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High-resolution displaysVol. 42, No. 3/4, 1998
Order No. G322-0213 |
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Electronic displays are the main interface between humans and computers. As described in the 19 papers which make up this double issue, display technology has advanced to the point that very high information content, very high spatial resolution displays can be manufactured. The papers describe the recently developed technology for making high resolution flat panel TFT-LCDs (thin film transistor liquid crystal displays) and projection displays which use silicon based spatial light modulators.
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Papers may be viewed by clicking on the title of interest |
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Increasing electronic display information content: An introduction
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P. M. Alt and K. Noda
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p. 315
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Design and fabrication of a prototype projection data monitor with high information content
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R. L. Melcher, P. M. Alt, D. B. Dove, T. M. Cipolla, E. G. Colgan, F. E. Doany, K. Enami, K. C. Ho, I. Lovas, C. Narayan, R. S. Olyha, Jr., C. G. Powell, A. E. Rosenbluth, J. L. Sanford, E. S. Schlig, R. N. Singh, T. Tomooka, M. Uda, and K. H. Yang
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p. 321
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On-chip metallization layers for reflective light valves
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E. G. Colgan and M. Uda
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p. 339
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Silicon light-valve array chip for high-resolution reflective liquid crystal projection displays
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J. L. Sanford, E. S. Schlig, T. Tomooka, K. Enami, and F. R. Libsch
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p. 347
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Contrast properties of reflective liquid crystal light valves in projection displays
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A. E. Rosenbluth, D. B. Dove, F. E. Doany, R. N. Singh, K. H. Yang, and M. Lu
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p. 359
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Projection display throughput: Efficiency of optical transmission and light-source collection
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F. E. Doany, R. N. Singh, A. E. Rosenbluth, and G. L.-T. Chiu
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p. 387
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Nematic LC modes and LC phase gratings for reflective spatial light modulators
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K. H. Yang and M. Lu
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p. 401
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A one-megapixel reflective spatial light modulator system for holographic storage
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J. L. Sanford, P. F. Greier, K. H. Yang, M. Lu, R. S. Olyha, Jr., C. Narayan, J. A. Hoffnagle, P. M. Alt, and R. L. Melcher
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p. 411
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A 10.5-in.-diagonal SXGA active-matrix display
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E. G. Colgan, P. M. Alt, R. L. Wisnieff, P. M. Fryer, E. A. Galligan, W. S. Graham, P. F. Greier, R. R. Horton, H. Ifill, L. C. Jenkins, R. A. John, R. I. Kaufman, Y. Kuo, A. P. Lanzetta, K. F. Latzko, F. R. Libsch, S.-C. A. Lien, S. E. Millman, R. W. Nywening, R. J. Polastre, C. G. Powell, R. A. Rand, J. J. Ritsko, M. B. Rothwell, J. L. Staples, K. W. Warren, J. S. Wilson, and S. L. Wright
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p. 427
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Active line repair for thin-film-transistor liquid crystal displays
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S. L. Wright, K. W. Warren, P. M. Alt, R. R. Horton, C. Narayan, P. F. Greier, and M. Kodate
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p. 445
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Driving method for gate-delay compensation of TFT/LCD
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K. Kusafuka, H. Shimizu, and S. Kimura
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p. 459
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Understanding crosstalk in high-resolution color thin-film-transistor liquid crystal displays
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F. R. Libsch and S.-C. A. Lien
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p. 467
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Thin-film-transistor process-characterization test structures
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E. G. Colgan, R. J. Polastre, M. Takeichi, and R. L. Wisnieff
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p. 481
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Aluminum-based gate structure for active-matrix liquid crystal displays
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T. Arai, H. Iiyori, Y. Hiromasu, M. Atsumi, S. Ioku, and K. Furuta
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p. 491
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Evaluation of Al(Nd)-alloy films for application to thin-film-transistor liquid crystal displays
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H. Takatsuji, E. G. Colgan, C. Cabral, Jr., and J. M. E. Harper
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p. 501
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Application of cross-sectional transmission electron microscopy to thin-film-transistor failure analysis
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S. Tsuji, K. Tsujimoto, and H. Iwama
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p. 509
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Micropitch connection using anisotropic conductive materials for driver IC attachment to a liquid crystal display
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H. Nishida, K. Sakamoto, Hideki Ogawa, and Hiromi Ogawa
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p. 517
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A new backlighting system using a polarizing light pipe
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H. Tanase, J. Mamiya, and M. Suzuki
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p. 527
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Active-matrix display using ion-beam-processed polyimide film for liquid crystal alignment
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S.-C. A. Lien, P. Chaudhari, J. A. Lacey, R. A. John, and J. L. Speidell
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p. 537
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Recent publications by IBM authors
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p. 543
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Patents
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p. 553
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