Frequency-temperature compensation of piezoelectric resonators by electric DC bias field

被引:20
作者
Chen, QM [1 ]
Zhang, T [1 ]
Wang, QM [1 ]
机构
[1] Univ Pittsburgh, Dept Mech Engn, Pittsburgh, PA 15261 USA
关键词
D O I
10.1109/TUFFC.2005.1561617
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
Electromechanical resonators have been widely used in signal processing and frequency control applications. It has been found that the resonant frequency of most resonator devices is highly temperature dependent, as temperature variation leads to materials properties change as well as resonator dimension change, which result in the undesirable shift of the resonance frequency. In this paper, we present a new frequency tuning method in which direct current (DC) bias field is used to control the resonance frequency of the piezoelectric resonator that is subjected to ambient temperature variations. It has been found that, depending on the polarity, the application of a DC bias field can reduce or increase the resonance frequency of the resonator. The experimental results demonstrate that the DC bias field tuning can achieve fairly good temperature compensation within a certain temperature range, and that the mechanical Q factor of the resonator is quite stable under different DC bias fields.
引用
收藏
页码:1627 / 1631
页数:5
相关论文
共 50 条
  • [31] Frequency-temperature behavior of Langasite rectangular beam resonators vibrating in length extension
    Sthal, Fabrice
    Bigler, Emmanuel
    Maisonnet, Jerome
    Bourquin, Roger
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2007, 54 (12) : 2699 - 2701
  • [32] Frequency-temperature behavior of flexural quartz resonators by means of Timoshenko's model
    Hantz, Hubert
    Sthal, Fabrice
    Bourquin, Roger
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2006, 53 (11) : 2080 - 2085
  • [33] Sapphire-rutile frequency-temperature compensated whispering gallery microwave resonators
    Tobar, ME
    Krupka, J
    Hartnett, JG
    Ivanov, EN
    Woode, RA
    PROCEEDINGS OF THE 1997 IEEE INTERNATIONAL FREQUENCY CONTROL SYMPOSIUM, 1997, : 1000 - 1008
  • [34] Application of Electrode Stress for Improving Frequency-Temperature Behavior of UHF Quartz Resonators
    Chen, Jianfeng
    Yong, Yook-Kong
    Kubena, Randall
    Kirby, Deborah
    Chang, David
    2015 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM (IUS), 2015,
  • [35] REDUCTION OF FREQUENCY-TEMPERATURE SHIFT OF PIEZOELECTRIC CRYSTALS BY APPLICATION OF TEMPERATURE-DEPENDENT PRESSURE
    GERBER, EA
    PROCEEDINGS OF THE INSTITUTE OF RADIO ENGINEERS, 1960, 48 (02): : 244 - 245
  • [36] Array of piezoelectric lateral electric field excited resonators
    Borodina, I. A.
    Zaitsev, B. D.
    Teplykh, A. A.
    Shikhabudinov, A. M.
    Kuznetsova, I. E.
    ULTRASONICS, 2015, 62 : 200 - 202
  • [37] Frequency-Temperature Behavior of Quartz Resonators Affected by Transient and Steady State Temperature Changes.
    Yong, Yook-Kong
    Patel, Mihir S.
    Tanaka, Masako
    2006 IEEE ULTRASONICS SYMPOSIUM, VOLS 1-5, PROCEEDINGS, 2006, : 568 - +
  • [38] THE PIEZOELECTRIC RESONATOR IN A DC ELECTRIC-FIELD
    ALEKSANDROV, KS
    ZAITSEVA, MP
    SYSOEV, AM
    KOKORIN, YI
    FERROELECTRICS, 1982, 41 (1-4) : 137 - 142
  • [39] Electric degradation in PZT piezoelectric ceramics under a DC bias
    Zhang, Jing
    Pan, Pinghua
    Jiang, Ping
    Qin, Jie
    Hu, Jiansong
    SCIENCE AND ENGINEERING OF COMPOSITE MATERIALS, 2020, 27 (01) : 464 - 468
  • [40] Frequency-temperature compensation mechanism for bismuth based dielectric/PTFE microwave composites
    Xiang, Feng
    Wang, Hong
    Zhang, Mei Ling
    Yao, Xi
    JOURNAL OF ELECTROCERAMICS, 2008, 21 (1-4) : 457 - 460