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    Dual-Mode Tunable First-Order Universal Filters with Single VDGA
    (2024-01-01)
    Roongmuanpha, Natchanai
    ;
    Pukkalanun, Tattaya
    ;
    Tangsrirat, Worapong
    This article explores two compact structures to implement dual-mode first-order universal filters, providing lowpass, highpass, and allpass responses from the same structure. Both circuits offer savings in active components as they employ a single voltage differencing gain amplifier (VDGA). The first proposed filter has voltage inputs and current/voltage outputs with a single capacitor, which can perform three distinct filter functions in both voltage mode (VM) and trans-admittance mode (TAM). The latter filter, with current inputs and current/voltage outputs, consists of one capacitor and one resistor, which is capable of operating in both current mode (CM) and trans-impedance mode (TIM). Both of the proposed filters also offer an electronic adjustment of the passband gain and pole frequency through the VDGA’s transconductance values. The non-ideal implications of the VDGA on the first-order filters' performance are thoroughly examined. Computer simulations and experimental testing measurements validate the theoretical analyses.
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    Floating Inductance Simulator with Electronic Tuning Property Using only Active Elements
    (2023-01-01)
    Roongmuanpha, Natchanai
    ;
    Mongkolwai, Pratya
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    Pukkalanun, Tattaya
    ;
    Dumawipata, Teerasilapa
    ;
    Tangsrirat, Worapong
    This paper discusses the active-only electronically tunable floating lossless inductance simulator, which uses a single fully balanced-voltage differencing buffered amplifier (FB-VDBA) and one operational amplifier (OA). For this implementation, only integrated circuit packages with no external passive components are utilized. The synthetic equivalent inductance value is electronically adjustable via the transconductance gain of the FB-VDBA. Non-idealities of the active element have produced their effects. Using PSPICE with TSMC 0.25-mum CMOS parameter and the LM741 type OA, the performance of the proposed circuit and its application as a second-order voltage-mode lowpass filter is demonstrated. The numerical simulations closely matched the theoretical results.
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    High-Input-Impedance Four-Input Single-Output Voltage-Mode Biquadratic Filter with Only VDTAs and Grounded Capacitors
    (2022-01-01)
    Satansup, Jetsdaporn
    ;
    Pukkalanun, Tattaya
    ;
    Tangsrirat, Worapong
    This paper presents a voltage-mode universal biquadratic filter with voltage differencing transconductance amplifiers (VDTAs) as active components. The proposed filter comprises four inputs and a single output and can perform all five general biquadratic filter functions, namely lowpass, bandpass, highpass, bandstop, and allpass responses, without modifying the circuit architecture. It also offers the advantages of resistorless implementation with only two grounded capacitors, orthogonal adjustment of the natural angular frequency and the quality factor, as well as the absence of any constraint related to the values of input signals. Moreover, because the circuit contains all of the high input impedance levels, it may be cascaded without the requirement of additional buffers. The suggested filter's functioning has been validated by simulations using the PSPICE application.
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    Practical Floating Capacitance Multiplier Implementation with Commercially Available IC LT1228s
    (2021-03-01)
    Roongmuanpha, Natchanai
    ;
    Tangsrirat, Worapong
    A practical realization of a tunable floating capacitance multiplier using commercially available integrated circuits, namely LT1228 is proposed. The synthetic capacitor utilizes only two IC LT1228s along with two passive components (one resistor and one capacitor). The capacitance multiplication factor is electronically controllable through the transconductance gain of the LT1228. The effects of non-ideal transfer gains and parasitic elements of the LT1228 on the circuit performance have been evaluated in detail. The applicability of the proposed floating capacitance multiplier as a second-order band-pass filter is also presented. The claimed theory is verified by several PSPICE simulations and experimental test results.
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    Three-Input One-Output Voltage-Mode Biquadratic Filter Using Single VDBA
    (2020-03-01)
    Roongmuanpha, Natchanai
    ;
    Pukkalanun, Tattaya
    ;
    Tangsrirat, Worapong
    In this article, a voltage-mode universal biquadratic filter with triple inputs and single output (TISO) is presented. The circuit consists of only one voltage differencing buffered amplifier (VDBA) along with two capacitors and one resistor. The proposed circuit can realize all five standard biquadratic filter functions namely, lowpass (LP), highpass (HP), bandpass (BP), bandstop (BS) and allpass (AP) without disturbing the circuit structure. The quality factor (Q) and the natural angular frequency (ωo) of the proposed circuit can be controlled by means of the transconductance gain of the VDBA. The circuit also provides low sensitivity performance. The potentiality of the proposed TISO biquadratic filter has been proved by PSPICE program based on TSMC 0.25-μm CMOS technology.
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    On The Realization of Simulated Lossy Inductors Using Voltage Differencing Buffered Amplifiers
    (2020-03-01)
    Moonmuang, Pitchayanin
    ;
    Roongmuanpha, Natchanai
    ;
    Pukkalanun, Tattaya
    ;
    Tangsrirat, Worapong
    This paper reports four topologies, all simulating floating/grounded lossy inductors, using voltage differencing buffered amplifiers (VDBAs) as active elements. The simulated equivalent resistance and inductance values of the simulators can be adjusted electronically through the VDBA transconductance parameter. Non-ideal gain outcomes of the VDBA on the realized inductor circuits are finalized. The critical active and passive sensitivities are obtained to be low.
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    Voltage Differencing Gain Amplifier-Based Quadrature Oscillator Employing All Grounded Passive Elements
    (2018-12-24)
    Satansup, Jetsdaporn
    ;
    Tangsrirat, Worapong
    ;
    Surakampontorn, Wanlop
    This article deals with the configuration of an electronically tunable quadrature oscillator using voltage differencing gain amplifiers (VDGAs) as active devices. The circuit employs a single grounded resistor and two grounded capacitors, which is advantageous from the monolithic integration point of view. It serves as an alternative application of VDGA device and provides the advantages of availability of two quadrature output voltages, independent control of oscillation condition and oscillation frequency by electronic means through the external biasing currents, and good various sensitivity performances. The results from PSPICE simulation program are included that demonstrate the working of the proposed circuit.
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    Electronically controllable SITO multifunction filter with single VDTA
    (2018-08-13)
    Channumsin, Orapin
    ;
    Tangsrirat, Worapong
    This paper presents a modern second-order multifunction filter with single input and triple output terminals employing only single VDTA and four passive elements. It is capable of generating the three standard biquadratic filtering functions, namely lowpass (LP), bandpass (BP) and highpass (HP) responses, simultaneously from the same topology. The circuit also offers the advantage of an electronic adjusting of the natural angular frequency ±o and the quality factor (Q) through the VDTA's transconductance gains. The tracking error effects on the performance of the proposed filter are essayed. PSPICE simulations of the presented filter are performed based on TSMC 0.25-± m CMOS technology.
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    Two-input two-output current-mode universal biquad using only VDTAs and grounded capacitors
    (2018-06-08)
    Moonmuang, Pitchayanin
    ;
    Mongkolwai, Pratya
    ;
    Tangsrirat, Worapong
    A two-input two-output current-mode universal biquad employing only two voltage differencing transconductance amplifiers (VDTAs) and two grounded capacitors is introduced. By appropriately connecting the input and output terminals, the proposed circuit can realize lowpass, bandpass, highpass, bandstop and allpass current responses. It also exhibits an independent electronic control of the natural angular frequency (ω<inf>o</inf>) and the quality factor (Q) by properly setting the transconductance values of the VDTAs. No critical component matching choices are imposed for generating all the filter functions, and all incremental parameter sensitivities are low.
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    Single-input three-output dual-mode universal biquad realization based on floating-current-source building blocks
    (2017-11-03)
    Mongkolwai, Pratya
    ;
    Unhavanich, Sumalee
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    Tangsrirat, Worapong
    A novel dual-mode universal biquadraic filter with one input and three outputs is presented, which contains only two floating current sources (FCSs), and four external passive components. The presented filter exhibits the following properties : capable of working either voltage-mode or current-mode, electronically controllable of the natural angular frequency (Ω<inf>o</inf>) by means of the transconductance gains, independent grounded-resistance control of the quality factor (Q), simultaneous realization of all the three basic filtering signals, no component matching constraints and low active and passive component sensitivities. To confirm the theory, the proposed circuit is simulated with PSPICE program using TSMC 0.25-μm CMOS technology.