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2020 | OriginalPaper | Buchkapitel

A Current Tunable Third-Order Oscillator Using CCDDCC

verfasst von : Sunil Kumar Yadav, Manoj Joshi, Ashish Ranjan

Erschienen in: Micro-Electronics and Telecommunication Engineering

Verlag: Springer Singapore

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Abstract

This paper reports a tunable sinusoidal oscillator using current-controlled differential difference current conveyor (CCDDCC) with grounded capacitor and resistor. The proposed oscillator circuit has the following advantages, viz. minimum number of active components, suitable for high-frequency operation and electronically tunable frequency of oscillation (FO) and condition of oscillation (CO) using bias current of CCDDCC. The workability test has been examined using PSpice with 0.18 μm CMOS technology.

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Literatur
1.
Zurück zum Zitat Ferri G, Guerrini NC (2003) Low-voltage low-power CMOS current conveyors. Cluwer Academic Publishers Ferri G, Guerrini NC (2003) Low-voltage low-power CMOS current conveyors. Cluwer Academic Publishers
2.
Zurück zum Zitat Toumazou C, Lidgey FJ, Haigh DG (1990) Analogue IC design: the current mode approach. IEE Circuits and Systems Series 2 Peter Peregrinus Ltd Toumazou C, Lidgey FJ, Haigh DG (1990) Analogue IC design: the current mode approach. IEE Circuits and Systems Series 2 Peter Peregrinus Ltd
3.
Zurück zum Zitat Sedra AS, Smith KC (1970) A second generation current conveyor and its applications. IEEE Trans CT-17, 132–134 Sedra AS, Smith KC (1970) A second generation current conveyor and its applications. IEEE Trans CT-17, 132–134
4.
Zurück zum Zitat Tarunkumar H, Ranjan A, Perumulla S, Pheiroijam NM (2017) Four input single output based third order universal filter using four terminal floating mellor. Analog Integr Circ Sig Process 93:89–98CrossRef Tarunkumar H, Ranjan A, Perumulla S, Pheiroijam NM (2017) Four input single output based third order universal filter using four terminal floating mellor. Analog Integr Circ Sig Process 93:89–98CrossRef
5.
Zurück zum Zitat Ranjan A, Ghosh M, Paul SK (2014) Third-order voltage-mode active-C band pass filter. Int J Electron 102:781–791CrossRef Ranjan A, Ghosh M, Paul SK (2014) Third-order voltage-mode active-C band pass filter. Int J Electron 102:781–791CrossRef
6.
Zurück zum Zitat Ranjan A, Pamu H, Tarunkumar H (2018) A novel Schmitt trigger and its application using a single FTFN. Analog Integr Circ Signal Process 1–13 (2018) Ranjan A, Pamu H, Tarunkumar H (2018) A novel Schmitt trigger and its application using a single FTFN. Analog Integr Circ Signal Process 1–13 (2018)
7.
Zurück zum Zitat Joshi M, Bhatt V, Ranjan A, Benjwal P (2017) Realization of Colpitts oscillator using second generation current controlled current conveyor. In: Proceedings of the second international conference on research in intelligent and computing in engineering, pp 49–52 Joshi M, Bhatt V, Ranjan A, Benjwal P (2017) Realization of Colpitts oscillator using second generation current controlled current conveyor. In: Proceedings of the second international conference on research in intelligent and computing in engineering, pp 49–52
8.
Zurück zum Zitat Joshi M, Ranjan A (2018) Realization of multi scroll 2D chaotic oscillator using DVCC. In: Mishra S, Sood Y, Tomar A (eds) Applications of computing, automation and wireless systems in electrical engineering. Lecture notes in electrical engineering, vol 553. Springer, Singapore Joshi M, Ranjan A (2018) Realization of multi scroll 2D chaotic oscillator using DVCC. In: Mishra S, Sood Y, Tomar A (eds) Applications of computing, automation and wireless systems in electrical engineering. Lecture notes in electrical engineering, vol 553. Springer, Singapore
10.
Zurück zum Zitat Joshi M, Ranjan A (2019) New simple chaotic and hyperchaotic system with an unstable node. Int J Electron Commun (AEU) 108:1–9CrossRef Joshi M, Ranjan A (2019) New simple chaotic and hyperchaotic system with an unstable node. Int J Electron Commun (AEU) 108:1–9CrossRef
11.
Zurück zum Zitat Abuelmaatti MT, Al-Qahtani MA (1998) Low component second-generation current conveyor-based multiphase sinusoidal oscillator. Int J Electron 84:45–52CrossRef Abuelmaatti MT, Al-Qahtani MA (1998) Low component second-generation current conveyor-based multiphase sinusoidal oscillator. Int J Electron 84:45–52CrossRef
13.
Zurück zum Zitat Maheshwari S (2009) Analogue signal processing applications using a new circuit topology. IET Circuits Devices Syst 3(3):106–115CrossRef Maheshwari S (2009) Analogue signal processing applications using a new circuit topology. IET Circuits Devices Syst 3(3):106–115CrossRef
14.
Zurück zum Zitat Keskin AU, Biolek D (2009) Current-mode quadrature oscillator using CDTAs. IEE Proc Circuits Devices Syst. 153:214–218CrossRef Keskin AU, Biolek D (2009) Current-mode quadrature oscillator using CDTAs. IEE Proc Circuits Devices Syst. 153:214–218CrossRef
15.
Zurück zum Zitat Soliman AM (1998) Current mode CCII oscillators using grounded capacitors and resistors. Int J Circuit Theor Appl 26:431–438CrossRef Soliman AM (1998) Current mode CCII oscillators using grounded capacitors and resistors. Int J Circuit Theor Appl 26:431–438CrossRef
16.
Zurück zum Zitat Elwan HO, Soliman AM (1997) Novel CMOS differential voltage current conveyor and its applications. Proc IEE Circuits Devices Syst 144:195–200CrossRef Elwan HO, Soliman AM (1997) Novel CMOS differential voltage current conveyor and its applications. Proc IEE Circuits Devices Syst 144:195–200CrossRef
17.
Zurück zum Zitat Prommee P, Dejhan K (2002) An integrable electronic–controlled quadrature sinusoidal oscillator using CMOS operational trans-conductance amplifier. Int J Electron 89(5):365–379CrossRef Prommee P, Dejhan K (2002) An integrable electronic–controlled quadrature sinusoidal oscillator using CMOS operational trans-conductance amplifier. Int J Electron 89(5):365–379CrossRef
19.
Zurück zum Zitat Horng JW, Lee H, Wu JY (2010) Electronically tunable third order quadrature oscillator using CDTAs. Radio Eng 19:326–330 Horng JW, Lee H, Wu JY (2010) Electronically tunable third order quadrature oscillator using CDTAs. Radio Eng 19:326–330
20.
Zurück zum Zitat Jin J, Wang C, Sun J (2015) Novel third-order quadrature oscillators with grounded capacitors. Automatika 56(2):207–216CrossRef Jin J, Wang C, Sun J (2015) Novel third-order quadrature oscillators with grounded capacitors. Automatika 56(2):207–216CrossRef
21.
Zurück zum Zitat Prasad D, Bhaskar DR, Singh AK (2008) Ralisation of single-resistance-controlled sinusoidal oscillator: a new application of the CDTA. WSEAS Trans Electron 5(6):257–259 Prasad D, Bhaskar DR, Singh AK (2008) Ralisation of single-resistance-controlled sinusoidal oscillator: a new application of the CDTA. WSEAS Trans Electron 5(6):257–259
23.
Zurück zum Zitat Sakul C, Jaikla W, Dejhan K (2011) New resistorless current mode quadrature oscillators using 2 CCCDTAs and grounded capacitors. Radio Eng 20(4):890–897 Sakul C, Jaikla W, Dejhan K (2011) New resistorless current mode quadrature oscillators using 2 CCCDTAs and grounded capacitors. Radio Eng 20(4):890–897
24.
Zurück zum Zitat Phatsornsiri P, Lamun P, Torteanchai U (2014) Current-mode third-order quadrature oscillator using VDTAs and grounded capacitors. In: Proceeding of the 4th joint international conference on information and communication technology, electronic and electrical engineering (JICTEE). Thailand, pp 1–4 Phatsornsiri P, Lamun P, Torteanchai U (2014) Current-mode third-order quadrature oscillator using VDTAs and grounded capacitors. In: Proceeding of the 4th joint international conference on information and communication technology, electronic and electrical engineering (JICTEE). Thailand, pp 1–4
25.
Zurück zum Zitat Kumngern M, Kansiri I (2014) Single-element control third order quadrature oscillator using OTRAs. In: Proceedings of CT and KE. Thailand, pp 24–27 Kumngern M, Kansiri I (2014) Single-element control third order quadrature oscillator using OTRAs. In: Proceedings of CT and KE. Thailand, pp 24–27
27.
Zurück zum Zitat Khaw-Ngam K, Kumngern M, Khateb F (2017) Mixed-mode third-order quadrature oscillator based on single MCCFTA. Radio Eng 26(2):522–535 Khaw-Ngam K, Kumngern M, Khateb F (2017) Mixed-mode third-order quadrature oscillator based on single MCCFTA. Radio Eng 26(2):522–535
29.
Zurück zum Zitat Prommee P, Somdunyakanok M (2009) CMOS-based current-controlled DDCC and its applications to capacitance multiplier and universal filter. Int J Electron Commun (AEU) 65:1–8CrossRef Prommee P, Somdunyakanok M (2009) CMOS-based current-controlled DDCC and its applications to capacitance multiplier and universal filter. Int J Electron Commun (AEU) 65:1–8CrossRef
30.
Zurück zum Zitat Chiu W, Liu SI, Tsao HW, Chen JJ (1996) CMOS differential difference current conveyor and their applications. IEE Proc Circuits Devices Syst 143:91–96 Chiu W, Liu SI, Tsao HW, Chen JJ (1996) CMOS differential difference current conveyor and their applications. IEE Proc Circuits Devices Syst 143:91–96
Metadaten
Titel
A Current Tunable Third-Order Oscillator Using CCDDCC
verfasst von
Sunil Kumar Yadav
Manoj Joshi
Ashish Ranjan
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-2329-8_33

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