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Modeling and Investigation of Multilayer Piezoelectric Transformer with a Central Hole for Heat Dissipation
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  • Modeling and Investigation of Multilayer Piezoelectric Transformer with a Central Hole for Heat Dissipation
  • Modeling and Investigation of Multilayer Piezoelectric Transformer with a Central Hole for Heat Dissipation
저자명
Thang. Vo Viet,Kim. In-Sung,Jeong. Soon-Jong,Kim. Min-Soo,Song. Jae-Sung
간행물명
Journal of electrical engineering & technology
권/호정보
2011년|6권 5호|pp.671-676 (6 pages)
발행정보
대한전기학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

A multilayer square-type piezoelectric transformer with a hole at the center was investigated in this paper. Temperature distribution at the center was improved by using this construction, therefore increasing input voltage and output power. This model was simulated and investigated successfully by applying a finite element method (FEM) in ATILA software. An optimized structure was then fabricated, examined, and compared to the simulation results. Electrical characteristics, including output voltage and output power, were measured at different load resistances. The temperature distribution was also monitored using an infrared camera. The piezoelectric transformer operated at first radial vibration mode and a frequency area of 70 kHz. The 16 W output power was achieved in a three-layer transformer with 96% efficiency and $20^{circ}C$ temperature rise from room temperature under 115 V driving voltage, 100 ${Omega}$ matching load, $28{ imes}28{ imes}1.8mm$ size, and 2 mm hole diameter. With these square-type multilayer piezoelectric transformers, the temperature was concentrated around the hole and lower than in piezoelectric transformers without a hole.