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Item type:Item, Low-voltage all-nmos four-quadrant current multiplier(2018-04-01) ;Pukkalanun, TattayaTangsrirat, WorapongThis paper presents a low-voltage four-quadrant current-mode multiplier circuit using all-NMOS technique. The circuit is constructed using current-squaring function circuits and simple current mirrors, where all small-signal currents pass through only NMOS transistors. The proposed current multiplier is simple and suitable for low-voltage, low-power operation. The circuit performances were demonstrated by PSPICE simulations with TSMC 0.35-μm CMOS process. To show the basic function of the proposed circuit, the frequency doubling and amplitude modulating circuits have been performed and simulated. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Simple current-mode analog multiplier, divider, square-rooter and squarer based on CDTAs(2011-03-01) ;Tangsrirat, Worapong ;Pukkalanun, Tattaya ;Mongkolwai, PratyaSurakampontorn, WanlopIn this paper, the design of simple analog current-mode multiplier, divider, square-rooter and squarer circuits using only two current differencing transconductance amplifiers (CDTAs) is proposed. With the selection of the applied input currents, the proposed circuit can perform four-quadrant current multiplication, division and current-controlled current amplification, without changing its configuration. Moreover, the current-mode square-rooter and squarer circuits can easily be obtained with the possibility of electronically transfer gain adjustment by slight modification of the proposed configuration. All the proposed circuits are insensitive to ambient temperature variations. Additionally, the CDTA non-ideality effects on the proposed circuits are also investigated and discussed. The performances of the realized circuits are examined by PSPICE simulations. © 2010 Elsevier GmbH. All rights reserved. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Resistorless realization of current-mode first-order allpass filter using current differencing transconductance amplifiers(2010-02-01) ;Tangsrirat, Worapong ;Pukkalanun, TattayaSurakampontorn, WanlopThis paper presents a realization of a current-mode first-order allpass filter using two current differencing transconductance amplifiers (CDTAs) as the active components and one virtually grounded capacitor as the only passive component. The proposed filer requires no external resistor and is electronically adjustable by varying the external bias current of the CDTA. No component-matching constraints are required. The circuit realizes both inverting and non-inverting types of allpass filters, and also exhibits high-output impedances, which are easy cascading in the current-mode operation. As an application of the proposed CDTA-based allpass section, a current-mode quadrature oscillator is realized. PSPICE simulation results are given to confirm the theoretical analysis. © 2010 Elsevier Ltd. All rights reserved. - Some of the metrics are blocked by yourconsent settings
Item type:Item, Current-mode multiphase sinusoidal oscillator using CDTA-based allpass sections(2009-07-01) ;Tangsrirat, Worapong ;Tanjaroen, WasonPukkalanun, TattayaIn this work, a current tunable current-mode multiphase sinusoidal oscillator (MSO) employing current differencing transconductance amplifier (CDTA)-based first-order allpass sections is presented. The proposed MSO circuit, which uses only two CDTAs and one virtually grounded capacitor for each phase, can generate arbitrary 2 n-phase current-output signals (n = 2, 3, 4, ...) equally spaced in phase, all at high output impedance terminals. The oscillation condition and the oscillation frequency can be controlled electronically and independently by adjusting the bias current of the CDTA. The oscillator has low-sensitivity performance. Simulation results are also given to verify the functionality of the proposed oscillator. © 2008 Elsevier GmbH. All rights reserved.
