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Item type:Item, Electronically Tunable Differential Difference Current Conveyor Using OTAs(2021-04-01) ;Sukhawit, Chuthitep ;Burapattanasiri, Bancha ;Torteanchai, Usa ;Lerkvaranyu, SomkiatKnobnob, BoonyingThis paper presents a new electronically tunable differential difference current conveyor (DDCC) using operational transconductance amplifiers (OTAs). Unlike conventional DDCC, the proposed DDCC offers current gain between z- and x-terminal that can be controlled electronically by bias currents. The DDCC-based OTA can be investigated both simulation and experiment tests. The proposed DDCC is used to implement a quadrature oscillator to confirm workability. - Some of the metrics are blocked by yourconsent settings
Item type:Item, FDCCII -Based Third-Order Quadrature Sinusoidal Oscillator(2018-08-20) ;Wareechol, Eakluck ;Knobnob, BoonyingKumngern, MontreeThis paper presents a new mixed-mode third-order quadrature sinusoidal oscillator employing one fully differential second-generation current conveyor (FDCCII), three capacitors and three resistors. The circuit provides two quadrature voltage outputs and two quadrature current outputs into single topology. The condition and frequency of oscillations can be orthogonally controlled. FDCCII-based 0.35±m CMOS process is used to implement and simulate the proposed oscillator. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Current-Mode Quadrature Qscillator and Universal Filter Using ZC-CCFTAs(2018-07-02) ;Kumngern, MontreeKnobnob, BoonyingIn this paper, a new current-mode quadrature oscillator and universal filter employing two z-copy current controlled current follower transconductance amplifiers (ZC-CCFTAs) and two grounded capacitors is presented. Either a quadrature oscillator or a universal filter can be obtained into single topology. In case the circuit works as a quadrature oscillator, the condition of oscillation and the frequency of oscillation can be orthogonally controlled. In case the circuit works as a universal filter, low-pass, high-pass, band-pass, band-stop and all-pass filters can be simultaneously obtained. SPICE simulations results are presented to verify the validity of proposed circuit, which are consistent with theoretical predictions. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Five-Input One-Output Universal Filter Using Simple CMOS OTAs(2018-07-02) ;Knobnob, Boonying ;Suksaibul, PichaiKumngern, MontreeThis paper presents a new five-input one-output voltage-mode universal filter using simple operational transconductance amplifiers (OTAs). The circuit uses six OTAs and two grounded capacitors. The circuit can realize low-pass, band-pass, high-pass, band-stop and all-pass filters into one topology. The natural frequency and the quality factor of filters can be electronically controlled by adjusting the bias currents. Also, the circuit possesses high input impedance for all filtering functions. The simulation results have been verified by PSPICE simulations using 0.18 μm CMOS process from TSMC.
