SOG 디스플레이 시스템 구현을 위한 디지털 회로 기술 개요

  • Published : 2004.02.26

Abstract

Keywords

References

  1. M. Miyatake et al., 'A 7.94-ppm, lO-cm-Diagonal TFT-LCD Using Low-Temperature Poly-Si Technology,' IDW99, p.207, 1999
  2. Y. Aoki et al., 'A 10. 4-in. XGA Low-Tempera-ture Poly-Si TFT-LCD for Mobile PC Appli-cations', SID'99 Digest, p.176, 1999
  3. T. Higuchi et al. 'Development of a 15-inch UXGA Low-Temperature Poly-Si TFT-LCD', SID'OO Digest, p. 1121, 2000
  4. H. Sakamoto et al., '2.6 inch HDTV Panel Using CG Silicon', SID'OO Digest, p.1190, 2000
  5. Y. Hirakata et al., '4-in. VGA Reflection-Type Poly-Si TFT LCD with Integrated Digital Driver Using Seven-Mask CG Silicon CMOS Process', SID'OO Digest, p. 1014, 2000
  6. Y. Mikami et al., 'A 5-in. SVGA TFT-LCD with Integrated Multiple DAC Using Low-Tempera-ture polv-Si TFTs', IDW'Ol, p.1607, 2001
  7. Y. Matsueda et al., 'Concept of a System on Panel', IDW'00, p. 171, 2000
  8. H. Kimura et al., 'A 2.15 inch QCIF Reflective Color TFT-LCD with Digital Memory on Glass (DMOG)', SID'Ol Digest, p. 268, 2001
  9. M. Senda et al., 'Ultra-Low-Power Polysilicon AMLCD with Full Integration', SID'02 Digest, p. 790, 2002
  10. H. Washio et al., 'TFT-LCDs with Monolithic Multi-Drivers for High Performance Video and Low-Power Text Modes', SID'Ol Digest, p.276, 2001
  11. J. Pollack, 'Sharp: In Pursuit of System LCDs', Information Display, p. 12, July, 2003
  12. H. Hara et al., 'Thin Film Transistor Standard Cells', IDW'02, p.287, 2002
  13. T. Nishibe and N. Ibaraki, 'Quite a New Ap-proach for System-on-Glass Technology Based on Low-Temperature Polycrystalline Silicon', IDW'03, p.359, 2003
  14. H. Tokioka et al., 'Low Power Consumption TFT-LCD with Dynamic Memory Embedded in Pixels', SID'Ol Digest, p-280, 2001
  15. K. Current, 'Current-Mode CMOS Multiple Valued Logic Circuits,' IEEE J. Solid State Circuits, Vo1.29, No.2, p.95, 1994 https://doi.org/10.1109/4.272112
  16. T. Hanyu et al., 'Self-Checking Multiple-Valued Circuit Based on Dual-Rain Current-Mode Differential Logic', IEEE Int. Symp. On Multiple-Valued Logic, p. 275, 1999
  17. M. Allam and M. Elmasry, 'Dynamic Current Mode Logic (DyCML): A New Low-Power High-Performance Logic Style', IEEE J. Solid State Circuits, Vol. 36, No. 3, p. 550, 2001 https://doi.org/10.1109/4.910495
  18. T. Hanyu and M. Kameyama, 'Multiple-Valued Logic-in-Memory VLSI Architecture Based on Floating Gate MOS Pass Transistor Logic', IEICE Trans. Electronics, Vo1.E82-C, No.9, p. 1662, 1999
  19. S. Mutoh et al., 'l-V Power Supply High-Speed Digital Circuit Technology with Multithreshold-voltage CMOS', IEEE J. Solid State Circuits, Vol. 30, No.8,p.847, 1995 https://doi.org/10.1109/4.400426
  20. T. Kuroda et al., 'A 0.9V, 150-MHz, lO-mW, $4mm^2$, 2-D Discrete Cosine Transform Core Processor with Variable Threshold-Voltage (VT) Scheme' IEEE J. Solid State Circuits, Vo1.31, No.ll, p.1770, 1996 https://doi.org/10.1109/JSSC.1996.542322
  21. T. Douseki et al., 'A 0.5V SIMOS-MTCMOS Circuit with 200ps Logic Gate', IEEE ISSCC'96, p.84, 1996