Primary measurement of total ultrasonic power with improved accuracy in rf voltage measurement
Author(s) -
P. K. Dubey,
Ashok Kumar,
Yudhisther Kumar,
Reeta Gupta,
Deepa Joshi
Publication year - 2010
Publication title -
review of scientific instruments
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.605
H-Index - 165
eISSN - 1089-7623
pISSN - 0034-6748
DOI - 10.1063/1.3482157
Subject(s) - ultrasonic sensor , voltage , observational error , amplifier , materials science , acoustics , input offset voltage , accuracy and precision , transducer , system of measurement , offset (computer science) , rf power amplifier , physics , optoelectronics , computer science , operational amplifier , mathematics , astronomy , statistics , cmos , quantum mechanics , programming language
Out of the various existing ultrasonic power measurement techniques, the radiation force balance method using microbalance is most widely used in low power (below 1 W) regime. The major source of uncertainty associated with this technique is the error in ac voltage measurement applied to the transducer for the generation of ultrasonic waves. The sources that deteriorate the ac voltage measurement accuracy include cable length and impedance mismatch. We introduce a new differential peak to peak measurement approach to reduce the ac voltage measurement error. The method holds the average peak amplitude of each polarity. Ultralow offset difference amplifier is used to measure peak to peak voltage. The method is insensitive to the variations in the dc offset of the source. The functionality of this method has been tested and compared with the conventional rf voltage measurement method. The output of this proposed technique is dc, which can be measured with an error of less than 0.1%
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