Desktop with turnover touch display screen

By designing a desktop with a flip-up touchscreen display, and utilizing a servo motor drive mechanism and guide slots, the display can be hidden and flipped, solving the problems of space occupation and aesthetics associated with traditional displays, and improving stability and lifespan.

CN224125470UActive Publication Date: 2026-04-17FOSHAN JUNGONG HOME FURNISHING TECH CO LTD +2
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN JUNGONG HOME FURNISHING TECH CO LTD
Filing Date
2025-04-11
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Traditional touch screens, when fixed or externally mounted, take up space and affect aesthetics and lifespan, and are also prone to shaking and instability.

Method used

Design a desktop with a flip-up touchscreen display. The touchscreen display can be hidden and flipped by a servo motor driving a sprocket and a lead screw linear module. Precise guidance is provided by guide grooves and guide blocks, and it is integrated under the desktop board.

Benefits of technology

This improves the space utilization of touch displays, extends their service life, enhances their aesthetics and operational stability, and reduces the risk of shaking and malfunction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of desks, and discloses a desktop with a turnover touch display screen, which comprises a desktop, a machine body and a machine frame, a through hole groove is arranged on the desktop, and the touch display screen extends out to be opened or is matched with a door plate to cover the desktop through the through hole groove; two side plates are arranged in the machine body; two groups of guide grooves A matched with the movable frame on the door plate for guiding movement and two groups of guide grooves B matched with the guide frame on the touch display screen for guiding movement are respectively formed in the two side plates; the movable frame A is driven by a driving mechanism in the machine body to move, an avoiding space is provided for the touch display screen and the movable frame in the process that the display screen stretches out to be opened or hidden to the bottom of the table top, when the display screen is not used, the display screen can be stored below the table top, the door plate covers the through hole groove, the table top is kept flat, the table top space is fully utilized, and use is convenient. The additional occupied area is avoided, the table top appearance is uniform and neat, and the attractiveness and coordination are improved.
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Description

Technical Field

[0001] This utility model belongs to the field of desk technology, specifically relating to a desktop with a flip-up touch screen. Background Technology

[0002] Touchscreen displays are increasingly used in modern offices, meetings, and educational settings. They offer a more intuitive and convenient interactive experience, greatly improving the efficiency of information display and operation. However, traditional touchscreen displays are usually fixed on a desktop or placed aside, which presents several problems and fails to meet users' needs in terms of space utilization, aesthetics, and device protection.

[0003] Fixed desktop monitors are mounted directly on the desktop surface and cannot be hidden. When not in use, they occupy desktop space, reducing the area available for placing items or performing routine office tasks. Furthermore, monitors exposed to the elements are susceptible to dust, scratches, and impacts, shortening their lifespan. External touchscreen monitors, typically placed as standalone devices, offer some flexibility but also consume significant desktop space, making the desktop appear cluttered and affecting overall aesthetics and harmony. Additionally, external monitors may wobble during use due to instability, impacting the user experience.

[0004] In view of this, we propose a desktop with a flip-up touch display to solve the above problems. Utility Model Content

[0005] The present invention aims to solve the technical problems of the inconvenience and space-consuming nature of external touch screens and fixed desktop displays in the prior art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A desktop with a flip-up touch display includes a desktop panel, a body, and a frame, with the body located inside the top of the frame and at the bottom of the desktop panel;

[0008] The desktop panel has through-hole slots for the touch screen to extend and open or to cooperate with the door panel to close the desktop panel;

[0009] The machine body has two side plates, and the two side plates are respectively provided with two sets of guide grooves A that cooperate with the movable frame on the door plate to guide the movement, and two sets of guide grooves B that cooperate with the guide frame on the touch screen to guide the movement.

[0010] The mobile stand A is driven by a drive mechanism inside the machine, and provides clearance for the touch screen and the mobile stand when the display extends and opens or hides under the desktop.

[0011] Preferably, the rack is fixedly installed below the desktop panel.

[0012] Preferably, the movable frame includes a support plate fixed to the bottom of the door panel, two movable upright plates, eight guide blocks A fixed to both sides of the support plate and the outside of the two movable upright plates and guided by two sets of guide grooves A, and four sets of connecting rods that rotatably connect the two guide blocks A arranged symmetrically above and below.

[0013] Preferably, the drive mechanism includes a servo motor, a sprocket A fixedly connected to the end of the piston rod of the servo motor, two lead screw linear modules fixed on both sides inside the machine body, and a chain meshing with sprockets B at the ends of the lead screws on sprocket A and the two lead screw linear modules. The two movable uprights are respectively fixed on the movable seats of the two lead screw linear modules.

[0014] The servo motor drives the sprocket A to rotate, which in turn drives the chain and sprocket B to rotate the lead screw on the linear module. This causes the movable seat, which is connected to the lead screw nut and the lead screw drive, to move horizontally, which in turn causes the two movable upright plates to move horizontally. With the help of the connecting rod and guide block A and the two sets of guide grooves A, the door panel is hidden under the desktop panel and moves to one end of the desktop panel, providing clearance for the display screen to extend, open or hide.

[0015] Preferably, the guide frame has four guide blocks B on both sides that cooperate with the two sets of guide grooves B to move. The guide frame moves along the guide grooves B through the guide blocks B, thereby enabling the touch screen installed on the guide frame to be flipped open or hidden and closed relative to the desktop.

[0016] Compared with the prior art, the technical effects and advantages of this utility model are:

[0017] The desktop servo motor with the flip-up touchscreen starts, driving the sprocket A, which is fixed to the end of its piston rod, to rotate. Sprocket A drives the sprocket B at the end of the lead screw on the linear module via a chain, causing the lead screw to rotate. As the lead screw rotates, the movable seat, connected to the lead screw via a screw nut, translates, thereby causing the two movable uprights fixed on the movable seat to translate as well. Guided by the connecting rod and guide block A, and two sets of guide grooves A, the door panel is hidden under the desktop and moves to one end of the desktop, providing clearance for the touchscreen to move. Then, the guide blocks B on both sides of the guide frame move along the two sets of guide grooves B, allowing the touchscreen mounted on the guide frame to flip open or hide / close relative to the desktop.

[0018] This invention integrates a touchscreen display with desktop functionality. When not in use, the display can be stored under the desktop, with the door panel closing the through-hole slot to keep the desktop flat. This not only makes full use of desktop space and avoids taking up extra area, but also makes the desktop look uniform and neat, improving aesthetics and harmony. At the same time, the through-hole slot design can prevent the display from being damaged by scratches, collisions, etc. during daily use, extending its service life.

[0019] In this invention, guide grooves A and B within the machine body provide precise guidance for the movement of the door panel and the touch screen, ensuring stable and smooth movement, reducing wobbling and offset, and guaranteeing an orderly opening and closing process. The clearance space provided by the moving frame A ensures that the door panel and the display screen do not interfere with each other, achieving coordinated operation and making the opening and closing of the display screen smoother and more efficient. The drive mechanism can precisely control the movement of the door panel; the sprocket and chain transmission are highly efficient, and the lead screw linear module provides stable power. The overall structure is compact, improving space utilization and facilitating installation and maintenance. The guide frame and guide block B provide stable guidance for the display screen's rotation, making operation convenient and reducing the impact of external forces on the display screen, lowering the risk of failure and improving system reliability. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the open structure of the touch screen display of this utility model;

[0021] Figure 2 This is a schematic diagram of the structure of the touch screen of this utility model when it is turned off;

[0022] Figure 3 A first-view view of the interior of the body when the touch display screen of this utility model is opened;

[0023] Figure 4 This is a first-view view of the interior of the device when the touch display screen of this utility model is turned off;

[0024] Figure 5 A second-view perspective view of the interior of the body when the touch display screen of this utility model is opened;

[0025] Figure 6 This is a second-view perspective view of the interior of the device when the touch display screen of this utility model is turned off;

[0026] Figure 7 This is a schematic diagram of the side plate of this utility model.

[0027] In the diagram: 1. Desktop panel; 2. Touch screen display; 3. Door panel; 4. Through-hole slot; 5. Body; 6. Frame; 7. Side panel; 8. Moving frame; 9. Guide slot A; 10. Guide frame; 11. Guide slot B; 12. Support plate; 13. Moving upright plate; 14. Guide block A; 15. Connecting rod; 16. Servo motor; 17. Sprocket A; 18. Lead screw linear module; 19. Sprocket B; 20. Guide block B. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] The following combination Figures 1 to 7 This application will be described in further detail.

[0030] This application discloses a desktop with a flip-up touch screen, including a desktop panel 1, a body 5 and a frame 6. The frame 6 is fixedly installed below the desktop panel 1, and the body 5 is located on the top inner side of the frame 6 and at the bottom of the desktop panel 1.

[0031] The desktop panel 1 is provided with a through-hole slot 4 for the touch screen 2 to extend and open or to cooperate with the door panel 3 to cover the desktop panel 1;

[0032] The desktop panel 1 has a through-hole slot 4 for the touch display screen 2 to extend and open, or to cooperate with the door panel 3 to cover the desktop panel 1, thus integrating the functions of the touch display screen 2 and the desktop panel 1. When the touch display screen 2 is not in use, the display screen can be hidden under the desktop panel 1, and the through-hole slot 4 can be covered by the door panel 3, keeping the desktop panel 1 flat and allowing it to be used normally for placing items, performing routine office work or operations, making full use of the space of the desktop panel 1 and avoiding taking up extra area of ​​the desktop panel 1.

[0033] When the touch screen 2 is hidden and the door panel 3 is closed, the desktop panel 1 has a unified and neat appearance. It will not appear abrupt or cluttered due to the presence of the screen, thus improving the aesthetics and harmony of the entire desktop panel 1.

[0034] The through-hole slot 4 design allows the touch display screen 2 to be stored under the desktop 1 when not in use, avoiding scratches, collisions and other damage that may be caused to the display screen during daily use, and extending the life of the display screen.

[0035] The body 5 has two side plates 7 inside. The two side plates 7 are respectively provided with two sets of guide grooves A9 that move with the movable frame 8 on the door plate 3 and two sets of guide grooves B11 that move with the guide frame 10 on the touch screen 2.

[0036] The movable frame 8A is driven to move by the drive mechanism inside the body 5, and provides clearance for the touch screen 2 and the movable frame 8 during the process of the display screen extending and opening or hiding under the desktop 1.

[0037] The two sets of guide grooves A9 and two sets of guide grooves B11 inside the body 5 provide precise guidance for the movement of the door panel 3 and the touch screen 2. The guide grooves make the door panel 3 and the touch screen 2 more stable and smooth during movement, reduce shaking and offset, and ensure the orderliness of the entire opening and closing process.

[0038] The movable bracket 8A provides clearance for the touch screen 2 and the movable bracket 8 during the process of the display extending, opening, or retracting to the bottom of the desktop panel 1, ensuring that the actions of the door panel 3 and the touch screen 2 do not interfere with each other. This allows for coordinated operation between the two, making the opening and closing actions of the touch screen 2 smoother and more efficient.

[0039] The movable frame 8 includes a support plate 12 fixed to the bottom of the door panel 3, two movable upright plates 13, eight guide blocks A14 fixed to both sides of the support plate 12 and the outside of the two movable upright plates 13 and guided by two sets of guide grooves A9, and four sets of connecting rods 15 that rotatably connect the two guide blocks A14 that are symmetrically arranged above and below.

[0040] The drive mechanism includes a servo motor 16, a sprocket A17 fixedly connected to the piston rod end of the servo motor 16, two lead screw linear modules 18 fixed on both sides inside the machine body 5, and a chain meshing with the sprockets B19 at the ends of the lead screws on the sprockets A17 and the two lead screw linear modules 18. Two movable uprights 13 are respectively fixed on the movable seats of the two lead screw linear modules 18.

[0041] The servo motor 16 drives the sprocket A17 to rotate, which in turn drives the chain and sprocket B19 to rotate the lead screw on the linear module 18. This causes the movable seat, which is connected to the lead screw through the lead screw nut, to move horizontally, which in turn causes the two movable uprights 13 to move horizontally. With the help of the connecting rod 15 and the guide block A14, and the two sets of guide grooves A9, the door panel 3 is hidden under the desktop panel 1 and moves to one end of the desktop panel 1, providing clearance for the display screen to extend, open, or hide.

[0042] The drive mechanism employs a combination of a servo motor 16, a sprocket, and a lead screw linear module 18, enabling precise control of the door panel 3's movement. The servo motor 16 can precisely control the rotation angle and speed, transmitting power to the lead screw linear module 18 via chain and sprocket transmission. This causes the lead screw to rotate, driving the moving seat to translate, thus precisely controlling the door panel 3's position and speed, ensuring the door panel 3 can accurately hide under the desktop panel 1 and move to the designated position. The sprocket and chain transmission method has high transmission efficiency, effectively transmitting power from the servo motor 16 to the lead screw linear module 18. The lead screw linear module 18 converts rotational motion into linear motion, providing stable and reliable power support for the door panel 3's translation, ensuring the door panel 3 can move quickly and smoothly. The design of the moving frame 8 and drive mechanism makes the entire structure compact and space-saving. This compact design achieves the door panel 3's movement function within the limited space of the body 5, improving space utilization and facilitating installation and maintenance.

[0043] The guide frame 10 has four guide blocks B20 on both sides that cooperate with two sets of guide grooves B11 to move. The guide frame 10 moves along the guide grooves B11 through the guide blocks B20, thereby enabling the touch screen 2 mounted on the guide frame 10 to be flipped open or hidden closed relative to the desktop 1.

[0044] Four guide blocks B20 on both sides of the guide frame 10, in conjunction with two sets of guide grooves B11, provide stable guidance for the touch screen 2 to flip open and hide / close. During the flipping process, the guide blocks B20 move along the guide grooves B11, ensuring the accurate and stable movement trajectory of the touch screen 2, preventing the screen from shaking or tilting during the flipping process, and improving the user experience. The cooperation between the guide frame 10 and the guide blocks B20 makes the flipping operation of the touch screen 2 more convenient. Simply control the door panel 3 to move through the drive mechanism to provide clearance for the screen, and the screen can easily flip open or hide / close relative to the desktop panel 1 under the action of the guide frame 10, making the operation simple and flexible. The stable guiding effect reduces the external impact on the screen during the flipping process, protects the connection between the screen and other components, reduces the risk of failure due to loose or damaged connections, and improves the reliability of the entire system.

[0045] When the desktop with the flip-up touchscreen is in operation, the drive mechanism is the core power source. The servo motor 16 starts, driving the sprocket A17, which is fixed to the end of its piston rod, to rotate. The sprocket A17 drives the sprocket B19 at the end of the lead screw on the linear screw module 18 via a chain, causing the lead screw to rotate. As the lead screw rotates, the movable seat, connected to the lead screw via a screw nut, translates, thereby causing the two movable uprights 13 fixed on the movable seat to translate as well. Guided by the connecting rod 15 and guide block A14 in conjunction with two sets of guide grooves A9, the door panel 3 is hidden below the desktop panel 1 and moves to one end of the desktop panel 1, providing clearance for the touchscreen 2 to move. Then, the guide blocks B20 on both sides of the guide frame 10 move along the two sets of guide grooves B11, allowing the touchscreen 2 mounted on the guide frame 10 to flip open or hide and close relative to the desktop panel 1.

[0046] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A table with a flip touch display screen, characterized in that, include: The desktop panel (1) has a through-hole groove (4) for the touch screen (2) to extend and open or to cooperate with the door panel (3) to cover the desktop panel (1). The body (5) is located on the top inner side of the frame (6) and at the bottom of the desktop (1). The body (5) has two side plates (7). The two side plates (7) are respectively provided with two sets of guide grooves A (9) that move with the movable frame (8) on the door panel (3) and two sets of guide grooves B (11) that move with the guide frame (10) on the touch screen (2). The mobile frame (8) A is driven by the drive mechanism inside the body (5) and provides clearance for the touch screen (2) and the mobile frame (8) during the process of the display screen extending and opening or hiding under the desktop (1).

2. A table with a flip touch display screen according to claim 1, characterized in that: The rack (6) is fixedly installed below the desktop panel (1).

3. The table with a flip touch display screen according to claim 1, wherein: The movable frame (8) includes a support plate (12) fixed to the bottom of the door panel (3), two movable upright plates (13), eight guide blocks A (14) fixed on both sides of the support plate (12) and the outside of the two movable upright plates (13) and guided by two sets of guide grooves A (9), and four sets of connecting rods (15) rotatably connected to the two guide blocks A (14) arranged symmetrically on the top and bottom.

4. A table with a flip touch display screen according to claim 3, characterized in that: The drive mechanism includes a servo motor (16), a sprocket A (17) fixedly connected to the piston rod end of the servo motor (16), two lead screw linear modules (18) fixed on both sides inside the body (5), and a chain meshing with the sprocket B (19) at the end of the lead screw on the sprocket A (17) and the two lead screw linear modules (18). Two movable uprights (13) are respectively fixed on the movable seats of the two lead screw linear modules (18). The servo motor (16) drives the sprocket A (17) to rotate, which in turn drives the chain and sprocket B (19) to rotate, thereby driving the lead screw on the lead screw linear module (18) to rotate, so that the movable seat connected to the lead screw through the lead screw nut and the lead screw transmission moves horizontally, thereby driving the two movable upright plates (13) to move horizontally. Under the action of the connecting rod (15) and the guide block A (14) in conjunction with the two sets of guide grooves A (9), the door panel (3) is hidden under the desktop panel (1) and moved to one end of the desktop panel (1), providing clearance for the display screen to extend, open or hide.

5. The table with a flip touch display screen according to claim 1, wherein: The guide frame (10) has four guide blocks B (20) on both sides that cooperate with the two sets of guide grooves B (11) to move. The guide frame (10) moves along the guide grooves B (11) through the guide blocks B (20), thereby enabling the touch screen (2) installed on the guide frame (10) to be flipped open or hidden closed relative to the desktop (1).