless signals from the first radiation component.

4. The electronic device according to any one of claims 1 to 3, characterized in that: The computing device further includes a first magnetic component provided on the first shell, and the display device further includes a second magnetic component provided on the second shell; when the computing device and the display device are separately provided, the first magnetic component and the second magnetic component are separately provided; when the computing device and the display device are adjacent to each other, the first magnetic component and the second magnetic component are magnetically connected.

5. The electronic device according to any one of claims 1 to 4, characterized in that: The display device further includes a display chip disposed in the second housing, and the display panel and the second communication device are both connected to the display chip.

6. The electronic device according to any one of claims 1 to 5, characterized in that: The computing device includes a first connector, which is arranged in the first shell and connected to the computing chip; the display device includes a second connector, which is arranged in the second shell and connected to the display panel; when the computing device and the display device are arranged adjacent to each other, the first connector is connected to the second connector, and the computing device is used to calculate data required by the electronic device, and the data is transmitted to the display panel through the wired connection between the first connector and the second connector, and the display panel displays a corresponding image based on the data.

7. The electronic device according to claim 6, wherein: The first connector includes a fixing member, a connecting member, and a spring. The fixing member is located in the first housing and has an active cavity with an opening facing the second housing. The connecting member and the spring are located in the active cavity. One end of the connecting member is connected to the computing chip. The spring abuts against the connecting member to drive the connecting member to move out of the active cavity. The second connector includes a metal gasket connected to the display panel, and the other end of the connector abuts against the metal gasket.

8. The electronic device according to any one of claims 1 to 7, characterized in that: The computing device also includes a first battery, to which the computing chip and the first communication device are both connected, and the first battery is used to supply power to the computing chip and the first communication device; the display device also includes a second battery, to which the display panel and the second communication device are both connected, and the second battery is used to supply power to the display panel and the second communication device.

9. The electronic device according to claim 8, wherein: The computing device further includes a first coil connected to the first battery; the display device further includes a second coil connected to the second battery; The first coil and the second coil are coupled, and the first battery is used to supply power to the second battery through the first coil and the second coil; or the first battery is used to receive power from the second battery through the first coil and the second coil.

10. The electronic device according to any one of claims 1 to 9, characterized in that: The computing device further includes a first camera, the first camera being configured to capture first image information, the first camera being disposed on the first housing and being connected to the computing chip; the first image information being calculated by the computing chip and transmitted to the display device via the first communication device and the second communication device; the display panel of the display device being configured to display the first image information; and / or, The display device also includes a second camera, which is used to collect second image information. The second camera is arranged on the second shell and is connected to the second communication device. The second image information is transmitted to the computing chip in the computing device through the second communication device and the first communication device. After the second image information is calculated by the computing chip, it is transmitted to the display device through the first communication device and the second communication device. The display panel of the display device is used to display the second image information.

11. The electronic device according to any one of claims 1 to 9, characterized in that: The display device further includes a sound output device and a sound input device, wherein the sound input device is used to convert received sound into input sound information, the sound input device is connected to the second communication device, and the input sound information is transmitted to the computing chip via the second communication device and the first communication device, and the computing chip is used to process the input sound information; The computing chip is also used to form the output sound information. The sound output device is also connected to the second communication device. The output sound information is transmitted to the sound output device through the first communication device and the second communication device. The sound output device is used to convert the sound information into output sound.

12. The electronic device according to any one of claims 1 to 11, characterized in that: The second housing includes a first middle frame and a second middle frame, the first middle frame and the second middle frame are connected, the display panel includes a first display portion and a second display portion, the first display portion is provided in the first middle frame, and the second display portion is provided in the second middle frame; The display panel has a folded state and an unfolded state. When the display panel is in the folded state, the first display part and the second display part are attached to each other; when the electronic device is in the unfolded state, the first display part and the second display part are located in the same plane.