Display screen structure
By installing a hanger and power board on the display screen, the power supply between the steel wire rope and the hanger is coordinated, the circuit connection is optimized, the problem of messy power cords during the hanging installation of the display screen is solved, and the aesthetics of the installation are improved.
Patent Information
- Application Number
- CN202520536723.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-03-25
AI Technical Summary
When installing existing display screens, both steel wire ropes for structural support and power cords are required, resulting in messy wiring and an unsightly overall installation.
Design a display screen structure by installing at least two hangers on the display screen body, with steel wire ropes connected to the hangers through power supply, and an internal power board and hub, so that current flows into the power board along the steel wire ropes, hangers, and electronic wires, optimizing the internal circuit connection, and enabling power supply through the steel wire ropes when suspended.
It improves the aesthetics of the hanging installation of the display screen, and the steel wire rope can both fix it and provide power, solving the problem of messy power cords.
Smart Images

Figure CN223941490U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of display screen technology, and in particular to a display screen structure. Background Technology
[0002] Current technological status:
[0003] Currently, most display screens on the market use 12 / 24VDC or 220VAC power cords (DC for direct current, AC for alternating current). The power cord is directly plugged into the product's power interface and only serves to provide power. Customers primarily use three installation methods: wall-mounted, suspended, and tabletop.
[0004] Technical problems to be solved:
[0005] Because most display screens on the market require a power cord to connect to the product, and the power cord only serves to supply power, display screens need both structural support (for suspension, wall mounting, or tabletop installation) and a power cord for supplying power. This can easily result in messy wiring and an unsightly overall installation. Utility Model Content
[0006] The purpose of this utility model is to provide a display screen structure to solve the technical problem in the prior art that when display screen products are suspended and installed, they need both steel wire ropes for structural support (suspension installation) and power cords for power supply. The power cord routing is easy to be messy and the overall installation effect is not aesthetically pleasing.
[0007] To achieve the above objectives, the present invention provides a display screen structure, including a display screen body, on which at least two hangers are mounted. At least two steel wire ropes are provided on the exterior of the display screen body, and each of the two steel wire ropes is connected to one of the hangers. The steel wire ropes and hangers are electrically connected. A power board is installed inside the display screen body. The positive terminal of the power board is connected to one of the hangers via an electronic wire, and the negative terminal of the power board is connected to the other hanger via an electronic wire, so that current can flow into the power board along the steel wire ropes, the hangers, and the electronic wires.
[0008] Furthermore, a DC connector is also installed on the display screen body, and the positive terminal of the power board is connected to the positive terminal of the DC connector via an electronic wire, and the negative terminal of the power board is connected to the negative terminal of the DC connector via an electronic wire, so that current can flow into the power board along the DC connector and the electronic wire.
[0009] Furthermore, two hubs are provided on one side of the power board. The three terminals of one hub are connected to the positive terminal of the power board, the positive terminal of the DC socket, and one of the hangers via electronic wires, respectively. The three terminals of the other hub are connected to the negative terminal of the power board, the negative terminal of the DC socket, and another hanger via electronic wires, so that current can flow into the power board along the hubs and the electronic wires.
[0010] Furthermore, two of the aforementioned hangers are installed on any one or more of the top edge, bottom edge, left edge, and right edge of the display screen body.
[0011] Furthermore, the display screen body is also equipped with a first electronic line and a second electronic line in a closed loop. The first electronic line and the second electronic line are distributed along the edge direction of the display screen body. The first electronic line is connected to one of the hanging devices at the multi-end edge by an electronic line, and the second electronic line is connected to the other hanging device at the multi-end edge by an electronic line. The first electronic line and the second electronic line are respectively connected to the two hubs by electronic lines.
[0012] Furthermore, the DC socket is installed on the top edge of the display screen body, and the power board is a power board with a 24V voltage input power.
[0013] Furthermore, the two sides of the hanger are respectively provided with hanging fixing screw holes, and the hanging fixing screw holes are fixed to the display screen body by screws.
[0014] Furthermore, the end of the suspension away from the display screen body is provided with a wire rope ball head inlet and a wire rope passage, and the end of the suspension close to the display screen body is provided with a cavity. A ball head fixing groove is provided between the wire rope passage and the cavity. One or both ends of the wire rope are provided with a ball head, and the ball head can pass through the wire rope ball head inlet and the cavity in sequence to enter the ball head fixing groove. The wire rope can pass through the wire rope passage.
[0015] Furthermore, the wire rope ball head inlet is a threaded hole, and the wire rope ball head inlet can be threadedly fixed to the desktop support.
[0016] Furthermore, the hanger is provided with a rearward protruding screw post, which can be fixed to the wall-mounted aluminum tube bracket by screws.
[0017] In summary, the technical solution of this utility model has the following beneficial effects: The structure of this utility model is reasonable. (1) At least two hangers are installed on the display screen body, and at least two steel wire ropes are provided on the outside of the display screen body. The two steel wire ropes are connected to the two hangers respectively, and the steel wire ropes and hangers can be electrically connected. Thus, when the display screen is suspended, the steel wire ropes are inserted into the hangers for structural fixation and power supply. (2) A power board is installed inside the display screen body. The positive terminal of the power board is connected to one of the hangers through an electronic wire, and the negative terminal of the power board is connected to the other hanger through an electronic wire, so that the current can flow into the power board along the steel wire rope, the hanger, and the electronic wire. Thus, by optimizing the internal circuit connection and structural design, the display screen can be powered by the power board in sequence through the steel wire rope, the hanger, and the electronic wire when suspended. In this way, the display screen can be suspended and powered by the steel wire rope, which greatly improves the aesthetics of the display screen product installation. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the rear view structure of this utility model;
[0019] Figure 2 This is a three-dimensional structural diagram of the hanging and wire rope combination of this utility model;
[0020] Figure 3 This is a cross-sectional structural diagram of the hanging and wire rope combination of this utility model;
[0021] Figure 4 This is a rear-view three-dimensional structural schematic diagram of the present invention;
[0022] Figure 5 This is a front-view three-dimensional structural diagram of the present invention;
[0023] Explanation of reference numerals in the attached drawings: display screen body (1), hanging (2), steel wire rope (3), power board (4), DC female connector (5), hub (6), first electronic line (7), second electronic line (8), ball head (9), electronic line (10); hanging fixing screw hole (201), steel wire rope ball head inlet (202), steel wire rope passage (203), cavity (204), screw post (205), ball head fixing groove (206). Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model, but this does not constitute a limitation on the scope of protection of the present utility model.
[0025] In this utility model, for clearer description, the following explanation is provided: The observer faces the attached... Figure 1When observing, the observer's left side is designated as left, the observer's right side as right, the area in front of the observer as front, the area behind the observer as back, the area above the observer as top, and the area below the observer as bottom. It should be noted that the terms "front end," "rear end," "left side," "right side," "middle," "above," and "below" used in this document indicate the orientation or positional relationship based on the accompanying drawings. These are merely for the purpose of clearly describing the present invention and do not indicate or imply that the structure or component referred to must have a specific orientation or be constructed in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first," "second," "third," and "fourth" are used only for the purpose of clarity or simplification of description and should not be construed as indicating or implying relative importance or quantity.
[0026] See Figures 1 to 5 This embodiment provides a display screen structure, including a display screen body 1, at least two hangers 2 are installed on the display screen body 1, and at least two steel wire ropes 3 are provided on the outside of the display screen body 1. The two steel wire ropes 3 are respectively connected to the two hangers 2, and the steel wire ropes 3 and the hangers 2 can be electrically connected. A power board 4 is installed inside the display screen body 1. The positive terminal of the power board 4 is connected to one of the hangers 2 through an electronic wire 10, and the negative terminal of the power board 4 is connected to the other hanger 2 through an electronic wire 10, so that current can flow into the power board 4 along the steel wire ropes 3, the hangers 2, and the electronic wire 10. Functions: (1) The display screen body is equipped with at least two hangers, and the outside of the display screen body is equipped with at least two steel wire ropes. The two steel wire ropes are connected to the two hangers respectively, and the steel wire ropes and hangers can be electrically connected; thus, when the display screen is suspended, the steel wire ropes are inserted into the hangers for structural fixation and power supply; (2) The display screen body is equipped with a power board. The positive terminal of the power board is connected to one of the hangers through an electronic wire, and the negative terminal of the power board is connected to the other hanger through an electronic wire, so that the current can flow into the power board along the steel wire rope, the hanger, and the electronic wire; thus, by optimizing the internal circuit connection and structural design, the display screen can be powered by the power board in sequence through the steel wire rope, the hanger, and the electronic wire when suspended, so that the display screen can be suspended and powered by the steel wire rope, which greatly improves the aesthetics of the display screen product installation.
[0027] Specifically, a DC connector 5 is also installed on the display body 1. The positive terminal of the power board 4 is connected to the positive terminal of the DC connector 5 via an electronic wire 10, and the negative terminal of the power board 4 is also connected to the negative terminal of the DC connector 5 via an electronic wire 10, so that current can flow into the power board 4 along the DC connector 5 and the electronic wire 10. Function: This design enables power supply through both hanging and DC connector methods, allowing for flexible switching between these two power supply modes.
[0028] Specifically, two hubs 6 are provided on one side of the power board 4. The three terminals of one hub 6 are connected to the positive terminal of the power board 4, the positive terminal of the DC female connector 5, and one of the hangers 2 via electronic wires 10. The three terminals of the other hub 6 are connected to the negative terminal of the power board 4, the negative terminal of the DC female connector 5, and another hanger 2 via electronic wires 10, so that current can flow into the power board 4 along the hubs 6 and electronic wires 10. Function: The arrangement of the two hubs 6 facilitates the coordination of the electrical connections between the hangers, the DC female connector, and the power board 4.
[0029] Specifically, two hangers 2 are installed on any one or more of the top, bottom, left, and right edges of the display screen body 1. Function: Positioning them at the edges allows for better power supply and fixation. Preferably, the display screen body has a total of 8 hangers, installed in the top, bottom, left, and right directions, with 2 hangers in each direction. Four hangers are positive and four are negative, facilitating power connection and connection between multiple display screen products via steel cables and hangers.
[0030] Specifically, the display screen body 1 is also equipped with a closed-loop first electronic line 7 and a second electronic line 8, which are distributed along the edge of the display screen body 1. The first electronic line 7 is connected to one of the hangers 2 at the multi-end edge via an electronic line 10, and the second electronic line 8 is connected to the other hanger 2 at the multi-end edge via an electronic line 10. The first electronic line 7 and the second electronic line 8 are respectively connected to two hubs 6 via electronic lines 10. Function: The arrangement of the first electronic line 7 and the second electronic line 8 enables electrical connection between multiple hangers and two hubs 6. Preferably, the four positive hangers and the positive terminal of the DC socket, the power board 4 are connected together via electronic lines and hubs, and the four negative hangers and the negative terminal of the DC socket, the power board 4 are also connected together via electronic lines and hubs.
[0031] Specifically, the DC female connector 5 is installed at the top edge of the display screen body 1, and the power board 4 is a 24V input power board. Its function is to supply power to the display screen's power board via a hub, thus completing the product's power supply.
[0032] Specifically, the hanger 2 has hanging screw holes 201 on both sides, and the hanging screw holes 201 are fixed to the display screen body 1 by screws. Function: The hanger has two screw holes (i.e., hanging screw holes 201) for fixing, and the hanger can be fixed to the display screen product (i.e., display screen body 1) through these two screw holes.
[0033] In Example 1, the end of the hanger 2 furthest from the display screen body 1 is provided with a wire rope ball head inlet 202 and a wire rope passage 203, while the end of the hanger 2 closest to the display screen body 1 is provided with a cavity 204. A ball head fixing groove 206 is provided between the wire rope passage 203 and the cavity 204. One or both ends of the wire rope 3 are provided with ball heads 9, which can sequentially pass through the wire rope ball head inlet 202 and the cavity 204 to enter the ball head fixing groove 206. The wire rope 3 can pass through the wire rope passage 203. Function: During suspension installation, the ball head 9 sequentially passes through the wire rope ball head inlet 202 and the cavity 204 to enter the ball head fixing groove 206 (i.e., the ball head fixing position), and the wire rope 3 passes through the wire rope passage 203. In this way, the display screen can be suspended and powered by the wire rope.
[0034] Example 2: The wire rope ball inlet 202 is a threaded hole, which can be threadedly fixed to the desktop bracket. Function: During desktop installation, the wire rope ball inlet 202 can be fixed to the desktop bracket and the bottom of the product through the threaded hole, serving both a fixing and power supply function.
[0035] In Example 3, the hanging device 2 is provided with a rearward-protruding screw post 205, which can be fixed to the wall-mounted aluminum tube bracket with screws. Function: The hanging device has a threaded post facing rearward after installation. The threaded hole of this threaded post can be fixed to the wall-mounted aluminum tube bracket with screws, thus fixing and supplying power to the display screen through the wall-mounted aluminum tube bracket. During wall-mounting installation, the wall-mounted aluminum tube bracket is connected to the threaded post, serving both fixing and power supply functions.
[0036] In summary, this utility model, through optimized internal circuit connections and structural design, can simultaneously employ both hanging and DC power supply. Furthermore, hanging power supply can be further subdivided into two types: power supply via steel wire rope suspension and power supply via wall-mounted aluminum tube bracket. Therefore, it can achieve power supply via fixing components (i.e., hanging) when installed in hanging, wall-mounted, or desktop configurations, greatly improving the aesthetics of the display screen installation.
[0037] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.
Claims
1. A display screen structure, comprising a display screen body (1), characterized in that: At least two hangers (2) are installed on the display screen body (1). At least two steel wire ropes (3) are provided on the outside of the display screen body (1). The two steel wire ropes (3) are connected to the two hangers (2) respectively. The steel wire ropes (3) and the hangers (2) can be electrically connected. A power board (4) is installed inside the display screen body (1). The positive terminal of the power board (4) is connected to one of the hangers (2) through an electronic wire (10). The negative terminal of the power board (4) is connected to the other hanger (2) through an electronic wire (10) so that the current can flow into the power board (4) along the steel wire rope (3), the hanger (2), and the electronic wire (10).
2. The display screen structure according to claim 1, characterized in that: A DC connector (5) is also installed on the display screen body (1). The positive terminal of the power board (4) is connected to the positive terminal of the DC connector (5) through an electronic wire (10). The negative terminal of the power board (4) is also connected to the negative terminal of the DC connector (5) through an electronic wire (10), so that current can flow into the power board (4) along the DC connector (5) and the electronic wire (10).
3. The display screen structure according to claim 2, characterized in that: Two hubs (6) are provided on one side of the power board (4). The three terminals of one hub (6) are respectively connected to the positive terminal of the power board (4), the positive terminal of the DC socket (5), and one of the hangers (2) through electronic wires (10). The three terminals of the other hub (6) are respectively connected to the negative terminal of the power board (4), the negative terminal of the DC socket (5), and the other hanger (2) through electronic wires (10), so that current can flow into the power board (4) along the hub (6) and the electronic wires (10).
4. The display screen structure according to claim 3, characterized in that: Two hanging devices (2) are installed on any one or more of the top edge, bottom edge, left edge, and right edge of the display screen body (1).
5. The display screen structure according to claim 4, characterized in that: The display body (1) is also equipped with a first electronic line (7) and a second electronic line (8) in a closed loop. The first electronic line (7) and the second electronic line (8) are distributed along the edge direction of the display body (1). The first electronic line (7) is connected to one of the hanging devices (2) at the multi-end edge through an electronic line (10). The second electronic line (8) is connected to the other hanging device (2) at the multi-end edge through an electronic line (10). The first electronic line (7) and the second electronic line (8) are respectively connected to the two hubs (6) through electronic lines (10).
6. The display screen structure according to claim 5, characterized in that: The DC connector (5) is installed on the top edge of the display screen body (1), and the power board (4) is a power board with a 24V voltage input power.
7. A display screen structure according to any one of claims 1 to 6, characterized in that: The hanging device (2) is provided with hanging fixing screw holes (201) on both sides, and the hanging fixing screw holes (201) are fixed to the display screen body (1) by screws.
8. A display screen structure according to any one of claims 1 to 6, characterized in that: The end of the hanging device (2) away from the display screen body (1) is provided with a wire rope ball head inlet (202) and a wire rope passage (203). The end of the hanging device (2) close to the display screen body (1) is provided with a cavity (204). A ball head fixing groove (206) is provided between the wire rope passage (203) and the cavity (204). One or both ends of the wire rope (3) are provided with a ball head (9). The ball head (9) can pass through the wire rope ball head inlet (202) and the cavity (204) in sequence and enter the ball head fixing groove (206). The wire rope (3) can pass through the wire rope passage (203).
9. The display screen structure according to claim 8, characterized in that: The wire rope ball head inlet (202) is a threaded hole, and the wire rope ball head inlet (202) can be threadedly fixed to the desktop bracket.
10. A display screen structure according to any one of claims 1 to 6, characterized in that: The hanging device (2) is provided with a rearward protruding screw post (205), which can be fixed to the wall-mounted aluminum tube bracket by screws.