Dual-Mode Biquadratic Filter Employing Second-Generation Voltage Conveyors

dc.contributor.authorNatchanai Roongmuanpha
dc.contributor.authorPratya Mongkolwai
dc.contributor.authorTattaya Pukkalanun
dc.contributor.authorWorapong Tangsrirat
dc.date.accessioned2025-07-21T06:10:53Z
dc.date.issued2024-02-21
dc.description.abstractIn this paper, a dual-mode biquadratic filter is suggested. The proposed filter employs two Second-Generation Voltage Conveyors (VCIIs) along with four resistors and two capacitors. The suggested filter can realize all five standard biquadratic filter functions such as lowpass (LP), bandpass (BP), highpass (HP), bandstop (BS), and allpass (AP) in both voltage-mode (VM) and current-mode (CM) without needing to modify its circuit structure. The quality factor (Q) and natural angular frequency (ωo) can be accurately and separately controlled through the passive component. It additionally offers the capability of providing the output voltage at the low-output impedance terminal in VM. The effects of the VCII non-idealities on the filter performance have been analyzed in detail. The proposed filter also offers low active and passive sensitivity features. Simulation results achieved with PSPICE software using TSMC CMOS 0.18 μm parameter have been validated and compared with the theoretical findings.
dc.identifier.doi10.1145/3653912.3653916
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/13333
dc.subjectAll-pass filter
dc.subjectVoltage-controlled filter
dc.subjectButterworth filter
dc.subjectConstant k filter
dc.subject.classificationAnalog and Mixed-Signal Circuit Design
dc.titleDual-Mode Biquadratic Filter Employing Second-Generation Voltage Conveyors
dc.typeArticle

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