A Basic Chemical Synaptic Euler Model and its Triad Trigger Topology | CIE Journals & Magazine | IEEE Xplore

A Basic Chemical Synaptic Euler Model and its Triad Trigger Topology

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Abstract:

To deeply understand neuromorphic electronic systems, a basic chemical synapse model is given by logistic Euler inverse mapping and transformation in tandem, 3T-MOS triod...Show More

Abstract:

To deeply understand neuromorphic electronic systems, a basic chemical synapse model is given by logistic Euler inverse mapping and transformation in tandem, 3T-MOS triod-trigger-topology (3T3) is designed in sub-threshold region at 100mV supply for compact synaptic circuit, and the power consumption of synapse in brain-circuitry (ion-bump-city) is compared with its five mimic blocks of HfOx/AlOx typed memristor, modified 2T-MOS-K+-bump circuit, 3T3 synaptic circuit and 4T-Schmitt-oscillator based synaptic circuit, and Chua's circuit on Power-delay-products' (PDP) levels. Above works will match searching for novel feature operators during pushing forward brain health microelectronics.
Published in: Chinese Journal of Electronics ( Volume: 26, Issue: 2, March 2017)
Page(s): 244 - 249
Date of Publication: March 2017

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Author image of Wenshi Li
Department of Microelectronics, Soochow University, Suzhou, China
LI Wenshi was born in Harbin, Heilongjiang Province, China, in 1963, He received the B.S. degree in 1987 in physics from Harbin Normal Univ., and received M.S. degree in electronics at Nanjing Univ. in 1990. In 2005, he did his microelectronics Ph.D. at Southeast Univ. He was once a visiting scholar or researcher at Fudan Univ. in 2001, at Tohoku Univ., Japan in 2007, and at Nanjing Univ. in 2009, respectively. Prof. LI h...Show More
LI Wenshi was born in Harbin, Heilongjiang Province, China, in 1963, He received the B.S. degree in 1987 in physics from Harbin Normal Univ., and received M.S. degree in electronics at Nanjing Univ. in 1990. In 2005, he did his microelectronics Ph.D. at Southeast Univ. He was once a visiting scholar or researcher at Fudan Univ. in 2001, at Tohoku Univ., Japan in 2007, and at Nanjing Univ. in 2009, respectively. Prof. LI h...View more
Department of Microelectronics, Soochow University, Suzhou, China
Department of Microelectronics, Soochow University, Suzhou, China

Author image of Wenshi Li
Department of Microelectronics, Soochow University, Suzhou, China
LI Wenshi was born in Harbin, Heilongjiang Province, China, in 1963, He received the B.S. degree in 1987 in physics from Harbin Normal Univ., and received M.S. degree in electronics at Nanjing Univ. in 1990. In 2005, he did his microelectronics Ph.D. at Southeast Univ. He was once a visiting scholar or researcher at Fudan Univ. in 2001, at Tohoku Univ., Japan in 2007, and at Nanjing Univ. in 2009, respectively. Prof. LI has worked in Department of Microelectronics at Soochow University since 2001, he is working at the subnano scale with new synaptic circuit to try and understand no less than how the braincircuitry really works.
LI Wenshi was born in Harbin, Heilongjiang Province, China, in 1963, He received the B.S. degree in 1987 in physics from Harbin Normal Univ., and received M.S. degree in electronics at Nanjing Univ. in 1990. In 2005, he did his microelectronics Ph.D. at Southeast Univ. He was once a visiting scholar or researcher at Fudan Univ. in 2001, at Tohoku Univ., Japan in 2007, and at Nanjing Univ. in 2009, respectively. Prof. LI has worked in Department of Microelectronics at Soochow University since 2001, he is working at the subnano scale with new synaptic circuit to try and understand no less than how the braincircuitry really works.View more
Department of Microelectronics, Soochow University, Suzhou, China
Department of Microelectronics, Soochow University, Suzhou, China

References

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