2013Advanced materials researchOpen access

Design of TFT LCD Driver with Large-Capacity Memory Based on the MAX-II

Guo Juan Zhou, Dian Ji Lv, Shao Nian Ni

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Abstract

This paper introduces the realization method based on CPLD TFT - LCD digital display controller, using CPLD implement timing generation of TFT-LCD display, image processing, and dual memory read and write rotation control function. Methods of the design can be based on the actual function of mission requirements, the interface functions of the dedicated display control chip cutting, custom display control functions, enhance system reliability and design flexibility. It can be applied to a liquid crystal display control unit, to solve practical engineering problems.

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What this paper is about

This paper introduces the realization method based on CPLD TFT - LCD digital display controller, using CPLD implement timing generation of TFT-LCD display, image processing, and dual memory read and write rotation control function. Methods of the design can be based on the actual function of mission requirements, the interface functions of the dedicated display control chip cutting, custom display control functions, enhance system reliability and design flexibility. It can be applied to a liquid crystal display control unit, to solve practical engineering problems.

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Available abstract

This paper introduces the realization method based on CPLD TFT - LCD digital display controller, using CPLD implement timing generation of TFT-LCD display, image processing, and dual memory read and write rotation control function. Methods of the design can be based on the actual function of mission requirements, the interface functions of the dedicated display control chip cutting, custom display control functions, enhance system reliability and design flexibility. It can be applied to a liquid crystal display control unit, to solve practical engineering problems.

Key concepts: Complex programmable logic device, Liquid-crystal display, Computer hardware, Realization (probability), Interface (matter), Flexibility (engineering), Computer science, Embedded system

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