CDBA Based Voltage-Mode First-Order All-pass Filter Topologies

Volume: 11 Number: 1 March 28, 2012
EN

CDBA Based Voltage-Mode First-Order All-pass Filter Topologies

Abstract

Five new configurations realizing canonical first-order voltage-mode all-pass filter configurations using a single current differencing buffer amplifier (CDBA) are given. Two of these filter configurations, which were also canonical all-pass filters, contained four passive elements, while the others contained five passive elements. The circuits are suited for CMOS implementation. The SPICE simulation results for frequency response as well as transient response are incorporated to verify the theory.
Keywords: CDBA, Active Filters, All Pass Filter.

Keywords

References

  1. M. C. H. Cheng, C. Toumazou, ―3V MOS current conveyor cell for VLSI technology‖, Electr Lett vol. 29, pp. 317-318, 1993.
  2. AD Inc., ―AD844 current feedback op-amp‖, Data Sheet.
  3. W. Surakampontorn, P. Thitimajshima, ―Integrible electronically tunable current conveyors‖, IEE Proceedings Pt. G., pp. 71–77, 1988.
  4. H. O. Elwan, A. M. Soliman, ‖Novel CMOS differential voltage current conveyor and its applications‖, IEE Proceedings Pt. G. pp.195–200,1997.
  5. W. Chiu, S. I. Liu, H. W. Tsao, J. J. Chen, ―CMOS differential difference current conveyors and their applications‖, IEE Proceedings Pt, pp. 91–96, 1996.
  6. A. Fabre, ―3rd-generation current conveyor – a new helpful active element‖, Electronics Letters, vol. 31, pp. 338–339, 1995.
  7. J. H. Huijsing, J. De Korte, ―Monolithic nullor: A universal active element‖, Solid State Circuits vol. 12, pp.50–64, 1997.
  8. H. Kuntman, A. Özpinar, ―On the realization of the DOOTA-C oscillators‖, Microelec J, vol.29, pp. 991–997, 1998.

Details

Primary Language

English

Subjects

-

Journal Section

-

Publication Date

March 28, 2012

Submission Date

March 28, 2012

Acceptance Date

-

Published in Issue

Year 2011 Volume: 11 Number: 1

APA
Kaçar, F., & Özcelep, Y. (2012). CDBA Based Voltage-Mode First-Order All-pass Filter Topologies. IU-Journal of Electrical & Electronics Engineering, 11(1), 1327-1332. https://izlik.org/JA95NS66JN
AMA
1.Kaçar F, Özcelep Y. CDBA Based Voltage-Mode First-Order All-pass Filter Topologies. IU-Journal of Electrical & Electronics Engineering. 2012;11(1):1327-1332. https://izlik.org/JA95NS66JN
Chicago
Kaçar, Fırat, and Yasin Özcelep. 2012. “CDBA Based Voltage-Mode First-Order All-Pass Filter Topologies”. IU-Journal of Electrical & Electronics Engineering 11 (1): 1327-32. https://izlik.org/JA95NS66JN.
EndNote
Kaçar F, Özcelep Y (March 1, 2012) CDBA Based Voltage-Mode First-Order All-pass Filter Topologies. IU-Journal of Electrical & Electronics Engineering 11 1 1327–1332.
IEEE
[1]F. Kaçar and Y. Özcelep, “CDBA Based Voltage-Mode First-Order All-pass Filter Topologies”, IU-Journal of Electrical & Electronics Engineering, vol. 11, no. 1, pp. 1327–1332, Mar. 2012, [Online]. Available: https://izlik.org/JA95NS66JN
ISNAD
Kaçar, Fırat - Özcelep, Yasin. “CDBA Based Voltage-Mode First-Order All-Pass Filter Topologies”. IU-Journal of Electrical & Electronics Engineering 11/1 (March 1, 2012): 1327-1332. https://izlik.org/JA95NS66JN.
JAMA
1.Kaçar F, Özcelep Y. CDBA Based Voltage-Mode First-Order All-pass Filter Topologies. IU-Journal of Electrical & Electronics Engineering. 2012;11:1327–1332.
MLA
Kaçar, Fırat, and Yasin Özcelep. “CDBA Based Voltage-Mode First-Order All-Pass Filter Topologies”. IU-Journal of Electrical & Electronics Engineering, vol. 11, no. 1, Mar. 2012, pp. 1327-32, https://izlik.org/JA95NS66JN.
Vancouver
1.Fırat Kaçar, Yasin Özcelep. CDBA Based Voltage-Mode First-Order All-pass Filter Topologies. IU-Journal of Electrical & Electronics Engineering [Internet]. 2012 Mar. 1;11(1):1327-32. Available from: https://izlik.org/JA95NS66JN