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SID Symposium Digest of Technical Papers | 2005

16.4: A 14.1″ WXGA Solution Processed OLED Display with a‐Si TFT

Ameen K. Saafir; Jin-Koo Chung; In-Su Joo; Jong-Moo Huh; Jung-Soo Rhee; Seung-Kyu Park; Beom-Rak Choi; Chun-Seok Ko; Byung-Sik Koh; Jae-Hoon Jung; Joon-hoo Choi; Nam-deog Kim; Kyuha Chung; Gordana Srdanov; Charlie MacPherson; Nugent Truong; Matthew Stevenson; Andrew Johnson; Peter Chen; Terri Cardellino; Ray Pflanzer; Gang Yu; Alberto Goenaga; Marie B. O'Regan; Dalen E. Keys

We have developed the worlds largest a-Si TFT based solution processed AMOLED full color display. In our 14.1″ WXGA demonstrator, we have realized the worlds best performance for solution-processed OLED materials in an active matrix display, while setting a higher standard for uniformity and image quality.


SID Symposium Digest of Technical Papers | 2006

P-177: A 14.1-in. Full-Color Polymer-LED Display with a-Si TFT Backplane by Ink-Jet Printing

Jung-Soo Rhee; Jianpu Wang; Soon-wook Cha; Jin-Koo Chung; Dong-Won Lee; Sangmi Hong; Beom-Rak Choi; Joon-Chul Goh; Kwang-Chul Jung; Sungmin Kim; Chun-Seok Ko; Byung-Sik Koh; Si-Duk Sung; Kyoungtae Park; Nam-deog Kim; Kyuha Chung; Haydn Gregory; Mark Bale; Colin Creighton; Barry Wild; Andrew Shawcross; Laura Webb; Marie Hatcher; Russell Lees; Martin Richardson; Owen Bassett; Stephen Coats; Jan Roelof Jongman; Simon Goddard; Peter Lyon

We have developed a 14.1 inch full color polymer LED display, based on an a-Si TFT backplane, using ink jet printing, which does not show visible swathe marks during display operation. To remove the swathe marks, we have developed the single path printing technology for the hole-conduction layer deposition to significantly reduce the complexity of interlacing printing across the panel, which is known as an alternative to remove the swathe marks. In addition, we have adopted the interlayer process to increase the lifetime of ink jet printed displays. These technologies will enable the scale-up of the ink jet printed AMOLED applications to larger size displays, such as desktop monitors and TVs.


Archive | 2007

Organic light emitting diode display with flexible conductive film

Si-Duk Sung; Byung-Sik Koh


Archive | 2007

DISPLAY DEVICE, FLEXIBLE MEMBER, AND METHOD THEREOF

Byung-Sik Koh; Joon-Chul Goh


Archive | 2011

STEREOPSIS DISPLAY DEVICE AND DRIVING METHOD THEREOF

June-Young Song; Byung-Sik Koh; Hye-Jin Shin


Archive | 2006

Organic light emitting diode display with improved heat dissipation

Kyong-Tae Park; Byung-Sik Koh


Archive | 2007

ORGANIC LIGHT-EMITTING DISPLAY APPARATUS, AND METHODS FOR MANUFACTURING AND DRIVING THE SAME

Si-Duk Sung; Byung-Sik Koh


Archive | 2014

PIXEL, DISPLAY DEVICE INCLUDING THE SAME AND METHOD THEREOF

Byung-Sik Koh


Archive | 2006

DISPLAY DEVICE, DEVICE FOR DRIVING THE DISPLAY DEVICE AND METHOD OF DRIVING THE DISPLAY DEVICE

Parikh Kunjal; Byung-Sik Koh; Beohm-Rock Choi; Joon-hoo Choi; Joon-Chul Goh


Archive | 2011

Display device with power generator on panel cover and manufacturing method thereof

Byung-Sik Koh; Chun-Seok Ko; Byoung-Seong Jeong; Si-Duk Sung

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