Presentation 2006/7/5
Dual-Input Twin-T Quartz Circuit and its Null Frequency Control Behavior
Koichi HIRAMA, Yasuhiko NAKAGAWA, Takeshi YANAGISAWA,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) We propose a twin-T-type quartz resonance circuit in which the null frequency can be changed by adjusting the applied voltage ratio. In the circuit construction, two sets of T-type circuits are used in which a quartz resonator is placed in the shunt branch and the output of each circuit settles in one terminal. The changeable frequency range exceeds the limit of the electromechanical coupling factor of the piezoelectric resonator used when the resonance frequency of a coil and a capacitor in the series branch of the twin-T-type circuit is set to almost the same value as the resonance frequency of the resonators used in the twin-T-type circuit. The deterioration in effective Q-value is slightly within the entire range obtained by changing the voltage ratio in the twin-T-type circuit. We propose an oscillator circuit in which the circuit is used as a feedback element of the negative feedback loop.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Frequency control / Quartz resonator / T-type Circuit / Voltage ratio / Electromechanical coupling factor
Paper # US2006-29
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Committee US
Conference Date 2006/7/5(1days)
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Registration To Ultrasonics (US)
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Dual-Input Twin-T Quartz Circuit and its Null Frequency Control Behavior
Sub Title (in English)
Keyword(1) Frequency control
Keyword(2) Quartz resonator
Keyword(3) T-type Circuit
Keyword(4) Voltage ratio
Keyword(5) Electromechanical coupling factor
1st Author's Name Koichi HIRAMA
1st Author's Affiliation Electrical and Electronics Engineering, University of Yamanashi()
2nd Author's Name Yasuhiko NAKAGAWA
2nd Author's Affiliation Electrical and Electronics Engineering, University of Yamanashi
3rd Author's Name Takeshi YANAGISAWA
3rd Author's Affiliation Tokyo Institute of Technology
Date 2006/7/5
Paper # US2006-29
Volume (vol) vol.106
Number (no) 147
Page pp.pp.-
#Pages 6
Date of Issue