2006 |
7 | EE | Tetsuya Yamada,
Masahide Abe,
Yusuke Nitta,
Kenji Ogura,
Manabu Kusaoke,
Makoto Ishikawa,
Motokazu Ozawa,
Kiwamu Takada,
Fumio Arakawa,
Osamu Nishii,
Toshihiro Hattori:
Reducing Consuming Clock Power Optimization of a 90 nm Embedded Processor Core.
IEICE Transactions 89-C(3): 287-294 (2006) |
6 | EE | Fumio Arakawa,
Makoto Ishikawa,
Yuki Kondo,
Tatsuya Kamei,
Osamu Nishii,
Toshihiro Hattori:
SH-X: An embedded processor core for consumer appliances.
J. Embedded Computing 2(1): 83-90 (2006) |
5 | EE | Fumio Arakawa,
Tetsuya Yamada,
Takashi Okada,
Makoto Ishikawa,
Yuki Kondo,
Motokazu Ozawa,
Tomoyuki Kodama,
Osamu Nishii,
Toshihiro Hattori,
Tatsuya Kamei,
Junichi Nishimoto,
Shinichi Yoshioka:
Development of processor cores for digital consumer appliances.
Systems and Computers in Japan 37(3): 10-19 (2006) |
2005 |
4 | EE | Tetsuya Yamada,
Masahide Abe,
Yusuke Nitta,
Kenji Ogura,
Manabu Kusaoke,
Makoto Ishikawa,
Motokazu Ozawa,
Kiwamu Takada,
Fumio Arakawa,
Osamu Nishii,
Toshihiro Hattori:
Low-Power Design of 90-nm SuperH Processor Core.
ICCD 2005: 258-266 |
3 | EE | Makoto Ishikawa,
Tatsuya Kamei,
Yuki Kondo,
Masanao Yamaoka,
Yasuhisa Shimazaki,
Motokazu Ozawa,
Saneaki Tamaki,
Mikio Furuyama,
Tadashi Hoshi,
Fumio Arakawa,
Osamu Nishii,
Kenji Hirose,
Shinichi Yoshioka,
Toshihiro Hattori:
A 4500 MIPS/W, 86 µA Resume-Standby, 11 µA Ultra-Standby Application Processor for 3G Cellular Phones.
IEICE Transactions 88-C(4): 528-535 (2005) |
2 | EE | Fumio Arakawa,
Makoto Ishikawa,
Yuki Kondo,
Tatsuya Kamei,
Motokazu Ozawa,
Osamu Nishii,
Toshihiro Hattori:
SH-X: an embedded processor core for consumer appliances.
SIGARCH Computer Architecture News 33(3): 33-40 (2005) |
1994 |
1 | | Tetsuhiko Okada,
Susumu Narita,
Osamu Nishii,
Noriharu Hiratsuka,
Nobuyuki Hayashi,
Mitsuo Asai,
Shinji Fujiwara,
Mikiko Satoh,
Junichi Nishimoto,
Hirokazu Aoki,
Kunio Uchiyama,
Shigeru Matsuo,
Hidehito Takewa,
Kouji Yamada,
Masahiro Kainaga,
Norio Nakagawa,
Masanobu Yamagami,
Hiroshi Takeda,
Tsuneo Funabashi:
A PA-RISC Mikroprocessor PA/50L For Low-Cost Systems.
COMPCON 1994: 47-52 |