INVESTIGATION OF CHARACTERISTICS OF PRECISION AMPLIFIERES
ARTICLE_13_PDF

Keywords

metrological equipment
electricity
measure power amplifiers
calibrator
computer simulation
reproduction метрологічне забезпечення
електроенергія
вимірювальні підсилювачі
калібратор
комп’ютерне моделювання
відтворення

How to Cite

[1]
Tesyk, Y. , Moroz, R. , Tuz, Y. and Kozyr, O. 2020. INVESTIGATION OF CHARACTERISTICS OF PRECISION AMPLIFIERES . Tekhnichna Elektrodynamika. 6 (Oct. 2020), 087. DOI:https://doi.org/10.15407/techned2020.06.087.

Abstract

A review of the principles construction of existing high voltage measuring amplifiers (HVMA) was carried out. Their frequency range was investigated. It is proposed to use a circuit of additively connected operational amplifiers with virtual power to achieve the limiting frequencies of 400 kHz and a voltage of 500V. Several models of the circuit in the circuit simulator were investigated. It was found that to compensate for the phase shift of the output signal it is necessary to use boosting capacitances and a circuit with independent feedback. References 11, figures 5, table 3.

https://doi.org/10.15407/techned2020.06.087
ARTICLE_13_PDF

References

Zharkin A.F., Novskyi V.O., Malakhatka D.O. Complex improvement of power quality and ensure electrical safety in local power suooly systems when using hybrid filter compensating converters. Tekhnichna Elektrodynamika. 2018. No 1. Pp. 69–77. DOI: https://doi.org/10.15407/techned2018.01.069 (Ukr)

Moroz R.N., Tesik Yu.F Comparative analysis of performance measuring power amplifiers applied in generators-calibrators and metrological equipment. Pratsi Instytutu Elektrodynamiky Natsionalnoi Akademii Nauk Ukrainy. 2014. Vol. 37. Pp. 114 − 124. (Rus)

Laug O.B. A precision power amplifier for power/energy calibration applications. IEEE Transactions on Instrumen-tation and Measurement. 1987. IM-36(4), pp. 994–1000. DOI: https://doi.org/10.1109/tim.1987.6312597

Zajec P., Nastran J. Power calibrator using switched mode voltage source. IEEE Transactions on instrumentation and measurement. 2000. Vol. 49. No 4. Pp. 790-794.

Lavric H., Voncina D. A precision hybrid amplifier for voltage calibration systems. MIDEM 34. 2004. No 1. Pp. 37 – 42

Ihlenfeld W.G. A Simple, Reliable, and Highly Stable AC Voltage Amplifier for Calibration Purposes. IEEE Trans-actions on Instrumentation and Measurement. 2005. No 54(5). Pp. 1964–1967. DOI: https://doi.org/10.1109/tim.2005.853229

Taranov S.G., Karasinskii O.L., Tesik Yu.F., Moroz R.N. Development of principles of construction of switching reference voltages of high-voltage DAC. Tekhnichna Elektrodynamika. 2014. No 4. Pp. 64–66. (Rus.)

Nyquist H. Certain topics in telegraph transmission theory. Trans. AIEE. 1928. Vol. 47. Pp. 617–644.

Apex Microtechnology. Product summary guide. URL: https://www.apexanalog.com/resources/productbulletins/Product-Summary-Guide.pdf (Accessed at 17.01.2019)

Tuz Yu.M., Afanasyev M.A. Wideband high voltage measuring amplifiers. Scientific monograph. Kyiv: Korniy-chuk, 2012. 92 p. (Ukr)

Herniter M.E. Modern system of computer simulation and analysis of electronic devices. Moskva: DMK Pres. 2006. 488 p. (Rus)

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