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ŠOTNER, R. JEŘÁBEK, J. PETRŽELA, J. DOMANSKÝ, O. JAIKLA, W. DOSTÁL, T.
Original Title
Exponentially Tunable Voltage Controlled Quadrature Oscillator
Type
conference paper
Language
English
Original Abstract
This paper deals with appropriate method of tunability extension in quadrature oscillators. Exponential dependence of frequency of oscillations on DC control voltage is created in lossless integrators by utilization of two exponentially controlled variable gain amplifiers and diamond transistors. Proposed solution maintains all beneficial features (especially independent levels of output waveforms on tuning process) of the oscillator concept employing two lossless integrators in the single loop and electronically controllable negative resistor serving for adjusting of condition of oscillations. PSpice verifications based on simulations of macromodels of used active devices confirmed doubled tunability range in comparison to standard linear control of frequency obtained for the same change of DC driving voltage.
Keywords
Current conveyor, electronic control, exponential control, lossless integrator, quadrature oscillator, tunability extension, variable gain amplifier
Authors
ŠOTNER, R.; JEŘÁBEK, J.; PETRŽELA, J.; DOMANSKÝ, O.; JAIKLA, W.; DOSTÁL, T.
Released
5. 7. 2017
Location
Barcelona, Spain
ISBN
978-1-5090-3981-4
Book
Proceedings of the 40th International Conference on Telecommunications and Signal Processing (TSP 2017)
Pages from
302
Pages to
306
Pages count
5
URL
https://ieeexplore.ieee.org/document/8075992
BibTex
@inproceedings{BUT137681, author="Roman {Šotner} and Jan {Jeřábek} and Jiří {Petržela} and Ondřej {Domanský} and Winai {Jaikla} and Tomáš {Dostál}", title="Exponentially Tunable Voltage Controlled Quadrature Oscillator", booktitle="Proceedings of the 40th International Conference on Telecommunications and Signal Processing (TSP 2017)", year="2017", pages="302--306", address="Barcelona, Spain", doi="10.1109/TSP.2017.8075992", isbn="978-1-5090-3981-4", url="https://ieeexplore.ieee.org/document/8075992" }