Vibrational compensation crystal oscillator frequency instability in multifrequency excitation mode piezoelectric resonator

Authors

  • S. K. Pidchenko Khmelnytskyi National University, Khmelnytskyi
  • A. A. Taranchuk Khmelnytskyi National University, Khmelnytskyi http://orcid.org/0000-0001-9686-8784
  • V. I. Stetsyuk Khmelnytskyi National University, Khmelnytskyi
  • R. P. Khoptinskiy National Academy of State Border Service of Ukraine, Khmelnitsky

DOI:

https://doi.org/10.20535/RADAP.2014.57.104-112

Keywords:

quartz oscillators, quartz crystal, vibration, phase noise, frequency instability

Abstract

Introduction. The effective method of vibrational frequency stability increasing of the piezoresonant devices based on the principles of compensating of external vibrational frequency influences due to extension of information volume of PRU original signals in a mode of the QR multifrequency excitation is offered.
The results. The analysis of a frequency modulated signal range of crystal oscillators of HF and UHF RF spectrums in the conditions of sinusoidal and accidental broadband mechanical destabilizing actions is carried out. The quantitative estimates of collateral spectrum components levels of an output signal for standard parameters of crystal oscillators, and also phase jitter are given using XO in digital systems.
Conclusions. It is shown that use of the offered method of external vibrational frequency influences compensating allows to reduce vibrational mechanical sensitivity of PRU more than by 30 times without essential constructive and technological expenses.

Author Biographies

S. K. Pidchenko, Khmelnytskyi National University, Khmelnytskyi

PhD, Associate Professor

A. A. Taranchuk, Khmelnytskyi National University, Khmelnytskyi

PhD, Associate Professor

V. I. Stetsyuk, Khmelnytskyi National University, Khmelnytskyi

PhD, Associate Professor

R. P. Khoptinskiy, National Academy of State Border Service of Ukraine, Khmelnitsky

Postgraduate student

References

Перелік посилань

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Патент України 86668, МПК Н03L9/00. Пристрій генерування / C. К. Підченко, А. А. Таранчук, В. І. Стецюк ; № U201307653 ; заявл. 17.06.2013; опубл. 10.01.2014, Бюл. № 1.

References

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Filler R. L. (1988) The Acceleration Sensitivity of Quartz Crystal Oscillators. IEEE. Transactions on ultrasonics, ferroelectrics, and frequency control, Vol. 35, No 3. –

pp. 297 - 305.

Vig, J. R. (1994) Quartz crystal resonators and oscillators for frequency control and timing applications. A tutorial. NASA STI/Recon Technical Report N 95 : 19519. Available at: http://www.am1.us/Local_Papers/U11625 VIG-TUTORIAL.pdf

Zelensky A.А., Pidchenko S.К. and Taranchuk A.А. (2012) The principles of developing invariant piezoresonance units with controlled dynamics. Eastern European journal of enterprise technologies, Vol. 6, No. 11, pp. 17-22.

Zelensky A. A., Pidchenko S. K. and Taranchuk A. A. (2013) Mathematical Model of Multi-Frequency Piezoresonance Oscillation System. Communications. Vol. 1, No. 1, pp. 1-8.

Zelenskiy A. A. and Pidchenko S.K. (2013) Invariant piezoresonance units with controlled dynamics. Physical Bases of Instrumentation, Vol. 2, No 2, рр. 38-49. (In Russian)

Pidchenko S., Taranchuk A. and Stecjuk V. (2014) Digital Synthesizer With Temperature And Vibration Compensation Of Frequency Instability. Modern Problems of Radio Engineering, Telecommunication and Computer Science TCSET’2014, pр. 291-292.

Pidchenko S.K., Taranchuk A.A. and Stetsyuk V.I. (2011) Mathematical modeling force-frequency characteristics of the quartz resonators. Radioelektronni i komp’iuterni systemy. No 2 (50), pр. 27-31.

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Pidchenko S.K., Taranchuk A. A.; Stetsiuk V. I. (2014) Prystrii heneruvannia [Oscillation devise] Patent UA86668.

Published

2014-06-30

How to Cite

Підченко, С. К., Таранчук, А. А., Стецюк, В. І. and Хоптинський, Р. П. (2014) “Vibrational compensation crystal oscillator frequency instability in multifrequency excitation mode piezoelectric resonator”, Visnyk NTUU KPI Seriia - Radiotekhnika Radioaparatobuduvannia, 0(57), pp. 104-112. doi: 10.20535/RADAP.2014.57.104-112.

Issue

Section

Designing of Radio Equipment