盧志文
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PhD, National Chiao Tung University交大光電學院照明能源所所長 Research StatementRecent improvements in liquid crystal display (LCD) panels for multimedia and medical products allow higher definition and greater color depth. Achieving the higher color depths that LCD drivers can produce requires a higher resolution in digital-to-analog converters (DACs) and a larger die area of the circuit. In today’s mature LCD market means, there is a high demand for low-cost, high-performance driver integrated circuits (ICs). An LCD driving system typically comprises a timing controller, column drivers, gate drivers, and a reference source. An LCD module often includes several column-driver and gate-driver ICs. The die area of a column driver is much larger than that of a gate driver, as a column driver generally includes shift registers, input registers, data latches, level shifters, DACs, and output buffers. Among these components, DACs occupy the largest die area. Thus, to reduce the cost of column-driver ICs, the die area of DACs should be reduced.研究领域
•LCD Driver IC Design•Analog-to-Digital Converter Design•Digital-to-Analog Converter Design•Phase Lock Loop /Frequency Synthesizer Design•RF IC Design""近期论文
1. Chih-Wen Lu, Chien-Chih Shen, and Wei-Chih Chen, “An Area-Efficient Fully R-DAC Based TFT-LCD Column Driver” to appear in IEEE Transactions on Circuits and Systems I. 2. Chih-Wen Lu and Kuo Jen Hsu, “TFT-LCD Source-Driver IC with Charge-Recycling Technique” to appear in Analog Integrated Circuit and Signal Processing.3. Chih-Wen Lu and Ching-Min Hsiao “A Compact High-Speed Low-Power Rail-to-Rail Buffer Amplifier for Step-Pulse Signals” to appear in Journal of Circuits, Systems and Computers. (SCI)4. Chih-Wen Lu “A Rail-to-Rail Class-AB Amplifier with an Offset Cancellation for LCD Drivers,” IEEE Journal of Solid-State Circuits, vol. 44, pp. 525-537, Feb., 2009. (SCI, IF = 3.466, Journal Rank = 14/229)5. Chih-Wen Lu and Ching-Min Hsiao “1-V Rail-to-Rail Constant-gm CMOS Op Amp,” Electronics Letters, 2009, 45, (11), pp. 529-530. (SCI, IF = 1.14, Journal Rank = 108/229)6. Chih-Wen Lu, and Ching-Min Hsiao “0.9-V Rail-to-Rail Constant-gm CMOS Amplifier Input Stage” Electronics Letters, 2009, 45, (23), pp. 1145-1146. (SCI, IF = 1.14, Journal Rank = 108/229)7. Chih-Wen Lu and Lung-Chien Huang, “A 10-Bit LCD Column Driver with Piecewise Linear Digital to Analog Converters,” IEEE Journal of Solid-State Circuits, vol. 43, pp. 371-378, Feb., 2008. (SCI, IF = 3.466, Journal Rank = 14/229)8. Chih-Wen Lu and Kuo Jen Hsu, “A High-Speed Low-Power Rail-to-Rail Column Driver for AMLCD Application” IEEE Journal of Solid-State Circuits, vol. 39, pp. 1313-1320, Aug., 2004. (SCI, IF = 3.466, Journal Rank = 14/229)9. Chih-Wen Lu, “High-Speed Driving Scheme and Compact High-Speed Low-Power Rail-to-Rail Class-B Buffer Amplifier for LCD Applications,” IEEE Journal of Solid-State Circuits, vol. 39, pp. 1938-1947, November, 2004. (SCI, IF = 3.466, Journal Rank = 14/229)10. Chih-Wen Lu, “A Large-Swing High-Driving Low-Power Class-AB Buffer Amplifier with Low Variation of Quiescent Current,” IEICE Transactions on Electronics, Vol.E87-C, No. 10, pp. 1730-1737 October, 2004. (SCI, IF = 0.608, Journal Rank = 154/229)11. Chih-Wen Lu, “A 1.5 V Large-Driving Class-AB Buffer Amplifier with Quiescent Current Control”, IEE Electronics Letter, Vol. 40, No. 1, 8th, pp. 1-2, January 2004. (SCI, IF = 1.14, Journal Rank = 108/229)12. Chih-Wen Lu, “A Low Power High Speed Class-AB Buffer Amplifier for Flat Panel Display Application”, IEEE Transactions on VLSI Systems, Vol 10, No. 2, pp. 163-168, April 2002. (SCI, IF = 1.373, Journal Rank = 85/229) 相关热点
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