Jaikla, Winai
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Preferred name
Jaikla, Winai
Alternative Name
Jaikla, W.
Main Affiliation
Email
winai.ja@kmitl.ac.th
2 results
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Item type:Publication, Electronically Tunable Quadrature Sinusoidal Oscillator Using VDDDAs(2021-03-10) ;Satipar, Den ;Intani, PattanaThis research proposes the sinusoidal oscillator that can provide two sine waves with 90° degree phase shift. The proposed oscillator is derived from lossy and lossless integrator circuits. The proposed quadrature sinusoidal oscillator uses one resistor, two grounded capacitors and two active elements, called voltage differencing differential difference amplifier (VDDDA). By adding additional two resistors, the voltage magnitude of a sinusoidal signal is controllable with low impedance output voltage node. The frequency of the generated sine wave and the condition of oscillation is orthogonally adjusted. In addition, the condition of the signal generator can be adjusted electronically. The performance of the presented sine wave generator has been validated through Pspice simulation. The active element, VDDDA is implemented from two commercial ICs, LM13700 and AD830. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Quadrature Sinusoidal Oscillator with Grounded Resistors and Capacitors Using VDCCs(2021-03-10) ;Satipar, Den ;Intani, PattanaThis paper presents the quadrature oscillator using voltage differencing current conveyors (VDCCs)-based on the LC circuit parallel to the positive and negative resistors. In this design, two active devices, VDCC is constructed with two grounded capacitors and three grounded resistors. The sine waves are obtained both voltage and current mode. It can generate quadrature sinusoidal voltage output and two current outputs with amplitude controllability. Two current outputs with high impedance are180ºdegree phase difference are also obtained. Adjusting the condition and frequency of signal generation can be done independently via electronic feature. The total harmonic distortion is less than 0.97 % and power consumption at a maximum frequency of 1.12MHz is 1.82mW at power supply voltages ±0.9 V. The workability of the circuit is verified by PSPICE.
