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作 者:Tada Comedang Pattana Intani Tada Comedang;Pattana Intani(Department of Electrical Engineering, Pathumwan Institute of Technology, Bangkok, Thailand;Electric and Energy Research (EER), Pathumwan Institute of Technology, Bangkok, Thailand)
机构地区:[1]Department of Electrical Engineering, Pathumwan Institute of Technology, Bangkok, Thailand [2]Electric and Energy Research (EER), Pathumwan Institute of Technology, Bangkok, Thailand
出 处:《Circuits and Systems》2016年第13期4201-4212,共12页电路与系统(英文)
摘 要:This paper presents a study of fractional order quadrature oscillators based on current-controlled current follower transconductance amplifiers (CCCFTA). The design realisation and performance of the fractional order quadrature oscillators have been presented. The quadrature oscillators are constructed using three fractional capacitors of orders α = 0.5. The fractional capacitor is not available on the market or in the PSPICE program. Fortunately, the fractional capacitor can be realised by using the approximate method for the RC ladder network approximation. The oscillation frequency and oscillation condition can be electronically/orthogonally controlled via input bias currents. Due to high-output impedances, the proposed circuit enables easy cascading in current-mode (CM). The PSPICE simulation results are depicted, and the given results agree well with the anticipated theoretical outcomes.This paper presents a study of fractional order quadrature oscillators based on current-controlled current follower transconductance amplifiers (CCCFTA). The design realisation and performance of the fractional order quadrature oscillators have been presented. The quadrature oscillators are constructed using three fractional capacitors of orders α = 0.5. The fractional capacitor is not available on the market or in the PSPICE program. Fortunately, the fractional capacitor can be realised by using the approximate method for the RC ladder network approximation. The oscillation frequency and oscillation condition can be electronically/orthogonally controlled via input bias currents. Due to high-output impedances, the proposed circuit enables easy cascading in current-mode (CM). The PSPICE simulation results are depicted, and the given results agree well with the anticipated theoretical outcomes.
关 键 词:Fractional Order Quadrature Oscillator Current-Controlled Current Follower Transconductance Amplifier
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