DocumentCode :
3220165
Title :
Modulation type dual-mode oscillator intended for micro-chip realization
Author :
Kosykh, Anatoly V. ; Zavyalov, Sergei A.
Author_Institution :
Omsk State Eng. Univ., Russia
fYear :
1995
fDate :
31 May-2 Jun 1995
Firstpage :
542
Lastpage :
545
Abstract :
Dual-mode oscillator is an oscillator based on simultaneous excitation of resonator modes. SC-cut resonators with B- and C- modes excitation are used as dual-mode most often. Each resonator mode has its own frequency vs. temperature dependence. When a resonator is being excited on two modes simultaneously, the mode frequency ratio is uniquely determined by temperature. This unique relation allows one to use C- and B- mode frequency ratio as a resonator proper thermosensor. This thermosensor has full spatial coincidence with a vibrated resonator plate and, therefore, it is an ideal resonator temperature measuring device. Due to quartz nature such sensor is very precise and stable. From the above reasoning dual-mode resonator is an ideal base for thermocompensated (TCXO) and ovenized (OCXO) oscillators, in the cases when we need to measure the quartz plate proper temperature with maximum accuracy. The concepts of dual-mode oscillators design have been discussed in this work. Considerable attention has been given to the constant B-mode excitation level keeping under external factors effects and resonator motional resistance variation. The micro-chip realizable dual-mode oscillator circuit is given. To demonstrate the validity of ideas the interim prototype of micro-chip dual-mode oscillator have been investigated. The main result of this work is that we show that dual-mode oscillators could be realized as a small-size micro device
Keywords :
compensation; crystal oscillators; piezoceramics; quartz; OCXO oscillator; SC-cut resonators; TCXO oscillator; external factors effects; interim prototype; micro-chip realization; mode frequency ratio; modulation type dual-mode oscillator; ovenized oscillator; quartz plate proper temperature; resonator motional resistance variation; resonator proper thermosensor; thermocompensated oscillators; vibrated resonator plate; Circuits; Electrical resistance measurement; Frequency; Oscillators; Prototypes; Temperature dependence; Temperature distribution; Temperature measurement; Temperature sensors; Vibration measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Frequency Control Symposium, 1995. 49th., Proceedings of the 1995 IEEE International
Conference_Location :
San Francisco, CA
Print_ISBN :
0-7803-2500-1
Type :
conf
DOI :
10.1109/FREQ.1995.484051
Filename :
484051
Link To Document :
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