Publication result detail

Phase-shift Oscillators Using BOTAs

ŠOTNER, R.; PETRŽELA, J.

Original Title

Phase-shift Oscillators Using BOTAs

English Title

Phase-shift Oscillators Using BOTAs

Type

Paper in proceedings (conference paper)

Original Abstract

In this paper two implementations of phase shift oscillators are presented. Proposed structures contain three or four two-output adjustable transconductors. Oscillation conditions and possibilities of electronic adjusting are discussed. Mentioned circuits are simulated in OrCAD. Simulation results in time domain and frequency domain are included.

English abstract

In this paper two implementations of phase shift oscillators are presented. Proposed structures contain three or four two-output adjustable transconductors. Oscillation conditions and possibilities of electronic adjusting are discussed. Mentioned circuits are simulated in OrCAD. Simulation results in time domain and frequency domain are included.

Keywords

Oscillators, oscillating conditions, BOTA, electronic adjusting

Key words in English

Oscillators, oscillating conditions, BOTA, electronic adjusting

Authors

ŠOTNER, R.; PETRŽELA, J.

Released

21.09.2009

Location

Portorož, Slovinsko

Book

Proceedings of the 18th International Electrotechnical and Computer Science Conference ERK 2009 (ISSN: 1581-4572)

ISBN

1581-4572

Periodical

Proceedings of the 15th International Electrotechnical and Computer Science Conference ERK 2006

Volume

1

Number

1

State

Republic of Slovenia

Pages from

28

Pages to

31

Pages count

4

BibTex

@inproceedings{BUT32312,
  author="Roman {Šotner} and Jiří {Petržela}",
  title="Phase-shift Oscillators Using BOTAs",
  booktitle="Proceedings of the 18th International Electrotechnical and Computer Science Conference ERK 2009 (ISSN: 1581-4572)",
  year="2009",
  journal="Proceedings of the 15th International Electrotechnical and Computer Science Conference ERK 2006",
  volume="1",
  number="1",
  pages="28--31",
  address="Portorož, Slovinsko",
  issn="1581-4572"
}