Title :
Effect of asymmetric piezoelectric multimorph ceramic on frequency response characteristics of piezoelectric acoustic actuator
Author :
Hye Jin Kim ; Woo Seok Yang
Author_Institution :
Nano Convergence Sensor Res. Sect., Electron. & Telecommun. Res. Inst., Daejeon, South Korea
Abstract :
This paper proposes an asymmetric piezoelectric multimorph ceramic to improve sound quality of the piezoelectric acoustic actuator which means flat and smooth frequency response characteristics on a wide playing frequency range. In order to investigate the effect of asymmetric piezoelectric multimorph ceramic on the frequency response characteristics of the piezoelectric acoustic actuator, we compared and analyzed the vibrational frequency response and output acoustic characteristics of the piezoelectric acoustic actuators fabricated with 2 types of 3-3 symmetric and 2-4 asymmetric piezoelectric multimorph ceramics. The significant dip of 5 kHz in the output sound pressure of 2-4 asymmetric piezoelectric ceramic speaker was not only greatly by 20 dB, but the percentage of THD at 5 kHz was dramatically reduced from 96 % to 39 %, compared to the results of 3-3 symmetric piezoelectric ceramic speaker. As a result, it is obvious that the asymmetric piezoelectric multimorph ceramic can improve the sound quality of the piezoelectric acoustic actuator to have flat and smooth frequency response characteristics, compared to the symmetric piezoelectric multimorph ceramic.
Keywords :
audio equipment; ceramics; frequency response; piezoelectric actuators; 2-4 asymmetric piezoelectric ceramic speaker; 2-4 asymmetric piezoelectric multimorph ceramics; 3-3 symmetric piezoelectric ceramic speaker; 3-3 symmetric piezoelectric multimorph ceramics; THD; asymmetric piezoelectric multimorph ceramic; flat frequency response characteristic; frequency 5 kHz; frequency response characteristics; output acoustic characteristics; piezoelectric acoustic actuator; smooth frequency response characteristic; sound quality; symmetric piezoelectric multimorph ceramic; vibrational frequency response; Actuators; Frequency response; Laser modes; Measurement by laser beam; Piezoelectric polarization; Vibration measurement; asymmetric ceramic; frequency response; multimorph ceramic; piezoelectric acoustic actuator; piezoelectric speaker;
Conference_Titel :
Applications of Ferroelectric and Workshop on the Piezoresponse Force Microscopy (ISAF/PFM), 2013 IEEE International Symposium on the
Conference_Location :
Prague
DOI :
10.1109/ISAF.2013.6748723