Skip to main content
Have a personal or library account? Click to login
An Additional Approach to Model Current Followers and Amplifiers with Electronically Controllable Parameters from Commercially Available ICs Cover

An Additional Approach to Model Current Followers and Amplifiers with Electronically Controllable Parameters from Commercially Available ICs

Open Access
|Dec 2012

References

  1. [1] Biolek, D., Senani, R., Biolkova, V., Kolka, Z. (2008). Active elements for analog signal processing: Classification, review, and new proposal., 17 (4), 15-32.
  2. [2] Fabre, A., Saaid, O., Wiest, F., Boucheron, C. (1996). High frequency applications based on a new current controlled conveyor., 43 (2), 82-91.
  3. [3] Siripruchyanun, M., Chanapromma, C., Silapan, P., Jaikla, W. (2008). BiCMOS current-controlled current feedback amplifier (CC-CFA) and its applications., 6 (5), 203-219.
  4. [4] Sedra, A., Smith, K.C. (1970). A second generation current conveyor and its applications., 17 (1), 132-134.
  5. [5] Svoboda, J.A., McGory, L., Webb, S. (1991). Applications of a commercially available current conveyor., 70 (1), 159-164.
  6. [6] Surakampontorn, W., Thitimajshima, W. (1988). Integrable electronically tunable current conveyors., 135 (2), 71-77.
  7. [7] Fabre, A., Mimeche, N. (1994). Class A/AB second generation current conveyor with controlled current gain., 30 (16), 1267-1268.
  8. [8] Minaei, S., Sayin, O.K., Kuntman, H. (2006). A new CMOS electronically tunable current conveyor and its application to current-mode filters., 53 (7), 1448-1457.
  9. [9] Mahmoud, S., Hashies, M., Soliman, A. (2005). Lowvoltage digitally controlled fully differential current conveyor., 52 (10), 2055-2064.
  10. [10] Kumngern, M., Chanwutium, J., Dejhan, K. (2010). Electronically tunable multiphase sinusoidal oscillator using translinear current conveyors., 65 (2), 327-334.
  11. [11] Sedighi, B., Bakhtiar, M.S. (2007). Variable gain current mirror for high-speed applications., 4 (8), 277-281.
  12. [12] Tangsrirat, W. (2008). Electronically tunable multiterminal floating null or and its application., 17 (4), 3-7.
  13. [13] Tangsrirat, W., Pukkalanun, T. (2009). Digitally programmable current follower and its applications., 63 (5), 416-422.
  14. [14] Alzaher, H., Tasadduq, N. (2009). Realizations of CMOS fully differential current followers/amplifiers. In, 24-27 May, 2009. IEEE, 1381-1384.
  15. [15] Alzaher, H., Tasadduq, N., Al-Ees, O., Al-Ammari, F. (2011). A complementary metal-oxide semiconductor digitally programmable current conveyor.. Accepted for publication (2011). DOI: 10.1002/cta.786.
  16. [16] Koton, J., Herencsar, N., Jerabek, J., Vrba, K. (2010). Fully differential current-mode band-pass filter: Two design solutions. In, 17-20 August, 2010, 1-4.
  17. [17] Biolek, D., Bajer, J., Biolkova, V., Kolka, Z., Kubicek, M. (2010). Z copy-controlled gain-current differencing buffered amplifier and its applications., 39 (3), 257-274.
  18. [18] Biolek, D., Lahiri, A., Jaikla, W., Siripruchyanun, M., Bajer, J. (2011). Realisation of electronically tunable voltage-mode/current-mode quadrature sinusoidal oscillator using ZC-CG-CDBA., 42 (10), 1116-1123.
  19. [19] Herencsar, N., Lahiri, A., Vrba, K., Koton, J. (2012). An electronically tunable current-mode quadrature oscillator using PCAs., 99 (5), 609-621.
  20. [20] Sotner, R., Jerabek, J., Prokop, R., Vrba, K. (2011). Current gain controlled CCTA and its application in quadrature oscillator and direct frequency modulator., 20 (1), 317-326.
  21. [21] Marcellis, A., Ferri, G., Guerrini, N.C., Scotti, G., Stornelli, V., Trifiletti, A. (2009). The VGC-CCII: A novel building block and its application to capacitance multiplication., 58 (1), 55-59.
  22. [22] Kumngern, M., Junnapiya, S. (2010). A sinusoidal oscillator using translinear current conveyors. In, 6-9 December 2010. IEEE, 740-743.
  23. [23] Sotner, R., Herencsar, N., Jerabek, J., Koton, J., Dostal, T., Vrba, K. (2012). Quadrature oscillator based on modified double current controlled current feedback amplifier. InIEEE, 275-278.
  24. [24] Jaikla, W., Lahiri, A. (2011). Resistor-less currentmode four-phase quadrature oscillator using CCCDTAs and grounded capacitors., 66 (3), 214-218.
  25. [25] Texas Instruments. (1993).. Last modified 9/2000.
  26. [26] Texas Instruments. (1996).. Last modified 9/2000.
  27. [27] Intersil (Elantec). (1996).. Last modified 2003.
  28. [28] Texas Instruments. (2003).. Last modified 12/2010.
  29. [29] Texas Instruments. (2005).. Last modified 8/2008.
  30. [30] Odon, A. (2010). Modelling and simulation of the pyroelectric detector using MATLAB/Simulink., 10 (6), 195-199.
  31. [31] Deng, X., Yang, W.Q. (2012). Fusion research of electrical tomography with other sensors for two-phase flow measurement., 12 (2), 62-67.
  32. [32] Abu-Al-Aish, A., Rehman, M., Abdullah, Z., Abu- Hassan, H. (2010). Microcontroller based capacitive mass measuring system., 10 (1), 15-18.
  33. [33] Sotner, R., Jerabek, J., Herencsar, N., Dostal, T., Vrba, K. (2011). Additional approach to the conception of current follower and amplifier with controllable features. In, 279-283.
Language: English
Page range: 255 - 265
Published on: Dec 15, 2012
Published by: Slovak Academy of Sciences, Institute of Measurement Science
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open

© 2012 R. Sotner, A. Kartci, J. Jerabek, N. Herencsar, T. Dostal, K. Vrba, published by Slovak Academy of Sciences, Institute of Measurement Science
This work is licensed under the Creative Commons License.