直显屏体结构及显示装置
By adopting a double-layer wiring architecture and grid structure in the COG direct-display splicing screen, the problem of local temperature rise caused by the low light efficiency of MLED is solved, the display effect and product performance are improved, efficient heat dissipation and electromagnetic shielding are achieved, the service life is extended and energy consumption is reduced.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HKC CORP LTD
- Filing Date
- 2025-07-30
- Publication Date
- 2026-07-17
Smart Images

Figure CN224521518U_ABST
Abstract
Claims
1. A direct view screen structure, characterized by, include: The display panel includes a first side and a second side opposite to the first side, the second side having pixel units; The input power connection cable has multiple cables, each of which is arranged in rows and / or columns on the first side and extends to the second side; The signal input connection line has multiple lines, which are respectively connected between the first side and the second side. On the first side, there is a power input point between two adjacent signal input connection lines, and each power input point is located on the corresponding input power connection line.
2. The direct view screen structure of claim 1, wherein, The input power connection line includes multiple horizontal power connection lines. Each horizontal power connection line is arranged at intervals along the longitudinal direction on the first side, and both ends of each horizontal power connection line extend along the outer contour of the display panel to the outer periphery of the pixel unit on the second side.
3. The direct view screen structure of claim 2, wherein, The input power connection line includes multiple vertical power connection lines. Each vertical power connection line is arranged at intervals in the horizontal direction on the first side, and both ends of each vertical power connection line extend along the outer contour of the display panel to the outer periphery of the pixel unit on the second side.
4. The direct view screen structure of claim 3, wherein, Multiple horizontal power connection lines and multiple vertical power connection lines are arranged in a grid structure on the first side, so that the two ends of each horizontal power connection line and each vertical power connection line are arranged around the pixel unit on the second side.
5. The direct view screen structure of claim 1, wherein, Along the horizontal or vertical direction, each power input point is located on an adjacent power input connection line, and the starting end of each signal input connection line is located within the mesh formed by two adjacent power input points and is spaced apart from each power input point.
6. The direct view screen structure of claim 5, wherein, The termination end of each of the signal input connection lines is located on the outer periphery of the pixel unit on the second side, and the termination ends of each of the signal input connection lines are spaced apart between two adjacent input power connection lines.
7. The direct view screen structure of claim 6, wherein, Each of the signal input connection lines is constructed as the shortest line segment extending from the starting end along the outline of the display panel to the ending end.
8. The direct view screen structure of claim 1, wherein, Each of the signal input connection lines has a power input point on each of its two sides.
9. The direct view screen structure of claim 1, wherein, The first side of the display panel has an inner chamfered structure around its perimeter, and the second side of the display panel has an inner chamfered structure around its perimeter.
10. A display device, characterized by comprising: Includes the direct display screen structure as described in any one of claims 1-9.