Hardware Reference
In-Depth Information
19. Hassan TM, Mahmoud SA (2010) New CMOS DVCC realization and applications to instru-
mentation amplifier and active-RC filters. Int J Electron Commun (AEU) 64:47-55
20. Minaei S, Yuce E (2012) A simple schmitt trigger circuit with grounded passive elements and
its application to square/triangular wave generator. Circ Syst Sig Process 31:877-888
21. Ibrahim MA, Minaei S, Kuntman H (2005) A 22.5 MHz current mode KHN-biquad using
differential voltage current conveyor and grounded passive elements. Int J Electron Commun
(AEU) 59:311-318
22. Horng JW, Hou CL, Chang CM, Chung WY (2006) Voltage-mode universal biquadratic filters
with one input and five outputs. Analog Integr Circ Sig Process 47:73-83
23. Laoudias C, Psychalinos C (2014) Differential voltage current controlled current conveyor
with low-voltage operation capability. Int J Electron 101:939-949
24. Soliman AM (2009) On the DVCC and the BOCCII as adjoint elements. J Circ Syst Comput
18:1017-1032
25. Pal K, Nigam MJ (2008) Novel active impedances using current conveyors. J Active Passiv
Electron Devices 3:29-34
26. Awad IA, Soliman AM (1999) Inverting second generation current conveyors: the missing
building blocks, CMOS realizations and applications. Int J Electron 86:413-432
27. Soliman AM, Saad RA (2010) Generation of second generation current conveyor (CCII)
family from inverting second generation current conveyor (ICCII). Int J Electron 97:405-414
28. Soliman AM (2008) The inverting second generation current conveyors as universal building
blocks. Int J Electron Commun (AEU) 62:114-121
29. Sobhy EA, Soliman AM (2007) Novel CMOS realizations of the inverting second-generation
current conveyor and applications. Analog Integr Circ Sig process 52:57-64
30. Beevao D, Vrba K (2000) Novel generations of inverting current conveyor using universal
current conveyor. Electron J Eng Tech 3:4
31. Sobhy EA, Soliman AM (2009) Novel CMOS realization of balanced-output third generation
inverting current conveyor with applications. Circ Syst Sig Process 28:1037-1051
32. Salama K, Soliman A (1999) Novel MOS-C quadrature oscillator using the differential current
voltage conveyor. In: 42nd IEEE midwest symposium on circuits and systems, Las Cruces,
NM, vol 1, pp 279-282
33. Acar C, Ozoguz O (1999) A new versatile building block: current differencing buffered
amplifier suitable for analog signal-processing filters. Microelectron J 30:157-160
34. Salama KN, Elwan HO, Soliman AM (2001) Parasitic-capacitance-insensitive voltage-mode
MOSFET-C filters using differential current voltage conveyor. Circ Syst Sig Process 20:11-26
35. Soliman AM, Madian AH (2009) MOS-C KHN filter using voltage OP AMP CFOA, OTRA
and DCVC. J Circ Syst Comp 18:733-769
36. Piyatat T, Tangsrirat W, Surakampontorn W (2005) Current-controlled differential current
voltage conveyor and its applications, ECTI-Conference, Pathumthani, Thailand, pp 661-646
37. El-Adawy AA, Soliman AM, Elwan HO (2000) A novel fully differential current conveyor and
applications for analog VLSI. IEEE Trans Circ Syst-II 47:306-313
38. Kacar F, Metin B, Kuntman H, Cicekoglu O (2010) A new high-performance CMOS fully
differential second-generation current conveyor with application example of biquad filter
realisation. Int j Electron 97:499-510
39. Alzaher HA, Elwan HO, Ismail M (2000) CMOS fully differential second-generation current
conveyor. Electron Lett 36:1095-1096
40. Sobhy E, Soliman AM (2010) Realizations of fully differential voltage second generation
current conveyor with an application. Int J Circ Theor Appl 38:441-452
41. Chang CM, Soliman AM, Swamy MNS (2007) Analytical synthesis of low-sensitivity high-
order voltage-mode DDCC and FDCCII-grounded R and C All-pass filter structures. IEEE
Trans Circ Syst-I 54:430-1443
42. Mahmoud SA (2006) New fully-differential CMOS second-generation current conveyor.
ETRI J 28:495-501
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