Hardware Reference
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76. Vrba K, Cajka J (2002) RC oscillators. In: Electron devices system Brno, Czech Republic,
pp 243-245
77. Petchakit W, Petchakit S (2005) New floating capacitance multipliers. In: Proceedings of the
28th electrical engineering conference (EECON-28), Phuket, Thailand, pp 1233-1236
78. Michal V, Premont C, Pillonnet G, Abouchi N (2010) Single active element PID controllers.
In: 20th international conference radioelektronika (Radioelektronika), Brno, pp 1-4, 19-21
Apr 2010
79. Abuelma
atti MT, Alsuhaibani ES, Obadi ASB, Khalifa ZJ (2013) Independent control of the
frequency and condition of oscillation: a caution. Int J Electron 100:384-392
80. Herencsar N, Lahiri A, Vrba K, Koton J (2012) An electronically tunable current-mode
quadrature oscillator using PCAs. Int J Electron 99:609-621
81. Metin B, Pal K, Cicekoglu O (2012) A new approach for high-input impedance in voltage
mode filters using first-generation current conveyor in place of second-generation current
conveyor. Int J Electron 99:131-139
82. Jaikla W, Siripruchyanun M, Biolek D, Biolkova V (2010) High-output-impedance current
mode multiphase sinusoidal oscillator employing current differencing transconductance
amplifier-based all pass filters. Int J Electron 97:811-826
83. Pal K, Psychalinos C (2010) All-pass filters realized using the current-controlled CCII with
intrinsic negative resistance. Int J Electron 97:491-498
84. Al-Absi MA (2009) A novel highly accurate current mirror. Int J Electron 96:781-786
85. Herencsar N, Koton J, Vrba K, Lattenberg I (2010) New voltage-mode universal filter and
sinusoidal oscillator using only single DBTA. Int J Electron 97:365-379
86. Sharma S, Gupta R (2012) Voltage controlled current conveyor and its application. In:
Proceedings of the international conferences on advances in computer science and electronics
engineering, Delhi, India, pp 389-393
87. Chun-Hua C, Zhi-Xing S, Chang-yong Y, Yan Z (2008) Analytical synthesis method of
the digitally programmable voltage mode universal biquad based on current conveyors.
J Commun 29:129-134
88. Vrba K, Cajka J, Zeman V (1998) N-th order filters using balanced-output CCII+/
'
con-
veyors. Radioengineering 7:16-19
89. Salema SB, Fakhfakh A, Loulou M, Loumeau P, Masmoudi N (2004) A 2.5 V 0.35
m
CMOS current conveyor and high frequency high-Q band pass filter. In: Proceedings of the
16th international conference on microelectronics, Tunis, Tunisia, pp 328-333
90. Biolek D, Vrba K, Cajka J, Dostal T (2000) General three-port current conveyor: a useful tool
for network design. J Electron Eng 51:36-39
91. Vrba K, Cajka J, Zeman V (1996) Floating RC networks using current conveyors.
Radioengineering 5:8-11
92. Minaei S, Kaymak D, Ibrahim MA, Kuntman H (2002) New CMOS configuration for
current-controlled conveyors (CCCIIs). In: Proceedings of IEEE ICCSC, St Petersburg,
Russia, pp 62-65
93. Jongchanachavawat W, Kumngern M, Dejhan K (2007) High-value floating controlled
resistor. In: Proceedings of the 2007 ECTI international conference, Thailand, pp 165-167
94. Jaikla W, Siripruchyanun M (2007) Low-component electronically controllable dual-mode
universal biquad filter using DO-CCCIIs. In: Proceedings of Asia-Pacific conference on
communications, Bangkok, pp 331-334
95. Jaikla W, Siripruchyanun M (2007) A current-mode alternative topology for realization of
universal biquad filter. In: IEEE international symposium on integrated circuits (ISIC-2007),
Singapore, pp 616-619
96. Minaei S, Yuce E (2011) T0-CCII based voltage-mode universal biquadratic filter. In: IEEE
CCECE, Niagara Falls, Canada, pp 000520-000523
97. Srisakultiew S, Siripruchyanun M (2013) A synthesis of electronically controllable current
mode PI, PD and PID controllers employing CCCDBAs. Circ Syst 4:287-292
μ
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