Chip Level Techniques for EMI Reduction in LCD Panels

Min-woo Kim, Do-wan Kim, Bonhyuck Koo, Yong-bum Kim, O. Choi, N. Kim
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引用次数: 10

Abstract

This paper presents chip level techniques to improve electro-magnetic interference (EMI) characteristics of LCD-TV panels. A timing controller (TCON) uses over-driving algorithms to improve the response time of liquid crystals (LC). Since this algorithm needs previous frame data, external memory such as double data rate synchronous DRAM (DDR SDRAM) is widely used as a frame buffer. A TTL interface between the TCON and memory is used for read and write operations, generating EMI noise. For reduction of this EMI, three methods are described. The first approach is to reduce the driving current of data I/O buffers. The second is to adopt spread spectrum clock generation (SSCG), and the third is to apply a proposed algorithm which minimizes data transitions. EMI measurement of a 32" LCD-TV panel shows that these approaches are very effective for reduction of EMI, achieving 20dB reduction at 175MHz.
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降低LCD面板电磁干扰的芯片级技术
提出了一种改善液晶电视面板电磁干扰特性的芯片级技术。时序控制器(TCON)采用超驱动算法来提高液晶(LC)的响应时间。由于该算法需要前一帧数据,因此广泛使用双数据速率同步DRAM (DDR SDRAM)等外部存储器作为帧缓冲器。TCON和存储器之间的TTL接口用于读写操作,产生EMI噪声。为了减少这种电磁干扰,描述了三种方法。第一种方法是减少数据I/O缓冲区的驱动电流。第二种是采用扩频时钟生成(SSCG),第三种是采用最小化数据转换的算法。对32英寸液晶电视面板的电磁干扰测量表明,这些方法对降低电磁干扰非常有效,在175MHz时实现了20dB的降低。
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