Publication detail

An example of easy synthesis of active filter and oscillator using signal flow graph modification and controllable current conveyors

ŠOTNER, R. HRUBOŠ, Z. ŠEVČÍK, B. SLEZÁK, J. PETRŽELA, J. DOSTÁL, T.

Original Title

An example of easy synthesis of active filter and oscillator using signal flow graph modification and controllable current conveyors

Type

journal article in Web of Science

Language

English

Original Abstract

The paper deals with synthesis of active frequency filters and oscillators for applications in the video band. The synthesis is based on the modified signal flow graph design approach in the current mode. The commercially available high frequency current conveyors and second order structures are used. Basic structure is employing loss-less and lossy current mode integrators in two distributed feedback loops. Some of the used active elements allow to control current gain which is very useful in applications. High frequency multi-functional filter and electronically adjustable quadrature oscillator configurations are discussed. Most of the used passive elements (mainly capacitors) are grounded which is suitable for IC implementation. Simulation and experimental results demonstrate function and features very well.

Keywords

frequency filters, oscillators

Authors

ŠOTNER, R.; HRUBOŠ, Z.; ŠEVČÍK, B.; SLEZÁK, J.; PETRŽELA, J.; DOSTÁL, T.

RIV year

2011

Released

17. 10. 2011

Publisher

FEI STU

Location

Bratislava

ISBN

1335-3632

Periodical

Journal of Electrical Engineering

Year of study

62

Number

5

State

Slovak Republic

Pages from

258

Pages to

266

Pages count

9

BibTex

@article{BUT73994,
  author="Roman {Šotner} and Zdeněk {Hruboš} and Břetislav {Ševčík} and Josef {Slezák} and Jiří {Petržela} and Tomáš {Dostál}",
  title="An example of easy synthesis of active filter and oscillator using signal flow graph modification and controllable current conveyors",
  journal="Journal of Electrical Engineering
",
  year="2011",
  volume="62",
  number="5",
  pages="258--266",
  issn="1335-3632"
}