System Design of LCD Splicing Screen

2022-09-26

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The LCD splicing screen can be managed independently as a single monitor or used in a spliced design to create a super large screen. Depending on different requirements, it can achieve variable large screen functions: single screen split display, single screen display, arbitrary combination display, full-screen LCD splicing, dual-screen LCD splicing, vertical display, image frame compensation or overlay, support for digital signal roaming, zoom, landscape display, picture-in-picture, 3D playback, settings and operations for various display schemes, and real-time processing of full HD signals.

   The LCD splicing screen can be managed independently as a single monitor or used in a spliced design to form a super large screen. According to different requirements, it can achieve variable large screen functions: single screen split display, single screen display, arbitrary combination display, full-screen LCD splicing, dual-screen LCD splicing, vertical display, image frame compensation or overlay, support for digital signal roaming, zoom, landscape display, picture-in-picture, 3D playback, various display scheme settings and operations, and real-time full HD signal processing.


   The DID LCD of the LCD splicing screen can be arbitrarily combined: it can use large screen splicing and small screen splicing; it can display as a single screen, full screen, or spliced. Based on the customer's application requirements and system scale for the LCD splicing screen system, and according to the actual application environment, the appropriate splicing method and optimal products are selected to design personalized solutions to meet customer needs.

 LCD Splicing Screen

   Feasibility of the LCD splicing screen system: the LCD splicing wall can be spliced with small or large screens, with arbitrary combinations (M×N). In addition, BSV LCD splicing technology can achieve block-style and spherical installations. We will select suitable products and splicing methods based on different customers' system development scale, size, and market demand, and propose specific implementation management plans to meet the application research needs of information systems.


   Through the RS-232 communication interface, the image controller controls arbitrary combination display mode switching and signal switching. Tailored systems are created to meet different development needs of enterprise customers, providing various implementation plans and technical support. The system's practicality allows users to select different video processing systems to input VGA, composite VIDEO, S-VIDEO, YPBPR/YCBCR, DVI/HDMI signals, and IP network signals according to input signal requirements.


   System reliability: the splicing units of the DID LCD splicing wall use Korea Samsung industrial-grade DID LCD dedicated screens. The splicing device can operate continuously 24 hours a day, 365 days a year. This utility model features high reliability and stability, ensuring stable and reliable system operation. The LCD splicing screen wall has high reliability due to its low power consumption, light weight, long lifespan, and no radiation.


   Economic system: considering the system's economy, cost-effectiveness should be taken into account. Only under the premise of high performance and high quality does the system's economy become meaningful. Against the backdrop of the global economic crisis, enterprises are cutting expenses, but the demand for LCD splicing screen display products continues to grow. Therefore, while meeting the basic information needs of enterprise customers, more cost-effective products will be favored by customers.


   System openness and scalability: in the digital network ultra-narrow bezel intelligent LCD splicing system, the LCD splicing screen follows the principle of system openness. It can directly access VGA, RGB, and video signals, as well as network and broadband voice signals. Various signals can be dynamically switched and displayed at any time, providing an interactive platform for users and supporting secondary development. The system should be able to add new devices and functions, making hardware expansion very simple. At the same time, only software expansion and upgrades are needed to meet requirements without modifying the source program. Partial hardware and software upgrades allow enterprises to more conveniently "keep up with the times."