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First–Order Transfer Sections with Reconnection–Less Electronically Reconfigurable High–Pass, All–Pass and Direct Transfer Character


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[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.Search in Google Scholar

[2] GEIGER, R. L.—SÁNCHEZ-SINENCIO, E. : Active Filter Design using Operational Transconductance Amplifiers: a Tutorial, IEEE Circ. and Devices Magazine 1 (1985), 20–32.10.1109/MCD.1985.6311946Search in Google Scholar

[3] 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), 82–91.10.1109/81.486430Search in Google Scholar

[4] SURAKAMPONTORN, W.—THITIMAJSHIMA, W. : Integrable Electronically Tunable Current Conveyors, IEE Proceedings-G 135 No. 2 (1988), 71–77.Search in Google Scholar

[5] H. ALZAHER: CMOS Digitally Programmable Quadrature Oscillators, International Journal of Circuit Theory and Applications 36 No. 8 (2008), 935–966, DOI: 10.1002/cta.479.10.1002/cta.479Search in Google Scholar

[6] ALZAHER, H.—TASADDUQ, N.—AL-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, DOI: 10.1002/cta.786.10.1002/cta.786Search in Google Scholar

[7] 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), 1116–1123.10.1016/j.mejo.2011.07.004Search in Google Scholar

[8] SOULITIS, G.—PSYCHALINOS, C. : Electronically Controlled Multiphase Sinusoidal Oscillators using Current Amplifiers, International Journal of Circuit Theory and Applications 37 No. 1 (2009), 43–52.10.1002/cta.486Search in Google Scholar

[9] HERENCSAR, N.—LAHIRI, A.—VRBA, K.—KOTON, J. : An Electronically Tunable Current-Mode Quadrature Oscillator using PCAs, Int. Journal of Electronics 99 No. 5 (2011), 609–621, DOI: 10.1080/00207217.2011.643489.10.1080/00207217.2011.643489Search in Google Scholar

[10] SOTNER, R.—LAHIRI, A.—KARTCI, A.—HERENCSAR, N—JERABEK, J.—VRBA, K. : Design of Novel Precise Quadrature Oscillators Employing ECCIIs with Electronic Control, Advances in Electrical and Computer Engineering 13 No. 2 (2013), 65–72.10.4316/AECE.2013.02011Search in Google Scholar

[11] SOTNER, R.—HERENCSAR, N.—JERABEK, J.—KOTON, J.—DOSTAL, T.—VRBA, K. : Electronically Controlled Oscillator with Linear Frequency Adjusting for Four-Phase or Differential Quadrature Output Signal Generation, International Journal of Circuit Theory and Applications, 42 No. 12 (2014), 1264–1289.Search in Google Scholar

[12] SOTNER, R,—HRUBOS, Z.—HERENCSAR, N.—JERABEK, J.—DOSTAL, T. : Precise Electronically Adjustable Oscillator Suitable for Quadrature Signal Generation Employing Active Elements with Current and Voltage Gain Control, Circuits Systems and Signal Processing 33 No. 1 (2014), 1–35.Search in Google Scholar

[13] MINAEI, S.—SAYIN, O. K.—KUNTMAN, H. : A New CMOS Electronically Tunable Current Conveyor and its Application to Current-Mode Filters, IEEE Trans. on Circuits and Systems - I 53 No. 7 (2006), 1448–1457.10.1109/TCSI.2006.875184Search in Google Scholar

[14] SIRIPRICHYANUN, M.—JAIKLA, W. : Current Controlled Current Conveyor Transconductance Amplifier (CCCCTA): a Building Block for Analog Signal Processing, Electrical Engineering Springer 90 No. 6 (2008), 443–453.10.1007/s00202-007-0095-xSearch in Google Scholar

[15] KUMNGERN, M.—JUNNAPIYA, S. A. : Sinusoidal Oscillator using Translinear Current Conveyors, Proceedings of Asia Pacific Conference on Circuits and Systems (APPCAS 2010), Malaysia, Kuala Lumpur, 2010, pp. 740–743, DOI: 10.1109/APCCAS.2010.5774754.10.1109/APCCAS.2010.5774754Search in Google Scholar

[16] 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.Search in Google Scholar

[17] SAKUL, C.—JAIKLA, W.—DEJHAN, K. : New Resistorless Current-Mode Quadrature Oscillators using 2 CCCDTAs and Grounded Capacitors, Electrical Engineering Springer 90 No. 6 (2008), 443–453.Search in Google Scholar

[18] SOTNER, R.—JERABEK, J.—HERENCSAR, N.—DOSTAL, T.—VRBA, K. : Electronically Adjustable Modification of CFA: Double Current Controlled CFA (DCC-CFA), Proceedings of the 35th International Conference on Telecommunications and Signal Processing, Prague, Czech Republic, 2012, pp. 401–405.10.1109/TSP.2012.6256324Search in Google Scholar

[19] SOTNER, R.—HERENCSAR, N.—JERABEK, J.—DVORAK, R.—KARTCI, A.—DOSTAL, T.—VRBA, K. : New Double Current Controlled CFA (DCC-CFA) based Voltage-Mode Oscillator with Independent Electronic Control of Oscillation Condition and Frequency, Journal of Electrical Engineering 64 No. 2 (2013), 65–75.10.2478/jee-2013-0010Search in Google Scholar

[20] BIOLEK, D.—BAJER, J.—BIOLKOVA, V.—KOLKA, Z.—KUBICEK, M. : Z Copy-Controled Gain-Current Differencing Buffered Amplifier and its applications, International Journal of Circuit Theory and Applications 39 No. 3 (2011), 257–274.10.1002/cta.632Search in Google Scholar

[21] BIOLEK, D.—BIOLKOVA, V. : Electronically Tunable Phase Shifter Employing Current-Controlled Current Follower Transconductance Amplifiers (CCCFTAs), Proceedings of the 32th International Conference on Telecommunications and Signal Processing - TSP’09, Dunakility, Hungary, 2009, pp. 54–57.Search in Google Scholar

[22] HERENCSAR, N.—KOTON, J.—VRBA, K. : Current Controlled Current Conveyor Transconductance Amplifier (CCCCTA): a Building Block for Analog Signal Processing, Electrical Engineering Springer 90 No. 6 (2008), 443–453.Search in Google Scholar

[23] LI, Y. : A Series of New Circuits based on CFTAs, AEU – International Journal of Electronics and Communications 66 No. 7 (2012), 587–592.10.1016/j.aeue.2011.11.011Search in Google Scholar

[24] IAMAREJIN, A.—MANEEWAN, S.—SUWANJAN, P.—JAIKLA, W. : Current-Mode Variable Current Gain First-Order Allpass Filter Employing CFTAs, Prezglad Elektrotechniczny 89 No. 2a (2013), 238–241.Search in Google Scholar

[25] HERENCSAR, N.—KOTON, J.—VRBA, K.—LAHIRI, A. : Single GCFDITA and Grounded Passive Elements based General Topology for Analog Signal Processing Applications, Proceedings of the 11th International Conference on Networks - ICN 2012, Saint Gilles, Reunion Island, 2012, pp. 59–62.Search in Google Scholar

[26] 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 Ir Elektrotechnika 17 No. 7 (2011), 37–42.Search in Google Scholar

[27] SOTNER, R.—JERABEK, J.—PETRZELA, J.—VRBA, K.—DOSTÁL, T. : Design of Fully Adjustable Solution of Band-Reject/All-Pass Filter Transfer Function using Signal Flow Graph Approach, In Proceedings of the 24th International Conference Radioelektronika 2014, pp. 67–70.10.1109/Radioelek.2014.6828418Search in Google Scholar

[28] SOTNER, R.—JERABEK, J.—HERENCSAR, N.—PROKOP, R.—VRBA, K.—DOSTAL, T. : Resistor-Less First-Order Filter Design with Electronical Reconfiguration of its Transfer Function, Proceedings of the 24th International Conference Radioelektronika 2014, 2014, pp. 63–66.10.1109/Radioelek.2014.6828417Search in Google Scholar

[29] SOTNER, R.—HERENCSAR, N.—JERABEK, J.—PROKOP, R.—KARTCI, A.—DOSTAL, T.—VRBA, K. : Z-Copy Controlled-Gain Voltage Differencing Current Conveyor: Advanced Possibilities in Direct Electronic Control of First-Order Filter, Elektronika Ir Elektrotechnika 20 No. 6 (2014), 77–83.Search in Google Scholar

[30] HERENCSAR, N.—KOTON, J.—LATTENBERG, I.—VRBA, K. : Signal-Flow Graphs for Current-Mode Universal Filter Design using Current Follower Transconductance Amplifiers (CFTAs), Proc. of Applied Electronics APPEL2008, Pilsen, 2008, pp. 69–72.Search in Google Scholar

[31] BAKER, J. : CMOS Circuit Design, Layout and Simulation, Wiley-IEEE Press, West Sussex, 2008.Search in Google Scholar

[32] ELDBIB, I.—MUSIL, V. : Self-Cascoded Current Controlled CCII Based Tunable Band Pass Filter, Proc. 18th Int. Conf. Radioelektronika, Praha, 2008, pp. 1–4.10.1109/RADIOELEK.2008.4542706Search in Google Scholar

[33] MOSIS Parametric Test Results of TSMC LO EPI SCN018 Technology, ftp://ftp.isi.edu/pub/mosis/vendors/tsmc-018/t44e lo epi-params.txt Available on-line, cited 24.5.2012.Search in Google Scholar

[34] SURAKAMPONTORN, W.—KUMWACHARA, K. : CMOS-Based Electronically Tunable Current Conveyor, Electronics Letters 14 No. 28 (1992), 1316–1317, DOI: 10.1049/el:19920836.10.1049/el:19920836Search in Google Scholar

[35] Intersil (Elantec) EL2082 CN Current-Mode Multiplier (datasheet),.Search in Google Scholar

[36] Texas Instruments. VCA810: High Gain Adjust Range, Wideband, variable gain amplifier, http://www.ti.com/lit/ds/symlink/vca810.pdf 2003 (last modified 12/2010), 30 p.Search in Google Scholar

[37] Analog Devices. AD830 High Speed, Video Difference Amplifier (datasheet), http://www.analog.com/static/imported-files/data_sheets/AD830.pdf 2010 (Rev. C, 03/2010), 20 p.Search in Google Scholar

[38] Current-mode four-quadrant multiplier EL 4083 (datasheet), http://www.elantec.com 1995, 16 p.Search in Google Scholar

[39] Texas Instruments. OPA660 Wide bandwidth operational transconductance amplifier and buffer (datasheet), www: http://www.ti.com/lit/ds/symlink/opa660.pdf 2000, 20 p.Search in Google Scholar

[40] Texas Instruments. OPA860 Wide-bandwidth, operational transconductance amplifier (OTA) and buffer (datasheet), www: http://www.ti.com/lit/ds/symlink/opa860.pdf 2008, 33 p.Search in Google Scholar

[41] SOTNER, R.—KARTCI, A.—JERABEK, J.—HERENCSAR, N.—DOSTAL, T.—VRBA, K. : An Additional Approach to Model Current Followers and Amplifiers with Electronically Controllable Parameters from Commercially Available ICs, Measurement Science Review 12 No. 6 (2012), 255–265.Search in Google Scholar

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