Splicing-screen display device space optimization
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Solution Overview
Problem
Conventional splicing-screen display devices face insufficient internal space due to the integration of numerous components, leading to space constraints and increased manufacturing costs.
Innovation Solution
A splicing-screen display device comprising multiple basic and supplementary display modules, a processing module, a distribution module, and a driving module, which processes and distributes images to optimize display operations, eliminating the need for a transmitting module and reducing the number of components required, thereby saving space and manufacturing costs.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If multiple functional elements are integrated inside the splicing-screen display device, then the display functionality is enhanced, but the internal space becomes insufficient
Solution Approach 1:
The display device is segmented into multiple independent display modules, each capable of autonomous operation. This segmentation allows the system to achieve complex display functionality through modular composition rather than integrating all functions into a single centralized structure, thereby preserving internal space while enhancing adaptability.
Solution Approach 2:
Each display module is designed with multi-functionality, incorporating display, processing, and control capabilities within individual modules. This universal design enables the same module structure to serve multiple purposes, reducing the need for separate dedicated components and freeing up internal space while maintaining enhanced display functionality.
2Adaptability or versatility
If multiple functional elements are integrated inside the splicing-screen display device, then the display functionality is enhanced, but the manufacturing cost increases
Solution Approach 1:
The system is divided into standardized modular units that can be manufactured independently using the same production processes. This segmentation enables economies of scale in manufacturing, as each module type can be produced in large quantities through standardized assembly lines, reducing per-unit costs despite the overall system complexity.
Solution Approach 2:
The modular architecture allows for parameter changes and configurations without requiring fundamental redesign of the entire system. Different numbers and arrangements of identical modules can create various display configurations, reducing development and tooling costs associated with manufacturing different functional elements.
Data Source
AI summary
The present application provides a splicing-screen display device which includes a display module, a processing module, a distribution module, and a driving module. The display module includes basic display modules and at least one supplementary display module arranged at joints between the basic display modules. The processing module is electrically connected to the display module. The distribution module is electrically connected to the processing module, and sends image signals to the basic display module and the supplementary display module. The driving module is arranged corresponding to the supplementary display module and electrically connected to the supplementary display module.


