DocumentCode
2638343
Title
High-precision Low-power Voltage Follower For Hardware Signal Processing
Author
Wojtyna, R.
Author_Institution
Technol. & Agric. Univ.
fYear
2006
fDate
22-24 June 2006
Firstpage
304
Lastpage
309
Abstract
A specific application CMOS voltage follower is presented, which is well suited to be used as a component of VLSI analog electronics such as hardware implemented artificial neural networks (ANN´s) or switched-capacitor filters (SC-filters). The main advantages of the follower are: a very high precision of operation and low power consumption. Another advantage is a low input capacitance (about 2fF) and extremely high input resistance. Compared with general purpose followers, its disadvantage is a restricted range of input voltage variations. This is the price we pay for the achieved positive features. Apart from the general idea and some previous versions of the follower, a new circuit realization is presented. SPICE simulation results concerning layouts made for a 0.35mum CMOS process are shown. These results are in good agreement with theoretical predictions as well as experimental results achieved for a 0.8mum prototype. Prototypes designed for the 0.18mum technology are currently being fabricated (in cooperation with University of Alberta in Canada) and no measurements have been performed yet
Keywords
CMOS analogue integrated circuits; VLSI; low-power electronics; neural nets; operational amplifiers; signal processing; switched capacitor filters; 0.18 micron; 0.35 micron; 0.8 micron; ANN; CMOS analog circuits; CMOS voltage follower; SC-filters; SPICE; University of Alberta; VLSI analog electronics; artificial neural networks; hardware signal processing; high-precision voltage follower; low-power electronics; low-power voltage follower; switched-capacitor filters; Artificial neural networks; Capacitance; Circuits; Energy consumption; Filters; Neural network hardware; Prototypes; Signal processing; Very large scale integration; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Mixed Design of Integrated Circuits and System, 2006. MIXDES 2006. Proceedings of the International Conference
Conference_Location
Gdynia
Print_ISBN
83-922632-2-7
Type
conf
DOI
10.1109/MIXDES.2006.1706589
Filename
1706589
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