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Dive into the research topics where Mao Katsuhara is active.

Publication


Featured researches published by Mao Katsuhara.


Journal of The Society for Information Display | 2011

An OTFT-driven rollable OLED display

Makoto Noda; Norihito Kobayashi; Mao Katsuhara; Akira Yumoto; Shinichi Ushikura; Ryouichi Yasuda; Nobukazu Hirai; Iwao Yagi; Kazumasa Nomoto; Tetsuo Urabe

Abstract— An 80-μm-thick rollable AMOLED display driven by an OTFT is reported. The display was developed so as to be rollable in one direction with an integrated OTFT gate driver circuit. It was successfully operated by an originally developed organic semiconductor, a peri-xanthenoxanthene derivative. The display retained its initial electrical properties and picture quality even after being subjected to 1000 cycles of a roll-up-and-release test with a radius of 4 mm.


SID Symposium Digest of Technical Papers | 2010

47.3: A Rollable AM-OLED Display Driven by OTFTs

Makoto Noda; Norihito Kobayashi; Mao Katsuhara; Akira Yumoto; Shinichi Ushikura; Ryoichi Yasuda; Nobukazu Hirai; Iwao Yagi; Kazumasa Nomoto; Tetsuo Urabe

We have developed an 80-μm-thick rollable AM-OLED display. The display is driven by an organic TFT backplane for which we have used originally developed semiconductor, a perixanthenoxanthene derivative. The display shows no degradation in a 4 mm-radius roll-up-and-release cycle of 1000 times.


Journal of The Society for Information Display | 2010

A flexible OLED display with an OTFT backplane made by scalable manufacturing process

Mao Katsuhara; Iwao Yagi; Akira Yumoto; Makoto Noda; Nobukazu Hirai; Ryoichi Yasuda; Toshiki Moriwaki; Shinichi Ushikura; Ayaka Imaoka; Tetsuo Urabe; Kazumasa Nomoto

— A full-color top-emission AMOLED display driven by an organic TFT backplane manufactured using a scalable, lift-off-free, and shadow-mask-free process has been developed. It was shown that cost-efficient copper can be used for S/D electrodes. The display has shown no significant degradation over a storage life of more than 10 months and operation over 25 hours during which the display is bent over 10,000 times.


SID Symposium Digest of Technical Papers | 2011

36.1: Invited Paper: Rollable OLED Display Driven by Organic TFTs

Kazumasa Nomoto; Makoto Noda; Norihito Kobayashi; Mao Katsuhara; Akira Yumoto; Shinichi Ushikura; Ryoichi Yasuda; Nobukazu Hirai; Iwao Yagi

We have developed a 4.1-in FWQVGA rollable AM-OLED display driven by organic TFTs. For an organic semiconductor, a peri-Xanthenoxanthene derivative has been developed. We have also developed an integrated gate-driver circuit. This enables to eliminate rigid gate-driver ICs and roll up the OLED display with bending radius of 4 mm.


SID Symposium Digest of Technical Papers | 2009

44.2: Distinguished Paper: A Reliable Flexible OLED Display with an OTFT Backplane Manufactured Using a Scalable Process

Mao Katsuhara; Iwao Yagi; Makoto Noda; Nobukazu Hirai; Ryoichi Yasuda; Toshiki Moriwaki; Shinichi Ushikura; Ayaka Imaoka; Kazumasa Nomoto; Akira Yumoto; Tetsuo Urabe

We have developed a full-color, top-emission, AM-OLED display driven by organic TFT backplane manufactured using a scalable, lift-off free and shadow mask free, process. Low-cost copper electrode is used for S/D electrodes. The display shows no significant degradation for the storage life > 2 month and operation period > 25 hours with 10000 times bending.


Proceedings of SPIE, the International Society for Optical Engineering | 2009

An flexible OLED driven by OTFT backplane manufactured using a scalable process

Mao Katsuhara; Iwao Yagi; Akira Yumoto; Makoto Noda; Nobukazu Hirai; Ryoichi Yasuda; Toshiki Moriwaki; Shinichi Ushikura; Ayaka Imaoka; Tatsuya Sasaoka; Kazumasa Nomoto

A full-color, top-emission active-matrix organic light-emitting diode display build on a flexible substrate (flexible OLED) has been successfully driven by organic-TFTs made by a scalable manufacturing process (lift-off and shadow mask free process). The OTFTs were fabricated with low cost metal (copper and aluminum) electrodes. The backplane architecture was developed at low temperatures (<150°C) with solution-processed organic dielectrics. The fabricated TFTs are reliable against bending stress with 2-mm radius. With this ultra high flexibility of the OTFT, the display shows no significant degradation for an operating period >25 hours with more than 10,000 times bending.


Archive | 2010

Thin film transistor and method for manufacturing thin film transistor

Kazumasa Nomoto; Mao Katsuhara; Akira Yumoto


Archive | 2012

Thin film transistor and method for producing the same

Mao Katsuhara; Nobuhide Yoneya


Archive | 2009

THIN FILM TRANSISTOR MANUFACTURING METHOD, THIN FILM TRANSISTOR, AND ELECTRONIC DEVICE

Mao Katsuhara; Nobuhide Yoneya


Archive | 2012

DISPLAY UNIT AND SUBSTRATE FOR DISPLAY UNIT

Makoto Noda; Iwao Yagi; Mao Katsuhara

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