Circuit Board With Multiple Output Binding Regions
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Solution Overview
Problem
The development of display products with different resolutions requires multiple circuit board designs due to varying numbers of driving chips, leading to increased development time and production costs.
Innovation Solution
A circuit board design featuring multiple output binding regions with varying numbers of binding portions, allowing for flexible binding of driving chips based on resolution, with a method to determine and bind the appropriate region for each display product, reducing the need for multiple board designs.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If multiple circuit board designs are created for different resolutions, then compatibility with different driving chip configurations is improved, but device complexity and development time increase
Solution Approach 1:
The circuit board is designed with multiple output binding regions that can accommodate different numbers of driving chips (first, second, and third configurations). A single circuit board design serves multiple functions by supporting different resolution requirements through selective binding of driving chips to appropriate output binding regions, eliminating the need for separate circuit board designs for each resolution.
Solution Approach 2:
The circuit board is segmented into multiple output binding regions (first output binding region, second output binding region, third output binding region), each capable of independently binding driving chips. This segmentation allows flexible configuration where different combinations of binding regions can be activated based on the required resolution, enabling one board to replace multiple specialized boards.
2Adaptability or versatility
If multiple circuit board designs are created for different resolutions, then compatibility with different driving chip configurations is improved, but development time increases
Solution Approach 1:
The circuit board is designed with multiple output binding regions that can accommodate different numbers of driving chips (first, second, and third configurations). A single circuit board design serves multiple functions by supporting different resolution requirements through selective binding of driving chips to appropriate output binding regions, eliminating the need for separate circuit board designs for each resolution.
3Adaptability or versatility
If multiple circuit board designs are created for different resolutions, then compatibility with different driving chip configurations is improved, but manufacturing cost increases
Solution Approach 1:
The circuit board is designed with multiple output binding regions that can accommodate different numbers of driving chips (first, second, and third configurations). A single circuit board design serves multiple functions by supporting different resolution requirements through selective binding of driving chips to appropriate output binding regions, eliminating the need for separate circuit board designs for each resolution.
Solution Approach 2:
Multiple circuit board designs for different resolutions are merged into a single unified circuit board design. The first, second, and third output binding regions are combined on one board, allowing manufacturers to produce a single type of circuit board that can accommodate various driving chip configurations, thereby reducing manufacturing complexity and cost.
Data Source
AI summary
A circuit board includes a substrate, an input binding region and at least two output binding regions disposed on the substrate. Each of the output binding regions includes a plurality of binding portions, and the number of the binding portions included in different output binding regions is different. The substrate is configured to output a signal received by the input binding region to respective binding portions included in each of the output binding regions.
