Title :
Multilayer modal actuator-based piezoelectric transformers
Author :
Huang, Yao-Tien ; Wu, Wen-Jong ; Wang, Yen-Chieh ; Lee, Chih-Kung
Author_Institution :
Inst. of Appl. Mechanics, Nat. Taiwan Univ., Taipei
fDate :
2/1/2007 12:00:00 AM
Abstract :
An innovative, multilayer piezoelectric transformer equipped with a full modal filtering input electrode is reported herein. This modal-shaped electrode, based on the orthogonal property of structural vibration modes, is characterized by full modal filtering to ensure that only the desired vibration mode is excited during operation. The newly developed piezoelectric transformer is comprised of three layers: a multilayered input layer, an insulation layer, and a single output layer. The electrode shape of the input layer is derived from its structural vibration modal shape, which takes advantage of the orthogonal property of the vibration modes to achieve a full modal filtering effect. The insulation layer possesses two functions: first, to couple the mechanical vibration energy between the input and output, and second, to provide electrical insulation between the two layers. To meet the two functions, a low temperature, co-fired ceramic (LTCC) was used to provide the high mechanical rigidity and high electrical insulation. It can be shown that this newly developed piezoelectric transformer has the advantage of possessing a more efficient energy transfer and a wider optimal working frequency range when compared to traditional piezoelectric transformers. A multilayer piezoelectric, transformer-based inverter applicable for use in LCD monitors or portable displays is presented as well
Keywords :
actuators; ceramics; filtering theory; invertors; liquid crystal displays; piezoelectric devices; shear modulus; transformers; vibrations; LCD monitors; electrical insulation; energy transfer; full modal filtering; high mechanical rigidity; input electrode; insulation layer; inverter; low temperature cofired ceramic; mechanical vibration energy; multilayer modal actuator; multilayered input layer; piezoelectric transformers; portable displays; single output layer; structural vibration modes; Ceramics; Dielectrics and electrical insulation; Electrodes; Energy exchange; Filtering; Nonhomogeneous media; Power transformer insulation; Shape; Temperature; Vibrations; Acoustics; Computer-Aided Design; Electrochemistry; Electronics; Energy Transfer; Equipment Design; Equipment Failure Analysis; Transducers;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2007.249