Hardware Reference
In-Depth Information
32. Kurashina T, Ogawa S, Watanabe K (2002) A CMOS rail-to-rail current conveyor. IEICE
Trans Fundament 85-A:2894-2900
33. Nero AL, Aguiar Ruil L, Santos DM (2002) Bandwidth aspects in second generation current
conveyors. Analog Integr Circ Sig Process 33:127-136
34. Cicekoglu O, Tarim N, Kuntman H (2002) Wide dynamic range high output impedance
current-mode multifunction filters with dual-output current conveyors. Int J Electron Commun
(AEU) 56:55-60
35. El-Adawy AA, Soliman AM, Elwan HO (2002) Low voltage digitally controlled CMOS
current conveyor. Int J Electron Commun (AEU) 56:137-144
36. Calvo B, Celma S, Martinez PA, Sanz MT (2003) Novel high performance CMOS current
conveyor. Microelectron Reliabil 43:955-961
37. Kurashina T, Ogawa S, Watanabe K (2003) A CMOS rail-to-rail current conveyor and its
applications to current-mode filters. IEICE Trans Fundament E86-A(6):1445-1450
38. Mita R, Palumbo G, Pennisi S (2003) 1.5-V CMOS CCII+ with high current-driving capabil-
ity. IEEE Trans Circ Syst-II 50:187-190
39. Awad IA, Soliman AM (2004) High accuracy class AB CCII-. Int J Electron Commun (AEU)
58:237-243
40. Rajput SS, Jamuar SS (2004) Low voltage, low power and high performance current conveyors
for low-voltage analog and mixed mode signal processing applications. Analog Integr Circ Sig
Process 41:21-34
41. Hassanein WS, Awad IA, Soliman AM (2004) New wide band low power CMOS current
conveyors. Analog Integr Circ Sign Process 40:91-97
42. Ferri G, Guerrini NC (2004) Noise determination of differential pair-based second generation
current conveyors. Analog Integr Circ Sig Process 41:35-46
43. Calvo B, Celma S, Martinez PA, Sanz MT (2003) High-speed high-precision CMOS current
conveyor. Analog Integr Circ Sig Process 36:235-238
44. Hassanein WS, Awad IA, Soliman AM (2005) New high accuracy CMOS current conveyors.
Int J Electron Commun 59:384-391
45. Hassanein WS, Awad IA, Soliman AM (2005) Long tail pair based positive CMOS current
conveyors: a review. Frequenz 59:186-194
46. Salem SB, Fakhfakh M, Masmoudi DS, Loulou M, Loumeau P, Masmoudi N (2006) A high
performance CMOS CCII and high frequency applications. Analog Integ Circ Sig Process
49:71-78
47. Hassan HM, Soliman AM (2006) Novel accurate wideband CMOS current conveyor. Frequenz
60:234-236
48. Madian AH, Mahmoud SA, Soliman AM (2006) New 1.5-V CMOS second generation current
conveyor based on wide range transconductor. Analog Integr Circ Sig Process 49:267-279
49. Minaei S, Sayin OK, Kuntaman H (2006) A new CMOS electronically tunable current
conveyor and its application to current-mode filters. IEEE Trans Circ Syst-I 53:1448-1457
50. Ferri G, Stornelli V, Fragnoli M (2006) An integrated improved CCII topology for resistive
sensor application. Analog Integr Circ Sig Process 48:247-250
51. Barthelemy H, Fillaud M, Bourdel S, Gaubert J (2007) CMOS inverters based positive type
second generation current conveyor. Analog Integr Circ Sig Process 50:141-146
52. Kasemsuwan V, Nakhlo W (2007) A simple 1.5 V rail-to-rail CMOS current conveyor. J Circ
Syst Comput 16:627-639
53. Arcamone J, Misischi B, Graells FS, Boogaart MAFVD, Brugger J, Torres F, Abadal G,
Barniol N, Murano FP (2008) Compact CMOS current conveyor for integrated NEMS
resonators. IET Circ Devices Syst 2:317-323
54. Motlak HJ, Ahmed SN (2008) CMOS CCII-based on modified dual output-OTA for high
frequency applications. Int J Electron 95:879-889
55. Al-Absi MA (2009) A novel highly accurate current mirror. Int J Electron 96:781-786
56. Thankachan S, Pattanaik M, Rajput SS (2009) A
0.5 V BiCMOS class-A current conveyor.
Int J Electr Electron Eng 3:607-610
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