| 2019 | ASPDAC | Development of a high stability, low standby power six-transistor CMOS SRAM employing a single power supply. | Nobuaki Kobayashi, Tadayoshi Enomoto |
| 2019 | ASPDAC | Low standby power CMOS delay flip-flop with data retention capability. | Nobuaki Kobayashi, Tadayoshi Enomoto |
| 2015 | ASPDAC | A high stability, low supply voltage and low standby power six-transistor CMOS SRAM. | Nobuaki Kobayashi, Ryusuke Ito, Tadayoshi Enomoto |
| 2013 | ASPDAC | A low power multimedia processor implementing dynamic voltage and frequency scaling technique. | Tadayoshi Enomoto, Nobuaki Kobayashi |
| 2009 | ISCAS | Fast Sub-sampling Block Matching Algorithm Employing Adaptively Assigned Sizes and Locations of Search Windows. | Tadayoshi Enomoto, Nobuaki Kobayashi, Shimon Isaka |
| 2008 | ASPDAC | A low-leakage current power 180-nm CMOS SRAM. | Tadayoshi Enomoto, Yuki Higuchi |
| 2008 | ISCAS | A low power 90-nm CMOS motion estimation processor implementing dynamic voltage and frequency scaling (DVFS) and fast motion estimation algorithm. | Nobuaki Kobayashi, Tadayoshi Enomoto |
| 2007 | ASPDAC | Low-Power High-Speed 180-nm CMOS Clock Drivers. | Tadayoshi Enomoto, Suguru Nagayama, Nobuaki Kobayashi |
| 2006 | ASPDAC | A low dynamic power and low leakage power 90-nm CMOS square-root circuit. | Tadayoshi Enomoto, Nobuaki Kobayashi |
| 2005 | ISCAS | A low dynamic power and low leakage power CMOS square-root circuit. | Tadayoshi Enomoto, Nobuaki Kobayashi |
| 2001 | ISCAS | A fast motion estimation algorithm and low-power 0.13-um CMOS motion estimation circuits. | Tadayoshi Enomoto, Akira Kotabe |
| 1999 | ISCAS | Fast motion estimation algorithm and low-power CMOS motion estimation array LSI for MPEG-2 encoding. | Tadayoshi Enomoto, Yasumasa Sasajima, Atsunori Hirobe, Tetsuya Ohsawa |
| 1987 | ICASSP | Realtime video signal processor module. | Hidenobu Harasaki, Ichiro Tamitani, Yukio Endo, Takao Nishitani, Masakatsu Yamashina, Tadayoshi Enomoto, Norio Suzuki |
| 1986 | ICASSP | Video signal processor configuration by multiprocessor approach. | Takao Nishitani, Ichiro Tamitani, Hidenobu Harasaki, Masakatsu Yamashina, Tadayoshi Enomoto |