Electronic equipment

By designing push-pull guide rails and locking components, the inconvenience of adjusting the screen position of electronic devices with screens is solved, enabling flexible screen position adjustment and simplified operation, thus improving the ease of use and usability of the device.

CN224190454UActive Publication Date: 2026-05-01TIANJIN GUANGHAO TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN GUANGHAO TECH CO LTD
Filing Date
2025-04-24
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing electronic devices with screens require moving the entire device to adjust the viewing distance of the screen, which is inconvenient to use, and existing solutions increase costs or limit the flexibility of use cases.

Method used

It employs push-pull and locking components, including push-pull guide rails and locking guide rails. The screen position can be adjusted by pushing and pulling the guide rails, and it can be fixed in any position by locking components. Combined with a foldable cable tray, it prevents cable damage.

Benefits of technology

It enables flexible adjustment of the screen position to meet different viewing distance requirements, simplifies operation, saves space, reduces costs, and improves ease of use and device usability.

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Abstract

The utility model discloses electronic equipment, and relates to the technical field of electronics, the electronic equipment comprises a case assembly, a push-pull assembly and a screen, the push-pull assembly comprises a push-pull guide rail and a moving part, the push-pull guide rail is arranged on the case assembly, the moving part is slidably arranged on the push-pull guide rail and can move along the extension direction of the push-pull guide rail, the screen is arranged on the moving part, and the push-pull guide rail is arranged on the case assembly. The electronic equipment can move along with the moving part along the extension direction of the push-pull guide rail, so that position adjustment is realized, and the screen is electrically connected with the case assembly through a cable, so that information in the electronic equipment is displayed in a visible form for a user to watch. According to the electronic equipment disclosed by the invention, the position adjustment of the screen relative to the case assembly is realized through the arrangement of the push-and-pull assembly, so that the use requirements of a user on the screen under different sight distances can be met; in the adjusting process, only the screen needs to be moved, the case assembly does not need to be moved, the visual distance between the screen and a user can be conveniently adjusted, and the flexibility of screen position adjustment is improved.
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Description

An electronic device Technical Field

[0001] This application relates to the field of electronic technology, and more specifically, to an electronic device. Background Technology

[0002] Currently, electronic devices with screens generally suffer from significant weight and the screen being fixedly connected to the chassis. This forces users to move the entire device when adjusting the screen's viewing distance, causing inconvenience. Related technological solutions include external displays, using rack-mounted chassis with sliding rails, or placing drag-and-drop accessories under the chassis. However, external displays increase equipment cost and connection complexity, reducing ease of use; sliding rails and drag-and-drop accessories rely on specific racks or structures, limiting the device's application scenarios and lacking flexibility.

[0003] Therefore, how to improve the flexibility of screen position adjustment in electronic devices with screens has become a technical problem that urgently needs to be solved by those skilled in the art. Summary of the Invention

[0004] The purpose of this application is to provide an electronic device that improves the flexibility of screen position adjustment in electronic devices with screens.

[0005] An electronic device, comprising:

[0006] Chassis components;

[0007] A push-pull assembly, comprising a push-pull guide rail and a movable component, wherein the push-pull guide rail is disposed on the chassis assembly and the movable component is slidably disposed on the push-pull guide rail;

[0008] A screen is disposed on the movable component and is electrically connected to the chassis assembly via a cable.

[0009] Optionally, the above-described electronic device further includes a locking assembly, the locking assembly comprising:

[0010] The locking guide rail has a clearance groove, and both the locking guide rail and the clearance groove are arranged along the extension direction of the push-pull guide rail.

[0011] A locking component, comprising a rod, a limiting part, and an operating part, wherein a first end of the rod passes through the clearance groove and is threadedly connected to the moving part, the operating part is connected to a second end of the rod, and the limiting part is disposed on the rod and is used to abut against the locking guide rail to restrict the sliding of the moving part on the push-pull guide rail.

[0012] Optionally, in the above-mentioned electronic device, the locking assembly further includes a locking baffle, which is disposed on the locking guide rail and forms a locking groove with the locking guide rail. The locking groove is arranged along the extension direction of the push-pull guide rail, the operating part is disposed outside the locking groove, and the locking baffle limits the limiting part within the locking groove.

[0013] Optionally, in the above-mentioned electronic device, the outer wall of the limiting part that abuts against the locking guide rail is provided with anti-slip texture;

[0014] And / or, the locking guide rail has anti-slip textures on its outer wall that abuts against the limiting part.

[0015] Optionally, in the above-mentioned electronic device, the limiting part is a locking nut that is threadedly connected to the rod body;

[0016] And / or, the operating part is provided with a directional indicator for indicating the locking direction and / or loosening direction of the locking member.

[0017] Optionally, the above-mentioned electronic device also includes a foldable cable tray, the two ends of which are hinged to the chassis assembly and the moving part, respectively. The cable is connected to the cable tray and folds and unfolds together with the cable tray.

[0018] Optionally, in the above-mentioned electronic device, the cable tray includes a plurality of fixed rods that are hinged in sequence, the cables are connected to each of the fixed rods in sequence and are arranged along the extension direction of each of the fixed rods, and the extension lengths of each of the fixed rods are the same or different.

[0019] Optionally, in the above-mentioned electronic device, the cable tray is provided with a cable tray, and the cable is disposed in the cable tray.

[0020] Optionally, in the above-described electronic device, the push-pull guide rails are two parallel and spaced apart, and the moving component includes:

[0021] There are two sliders, which are slidably mounted on the two push-pull guide rails in a corresponding manner;

[0022] There are two screen adapter blocks, each connected to one of the two sliders.

[0023] A screen connecting shaft is connected between the two screen adapter blocks, and the screen is connected to the screen connecting shaft.

[0024] Optionally, in the above-described electronic device, the screen is hinged to the moving part via a hinge.

[0025] The electronic device provided in this application includes a chassis assembly, a sliding assembly, and a screen. The chassis assembly includes a housing, a cover, and electronic components. The electronic components are housed within the chassis space enclosed by the housing and cover, which provide safety protection for the electronic components. The sliding assembly includes a sliding guide rail and a movable component. The sliding guide rail is mounted on the chassis assembly, and the movable component is slidably mounted on the sliding guide rail and can move along the extension direction of the sliding guide rail. The screen is mounted on the movable component and can move along the extension direction of the sliding guide rail with the movable component, thereby achieving position adjustment. The screen is electrically connected to the chassis assembly via a cable to display the information inside the electronic device in a visible form for the user to view.

[0026] Compared to related technologies, the electronic device provided in this application achieves screen position adjustment relative to the chassis component through the setting of a push-pull component, which can meet the user's needs for screen use at different viewing distances; and during the adjustment process, only the screen needs to be moved, without moving the chassis component, which can conveniently adjust the visual distance between the screen and the user, improving the flexibility of screen position adjustment; the size of the push-pull guide rail in the electronic device disclosed in this application can be adjusted according to the size of the chassis component, the structure has a wide range of applications, and no other mechanism is required; the push-pull components are all centrally assembled on the cover of the chassis component, which is easy to use and saves space; in addition, it also has the advantages of simple structure and low cost. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments or related technologies of this application, the accompanying drawings used in the description of the embodiments or related technologies will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0028] Figure 1 is a schematic diagram of the overall structure of the electronic device disclosed in an embodiment of this application;

[0029] Figure 2 is a magnified view of part A in Figure 1;

[0030] Figure 3 is a schematic diagram of the screen sliding and moving structure of the electronic device disclosed in the embodiment of this application;

[0031] Figure 4 is a magnified view of part B in Figure 3;

[0032] Figure 5 is a schematic diagram of the screen push-pull movement related structure of the electronic device disclosed in the embodiment of this application;

[0033] Figure 6 is a schematic diagram of the screen push-pull movement related structure of the electronic device disclosed in the embodiments of this application;

[0034] Figure 7 is a schematic diagram of the structure of the locking component disclosed in an embodiment of this application;

[0035] Figure 8 is a second structural schematic diagram of the locking component disclosed in an embodiment of this application;

[0036] Figure 9 is a schematic diagram of the screen push-pull movement related structure of the electronic device disclosed in the embodiments of this application;

[0037] Figure 10 is a schematic diagram of the installation of cables and cable trays for the electronic device disclosed in the embodiments of this application.

[0038] Among them, 100 represents the chassis assembly;

[0039] 200 is a push-pull assembly, 210 is a push-pull guide rail, 220 is a slider, 221 is a screen adapter block, and 222 is a screen connecting shaft;

[0040] 300 is the locking assembly, 310 is the locking element, 311 is the rod, 312 is the operating part, 313 is the limiting part, 314 is the direction indicator, 320 is the locking guide rail, 321 is the clearance groove, 330 is the locking baffle, and 331 is the locking groove.

[0041] 400 is the cable tray, 410 is the fixed rod, and 420 is the hinged base;

[0042] 500 is the screen, 510 is the hinge, and 520 is the cable. Detailed Implementation

[0043] The core of this application is to disclose an electronic device that improves the flexibility of screen position adjustment in electronic devices with screens.

[0044] Hereinafter, embodiments will be described with reference to the accompanying drawings. Furthermore, the embodiments shown below do not limit the scope of the utility model as described in the claims. Additionally, the complete contents of the structures represented in the embodiments below are not limited to those necessary for the solution of the utility model as described in the claims. It should be noted that, for ease of description, only the parts relevant to the utility model are shown in the drawings. Unless otherwise specified, the embodiments and features described in this application can be combined with each other.

[0045] Those skilled in the art will understand that the primary purpose of adjusting screen position is to improve user visual comfort and convenience. By adjusting the screen position, users can optimize the screen display according to their visual condition and needs, thereby reducing eye fatigue and discomfort. For example, for users with weak vision or sensitivity to light, adjusting the screen position can reduce glare and improve visual recognition. Furthermore, for users using assistive technologies, such as high contrast, grayscale, or color inversion settings, adjusting the screen position can help them better adapt to the screen display, improving readability and ease of use. These adjustments not only help improve work efficiency but also protect the user's visual health. However, the methods for adjusting screen position in related technologies have many limitations and are inconvenient to operate. Therefore, this application discloses the following electronic device.

[0046] Referring to Figures 1-10, the electronic device disclosed in this application includes a chassis assembly 100, a push-pull assembly 200, and a screen 500. The chassis assembly 100 includes a housing, a cover, and electronic components. The electronic components are disposed within the chassis space enclosed by the housing and cover, which provide safety protection for the electronic components. The push-pull assembly 200 includes a push-pull guide rail 210 and a movable component. The push-pull guide rail 210 is disposed on the chassis assembly 100, and the movable component is slidably disposed on the push-pull guide rail 210 and can move along the extension direction of the push-pull guide rail 210. The push-pull guide rail 210 is typically a linear guide rail. The screen 500 is disposed on the movable component and can move along the extension direction of the push-pull guide rail 210 together with the movable component, thereby achieving position adjustment. The screen 500 is electrically connected to the chassis assembly 100 via a cable 520 to display the information inside the electronic device in a visible form for the user to view.

[0047] Compared to related technologies, the electronic device disclosed in this application achieves position adjustment of the screen 500 relative to the chassis assembly 100 through the setting of the push-pull component 200, which can meet the user's needs for using the screen 500 at different viewing distances; and during the adjustment process, only the screen 500 needs to be moved, without moving the chassis assembly 100, which can conveniently adjust the visual distance between the screen 500 and the user, improving the flexibility of screen 500 position adjustment; the size of the push-pull guide rail 210 in the electronic device disclosed in this application can be adjusted according to the size of the chassis assembly 100, the structure has a wide range of applications, and no other mechanism is required; the push-pull components 200 are all centrally assembled on the cover of the chassis assembly 100, which is easy to use and saves space; in addition, it also has the advantages of simple structure and low cost.

[0048] To prevent slippage, limiting structures such as limiting blocks can be set at both ends of the push-pull guide rail 210 to limit the sliding stroke of the moving part and prevent the moving part from slipping off the push-pull guide rail 210.

[0049] After adjusting the position of the screen 500, to prevent the screen 500 from moving automatically, in some embodiments disclosed in this application, referring to Figures 2-4, the electronic device further includes a locking assembly 300. The locking assembly 300 includes a locking guide rail 320 and a locking member 310. The locking guide rail 320 has a clearance groove 321, and both the locking guide rail 320 and the clearance groove 321 are arranged along the extension direction of the push-pull guide rail 210. The clearance groove 321 is used for the locking member 310 to pass through and for the locking member 310 to move together with the moving member. The locking guide rail 320 is usually fixed to the push-pull guide rail 210. Further, the locking guide rail 320 and the push-pull guide rail 210 are fixed together. The pull guide rail 210 can be a one-piece structure for easy assembly. Referring to Figure 7, the locking member 310 includes a rod 311, a limiting part 313, and an operating part 312. The first end of the rod 311 passes through the relief groove 321 and is threadedly connected to the moving part. The operating part 312 is connected to the second end of the rod 311 and is used by the user to operate and drive the rod 311 to rotate. The limiting part 313 is located in the middle position of the rod 311 and moves with the movement of the rod 311. The limiting part 313 is used to abut against the side wall of the locking guide rail 320 to limit the sliding of the moving part on the push-pull guide rail 210, thereby achieving the fixed position of the screen 500. In actual operation, the user rotates the operating part 312 to move the rod 311 and the limiting part 313. When the limiting part 313 moves to press against the side wall of the locking guide rail 320 and applies a certain preload, the friction between the limiting part 313 and the locking guide rail 320 prevents the locking member 310 from moving, thus preventing the moving part from sliding further on the push-pull guide rail 210. This achieves the locking of the screen 500 position, meeting the user's needs for using the screen 500 at different viewing distances. When the position of the screen 500 needs to be adjusted again, the locking member 310 is loosened again, releasing the pressure between the limiting part 313 and the locking guide rail 320, allowing the moving part to move again. The locking assembly 300 disclosed in this application has a simple structure and can move and lock the screen 500 along the push-pull guide rail 210 to any position, thereby improving the usability of electronic devices and the user experience. The rod 311 can be a locking screw, and the limiting part 313 can be a locking nut, which facilitates the movement and adjustment of the specific position of the limiting part 313 on the rod 311.

[0050] Further optimizing the design, as shown in Figures 4-6, the locking assembly 300 also includes a locking baffle 330. The locking baffle 330 is disposed on the locking guide rail 320 and forms a locking groove 331 with the locking guide rail 320. The locking groove 331 is arranged along the extension direction of the push-pull guide rail 210. The operating part 312 is disposed outside the locking groove 331 to prevent the locking baffle 330 from affecting the user's operation of the operating part 312. The locking baffle 330 is used to limit the limiting part 313 within the locking groove 331, thereby limiting the movement stroke of the locking member 310 and preventing the locking member 310 from falling off relative to the moving part and the locking guide rail 320 during rotation, thus facilitating the user's operation.

[0051] To improve the locking effect, anti-slip textures can be provided on the outer wall of the limiting part 313 that abuts and presses against the locking guide rail 320. Correspondingly, protective textures can also be provided on the side wall of the locking guide rail 320 that abuts and presses against the limiting part 313 to improve the friction during locking.

[0052] Referring to Figure 8, in order to facilitate the use of the operator, a direction indicator 314 for indicating the locking direction and / or loosening direction can be provided on the operation part 312. The direction indicator 314 can be expressed in the form of text, arrows or other methods.

[0053] In other embodiments, the locking assembly 300 includes a locking member 310 and a locking guide rail 320. The locking guide rail 320 is arranged along the extension direction of the push-pull guide rail 210 and connected to the push-pull guide rail 210. Multiple limiting holes are spaced apart on the locking guide rail 320, and each limiting hole is spaced apart along the extension direction of the locking guide rail 320. The locking member 310 is connected to the moving member and moves along the push-pull guide rail 210 with the moving member. When the locking member 310 moves to a position corresponding to each limiting hole, it can be inserted into the limiting hole to lock the position of the moving member and the screen 500. In this embodiment, the locking member 310 can be a positioning pin, movably disposed on the moving member along the axial direction. The cooperation between the locking member 310 and the limiting holes can fix the screen 500 at positions corresponding to the multiple limiting holes, resulting in a simple structure and reliable positioning.

[0054] The screen 500 is electrically connected to the chassis assembly 100 via a cable 520. To prevent the cable 520 from being dragged and damaged during the movement of the screen 500, in some embodiments disclosed in this application, in conjunction with Figures 9 and 10, the electronic device also includes a foldable cable tray 400. The two ends of the cable tray 400 are respectively hinged to the chassis assembly 100 and the moving part, and the cable 520 is connected to the cable tray 400. As the moving part slides on the push-pull guide rail 210, one end of the cable tray 400 moves accordingly to unfold or fold. The cable 520 fixed on the cable tray 400 moves together with the cable tray 400 to fold or unfold, thereby preventing the cable 520 from being dragged and damaged or tangled on the chassis cover, which would affect the use of the device.

[0055] In some embodiments, referring to FIG10, the cable tray 400 includes a plurality of fixing rods 410, which are connected in series by hinges and can be telescopically folded. The cable 520 is connected to each fixing rod 410 in sequence and is arranged along the extension direction of each fixing rod 410. The extension length of each fixing rod 410 may be the same or different, which is not limited in this embodiment. Specifically, after the first end of the cable 520 is connected to the screen 500, it is fixed to the cable tray 400. Then, the second end of the cable 520 passes through the cable hole reserved on the chassis assembly 100 and enters the interior of the chassis assembly 100 to electrically connect with the electronic device.

[0056] Specifically, hinge seats 420 are provided at both ends of the cable tray 400 to facilitate hinged connection between the cable tray 400 and the chassis assembly 100 and the moving parts. In this application, the end of the cable tray 400 refers to the end of the two fixed rods 410 located at the end of the cable tray 400 that are not hinged to the adjacent fixed rod 410 along the series direction of the various fixed rods 410 of the cable tray 400. The hinge angle range between two adjacent fixed rods 410 can be set according to the actual situation.

[0057] To protect the cable 520, a cable tray can be provided on the cable tray 400. The cable 520 is placed in the cable tray to prevent wear and tear on the chassis assembly 100 during the pulling and unpulling process. The cable 520 can be secured to the cable tray 400 by means of cable ties, clips, or other methods for easy disassembly.

[0058] In some embodiments disclosed in this application, two push-pull guide rails 210 are arranged in parallel and spaced apart. The moving parts include sliders 220, screen adapter blocks 221, and screen connecting shafts 222. There are two sliders 220, each slidably mounted on one of the two push-pull guide rails 210. There are two screen adapter blocks 221, each connected to one of the two sliders 220. The screen connecting shaft 222 is connected between the two screen adapter blocks 221 and is arranged perpendicular to the push-pull guide rails 210. The screen 500 is connected to the screen connecting shaft 222. In this embodiment, the screen 500 is supported by two push-pull guide rails 210, which can distribute the load and has stronger anti-overturning ability and stability. In other embodiments, there can be only one push-pull guide rail 210, with the middle position of the screen 500 facing the push-pull guide rail 210 to ensure stable sliding on the push-pull guide rail 210. This application does not limit the specific structure of the slider 220 and the push-pull guide rail 210, as long as they can meet the requirement that the slider 220 slides along the push-pull guide rail 210. Figure 4 shows a technical solution for locking the locking member 310 with the slider 220 through a threaded engagement. The locking member 310 can also be locked with the screen adapter block 221 or the screen connecting shaft 222 through a threaded engagement, which is not limited in this application.

[0059] The screen 500 is hinged to the movable component or the aforementioned screen connecting shaft 222 via a single-line damper or other hinge component 510, so that the screen 500 can rotate and open relative to the movable component to adjust the angle to meet the user's viewing needs.

[0060] In a specific assembly process of the electronic device disclosed in this application, the screen adapter block 221 and the slider 220 are assembled and fixed by screws or other connectors. Then, the push-pull guide rail 210 and the locking guide rail 320 are assembled and fixed. Then, the push-pull guide rail 210 and the locking guide rail 320 are fixed to the cover of the chassis assembly 100, and the two push-pull guide rails 210 are symmetrically installed relative to the chassis assembly 100. The locking member 310 is screwed into the clearance groove 321 of the locking guide rail 320 to make it threadedly connected to the slider 220. Then, the locking baffle 330 is installed on the locking guide rail 320. After the screen connecting shaft 222 is assembled with the screen 500 by a slotted damper, the screen connecting shaft 222 and the screen adapter block 221 are screwed together. The screen 500 is usually electrically connected to the chassis assembly 100 by a cable 520. During maintenance, the cable 520 and the screen 500 can be disassembled separately without affecting the use of the chassis assembly 100. The disassembly and assembly are convenient and easy to maintain.

[0061] The terms "first" and "second," etc., used in the specification and claims of this application are used to distinguish different objects, not to describe a specific order, and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units may include steps or units not listed, but rather steps or units not listed. Additionally, in the description of embodiments in this application, "a plurality of" means two or more.

[0062] The above description of the disclosed embodiments enables those skilled in the art to make or use this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Specific technical means in some embodiments may be incorporated, in whole or in part, into another embodiment unless explicitly excluded by another embodiment. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. An electronic device, characterized in that, include: Chassis assembly (100); push-pull assembly (200), the push-pull assembly (200) includes a push-pull guide rail (210) and a moving part, the push-pull guide rail (210) is disposed on the chassis assembly (100), and the moving part is slidably disposed on the push-pull guide rail (210); screen (500), the screen (500) is disposed on the moving part, and the screen (500) is electrically connected to the chassis assembly (100) via a cable (520).

2. The electronic device as claimed in claim 1, characterized in that, It also includes a locking assembly (300), which includes: a locking guide rail (320) with a clearance groove (321), and the locking guide rail (320) and the clearance groove (321) are both arranged along the extension direction of the push-pull guide rail (210); a locking member (310), which includes a rod (311), a limiting part (313) and an operating part (312), the first end of the rod (311) passes through the clearance groove (321) and is threadedly connected to the moving part, the operating part (312) is connected to the second end of the rod (311), and the limiting part (313) is disposed on the rod (311) and is used to abut against the locking guide rail (320) to limit the sliding of the moving part on the push-pull guide rail (210).

3. The electronic device as described in claim 2, characterized in that, The locking assembly (300) further includes a locking baffle (330), which is disposed on the locking guide rail (320) and forms a locking groove (331) with the locking guide rail (320). The locking groove (331) is arranged along the extension direction of the push-pull guide rail (210). The operating part (312) is disposed outside the locking groove (331). The locking baffle (330) limits the limiting part (313) within the locking groove (331).

4. The electronic device as claimed in claim 2, characterized in that, The limiting part (313) is provided with anti-slip texture on its outer wall that abuts against the locking guide rail (320); and / or, the locking guide rail (320) is provided with anti-slip texture on its outer wall that abuts against the limiting part (313).

5. The electronic device as claimed in claim 2, characterized in that, The limiting part (313) is a locking nut that is threadedly connected to the rod body (311); and / or, the operating part (312) is provided with a directional indicator (314) for indicating the locking direction and / or loosening direction of the locking member (310).

6. The electronic device according to any one of claims 1-5, characterized in that, It also includes a foldable cable tray (400), the two ends of which are hinged to the chassis assembly (100) and the moving part, respectively. The cable (520) is connected to the cable tray (400) and folds and unfolds together with the cable tray (400).

7. The electronic device as claimed in claim 6, characterized in that, The cable tray (400) includes a plurality of fixed rods (410) that are hinged together in sequence. The cable (520) is connected to each of the fixed rods (410) in sequence and is arranged along the extension direction of each fixed rod (410). The extension lengths of each fixed rod (410) may be the same or different.

8. The electronic device as claimed in claim 6, characterized in that, The cable tray (400) is provided with a cable tray, and the cable (520) is placed in the cable tray.

9. The electronic device according to any one of claims 1-5, characterized in that, The push-pull guide rails (210) are two parallel and spaced apart. The moving parts include: two sliders (220), which are slidably disposed on the two push-pull guide rails (210); two screen adapter blocks (221), which are connected to the two sliders (220); and a screen connecting shaft (222), which is connected between the two screen adapter blocks (221), and the screen (500) is connected to the screen connecting shaft (222).

10. The electronic device according to any one of claims 1-5, characterized in that, The screen (500) is hinged to the movable part via a hinge (510).