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Second generation fully differential current conveyor based analog circuits 被引量:1

Second generation fully differential current conveyor based analog circuits
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摘要 In this paper, we present a new voltage-mode biquad filter that uses a six-terminal CMOS fully differential current conveyor(FDCCII). The FDCCII with only 23 transistors in its structure and operating at ± 1.5 V, is based on a class AB fully differential buffer. The proposed filter has the facility to tune gain, ωo and Q. A circuit division circuit(CDC) is employed to digitally control the FDCCII block. This digitally controlled FDCCII is used to realize a new reconfigurable fully-differential integrator and differentiator. We performed SPICE simulations to determine the performance of all circuits using CMOS 0.25 μm technology. In this paper, we present a new voltage-mode biquad filter that uses a six-terminal CMOS fully differential current conveyor(FDCCII). The FDCCII with only 23 transistors in its structure and operating at ± 1.5 V, is based on a class AB fully differential buffer. The proposed filter has the facility to tune gain, ωo and Q. A circuit division circuit(CDC) is employed to digitally control the FDCCII block. This digitally controlled FDCCII is used to realize a new reconfigurable fully-differential integrator and differentiator. We performed SPICE simulations to determine the performance of all circuits using CMOS 0.25 μm technology.
作者 A.Tonk N.Afzal
出处 《Journal of Semiconductors》 EI CAS CSCD 2019年第4期23-28,共6页 半导体学报(英文版)
基金 UGC for providing valuable support in form of the NET-JRF grant
关键词 CURRENT conveyors fully DIFFERENTIAL digitally CONTROLLED INTEGRATOR DIFFERENTIATOR current conveyors fully differential digitally controlled integrator differentiator
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