CMOS Design of a Current-Mode Multiplier/Divider Circuit with Applications to Fuzzy Controllers

被引:0
|
作者
Iluminada Baturone
Santiago Sa´nchez-Solano
Jose´ L. Huertas
机构
[1] Centro Nacional de Microelectro´nica (CNM),Instituto de Microelectro´nica de Sevilla (IMSE)
[2] Edificio CICA,Instituto de Microelectro´nica de Sevilla (IMSE)
[3] Centro Nacional de Microelectro´nica (CNM),undefined
[4] Edificio CICA,undefined
关键词
CMOS multiplier/divider circuits; current-mode signal processing; continuous-time data converters; fuzzy logic hardware;
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学科分类号
摘要
Multiplier and divider circuits are usually required in the fields of analog signal processing and parallel-computing neural or fuzzy systems. In particular, this paper focuses on the hardware implementation of fuzzy controllers, where the divider circuit is usually the bottleneck. Multiplier/divider circuits can be implemented with a combination of A/D-D/A converters. An efficient design based on current-mode data converters is presented herein. Continuous-time algorithmic converters are chosen to reduce the control circuitry and to obtain a modular design based on a cascade of bit cells. Several circuit structures to implement these cells are presented and discussed. The one that is selected enables a better trade-off speed/power than others previously reported in the literature while maintaining a low area occupation. The resulting multiplier/divider circuit offers a low voltage operation, provides the division result in both analog and digital formats, and it is suitable for applications of low or middle resolution (up to 9 bits) like applications to fuzzy controllers. The analysis is illustrated with Hspice simulations and experimental results from a CMOS multiplier/divider prototype with 5-bit resolution. Experimental results from a CMOS current-mode fuzzy controller chip that contains the proposed design are also included.
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页码:199 / 210
页数:11
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