Current-mode quadrature oscillator based on CCCDTAs with noninteractive dual-current control for both condition of oscillation and frequency of oscillation

The realization of 2 current-mode quadrature oscillators using current-controlled current differencing transconductance amplifiers (CCCDTAs) and grounded capacitors is presented. The proposed oscillators can provide 2 sinusoidal output currents with a 90° phase difference. They enable noninteractive dual-current control for both the condition of oscillation and the frequency ofi oscillation. The high-output impedances of the configurations enable the circuit to be cascaded without additional current buffers. The use of only grounded capacitors is ideal for integration. The circuit performances are depicted through PSpice simulations; they show good agreement to theoretical anticipation.

Current-mode quadrature oscillator based on CCCDTAs with noninteractive dual-current control for both condition of oscillation and frequency of oscillation

The realization of 2 current-mode quadrature oscillators using current-controlled current differencing transconductance amplifiers (CCCDTAs) and grounded capacitors is presented. The proposed oscillators can provide 2 sinusoidal output currents with a 90° phase difference. They enable noninteractive dual-current control for both the condition of oscillation and the frequency ofi oscillation. The high-output impedances of the configurations enable the circuit to be cascaded without additional current buffers. The use of only grounded capacitors is ideal for integration. The circuit performances are depicted through PSpice simulations; they show good agreement to theoretical anticipation.

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  • I.A. Khan, S. Khawaja, “An integrable g m -C quadrature oscillator”, International Journal of Electronics, Vol. 87, pp. 1353–1357, 2000.
  • C. Toumazou, F.J Lidgey, “Universal active filter using current conveyors”, Electronics Letters, Vol. 22, pp. 662–664, 19 M.T. Abuelma’atti, H.A. Al-Zaher, “Current-mode sinusoidal oscillators using single FTFN”, IEEE Transactions on Circuits and Systems - II: Analog and Digital Signal Processing, Vol. 46, pp. 69–74, 1999.
  • ¨ U. C ¸ am, A. Toker, O. C ¸ i¸ ceko˘ glu, H. Kuntman, “Current-mode high output-impedance sinusoidal oscillator configuration employing single FTFN”, Analog of Integrated Circuits and Signal Processing, Vol. 24, pp. 231–238, 2000.
  • S.S. Gupta, R. Senani, “Realisation of current-mode SRCOs using all grounded passive elements”, Frequenz, Vol. 57, pp. 26–37, 2003.
  • D. Biolek, “CDTA – building block for current-mode analog signal processing”, Proceedings of the European Conference on Circuit Theory and Design, Vol. 3, pp. 397–400, 2003.
  • D. Biolek, V. Biolkova, Z. Kolka, “Current-mode biquad employing single CDTA”, Indian Journal of Pure & Applied Physics, Vol. 47, pp. 535–537, 2009.
  • N.A. Shah, S.Z. Iqbal, M. Quadri, “Current-mode band-pass filter using a single CDTA”, Journal of Active and Passive Electronic Devices, Vol. 4, pp. 1–5, 2009.
  • D. Biolek, E. Hancioglu, A. ¨ U. Keskin, “High-performance current differencing transconductance amplifier and its application in precision current-mode rectification”, AEU - International Journal of Electronics and Communications, Vol. 62, pp. 92–96, 2008.
  • F. Ka¸ car, H. Kuntman, “A new, improved CMOS realization of CDTA and its filter applications”, Turkish Journal of Electrical Engineering & Computer Sciences, Vol. 19, pp. 1–12, 2011.
  • M. Siripruchyanun, W. Jaikla, “CMOS current-controlled current differencing transconductance amplifier and applications to analog signal processing”, AEU - International Journal of Electronics and Communications, Vol. 62, pp. 277–287, 2008.
  • J.W. Horng, “Current-mode third-order quadrature oscillator using CDTAs”, Active and Passive Electronic Components, Vol. 2009, pp. 1–5, 2009.
  • J.W. Horng, H. Lee, J.Y. Wu, “Electronically tunable third-order quadrature oscillator using CDTAs”, Radioengineering, Vol. 19, pp. 326–330, 2010.
  • A. ¨ U. Keskin, D. Biolek, “Current mode quadrature oscillator using current differencing transconductance amplifiers (CDTA)”, IEE Proceedings Circuits, Devices & Systems, Vol. 153, pp. 214–218, 2005.
  • A. Lahiri, “New current-mode quadrature oscillator using CDTA”, IEICE Electronics Express, Vol. 6, pp. 135–140, 200 A. Uygur, H. Kuntman, “CDTA-based quadrature oscillator design”, Proceedings of the 14th European Signal Processing Conference, 2006.
  • W. Tangsrirat, W. Tanjareon, “Current-mode sinusoidal quadrature oscillator with independent control of oscillation frequency and condition using CDTAs”, Indian Journal of Pure and Applied Physics, Vol. 48, pp. 363–366, 2010. D. Biolek, V. Biolkova, A. ¨ U. Keskin, “Current mode quadrature oscillator using two CDTAs and two grounded capacitors”, Proceedings of the 5th World Scientific and Engineering Academy and Society International Conference on System Science and Simulation in Engineering, pp. 368–370, 2006.
  • W. Tanjaroen, W. Tangsrirat, “Resistorless current-mode quadrature sinusoidal oscillator using CDTAs”, Proceedings of the Asia-Pacific Signal and Information Processing Association Annual Summit and Conference, pp. 307–310, 200 D. Prasad, D.R. Bhaskar, A.K. Singh, “Realisation of single-resistance-controlled sinusoidal oscillator: a new application of the CDTA”, WSEAS Transactions on Electronics, Vol. 5, pp. 257–259, 2008.
  • W. Jaikla, M. Siripruchyanun, J. Bajer, D. Biolek, “A simple current-mode quadrature oscillator using single CDTA”, Radioengineering, Vol. 17, pp. 33–40, 2008.
  • W. Jaikla, M. Siripruchyanun, “A versatile quadrature oscillator and universal biquad filter using dual-output current controlled current differencing transconductance amplifier”, Proceedings of the 2006 International Symposium on Communications and Information Technologies, pp. 1072–1075, 2006.
  • W. Jaikla, M. Siripruchyanun, “CCCDTAs-based versatile quadrature oscillator and universal biquad filter”, Proceedings of 2007 ECTI Conference, pp. 1065–1068, 2007.
  • A. Lahiri, A. Misra, K. Gupta, “Novel current-mode quadrature oscillators with explicit-current-outputs using CCCDTA”, Proceedings of the 19th International Radioelektronika Conference, pp. 47–50, 2009.
  • D. Biolek, A. ¨ U. Keskin, V. Biolkova, “Grounded capacitor current mode single resistance-controlled oscillator using single modified current differencing transconductance amplifier”, IET Circuits, Devices & Systems, Vol. 4, pp. 496–502, 2010.
  • M.T. Abuelma’atti, “A new electronically tunable integrable CCII-OTA-based active-C oscillator”, European Transactions on Telecommunications, Vol. 2, pp. 353–355, 1991.
  • P. Prommee, K. Angkeaw, M. Somdunyakanok, K. Dejhan, “CMOS-based near zero-offset multiple inputs max-min circuits and its applications”, Analog Integrated Circuits and Signal Processing, Vol. 61, pp. 93–105, 2009.