Supporting device and electronic equipment
By designing a movable second support and a support device with a receiving slot, the problem of electronic device brackets occupying desktop space was solved, and the effects of supporting multiple devices and heat dissipation were achieved.
Patent Information
- Application Number
- CN202520277940.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-02-20
AI Technical Summary
Electronic devices require stands for support during use to improve heat dissipation, and multiple device stands take up desktop space when not in use.
Design a support device including a first support body and a second support body. The second support body can move between a first position and a second position. When stored, it is located within the projection area of the first support body. When unfolded, it supports a second electronic device. The support body is provided with a receiving slot to save space.
It saves desktop space when not in use, while supporting multiple electronic devices, improving heat dissipation, and simplifying device connectivity.
Smart Images

Figure CN223690718U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of electronic devices, and in particular to a support device and an electronic device. BACKGROUND
[0002] An electronic device needs to be supported by a support when in use to increase the height of the electronic device to improve heat dissipation, and meanwhile, other devices need to be interconnected with the electronic device. The support of the electronic device is placed on a desktop at the same time as other device supports when in use, and the device supports occupy the desktop space when not in use. CONTENT OF THE UTILITY MODEL
[0003] To solve the above technical problems, the embodiments of the present disclosure provide the following technical solutions.
[0004] The first aspect of the present disclosure provides a support device, comprising:
[0005] a first support body, the first support body having a first support surface, the first support surface being configured to support a first electronic device;
[0006] a second support body, the second support body being movably connected with the first support body, the second support body being configured to move between a first position and a second position, the second support body being configured to support a second electronic device;
[0007] when the second support body is in the first position, the second support body is located within a projection area of the first support surface; and when the second support body is in the second position, the second support body is partially located outside the projection area of the first support surface to support the second electronic device.
[0008] In some modified embodiments of the first aspect of the present disclosure, the first support body is provided with a receiving groove, and when the second support body is in the first position, the second support body is entirely located within the receiving groove.
[0009] In some modified embodiments of the first aspect of the present disclosure, one end of the second support body is rotatably connected within the receiving groove.
[0010] In some modified embodiments of the first aspect of the present disclosure, the second support body is provided with a support groove, the support groove being configured to support the second electronic device; and the support groove extends along a first direction to enable the second electronic device to be installed at different positions of the support groove.
[0011] In some modified embodiments of the first aspect of the present disclosure, the first support body comprises a connecting portion, the connecting portion being configured to be electrically connected with the first electronic device, and the first electronic device is provided with a plurality of connecting interfaces.
[0012] In some modified embodiments of the first aspect of the present disclosure, the first support body further comprises a housing and a light source, the housing being made of a light-transmitting material, and the light source is arranged within the housing and is electrically connected with the connecting portion.
[0013] In some alternative implementations of the first aspect of the present disclosure, the support device further comprises:
[0014] a lifting mechanism, the lifting mechanism is arranged on a side of the first support body away from the first support surface, and the lifting mechanism is configured to drive the first support body to move in a second direction;
[0015] a first rotating shaft, the second support body is rotatably connected to the accommodating groove through the first rotating shaft, the first support body is slidably connected to the first rotating shaft, and the extension direction of the first rotating shaft and the lifting direction of the lifting mechanism satisfy the same direction condition.
[0016] In some alternative implementations of the first aspect of the present disclosure, the support device further comprises:
[0017] a third support body, the third support body is configured to support a third electronic device;
[0018] the third support body and the second support body are rotatably connected to two sides of the accommodating groove, respectively.
[0019] In some alternative implementations of the first aspect of the present disclosure, the first support body further comprises at least two support plates, the two support plates are arranged on two sides of the accommodating groove to support the second electronic device and the third electronic device, respectively, the support plates are rotatably connected to the first support body through a second rotating shaft, and the second rotating shaft satisfies the perpendicular condition with the first support surface;
[0020] Alternatively, the side of the second support plate away from the first support body is provided with a first support plate, the side of the third support body away from the first support body is provided with a second support plate, the first support plate and the second support plate satisfy the perpendicular condition with the first support surface, and the first support plate and the second support plate are configured to support the second electronic device and the third electronic device, respectively.
[0021] The second aspect of the present disclosure provides an electronic device, comprising:
[0022] a first electronic device;
[0023] a second electronic device;
[0024] a support device, comprising:
[0025] a first support body, the first support body has a first support surface, the first support surface supports the first electronic device, the first support surface is provided with a first connecting contact, the first electronic device is provided with a second connecting contact, the first connecting contact and the second connecting contact are in contact to electrically connect the first support body and the first electronic device, and the first support body is provided with a plurality of connecting interfaces;
[0026] a second support body, the second support body is movably connected to the first support body, the second support body can move between a first position and a second position, and the second support body supports a second electronic device.
[0027] The second support body is in the first position and is located within the projection area of the first support surface; the second support body is in the second position and is partially located outside the projection area of the first support surface to support the second electronic device. BRIEF DESCRIPTION OF DRAWINGS
[0028] The above and other objects, features and advantages of the disclosed example embodiments will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings in which a number of example embodiments of the present disclosure are illustrated by way of example only, like or corresponding reference numerals are used to refer to like or corresponding portions throughout the various drawings, and in which:
[0029] Figure 1 A structural schematic diagram of a support device is schematically shown;
[0030] Figure 2 A structural schematic diagram of a support device in a storage state is schematically shown;
[0031] Figure 3 A structural schematic diagram of a support device in an unfolded state is schematically shown;
[0032] Figure 4 A structural schematic diagram of a support device in a lowered state is schematically shown;
[0033] Figure 5 A structural schematic diagram of a support device in a raised state is schematically shown.
[0034] BRIEF DESCRIPTION OF DRAWINGS
[0035] 1, first support body; 11, connection interface; 12, housing; 2, second support body; 3, third support body; 4, support slot; 5, first electronic device; 6, lifting mechanism; 7, second electronic device; 8, third electronic device 8. DETAILED DESCRIPTION
[0036] Example embodiments of the present disclosure will be described in greater detail below with reference to the accompanying drawings. While example embodiments of the present disclosure are shown in the drawings, it is understood that the present disclosure can be embodied in various forms without being limited by the embodiments set forth herein. Rather, these embodiments are provided so that the present disclosure will be thoroughly and completely understood, and will fully convey the scope of the present disclosure to those skilled in the art.
[0037] Note that unless otherwise defined, technical and scientific terms used in the present disclosure should have their ordinary meaning as understood by a person of ordinary skill in the art to which the present disclosure pertains.
[0038] Electronic devices such as laptops, 2-in-1 laptops and 2-in-1 tablets need to be supported by stands to increase the height of the electronic devices to improve heat dissipation, and at the same time, other devices such as tablets and mobile phones need to be interconnected with the electronic devices. The electronic device stand is placed on the desktop at the same time as other device stands when in use, and the other device stands occupy the desktop space when not in use.
[0039] To solve the above technical problems, the present disclosure provides a support device and an electronic device, which can integrate and store various device stands together, and avoid other device stands from occupying the desktop space when not in use.
[0040] Embodiment 1
[0041] As shown in Figure 1 , Figure 2 and Figure 3 , a support device includes a first support body 1 and a second support body 2. The first support body 1 has a first support surface for supporting a first electronic device 5. The second support body 2 is movably connected to the first support body 1 and can move between a first position and a second position. The second support body 2 is used to support a second electronic device 7. When the second support body 2 is in the first position, the second support body 2 is located within the projection area of the first support surface. When the second support body 2 is in the second position, the second support body 2 is partially located outside the projection area of the first support surface to support the second electronic device 7.
[0042] The first support body 1 is one of the core components in the support device, mainly used for carrying and supporting the first electronic device 5. It has a first support surface that directly contacts the first electronic device 5, serving to stabilize and elevate the device, thereby exposing the bottom of the first electronic device 5 to the air, increasing air circulation, and improving heat dissipation performance. Specifically, the first support body 1 can be a fixed first support body 1, with a simple structure and a fixed support surface position that cannot be adjusted in height or angle. It is suitable for users who have low requirements for height and angle. The first support body 1 can also be an adjustable first support body 1 that supports height and / or angle adjustment, allowing users to adjust the position of the first electronic device 5 according to their needs. It is suitable for users who need to frequently adjust the position of the device, such as when typing for a long time or watching videos. The adjustable first support body 1 is flexible and can improve user experience. The first support body 1 can also be a multifunctional integrated first support body 1 that integrates other functional modules in addition to the basic support function, such as cooling fans, wireless chargers, USB interface docking stations, etc. The multifunctional integrated first support body 1 is suitable for users who have high requirements for functionality, especially those who need to connect multiple devices at the same time. The multifunctional integrated first support body 1 is rich in functions, improving work efficiency and comfort. The first support body 1 can also be a portable first support body 1 with lightweight design, making it easy to carry and suitable for mobile office or travel use, suitable for users who frequently travel or need to use a laptop in different locations. In more detail, the first support body 1 can also be provided with a handle to facilitate carrying. The first support body 1 can also be a smart first support body 1 that combines sensors, Internet of Things technology, or other intelligent functions, such as automatic height adjustment, device temperature monitoring, and user reminders. The smart first support body 1 is technologically advanced, providing personalized services, etc., suitable for users who pursue high-tech experiences.
[0043] The second support body 2 is an auxiliary component in the support device, mainly used for carrying and supporting the second electronic device 7 (such as a tablet, a mobile phone, etc.). It is connected with the first support body 1, and can move between the first position (storage state) and the second position (use state). In the second position, the second support body 2 partially extends out of the projection area of the first support surface, thereby providing independent support space for the second electronic device 7. Specifically, the second support body 2 can be a folding second support body 2, which realizes the functions of storage and expansion through a folding structure, and can be completely folded and stored in the projection area of the first support body 1 when not in use, suitable for users who need to save desktop space. The second support body 2 can also be a sliding second support body 2, which can move horizontally or vertically on the first support body 1 through a sliding rail or similar sliding mechanism, thereby realizing the switching between the storage and use states. The sliding second support body 2 is suitable for users who need to frequently adjust the position of the device, and is convenient and stable to operate. The second support body 2 can also be a rotating second support body 2, which can rotate around a fixed point through a rotating shaft or hinge structure, thereby realizing storage and expansion. It is suitable for users who need to flexibly adjust the angle of the device. The second support body 2 can also be a telescopic second support body 2, which can be completely hidden in the storage state and extended to the appropriate position when in use through a telescopic rod or similar structure, suitable for users who need to design in a hidden manner, saving space and appearance integration. The second support body 2 can also be a modular second support body 2, which supports the replacement of different support modules to adapt to different types of electronic devices (such as mobile phone holders, tablet holders, etc.). It is suitable for users who have multiple electronic devices.
[0044] The first electronic device 5 refers to the main electronic device supported in the support device. It can be a device that needs high stability and heat dissipation performance. Specifically, the first electronic device 5 can be a notebook computer, or a two-in-one notebook / tablet, which has the functions of a notebook computer and a tablet computer and can switch modes through an external keyboard.
[0045] The second electronic device 7 refers to other electronic devices that can be used cooperatively with the first electronic device 5. For example, the second electronic device 7 can be a tablet computer, which has a larger screen and is suitable for multimedia playback and touch operation. It is suitable for watching videos, reading e-books, drawing, playing games, etc. The second electronic device 7 can also be a smart phone, which is portable and has diversified functions, suitable for various daily tasks. The second electronic device 7 can also be an e-book reader, which is designed for e-book reading and has good eye protection effect, suitable for reading e-books, documents, etc. The second electronic device 7 can also be a small game device designed for games, which can be equipped with a handle or a touch screen.
[0046] As Figure 2As shown, when the second support 2 is in the first position, it can be completely retracted under or inside the first support 1 by folding, rotating, sliding, or other means. In this state, the second support 2 no longer provides additional support functions but exists as part of the overall device. The design goal of the first position is to save space and facilitate storage or transportation.
[0047] like Figure 3 As shown, when the second support 2 is in the second position, it unfolds or extends from the first support 1 to form an independent support platform. In this state, the second support 2 can support the second electronic device 7 (such as a tablet or mobile phone). The design goal of the second position is to provide users with the convenience of multi-device collaborative work. When the second support 2 is in the second position, the angle between the second support 2 and the first support 1 can be an obtuse angle, thereby facilitating users to simultaneously view the first electronic device 5 on the first support 1 and the second electronic device 7 on the second support 2.
[0048] This disclosure connects the second support 2 and the first support 1 in a movable manner, so that when the second support 2 is not in use, the second support 2 is located within the projection area of the first support surface, thus avoiding occupying the space. When the second support 2 is in use, the second support 2 can be partially located outside the projection area of the first support surface to support the second electronic device 7, thereby supporting multiple electronic devices at the same time.
[0049] In some modified embodiments of this disclosure, the first support 1 is provided with a receiving groove, the second support 2 is in the first position, and the second support 2 is entirely located in the receiving groove.
[0050] The accommodation groove refers to a space designed inside the first support body 1 specifically for accommodating the second support body 2. Its main function is to provide a hidden storage area for the second support body 2. When the second support body 2 is in the first position (storage state), it can be completely accommodated in the accommodation groove, thereby achieving the goals of saving space, protecting the second support body 2, and improving the overall appearance of the device. Specifically, the accommodation groove can be a rectangular groove that matches the shape of the second support body 2, suitable for folding or sliding second support body 2. The manufacturing process is simple and the cost is low. The accommodation groove can also be an arc-shaped groove, with the groove body designed in an arc shape, suitable for rotating second support body 2. It is suitable for devices that need to adjust the angle flexibly. It provides a larger rotation range and enhances the flexibility of the second support body 2. The accommodation groove can also be a polygonal groove, with multiple corners, which can be customized according to the specific shape of the second support body 2. It is suitable for modular or replaceable second support body 2. The polygonal groove has high space utilization and strong adaptability, and can support multiple types of second support body 2. The accommodation groove can also be a nested groove, with a multi-layer structure designed inside, which can accommodate multiple components at the same time, suitable for support devices that need to integrate multiple functions, providing additional storage space, such as accommodating charging cables or other accessories. The accommodation groove can also be a telescopic groove, which has a telescopic function itself and can be dynamically adjusted according to the size of the second support body 2, suitable for second support bodies 2 of different sizes. The telescopic groove has good adaptability, strong compatibility, saves space, and avoids waste.
[0051] Specifically, the second support body 2 can be slid out or slid into the accommodation groove of the first support body 1 through the slide rail structure, which is simple to operate and stable in storage. The second support body 2 can also be designed to fold, and the second support body 2 is folded into the accommodation groove through a hinge or similar mechanism, which is compact in structure and occupies less space. The second support body 2 can also be designed to be telescopic, and the second support body 2 is accommodated in the accommodation groove through a telescopic rod or other telescopic structure, which is almost invisible after storage and has high integration of appearance. In more detail, the accommodation groove can be opened on the side wall of the first support body 1, or on the bottom of the first support body 1.
[0052] In some modified embodiments of the present disclosure, the second support body 2 is rotatably connected at one end to the accommodating groove. When the second support body 2 is in the first position (storage state), it can be completely accommodated in the accommodating groove by rotating, without occupying additional desktop space. The rotatable connection structure forms a firm mechanical connection between the second support body 2 and the first support body 1, which is more stable in use. The user only needs to rotate the second support body 2 to complete the switching from the first position to the second position, without the need for complex disassembly or adjustment steps. In order to realize the function of rotatably connecting the second support body 2 at one end to the accommodating groove, the end of the second support body 2 can be fixed in the accommodating groove through a hinge, so that it can rotate around the hinge shaft. The end of the second support body 2 can also be fixed in the accommodating groove through a bearing, providing a smoother rotating experience, small rotating resistance, long service life, supporting a larger rotating angle, and stronger flexibility. In addition to the rotatable connection, a magnetic attraction mechanism can also be added to enhance the fixing effect of the second support body 2 in the first position and the second position, improve stability, and prevent the second support body 2 from shaking during use.
[0053] As shown in Figure 1 In some modified embodiments of the present disclosure, the second support body 2 is provided with a support groove 4 for supporting the second electronic device 7; the support groove 4 extends in the first direction to enable the second electronic device 7 to be installed at different positions of the support groove 4. The support groove 4 extends in the first direction, which can accommodate second electronic devices 7 of different sizes (such as tablets, mobile phones, etc.). The user can adjust the installation position of the device in the support groove 4 according to the actual size of the device. This design avoids the size limitation of traditional fixed support structures, improving the versatility of the device. Since the support groove 4 allows the second electronic device 7 to be installed at different positions, the user can adjust the angle of the device according to actual needs. The first direction can be a horizontal direction, for example, the second support body 2 is long and narrow, and the first direction is the extension direction of the second support body 2 to adjust the installation position of the device in the support groove 4 according to the actual size of the device. Specifically, the support groove 4 can be a sliding rail type support groove 4, which is designed with a sliding rail inside, and the second electronic device 7 moves along the sliding rail through a special bracket or clamp. The support groove 4 can also be a clamping type support groove 4, which is provided with multiple fixed clamping positions along the first direction, and the user can install the second electronic device 7 at a specific position as needed. The clamping type support groove 4 has good fixing effect, strong stability, simple structure, and low manufacturing cost. The support groove 4 can also be a magnetic type support groove 4, which is embedded with a magnet inside, and the metal back plate or special bracket of the second electronic device 7 is attracted by the magnetic force.
[0054] In some modified embodiments of the present disclosure, the first support body 1 includes a connection part for electrical connection with the first electronic device 5, and the first electronic device 5 is provided with multiple connection interfaces 11.
[0055] The connecting part refers to a component designed on the first support body 1 for electrical connection with the first electronic device 5. Its main function is to connect the first support body 1 with the first electronic device 5 through a physical interface or wireless means, thereby realizing data transmission, power supply or other functional expansion. Specifically, the connecting part can be a physical interface type connecting part, which directly connects with the connecting interface 11 on the first electronic device 5 through a physical interface. For example, the connecting part can be a USB (Universal Serial Bus) interface for data transmission and power supply. It can also be a power supply interface to provide additional power support for the first electronic device 5. The physical interface connection is stable, with high transmission rate, strong capacity and suitable for various devices. More specifically, the first support body 1 can be a docking station, which provides power supply and connection for the docking station to expand the interface for the first electronic device 5.
[0056] The connecting part can also be a wireless connection type connecting part, which establishes electrical connection with the first electronic device 5 through wireless technology (such as Bluetooth, Wi-Fi, etc.). For example, the connecting part can be a Bluetooth module for short-distance data transmission, suitable for keyboard, mouse and other peripheral devices. The connecting part can also be a Wi-Fi module to support longer distance data transmission, suitable for file sharing or network connection. The connecting part can also be an NFC module for short-distance quick pairing, suitable for simple data exchange. The connecting part can also be a magnetic type connecting part, which combines the design of magnetic force attraction and physical interface, aligns and fixes the connecting part with the interface of the first electronic device 5 through magnetic force to supply power to the first electronic device 5, convenient to plug and unplug, good user experience, improves safety and avoids damage to the interface due to external force pulling.
[0057] In some modified embodiments of the present disclosure, the first support body 1 further comprises a shell 12 made of light-transmitting material and a light source arranged in the shell 12 and electrically connected with the connecting part.
[0058] The shell 12 is made of light-transmitting material, which can uniformly scatter or transmit the light emitted by the light source to the outside. The light-transmitting material can be translucent plastic, which is light and low in cost, suitable for daily use. The light-transmitting material can also be frosted glass, which provides a softer light effect and improves the overall texture. The light-transmitting material can also be a light guide plate material, which is used to achieve more uniform light distribution, suitable for high-end products. The shell 12 not only plays a decorative role, but also provides physical protection for the internal light source and other electronic components, preventing the influence of dust, water vapor or other external factors.
[0059] The light source draws power from the first electronic device 5 (such as a laptop) via a connector, eliminating the need for an external power supply. This design simplifies power management, reduces cable usage, and enhances portability. The light source can also serve as an auxiliary light source, providing a better operating environment for users in low-light conditions. Different colors or flashing patterns can indicate the device's operating status (such as connection status, battery level, etc.). Furthermore, adjusting the color or brightness of the light source can enhance the product's aesthetics and personalization; for example, arranging the light source circumferentially along the first support 1 can improve the product's appearance.
[0060] Specifically, the light source can be directly embedded within the housing 12, and the light can be evenly scattered to the outside through a light-transmitting material, resulting in uniform light distribution and a clean appearance. A light guide plate can also be installed within the housing 12 to direct the light emitted by the light source to a specific area, concentrating the light for localized lighting or decorative effects. Furthermore, sensors or chips can be integrated to achieve automatic adjustment of the light source. For example, the brightness can be automatically adjusted based on the ambient light intensity. The color of the light source can also be changed according to the device status.
[0061] like Figure 4 and Figure 5 As shown, in some modified embodiments of this disclosure, the support device further includes a lifting mechanism 6 and a first rotating shaft. The lifting mechanism 6 is located on the side of the first support body 1 away from the first support surface, and is used to drive the lifting mechanism 6 to move along a second direction. The second support body 2 is rotatably connected to the receiving groove via the first rotating shaft, and the first support body 1 is slidably connected to the first rotating shaft. The extending direction of the first rotating shaft and the lifting direction of the lifting mechanism 6 satisfy the same direction condition. The main purpose of this design is to improve the height adjustment function and flexibility of the support device.
[0062] The lifting mechanism 6 is a device capable of moving the first support body 1 along a second direction. This design allows users to adjust the height of the first electronic device 5 (such as a laptop) according to their actual needs, thereby achieving a more comfortable user experience. Specifically, the lifting mechanism 6 can be a mechanical lifting mechanism 6, where height adjustment is achieved through manual operation of mechanical components such as screws and gears. The lifting mechanism 6 can also be a spring button or spring latch; when the lifting mechanism 6 is in the low position, the spring button or spring latch is in a locked state, and pressing the spring button or spring latch unlocks it, causing the spring button or spring latch to pop out and be in the high position, thus achieving height adjustment. The lifting mechanism 6 can be a hydraulic cylinder, which moves the first support body 1 to achieve height adjustment. The lifting mechanism 6 can also be an electric lifting mechanism 6, which achieves automated height adjustment through motor drive, offering convenient operation, fast adjustment speed, and can be combined with an intelligent control system for automatic adjustment.
[0063] The second support body 2 is rotatably connected to the accommodating groove through a first rotating shaft, allowing it to switch between the storage state (first position) and the use state (second position). The first support body 1 is slidingly connected to the first rotating shaft, which means that the first support body 1 can move in the extension direction of the first rotating shaft. This design further enhances the flexibility of the support device, allowing users to adjust the position of the first support body 1 as needed. The extension direction of the first rotating shaft is consistent with the lifting direction of the lifting mechanism 6, ensuring that the two cooperate with each other during movement to avoid interference and prevent the second support body 2 from moving with the first support body 1 when adjusting the height of the first support body 1, thereby affecting the support effect.
[0064] Specifically, the condition that the extension direction of the first rotating shaft and the lifting direction of the lifting mechanism 6 are the same means that the extension direction of the first rotating shaft and the lifting direction of the lifting mechanism 6 are basically the same, i.e., the extension direction of the first rotating shaft and the lifting direction of the lifting mechanism 6 are completely the same or there can be a certain deviation, such as the included angle between the extension direction of the first rotating shaft and the lifting direction of the lifting mechanism 6 being within one degree, as long as the lifting mechanism 6 and the rotating shaft cooperate with each other during movement to avoid interference.
[0065] In some modified embodiments of the present disclosure, a third support body 3 is further included, which is used to support a third electronic device 8. The third support body 3 and the second support body 2 are respectively rotatably connected to the two sides of the accommodating groove. The main purpose of this design is to further enhance the multifunctionality of the support device to meet the needs of users using multiple electronic devices at the same time.
[0066] Specifically, the third support body 3 can be rotatably connected to the other side of the accommodating groove through a hinge or bearing structure, forming a symmetrical layout with the second support body 2. The structure is compact and makes full use of space. The third support body 3 can also be adjusted in angle or position independently of the second support body 2 to adapt to the needs of different devices. For example, the third support body 3 can support a larger rotation range for placing smartwatches or other small devices. In the use state of the third support body 3, its stability can be enhanced through a magnetic attraction mechanism to prevent the device from sliding or toppling. The structure and type of the third support body 3 can be the same as those of the second support body 2, such as the second support body 2 and the third support body 3 both being folding support bodies and rotating support bodies. The third support body 3 can be completely folded into the accommodating groove to avoid occupying space.
[0067] The introduction of the third support body 3 enables the support device to support the first electronic device 5 (such as a notebook computer), the second electronic device 7 (such as a tablet or a mobile phone), and the third electronic device 8 (such as another tablet, a smart watch, etc.) at the same time. This design is particularly suitable for scenarios that require multiple devices to work together, such as office work, study, or multimedia creation. Specifically, a user can use a notebook computer, a tablet, and a smart watch at the same time to perform tasks such as word processing, drawing, and checking notifications, respectively. When editing a video using a notebook computer, reference materials can be viewed through the second support body 2, and progress or auxiliary information can be monitored through the third support body 3. A teacher or a speaker can use a notebook computer as a main screen, a tablet as an extended screen, and a smart watch as a control terminal.
[0068] The third support body 3 and the second support body 2 are respectively rotationally connected on both sides of the accommodation groove, fully utilizing the spatial layout of the first support body 1, and avoiding occupying additional desktop space. In the storage state, the third support body 3 can be accommodated in the other side of the accommodation groove, and does not interfere with the second support body 2. The user can choose whether to use the third support body 3 according to actual needs, and switch it from the storage state to the use state through rotation. The rotational connection design of the third support body 3 allows it to adjust the angle or position to adapt to the use requirements of different devices.
[0069] In some modified embodiments of the present disclosure, at least two support plates are further provided on the first support body 1, and the two support plates are arranged on both sides of the accommodation groove to support the second electronic device 7 and the third electronic device 8 respectively. The support plates are rotationally connected to the first support body through a second rotation shaft, and the second rotation shaft is perpendicular to the first support surface.
[0070] The two support plates are rotationally connected to the first support body through a second rotation shaft, and the second rotation shaft is substantially perpendicular to the first support surface. This design allows the support plates to rotate in the horizontal direction, thereby adjusting the angles of the second electronic device 7 and the third electronic device 8. The user can adjust the angle of the support plate as needed to adapt to different device usage scenarios. When not in use, the support plates can be accommodated on both sides of the accommodation groove, without occupying additional desktop space. By adjusting the second electronic device 7 (such as a tablet) to an appropriate angle, video conferencing is facilitated.
[0071] In some modified embodiments of the present disclosure, a first support plate is arranged on the side of the second support plate away from the first support body 1, and a second support plate is arranged on the side of the third support body 3 away from the first support body 1. The first support plate and the second support plate are perpendicular to the first support surface, and the first support plate and the second support plate are respectively used to support the second electronic device 7 and the third electronic device 8.
[0072] The second support body 2 and the third support body 3 are respectively provided with a first support plate and a second support plate, both of which satisfy the vertical first support surface condition, and the first support plate and the second support plate are respectively used to support the second electronic device 7 and the third electronic device 8. Since the support plates are perpendicular to the first support surface, more stable support can be provided for the second electronic device 7 and the third electronic device 8. The support plates can be customized according to the size and shape of the device, and are suitable for different types of electronic devices. Users can use a notebook computer, a tablet computer and a smart watch at the same time, respectively for word processing, drawing and viewing notifications, etc. Teachers or speakers can use a notebook computer as a main screen, a tablet computer as an extended screen, and a smart watch as a control terminal.
[0073] Wherein, the vertical condition is that the support plate and the support surface are basically perpendicular, that is, the angle between the support plate and the support surface can be between 89 degrees and 91 degrees, so as to avoid occupying space as much as possible.
[0074] Each support plate can be independently adjusted in angle or position to meet the use requirements of different devices. The design of the support plate provides a more stable support platform for the second electronic device 7 and the third electronic device 8. The support plate is connected by rotation or vertically arranged, fully utilizing the space layout of the first support body 1, and avoiding occupying additional desktop space.
[0075] Embodiment 2
[0076] An electronic device includes a first electronic device 5, a second electronic device 7 and a support device, the support device includes a first support body 1 and a second support body 2, the first support body 1 has a first support surface, the first support surface supports the first electronic device 5; a first connecting contact is arranged on the first support surface, a second connecting contact is arranged on the first electronic device 5, the first connecting contact and the second connecting contact are in contact to enable the first support body 1 and the first electronic device 5 to be electrically connected, a plurality of connecting interfaces 11 are arranged on the first support body 1; the second support body 2 is movably connected with the first support body 1, the second support body 2 can move between a first position and a second position, the second support body 2 supports the second electronic device 7;
[0077] The second support body 2 is in the first position, and the second support body 2 is located in the projection area of the first support surface; the second support body 2 is in the second position, and the second support body 2 is partially located outside the projection area of the first support surface to support the second electronic device 7.
[0078] The first and second connection contacts achieve electrical connection through physical contact, without the need for additional cables or interfaces. This design simplifies the connection process and improves user experience. The contact design needs to ensure good electrical conductivity and contact stability, avoiding poor connection due to looseness or oxidation. Metal materials such as copper, gold, etc. can be used to improve electrical conductivity and durability. The first and second connection contacts can be automatically aligned through magnetic attraction or positioning structure, reducing user operation difficulty. For example, the first support body 1 is fixed on the first electronic device 5 through magnetic attraction, ensuring correct contact of the contacts.
[0079] The first electronic device 5, the second electronic device 7 and other structures of the support device are as described in Embodiment 1, which will not be repeated here.
[0080] The specific embodiments of the present disclosure are only for the purpose of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A support device, characterized in that, The support device comprises: a first support body having a first support surface for supporting a first electronic device; a second support body movably connected with the first support body, the second support body being movable between a first position and a second position, the second support body being used for supporting a second electronic device; when the second support body is in the first position, the second support body is located within a projection area of the first support surface; when the second support body is in the second position, the second support body is partially located outside the projection area of the first support surface to support the second electronic device.
2. The support device according to claim 1, wherein: a receiving groove is arranged in the first support body, and when the second support body is in the first position, the second support body is entirely located in the receiving groove.
3. The support device according to claim 2, wherein: one end of the second support body is rotatably connected in the receiving groove.
4. The support device according to claim 3, wherein: the second support body is provided with a support groove for supporting the second electronic device, and the support groove extends in a first direction so that the second electronic device can be installed at different positions of the support groove.
5. The support device according to claim 1, wherein: the first support body comprises a connecting portion for electrically connecting with the first electronic device, and the first electronic device is provided with a plurality of connecting interfaces.
6. The support device according to claim 5, wherein: the first support body further comprises a housing made of a light-transmitting material and a light source arranged in the housing and electrically connected with the connecting portion.
7. The support apparatus of claim 3, wherein The support device further comprises: a lifting mechanism arranged on a side of the first support body away from the first support surface, the lifting mechanism being used to drive the first support body to move in a second direction; a first rotating shaft, the second support body being rotatably connected in the receiving groove through the first rotating shaft, and the first support body being slidably connected on the first rotating shaft, the extension direction of the first rotating shaft and the lifting direction of the lifting mechanism satisfying the same direction condition.
8. The support apparatus of claim 3, wherein The support device further comprises: a third support body for supporting a third electronic device; the third support body and the second support body are rotatably connected on two sides of the receiving groove, respectively.
9. The support device according to claim 8, wherein: the first support body is further provided with at least two support plates, the two support plates being arranged on two sides of the receiving groove to support the second electronic device and the third electronic device, respectively, the support plates being rotatably connected on the first support body through a second rotating shaft, and the second rotating shaft and the first support surface satisfying the perpendicular condition. Or, the second support plate is provided with a first support plate away from one side of the first support body, the third support body is provided with a second support plate away from one side of the first support body, the first support plate and the second support plate satisfy the condition of being perpendicular to the first support surface, and the first support plate and the second support plate are respectively used for supporting the second electronic device and the third electronic device.
10. An electronic device, comprising: Comprise: A first electronic device; A second electronic device; A support device comprising: A first support body, the first support body has a first support surface, the first support surface supports a first electronic device; a first connecting contact is arranged on the first support surface, a second connecting contact is arranged on the first electronic device, the first connecting contact and the second connecting contact are in contact to enable the first support body and the first electronic device to be electrically connected, and a plurality of connecting interfaces are arranged on the first support body; A second support body, the second support body is movably connected with the first support body, the second support body can move between a first position and a second position, and the second support body supports a second electronic device; When the second support body is in the first position, the second support body is located in the projection area of the first support surface; when the second support body is in the second position, the second support body is partially located outside the projection area of the first support surface to support the second electronic device.