Tiso Adjustable Filter with Controllable Controlled–Gain Voltage Differencing Current Conveyor
By: Jan Jerabek, Roman Sotner and Kamil Vrba
References
- [1] BIOLEK, D.-SENANI, R.-BIOLKOVA, V.-KOLKA, Z. : Active Elements for Analog Signal Processing: Classification, Review and New Proposals, Radioengineering 17 No. 4 (2008), 15-32.
- [2] KESKIN, A. U.-BIOLEK, D.-HANCIOGLU, E.-BIOLKOVA, V. : Current-mode KHN filter employing Current Differencing Transconductance Amplifiers, International Journal of Electronics and Communications (AEU) 60 No. 6 (2006), 443-446.
- [3] JAIKLA, W.-LAHIRI, A. : Resistor-Less Current-Mode Four- Phase Quadrature Oscillator using CCCDTAs and Grounded Capacitors, AEU - International Journal of Electronics and Communications 66 No. 3 (2011), 214-218.
- [4] SAKUL, C.-JAIKLA, W.-DEJHAN, K. : New Resistorless Current-Mode Quadrature Oscillators Using 2 CCCDTAs and Grounded Capacitors, Radioengineering 20 No. 4 (2011), 890-896.
- [5] GEIGER, R. L.-S´A NCHEZ-SINENCIO, E. : Active Filter Design using Operational Transconductance Amplifiers: a Tutorial, IEEE Circ. and Devices Magazine 1 (1985), 20-32.
- [6] FABRE, A.-SAAID, O.-WIEST, F.-BOUCHERON, C. : High Frequency Applications based on a New Current Controlled Conveyor, IEEE Trans. on Circuits and Systems - I 43 No. 2 (1996), 82-91.
- [7] SEDRA, A.-SMITH, K. C. : A Second Generation Current Conveyor and its Applications, IEEE Transaction on Circuit Theory CT-17 No. 2 (1970), 132-134.
- [8] PROKOP, R.-MUSIL, V. : Modular Approach to Design of Modern Circuit Blocks for Current Signal Processing and New Device CCTA, in Proc. Conf. on Signal and Image Processing IASTED, Anaheim, 2005, pp. 494-499.
- [9] SIRIPRUCHYANUN, M.-JAIKLA, W. : Current Controlled Current Conveyor Transconductance Amplifier (CCCCTA): a Building Block for Analog Signal Processing, Electrical Engineering Springer 90 No. 6 (2008), 443-453.
- [10] SOTNER, R.-JERABEK, J.-PROKOP, R.-VRBA, K. : Current Gain Controlled CCTA and its Application in Quadrature Oscillator and Direct Frequency Modulator, Radioengineering 20 No. 1 (2011), 317-326.
- [11] SURAKAMPONTORN, W.-THITIMAJSHIMA, W. : Integrable Electronically Tunable Current Conveyors, IEE Proceedings- G, 135 No. 2 (1988), 71-77.
- [12] FABRE, A.-MIMECHE, N. : Class A/AB Second-Generation Current Conveyor with Controlled Current Gain, Electronics Letters 30 No. 16 (1994), 1267-1268.
- [13] BIOLEK, D.-LAHIRI, A.-JAIKLA, W.-SIRIPRUCHYANUN, M.-BAJER, J. : Realisation of Electronically Tunable Voltage-Mode/Current-Mode Quadrature Sinusoidal Oscillator using ZC-CG-CDBA, Microelectronics Journal 42 No. 10 (2011), 1116-1123.
- [14] ALZAHER, H.-TASADDUQ, N.-ASMALLL-EES, O.-Al- AMMARI, F. : A Complementary Metal-Oxide Semiconductor Digitally Programmable Current Conveyor, International Journal of Circuit Theory and Applications 41 No. 1 (2013), 69-81.
- [15] TANGSRIRAT, W. : Electronically Tunable Multi-Terminal Floating Nullor and its Application, Radioengineering 17 No. 4 (2008), 3-7.
- [16] TANGSRIRAT, W.-PUKKALANUN, T. : Digitally Programmable Current Follower and its Applications, AEU - International Journal of Electronics and Communications 63 No. 5 (2009), 416-422.
- [17] SOULITIS, G.-PSYCHALINOS, C. : Electronically Controlled Multiphase Sinusoidal Oscillators using Current Amplifiers, International Journal of Circuit Theory and Applications 37 No. 1 (2009), 43-52.
- [18] JERABEK, J.-VRBA, K. : Fully Differential Universal Filter with Differential and Adjustable Current Followers and Transconductance Amplifiers, In Proceeding of the 33rd International Conference on Telecommunications and Signal Processing - TSP 2010 (2010), 5-9, Baden, Austria.
- [19] JERABEK, J.-SOTNER, R.-VRBA, K. : Fully-Differential Current Amplifier and its Application to Universal and Adjustable Filter, 2010 International Conference on Applied Electronics. Pilsen: University of West Bohemia, 2010. pp. 141-144..
- [20] SOTNER, R.-JERABEK, J.-HERENCSAR, N.-HRUBOS, Z.-DOSTAL, T.-VRBA, K. : ”Study of Adjustable Gains for Control of Oscillation Frequency and Oscillation Condition in 3R-2C Oscillator, Radioengineering 21 No. 1 (2012), 392-402.
- [21] JERABEK, J.-KOTON, J.-SOTNER, R.-VRBA, K. : Adjustable Band-Pass Filter with Current Active Elements: Two Fully-Differential and Single-Ended Solutions, Analog Integrated Circuits and Signal Processing 74 No. 1 (2013), 129-139.
- [22] SOTNER, R.-JERABEK, J.-SEVCIK, B.-DOSTAL, T.- VRBA, K. : Novel Solution of Notch/All-Pass Filter with Special Electronic Adjusting of Attenuation in the Stop Band, Elektronika i Elektrotechnika 17 No. 7 (113) (2011), 37-42.
- [23] CHUNHUA, W.-KESKIN, A. U.-YANG, L.-QIUJING, Z.-SICHUN, D. : Minumum Configuration Insensitive Multifunctional Current-Mode Biquad using Current Conveyors and All-Grounded Passive Components, Radioengineering 19 No. 1 (2010), 178-184.
- [24] TANGSRIRAT, W.-UNHAVANICH, S.-DUMAWIPATA, T.-SURAKAMPONTORN,W. : Single-Input and Three- Output Current-Mode Biquadratic Filters using Multiple-Output OMAs, The Journal of KMITNB 13 No. 2 (2003).
- [25] CHAUHAN, C.-TOMAR, R.-SINGH, S. V.-CHAUHAN, D. S. : Current Controlled Current-Mode SITO Biquad Universal Filter Using CCTAs, In Proc. Conference on Advances in Communication and Control Systems 2013 (CAC2S 2013), Dehradun, pp. 297-301.
- [26] AYTEN, U. E.-SAGBAS, M. : Current-Mode SITO Filter using a Single Active Component, In Proc. European Conference on Circuit Theory and Design, 2009, pp. 133-136.
- [27] SENANI, R.-GUPTA, S. S. : Current-Mode Universal Biquad using Current Followers: A Minimal Realization, Radioengineering 20 No. 4 (2011), 898-904.
- [28] TANGSRIRAT, W.-BUNRUANG, K. : Current-Mode Universal Filter Topology with Electronic Tuning Property using Single Current Follower, Indian Journal of Pure & Applied Physics 50 (Feb 2012), 133-137.
- [29] SHAH, N. A.-RATHER, M. F.-IQBAL, S. Z. : SITO Electronically Tunable High Output Impedance Current-Mode Universal Filter, Analog Integrated Circuits and Signal Processing 47 (2006), 335-338.
- [30] SURAKAMPONTORN, W.-KUMWACHARA, K. : CMOSBased Electronically Tunable Current Conveyor, Electronics Letters 28 No. 14 (1992), 1316-1317.
- [31] MOSIS parametric test results of TSMC LO EPI SCN018 technology, [ftp://ftp.isi.edu/pub/mosis/vendors/tsmc-018/t44eloepi-params.txt]. Cited 24.7.2013.
DOI: https://doi.org/10.2478/jee-2014-0021 | Journal eISSN: 1339-309X (formerly 1335-3632) | Journal ISSN: 1335-3632
Language: English
Page range: 137 - 143
Submitted on: Jan 6, 2014
Published on: Jun 17, 2014
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
Keywords:
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© 2014 Jan Jerabek, Roman Sotner, Kamil Vrba, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.