Title :
A Multicell Linear Power Amplifier for Driving Piezoelectric Loads
Author :
Jeng, Shyr-Long ; Tung, Yung-Cheng
Author_Institution :
Dept. of Autom. Eng., Ta-Hwa Inst. of Technol., Hsinchu
Abstract :
A multicell amplifier is developed by connecting floating signal modules in series to drive piezoelectric devices. The amplifier generates a high voltage gain by summing the individual module gains. The bandwidth equals that of a single module. The multicell amplifier provides a means of achieving high power and can divide the total power dissipation among the modules, because each module delivers the same output voltage and current. A prototype circuit that consists of six floating signal modules exhibits precise linear operation over a wide range of input frequencies and capacitive loads. The circuit provides a plusmn 200-V output swing with a corner frequency of around 100 kHz at a driving capacitive load of 0.1 muF. The slew rate is as high as 115 V/mus, and the maximum output current is plusmn2.6 A. The practicality and performance of the presented modular implementation concepts were verified by the close match between the simulated and experimental results.
Keywords :
piezoelectric devices; power amplifiers; switching circuits; capacitance 0.1 muF; capacitive load driving; current -2.6 A; current 2.6 A; floating signal modules; high voltage gain; multicell linear power amplifier; piezoelectric loads driving; precise linear operation; total power dissipation; voltage -200 V; voltage 115 V; voltage 200 V; Bandwidth; Circuits; Frequency; High power amplifiers; Joining processes; Piezoelectric devices; Power amplifiers; Power dissipation; Prototypes; Voltage; Piezoelectric device; power amplifiers; switching amplifiers;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2008.926709