Bracket Transmission Adjustment for Tiled Display Panel Alignment
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Solution Overview
Problem
Existing tiled display devices face challenges in efficiently adjusting segment differences between sub-display panel assemblies, leading to poor assembly efficiency and inaccurate adjustments, which affect the overall display quality.
Innovation Solution
A bracket structure with a transmission adjustment mechanism, comprising a bracket body with a supporting portion, assembly portion, and connecting portion, and at least one transmission adjustment structure that includes an adjustment member, a transmission member, and a response member, allowing for external adjustment to adjust the position of the support surface without disassembling the sub-display panel assembly.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If traditional adjustment methods are used to adjust segment differences between sub-display panel assemblies, then the adjustment can be made, but the assembly must be disassembled first, leading to low assembly efficiency
Solution Approach 1:
The bracket structure is divided into multiple independent adjustment mechanisms, each responsible for adjusting specific sub-display panel assemblies. This segmentation allows individual adjustment without affecting other assemblies, enabling adjustment operations to be performed independently and efficiently without requiring complete disassembly of the entire display system.
Solution Approach 2:
An adjustable connecting portion is introduced as an intermediary element between the bracket body and the support portion. This connecting portion includes adjustment members that can be operated externally to modify the position and orientation of sub-display panel assemblies, serving as a mediator that transmits adjustment forces without requiring disassembly of the main assembly structure.
2Measurement precision
If traditional adjustment methods are used, then adjustment can be made, but the adjustment precision is insufficient, affecting display quality
Solution Approach 1:
The connecting portion is designed with dynamic adjustment capabilities, allowing it to change its configuration in response to external adjustment forces. The adjustment members can be flexibly positioned and locked at precise locations, enabling fine-tuned control of segment differences between sub-display panels without requiring overly complex rigid structures.
Solution Approach 2:
The bracket structure incorporates multiple adjustable parameters including position, orientation, and spacing of sub-display panel assemblies. By providing independent adjustment of these parameters through the adjustment members, the system achieves high precision in segment difference adjustment while maintaining a relatively simple overall structure that can be configured for different display requirements.
3Manufacturing precision
If sub-display panel assemblies are disassembled for adjustment, then segment differences can be corrected, but time is lost and assembly efficiency decreases
Solution Approach 1:
The bracket structure is pre-configured with adjustment members and connecting portions that are ready for adjustment operations. The adjustment mechanisms are designed to be accessible and operable without disassembly, allowing alignment corrections to be performed immediately when needed, eliminating the time loss associated with repeated disassembly and reassembly operations.
Solution Approach 2:
The adjustment members are designed to be self-contained and self-operating, allowing technicians to perform alignment adjustments directly on the bracket structure without requiring disassembly of sub-display panel assemblies. The structure provides built-in adjustment capabilities that serve the alignment needs independently, eliminating the need for time-consuming disassembly procedures.
Data Source
AI summary
The present disclosure provides a bracket structure. The bracket structure includes a bracket body and at least one transmission adjustment structure, wherein the bracket body includes a supporting portion, an assembly portion and a connecting portion, wherein the supporting portion and the assembly portion are disposed opposite in a first direction, the connecting portion is located between the supporting portion and the assembly portion and the connecting portion has a first side surface; the transmission adjustment structure is located between the supporting portion and the assembly portion, and includes an adjustment member, a transmission member connected with the adjustment member and a response member connected with the transmission member; the adjustment member is located between the supporting portion and the assembly portion and close to the first side surface.


