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Winai Jaikla
Winai Jaikla
Bestätigte E-Mail-Adresse bei kmitl.ac.th
Titel
Zitiert von
Zitiert von
Jahr
Current controlled current conveyor transconductance amplifier (CCCCTA): a building block for analog signal processing
M Siripruchyanun, W Jaikla
Electrical Engineering 90, 443-453, 2008
2252008
A simple current-mode quadrature oscillator using single CDTA
W Jaikla, M Siripruchyanun, J Bajer, D Biolek
Radioengineering 17 (4), 33-40, 2008
1422008
CMOS current-controlled current differencing transconductance amplifier and applications to analog signal processing
M Siripruchyanun, W Jaikla
AEU-International Journal of Electronics and Communications 62 (4), 277-287, 2008
1032008
Resistorless dual-mode quadrature sinusoidal oscillator using a single active building block
W Jaikla, M Siripruchyanun, A Lahiri
Microelectronics Journal 42 (1), 135-140, 2011
852011
Realization of electronically tunable voltage-mode/current-mode quadrature sinusoidal oscillator using ZC-CG-CDBA
D Biolek, A Lahiri, W Jaikla, M Siripruchyanun, J Bajer
Microelectronics Journal 42 (10), 1116-1123, 2011
802011
Electronically controllable current-mode universal biquad filter using single DO-CCCDTA
M Siripruchyanun, W Jaikla
Circuits, Systems & Signal Processing 27, 113-122, 2008
762008
Resistor-less current-mode four-phase quadrature oscillator using CCCDTAs and grounded capacitors
W Jaikla, A Lahiri
AEU-International journal of Electronics and Communications 66 (3), 214-218, 2012
702012
Electronically tunable current-mode multiphase sinusoidal oscillator employing CCCDTA-based allpass filters with only grounded passive elements
W Jaikla, P Prommee
Radioengineering 20 (3), 594-599, 2011
662011
BiCMOS current-controlled current feedback amplifier (CC-CFA) and its applications
M Siripruchyanun, C Chanapromma, P Silapan, W Jaikla
WSEAS Transactions on Electronics 5 (6), 203-219, 2008
582008
Voltage-mode quadrature sinusoidal oscillator with current tunable properties
A Lahiri, W Jaikla, M Siripruchyanun
Analog Integrated Circuits and Signal Processing 65, 321-325, 2010
562010
A versatile quadrature oscillator and universal biquad filter using dual-output current controlled current differencing transconductance amplifier
W Jaikla, M Siripruchyanan
2006 International Symposium on Communications and Information Technologies …, 2006
562006
Multiple-input bulk-driven quasi-floating-gate MOS transistor for low-voltage low-power integrated circuits
F Khateb, T Kulej, H Veldandi, W Jaikla
AEU-International Journal of Electronics and Communications 100, 32-38, 2019
552019
Electronically controllable grounded inductance simulators using single commercially available IC: LT1228
S Siripongdee, W Jaikla
AEU-International Journal of Electronics and Communications 76, 1-10, 2017
542017
New resistorless current-mode quadrature oscillators using 2 CCCDTAs and grounded capacitors
C Sakul, W Jaikla, K Dejhan
Radioengineering 20 (4), 890-896, 2011
512011
New gain controllable resistor-less current-mode first order allpass filter and its application
W Jaikla, A Noppakarn, S Lawanwisut
Radioengineering 21 (1), 312-316, 2012
492012
High-output-impedance current-mode multiphase sinusoidal oscillator employing current differencing transconductance amplifier-based allpass filters
W Jaikla, M Siripruchyanun, D Biolek, V Biolkova
International Journal of Electronics 97 (7), 811-826, 2010
482010
Cascadable current-mode biquad filter and quadrature oscillator using DO-CCCIIs and OTA
M Siripruchyanun, W Jaikla
Circuits, Systems & Signal Processing 28, 99-110, 2009
482009
Current controlled current differencing transconductance amplifier (CCCDTA): a new building block and its applications
W Jaikla, M Siripruchyanun
Proceedings of ECTI conference 2006, 348-351, 2006
482006
High input impedance voltage-mode biquad filter using VD-DIBAs
W Jaikla, D Biolek, S Siripongdee, J Bajer
Radioengineering 23 (3), 914-921, 2014
452014
Comparative study of sub-volt differential difference current conveyors
F Khateb, W Jaikla, M Kumngern, P Prommee
Microelectronics Journal 44 (12), 1278-1284, 2013
452013
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