A Neuromorphic Quadratic, Integrate, and Fire Silicon Neuron with Adaptive Gain

被引:0
作者
Basham, Eric J.
Parent, David W.
机构
来源
2018 40TH ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY (EMBC) | 2018年
关键词
Silicon Neuron; Quadratic; Integrate; and Fire; Neuromorphic Engineering; Integrated Circuit;
D O I
暂无
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
An integrated circuit implementation of a silicon neuron was designed, manufactured, and tested. The circuit was designed using the Quadratic, Integrate, and Fire (QIF) neuron model in 0.5 mu m silicon technology. The neuron implementation was optimized for low current consumption, drawing only 1.56 mA per QIF circuit and utilized hysteretic reset, non-inverting integrator, and voltage-squarer circuits. The final area of each circuit in silicon was 268 mu m height x 400 mu m width. This design is the first IC of its kind for this neuron model and is successfully able to output true spiking that follows the behaviors of bistability, monotonic, and excitability spiking. The normal QIF design also features an easy way to change the time constant (which nominally operates in the millisecond range) of the spiking via a single, external capacitor (the only off-chip component in this design); the adaptive gain variation of the QIF circuit adds a second parameter that adjusts the time constant via an external resistor. The design also allows for an adjustable reset threshold and operates on a +/- 5 V power supply.
引用
收藏
页码:1771 / 1776
页数:6
相关论文
共 15 条
[1]   An Analog Circuit Implementation of a Quadratic Integrate and Fire Neuron [J].
Basham, Eric J. ;
Parent, David W. .
2009 ANNUAL INTERNATIONAL CONFERENCE OF THE IEEE ENGINEERING IN MEDICINE AND BIOLOGY SOCIETY, VOLS 1-20, 2009, :741-+
[2]   Human-like Reflexes for Robotic Manipulation using Leaky Integrate-and-Fire Neurons [J].
Bauer, Christian ;
Milighetti, Giulio ;
Yan, Wenjie ;
Mikut, Ralf .
IEEE/RSJ 2010 INTERNATIONAL CONFERENCE ON INTELLIGENT ROBOTS AND SYSTEMS (IROS 2010), 2010, :2572-2577
[3]   Neurogrid: A Mixed-Analog-Digital Multichip System for Large-Scale Neural Simulations [J].
Benjamin, Ben Varkey ;
Gao, Peiran ;
McQuinn, Emmett ;
Choudhary, Swadesh ;
Chandrasekaran, Anand R. ;
Bussat, Jean-Marie ;
Alvarez-Icaza, Rodrigo ;
Arthur, John V. ;
Merolla, Paul A. ;
Boahen, Kwabena .
PROCEEDINGS OF THE IEEE, 2014, 102 (05) :699-716
[4]   Design of silicon brains in the nano-CMOS era: Spiking neurons, learning synapses and neural architecture optimization [J].
Cassidy, Andrew S. ;
Georgiou, Julius ;
Andreou, Andreas G. .
NEURAL NETWORKS, 2013, 45 :4-26
[5]  
Hamilton Tara Julia, 2011, Proceedings of the 2011 Seventh International Conference on Intelligent Sensors, Sensor Networks and Information Processing (ISSNIP), P108, DOI 10.1109/ISSNIP.2011.6146585
[6]  
Indiveri G, 2003, PROCEEDINGS OF THE 2003 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS, VOL IV, P820
[7]   Neuromorphic silicon neuron circuits [J].
Indiveri, Giacomo ;
Linares-Barranco, Bernabe ;
Hamilton, Tara Julia ;
van Schaik, Andre ;
Etienne-Cummings, Ralph ;
Delbruck, Tobi ;
Liu, Shih-Chii ;
Dudek, Piotr ;
Hafliger, Philipp ;
Renaud, Sylvie ;
Schemmel, Johannes ;
Cauwenberghs, Gert ;
Arthur, John ;
Hynna, Kai ;
Folowosele, Fopefolu ;
Saighi, Sylvain ;
Serrano-Gotarredona, Teresa ;
Wijekoon, Jayawan ;
Wang, Yingxue ;
Boahen, Kwabena .
FRONTIERS IN NEUROSCIENCE, 2011, 5
[8]  
Izhikevich Eugene M., 2007, DYNAMICAL SYSTEMS NE
[9]  
Jespers P. G., 2010, GM ID DESIGN METHODO
[10]  
Ma Q., 2014, WIR MICR TECHN C WAM