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| 2011 | ||
|---|---|---|
| 51 | Andrew Kilinga Kikombo, Tetsuya Asai, Yoshihito Amemiya: Neuro-morphic Circuit Architectures Employing Temporal Noises and Device Fluctuations to Improve Signal-to-noise Ratio in a Single-electron Pulse-density Modulator. IJUC 7(1-2): 53-63 (2011) | |
| 2010 | ||
| 50 | Gessyca Maria Tovar, Tetsuya Asai, Yoshihito Amemiya: Array-Enhanced Stochastic Resonance in a Network of Noisy Neuromorphic Circuits. ICONIP (1) 2010: 188-195 | |
| 49 | Ken Ueno, Tetsuya Hirose, Tetsuya Asai, Yoshihito Amemiya: A 1-muhboxW 600- hboxppm/circhboxC Current Reference Circuit Consisting of Subthreshold CMOS Circuits. IEEE Trans. on Circuits and Systems 57-II(9): 681-685 (2010) | |
| 48 | Shin'ichi Asai, Ken Ueno, Tetsuya Asai, Yoshihito Amemiya: High-Resistance Resistor Consisting of a Subthreshold CMOS Differential Pair. IEICE Transactions 93-C(6): 741-746 (2010) | |
| 47 | Yusuke Tsugita, Ken Ueno, Tetsuya Hirose, Tetsuya Asai, Yoshihito Amemiya: An On-Chip PVT Compensation Technique with Current Monitoring Circuit for Low-Voltage CMOS Digital LSIs. IEICE Transactions 93-C(6): 835-841 (2010) | |
| 46 | Takaaki Hirai, Tetsuya Asai, Yoshihito Amemiya: A CMOS Phase-Shift oscillator Based on the conduction of Heat. Journal of Circuits, Systems, and Computers 19(4): 763-772 (2010) | |
| 2009 | ||
| 45 | Ken Ueno, Tetsuya Hirose, Tetsuya Asai, Yoshihito Amemiya: A 300 nW, 7 ppm/degreeC CMOS voltage reference circuit based on subthreshold MOSFETs. ASP-DAC 2009: 95-96 | |
| 44 | Tomoki Iida, Tetsuya Asai, Eiichi Sano, Yoshihito Amemiya: Offset cancellation with subthreshold-operated feedback circuit for fully differential amplifiers. ICECS 2009: 140-143 | |
| 43 | Andrew Kilinga Kikombo, Tetsuya Asai, Yoshihito Amemiya: Exploiting Temporal Noises and Device Fluctuations in Enhancing Fidelity of Pulse-Density Modulator Consisting of Single-Electron Neural Circuits. ICONIP (2) 2009: 384-391 | |
| 42 | Andrew Kilinga Kikombo, Tetsuya Asai, Takahide Oya, Alexandre Schmid, Yusuf Leblebici, Yoshihito Amemiya: A pulse-density modulation circuit exhibiting noise shaping with single-electron neurons. IJCNN 2009: 1600-1605 | |
| 41 | Yusuke Tsugita, Ken Ueno, Tetsuya Asai, Yoshihito Amemiya, Tetsuya Hirose: On-chip PVT Compensation Techniques for Low-voltage CMOS Digital LSIs. ISCAS 2009: 1565-1568 | |
| 40 | Ken Ueno, Tetsuya Asai, Yoshihito Amemiya: Low-power Clock Reference Circuit for Intermittent Operation of Subthreshold LSIs. ISCAS 2009: 5-8 | |
| 39 | Andrew Kilinga Kikombo, Tetsuya Asai, Yoshihito Amemiya: Pulse-Density Modulation with an Ensemble of Single-Electron Circuits Employing Neuronal Heterogeneity to Achieve High Temporal Resolution. NanoNet 2009: 51-56 | |
| 38 | Tetsuya Asai: Unconventional Computing, Novel Hardware for. Encyclopedia of Complexity and Systems Science 2009: 9706-9726 | |
| 37 | Akira Utagawa, Tohru Sahashi, Tetsuya Asai, Yoshihito Amemiya: Stochastic Resonance in an Array of Locally-Coupled McCulloch-Pitts Neurons with Population Heterogeneity. IEICE Transactions 92-A(10): 2508-2513 (2009) | |
| 36 | Ken Ueno, Tetsuya Hirose, Tetsuya Asai, Yoshihito Amemiya: Low-Voltage Process-Compensated VCO with On-Chip Process Monitoring and Body-Biasing Circuit Techniques. IEICE Transactions 92-A(12): 3079-3081 (2009) | |
| 35 | Taichi Ogawa, Tetsuya Hirose, Tetsuya Asai, Yoshihito Amemiya: Threshold-Logic Devices Consisting of Subthreshold CMOS Circuits. IEICE Transactions 92-A(2): 436-442 (2009) | |
| 34 | Andrew Kilinga Kikombo, Tetsuya Asai, Takahide Oya, Alexandre Schmid, Yusuf Leblebici: A Neuromorphic Single-Electron Circuit for Noise-Shaping Pulse-Density Modulation. IJNMC 1(2): 80-92 (2009) | |
| 2008 | ||
| 33 | Kazuki Nakada, Jun Igarashi, Tetsuya Asai, Katsumi Tateno, Hatsuo Hayashi, Yoshitaka Ohtubo, Tsutomu Miki, Kiyonori Yoshii: Stochastic Synchronization and Array-Enhanced Coherence Resonance in a Bio-inspired Chemical Sensor Array. CSE 2008: 307-312 | |
| 32 | Gessyca Maria Tovar, Tetsuya Asai, Yoshihito Amemiya: Noise-Tolerant Analog Circuits for Sensory Segmentation Based on Symmetric STDP Learning. ICONIP (2) 2008: 851-858 | |
| 31 | Akira Utagawa, Tetsuya Asai, Tetsuya Hirose, Yoshihito Amemiya: Noise-Induced Synchronization among Sub-RF CMOS Analog Oscillators for Skew-Free Clock Distribution. IEICE Transactions 91-A(9): 2475-2481 (2008) | |
| 30 | Kazuhito Yamada, Tetsuya Asai, Tetsuya Hirose, Yoshihito Amemiya: On Digital LSI Circuits Exploiting Collision-Based Fusion Gates. IJUC 4(1): 45-59 (2008) | |
| 2007 | ||
| 29 | Gessyca Maria Tovar, Eric Shun Fukuda, Tetsuya Asai, Tetsuya Hirose, Yoshihito Amemiya: Analog CMOS Circuits Implementing Neural Segmentation Model Based on Symmetric STDP Learning. ICONIP (2) 2007: 117-126 | |
| 28 | Gessyca Maria Tovar, Eric Shun Fukuda, Tetsuya Asai, Tetsuya Hirose, Yoshihito Amemiya: Neuromorphic CMOS Circuits implementing a Novel Neural Segmentation Model based on Symmetric STDP Learning. IJCNN 2007: 897-901 | |
| 27 | Ken Ueno, Tetsuya Hirose, Tetsuya Asai, Yoshihito Amemiya: Floating millivolt reference for PTAT current generation in Subthreshold MOS LSIs. ISCAS 2007: 3748-3751 | |
| 26 | Andrew Kilinga Kikombo, Takahide Oya, Tetsuya Asai, Yoshihito Amemiya: Discrete Dynamical Systems Consisting of Single-electron Circuits. I. J. Bifurcation and Chaos 17(10): 3613-3617 (2007) | |
| 25 | Takahide Oya, Ikuko N. Motoike, Tetsuya Asai: Single-electron Circuits Performing Dendritic Pattern Formation with Nature-Inspired Cellular Automata. I. J. Bifurcation and Chaos 17(10): 3651-3655 (2007) | |
| 24 | Motoyoshi Takahashi, Tetsuya Asai, Tetsuya Hirose, Yoshihito Amemiya: A CMOS Reaction-diffusion Device Using Minority-Carrier Diffusion in Semiconductors. I. J. Bifurcation and Chaos 17(5): 1713-1719 (2007) | |
| 23 | Akira Utagawa, Tetsuya Asai, Tetsuya Hirose, Yoshihito Amemiya: An Inhibitory Neural-Network Circuit Exhibiting Noise Shaping with Subthreshold MOS Neuron Circuits. IEICE Transactions 90-A(10): 2108-2115 (2007) | |
| 22 | Andrew Adamatzky, Christof Teuscher, Tetsuya Asai: Editorial. IJPEDS 22(2): 77-78 (2007) | |
| 21 | Kazuki Nakada, Tetsuya Asai, Tetsuya Hirose, Hatsuo Hayashi, Yoshihito Amemiya: A subthreshold CMOS circuit for a piecewise linear neuromorphic oscillator with current-mode low-pass filters. Neurocomputing 71(1-3): 3-12 (2007) | |
| 2006 | ||
| 20 | Kazuki Nakada, Tetsuya Asai, Hatsuo Hayashi: Burst Synchronization in Two Pulse-Coupled Resonate-and-Fire Neuron Circuits. IFIP PPAI 2006: 285-294 | |
| 19 | Tetsuya Asai, Taishi Kamiya, Tetsuya Hirose, Yoshihito Amemiya: A subthreshold Analog MOS Circuit for Lotka-volterra Chaotic oscillator. I. J. Bifurcation and Chaos 16(1): 207-212 (2006) | |
| 18 | Ken Ueno, Tetsuya Hirose, Tetsuya Asai, Yoshihito Amemiya: A CMOS Watchdog Sensor for Certifying the Quality of Various Perishables with a Wider Activation Energy. IEICE Transactions 89-A(4): 902-907 (2006) | |
| 17 | Kazuki Nakada, Tetsuya Asai, Hatsuo Hayashi: Analog Vlsi Implementation of Resonate-and-fire Neuron. Int. J. Neural Syst. 16(6): 445-456 (2006) | |
| 2005 | ||
| 16 | Andrew Adamatzky, Ben de Lacy Costello, Tetsuya Asai: Reaction-diffusion computers. Elsevier 2005: I-XIV, 1-334 | |
| 15 | Kazuki Nakada, Tetsuya Asai, Yoshihito Amemiya: Analog CMOS implementation of a neuromorphic oscillator with current-mode low-pass filters. ISCAS (3) 2005: 1923-1926 | |
| 14 | Takahide Oya, Tetsuya Asai, Yoshihito Amemiya, Alexandre Schmid, Yusuf Leblebici: Single-electron circuit for inhibitory spiking neural network with fault-tolerant architecture. ISCAS (3) 2005: 2535-2538 | |
| 13 | Tetsuya Asai, Ben de Lacy Costello, Andrew Adamatzky: Silicon Implementation of a Chemical Reaction-diffusion Processor for Computation of Voronoi Diagram. I. J. Bifurcation and Chaos 15(10): 3307-3320 (2005) | |
| 12 | Takahide Oya, Alexandre Schmid, Tetsuya Asai, Yusuf Leblebici, Yoshihito Amemiya: On the fault tolerance of a clustered single-electron neural network for differential enhancement. IEICE Electronic Express 2(3): 76-80 (2005) | |
| 11 | Tetsuya Hirose, Toshimasa Matsuoka, Kenji Taniguchi, Tetsuya Asai, Yoshihito Amemiya: Ultralow-Power Current Reference Circuit with Low Temperature Dependence. IEICE Transactions 88-C(6): 1142-1147 (2005) | |
| 10 | Tetsuya Asai, Masayuki Ikebe, Tetsuya Hirose, Yoshihito Amemiya: A quadrilateral-object composer for binary images with reaction-diffusion cellular automata. Parallel Algorithms Appl. 20(1): 57-67 (2005) | |
| 2004 | ||
| 9 | Kazuki Nakada, Tetsuya Asai, Yoshihito Amemiya: An analog CMOS chip implementing a CNN-based locomotion controller for quadruped walking robots. ISCAS (3) 2004: 1-4 | |
| 8 | Yusuke Kanazawa, Tetsuya Asai, Tetsuya Hirose, Yoshihito Amemiya: A MOS circuit for bursting neural oscillators with excitable oregonators. IEICE Electronic Express 1(4): 73-76 (2004) | |
| 7 | Hiroshi Matsubara, Tetsuya Asai, Tetsuya Hirose, Yoshihito Amemiya: Reaction-diffusion chip implementing excitable lattices with multiple-valued cellular automata. IEICE Electronic Express 1(9): 248-252 (2004) | |
| 2003 | ||
| 6 | Tetsuya Asai, Yoshihito Amemiya: Biomorphic Analog Devices based on Reaction-Diffusion Systems. ISMVL 2003: 197- | |
| 5 | Tetsuya Asai, Yusuke Kanazawa, Yoshihito Amemiya: A subthreshold MOS neuron circuit based on the Volterra system. IEEE Transactions on Neural Networks 14(5): 1308-1312 (2003) | |
| 4 | Kazuki Nakada, Tetsuya Asai, Yoshihito Amemiya: An analog CMOS central pattern generator for interlimb coordination in quadruped locomotion. IEEE Transactions on Neural Networks 14(5): 1356-1365 (2003) | |
| 2000 | ||
| 3 | Tetsuya Asai, Masato Koutani, Yoshihito Amemiya: An Analog-Digital Hybrid CMOS Circuit for Two-Dimensional Motion Detection with Correlation Neural Networks. IJCNN (3) 2000: 494-499 | |
| 2 | Tetsuya Asai, Shinji Hara, Tetsuya Iwasaki: Simultaneous parametric uncertainty modeling and robust control synthesis by LFT scaling. Automatica 36(10): 1457-1467 (2000) | |
| 1999 | ||
| 1 | Tetsuya Asai, Tomoki Fukai, Shigeru Tanaka: A subthreshold MOS circuit for the Lotka-Volterra neural network producing the winners-share-all solution. Neural Networks 12(2): 211-216 (1999) | |
Colors in the list of coauthors
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