DocumentCode
767841
Title
A novel microcomputer temperature-compensating method for an overtone crystal oscillator
Author
Li, MinQiang ; Huang, Xianhe ; Tan, Feng ; Fan, YanHong ; Liang, Xun
Author_Institution
Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Volume
52
Issue
11
fYear
2005
Firstpage
1919
Lastpage
1922
Abstract
In this paper, a novel microcomputer temperature-compensating method for an overtone crystal oscillator (MCOXO) is presented. In this method, a ceramic oscillator is chosen, and its output frequency is mixed with the output frequency of an overtone crystal oscillator. A crystal filter is used to suppress the spurious mixing products. A microcomputer is used to control the switch capacitance array that is connected to the ceramic oscillator circuit. The frequency deviation of the crystal oscillator is directly compensated by the output frequency of the ceramic oscillator. As a result, the method is able to overcome the disadvantages of frequency stability degradation and phase noise deterioration that are provoked by adding inductance or frequency multiplication in traditional compensating approaches. At the same time, this method is able to compensate a quite wide frequency range and many types of oscillators, not just crystal oscillators. The experimental compensating results show that, using this method, the frequency-temperature stability of a 100 MHz 5th overtone temperature-compensated crystal oscillator can achieve /spl les/ /spl plusmn/2/spl times/10/sup -6/ for 0-70/spl deg/C.
Keywords
crystal filters; crystal oscillators; electronic engineering computing; frequency stability; microcomputer applications; phase noise; ceramic oscillator; crystal filter; frequency deviation; frequency stability degradation; microcomputer temperature-compensating method; overtone crystal oscillator; phase noise deterioration; switch capacitance array; Capacitance; Ceramics; Circuit stability; Degradation; Filters; Frequency; Microcomputers; Oscillators; Switches; Switching circuits;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2005.1561660
Filename
1561660
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