2019
DOI: 10.22266/ijies2019.1231.02
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Automatic Resonance-Frequency Tuning and Tracking Technique for a 1MHz Ultrasonic-Piezoelectric-Transducer Driving Circuit in Medical Therapeutic Applications Using dsPIC Microcontroller and PLL Techniques

Abstract: Driving ultrasonic piezoelectric transducer (UPZT) at maximum performance in real-time operations is a very challenging task due to the deterioration problem of ultrasound output causing by human-skin impedance fluctuations. This paper proposed ideas and solutions on how to maximize the UPZT driving circuit performance in or deter to solve the deterioration problem. A newly-designed feedback control block with a phase-locked-loop (PLL) technique controlled by microcontroller has been added to the conventional … Show more

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Cited by 2 publications
(1 citation statement)
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References 14 publications
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“…Also, the mechanical quality factor of the transducer can be calculated by this model. Boontaklang and Chompoo-Inwai [12] used an equivalent RLC circuit model to propose a novel tracking and tuning technique for an ultrasonic transducer. They clearly explained a way of calculating the frequency response of an RLC model (e.g., admittance circle, phase, and amplitude diagram).…”
Section: Introductionmentioning
confidence: 99%
“…Also, the mechanical quality factor of the transducer can be calculated by this model. Boontaklang and Chompoo-Inwai [12] used an equivalent RLC circuit model to propose a novel tracking and tuning technique for an ultrasonic transducer. They clearly explained a way of calculating the frequency response of an RLC model (e.g., admittance circle, phase, and amplitude diagram).…”
Section: Introductionmentioning
confidence: 99%