DocumentCode
1282182
Title
CMOS layout design of the hysteresis McCulloch-Pitts neuron
Author
Kurokawa, Takashi ; Lee, Kwan Chul ; Cho, Y.B. ; Takefuji, Y.
Author_Institution
Dept. of Comput. Sci., Nat. Defense Acad., Yokosuka, Japan
Volume
26
Issue
25
fYear
1990
Firstpage
2093
Lastpage
2095
Abstract
A McCulloch-Pitts neuron is the simplified neuron model which has been successfully used for many optimisation problems. The neural network with the hysteresis property can suppress the oscillatory behaviours of neural dynamics so that the convergence time is shortened. In this paper, digital CMOS layout design of the hysteresis McCulloch-Pitts neuron is presented. Based on simulation results using the hysteresis McCulloch-Pitts binary neuron model, a 6-bit fixed point 2´s complement arithmetic was adopted for the calculation of the input U of each neuron. Each neuron needs 204 transistors and requires a 399 lambda *368 lambda layout area using the MOSIS scalable CMOS/bulk (SCMOS) VLSI technology with 2 mu m rule of P well, double level metal. Layout design of the hysteresis McCulloch-Pitts neuron chip was completed, and fabrication of the chip and the design for the test circuit for the fabricated CMOS VLSI chip are underway at present.
Keywords
CMOS integrated circuits; VLSI; circuit layout CAD; digital integrated circuits; neural nets; 2 micron; 6-bit fixed point 2´s complement arithmetic; MOSIS scalable CMOS/bulk VLSI operation; digital CMOS layout design; double level metal; hysteresis McCulloch-Pitts neuron; input U of each neuron; layout area; neuron model; technology;
fLanguage
English
Journal_Title
Electronics Letters
Publisher
iet
ISSN
0013-5194
Type
jour
DOI
10.1049/el:19901348
Filename
59616
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