References
- CHRISANTHOPOULOS, A.—SOULIOTIS, G.—HARITANTIS, I. : Differential Current Amplifiers with Improved Dynamic Range, The 6th IEEE International Conference on Electronics, Circuits and Systems (ICECS 99), Pafos, 1999, pp. 501–504.
- SOULIOTIS, G.—CHRISANTHOPOULOS, A.—HARITANTIS, I. : Current Differential Amplifers: New Circuits and Applications, International Journal of Circuit Theory and Applications (2001), 553–574.
- ALTUN, M.—KUTMAN, H. : Design of a Fully Differential Current Mode Operational Amplifier with Improved Input-Output Impedances and its Filter Applications, International Journal of Electronics and Communications 62 No. 3 (2008), 239–244.
- KAULBERG, T. : A CMOS Current-Mode Operational Amplifier, IEEE Journal of Solid-State Circuits 6 No. 7 (1993), 849–852.
- EL-ADAWY, A. A.—SOLIMAN, A. M.—ELWAN, H. O. : Low Voltage Fully Differential CMOS Voltage Mode Digitally Controlled Variable Gain Amplifier, Microelectronics Journal 31 No. 2 (2000), 139–146.
- JERABEK, J.—SOTNER, R.—VRBA, K. : Fully-Differential Current Amplifier and its Application to Universal and Adjustable Filter, In 2010 International conference on applied electronics, 2010, pp. 141–144.
- HERENCSAR, N.—JERABEK, J.—KOTON, J.—VRBA, K.—MINAEI, S.—GOKNAR, I. C. : Pole Frequency and Pass-Band Gain Tunable Novel Fully-Differential Current-Mode All-Pass Filter, In Proceedings of the IEEE International Symposium on Circuits and Systems (ISCAS), Lisbon, Portugal, 2015, pp. 2668–2671.
- POLAK, J.—LANGHAMMER, L.—JERABEK, J. : Behavioral Modeling of Digitally Adjustable Current Amplifier, International Journal of Advances In Telecommunications, Electrotechnics, Signals and Systems (2015), 1–7, 10.11601/ijates.v4i1.104.
- JERABEK, J.—VRBA, K. : Current-Mode Tunable and Adjustable Filter with Digitally Adjustable Current Amplifier and Transconductance Amplifiers, In Proceedings of the European Conference of Circuits Technology and Devices (ECCTD’10), 2010, pp. 101–104.
- KOTON, J.—HERENCSAR, N.—VRBA, K.—JERABEK, J. : Digitally Adjustable Current Amplifier and its Application in Fully Differential Current-Mode Band-Pass Filter Design, Elektrorevue Internet journal No. 90 (2010), 1–6.
- JERABEK, J.—SOTNER, R.—VRBA, K. : Fully-Differential Universal Filter with Current Active Elements, In Proc of the 4th Int. Conf. on Circuits, Systems and Signals (CSS’10), WSEAS, 2010, pp. 83–86.
- LANGHAMMER, L.—JERABEK, J.—POLAK, J. : Tunable Fully-Differential Filters Designed Using Signal-Flow Graphs Method, Elektrorevue Internet Journal 6 No. 3 (2015), 38–48.
- LANGHAMMER, L.—JERABEK, J. : Fully Differential Universal Current-Mode Frequency Filters Based on Signal-Flow Graphs Method, International Journal of Advances in Telecommunications, Electrotechnics, Signals and Systems 3 No. 1, 1–12.
- HERENCSAR, N.—VRBA, K.—KOUDAR, I. : Universal Voltage Conveyor (UVC-N1C 0520), Data Sheet, 2010, http://www.utko.feec.vutbr.cz/~herencsar/UVC_N1C_0520.pdf.
- KOTON, J.—VRBA, K.—KOUDAR, I. : Universal Current Conveyor (UCC) and Second-Generation Current Conveyor (CCII+/-), Data Sheet, 2010, http://www.utko.feec.vutbr.cz/~koton/soubory/UCC_N1B_Rev0.pdf.
- INTERSIL (ELANTEC). EL 2082CN Current-Mode Multiplier, 1996, http://www.intersil.com/data/fn/fn7152.pdf.
- JERABEK, J.—VRBA, K.—KOUDAR, I. : Dual Wide-Bandwidth Digitally Adjustable Current Amplifier (DACA), Data Sheet, 2010, http://www.utko.feec.vutbr.cz/jerabekj/daca.pdf.
- TANGSRIRAT, W. : Current-Tunable Current-Mode Multifunction Filter based on Dual-Output Current-Controlled Conveyors, AEU-Int J. Electron. Commun 61 No. 8 (2007), 528–533.
- YUCE, E. : Current-Mode Electronically Tunable Biquadratic Filters Consisting of only CCCIIs and Grounded Capacitors, Microelectronics Journal No. 40 (2009), 1719–1725.
- ABBAS, Z.—SCOTTI, G.—OLIVIERI, M. : Current Controlled Current Conveyor (CCCII) and Application using 65 nm CMOS Technology, World Academy of Science, Engineering and Technology 55 (2011), 935–939.
- PAUL, S. K.—PANDEY, N.—BHATTACHARYYA, A. : Transadmittance Mode Universal Filter based on MOCCCII, Int. Conf. on Computers and Devices Communication, 2009, 4th Int. Conf. on IEEE, pp. 1–4.
- PANDEY, N.—PAUL, S. K.—JAIN, S. B. : A New Electronically Tunable Current Mode Universal Filter using MO-CCCII, Analog Integrated Circuits and Signal Processing 58 (2009), 171–178, 10.1007/s10470-008-9232-3.
- HERENCSAR, N.—VRBA, K. : Tunable Current-Mode Multifunction Filter using Universal Current Conveyors, Proceedings of the Third International Conference on Systems, Mexico, 2008, pp. 1–6.