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Voltage-mode second-order filter and quadrature oscillator based-on differential difference current conveyors and only grounded elements

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
PL
Filtr drugiego rzędu i kwadraturowy oscylator bzaujący na układzie DDCC i kilku uziemionych elementach
Języki publikacji
EN
Abstrakty
EN
The voltage-mode second-order filter and quadrature oscillator are presented. The proposed configuration provides two differential difference current conveyors, three grounded resistors and two grounded capacitors. The grounded elements are designed for implementation of integrated circuit. The second-order filter is simultaneously produced three output responses of highpass, bandpass and lowpass with only single input. The quality factor and pole frequency can be independently controlled when operating in second-order filter. Moreover, the second-order filter can be modified to operate in the quadrature oscillator with the same configuration. The oscillation condition can be adjusted without effecting of the oscillation frequency. The results of simulation are in accordance with the theoretical analysis.
PL
Przedstawiono filtr drugiego rzędu I generator wykorzystujące dwa różnicowe konvejery DDCC, trzy uziemione rezystory i dwa uziemione kondensatory. Filtr ma trzy wyjścia dolno-, górno- i środkowoprzepustowe. Przy jednym wejściu.
Rocznik
Strony
62--67
Opis fizyczny
Bibliogr. 26 poz., rys.
Twórcy
  • Rajamangala University of Technology ISAN, Khonkaen Campus, Khonkaen, Thailand
  • Rajamangala University of Technology ISAN, Khonkaen Campus, Khonkaen, Thailand
  • Rajamangala University of Technology ISAN, Khonkaen Campus, Khonkaen, Thailand
Bibliografia
  • [1] Chiu W.Y., Horng J.W., Yang S.S., High-Input Impedance Voltage-Mode Universal Biquadratic Filter with One input and Five Outputs using DDCCs, 4th IEEE International Symposium on Electronic Design, (2008), 346-350 PRZEGLĄD ELEKTROTECHNICZNY, ISSN 0033-2097, R. 96 NR 9/2020 67
  • [2] Chiu W.Y., Horng J.W., Cheng S.T., Universal Filter with One Input and Five Outputs Using DDCCs, International Symposium on Intel l i gent Signal Processing and Communication System, (2008), 1-4
  • [3] Chiu W.Y., Horng J.W., Guo Y.S., Tseng C.Y. , DDCCs Based Voltage-Mode One Input Five outputs Biquadratic Filter With High Input Impedance, International Symposium on Integrated Circuits, (2011), 39-42
  • [4] Chiu W.Y. , Horng J .W. , High-Input and Low-Output Impedance Voltage-Mode Universal Biquadratic Filter Using DDCCs, IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS, 54, No. 8, (2007), 649-652
  • [5] Yuce E., A Signal-input Multiple-output Voltage-mode Second-order Universal Filter using Only Grounded Passive Components, Indian Journal of Engineering & Material Science, 24, (2017), 97-106
  • [6] Maheshwari S., Gangwar A., Versatile Voltage-Mode Universal Filter Using Differential Difference Current Conveyor, Science Research:Circuits and Systems, 2 (2011), 210-216
  • [7] Chen H.P., Huang K.W., Liu T.Y., Voltage-Mode Universal Filter Employing Two Plus-Type DDCCs, International Journal of Information and Electronics Engineering, 2, No. 1, (2012), 44-49
  • [8] Chen H.P., Versatile Universal Voltage-mode Filter Employing DDCCs, Int. J. Electron. Commun. (AEÜ), 63 (2009) 78 – 82
  • [9] Horng J.W., Hsu C.H., Tseng C.Y., High Input Impedance Voltage-Mode Universal Biquadratic Filters with Three Inputs Using Three CCs and Grounding Capacitors, RADIOENGINEERING, 21, No. 1, (2012) 290-296
  • [10] Tran H.D., Wang H.Y., Lin M.C., Nguyen Q.M., Synthesis of Cascadable DDCC-Based Universal Filter Using NAM, Applied Sciences, 5 (2015), 320-343
  • [11] Horng J.W., Chiu W.Y., High Iinput Impedance DDCC-based Voltage-mode Universal Biquadratic Filter with Three Inputs and Five Outputs, Indian Journal of Engineering & Materials Sciences, 18, (2011), 183-190
  • [12] Sharma J., Sharma A., Universal Filter Design using 45nm CMOS-based DDCC for Bluetooth/ Zigbee Applications, International Journal of Computer Applications, 134, No.13, (2016), 36-40
  • [13] Chen H.P., Wang S.F., Chang Y.L., DDCC-Based Tunable Voltage-Mode Multifunction Biquadrates Filter, International Journal of Information and Electronics Engineering, 2, No. 1, (2012), 55-61
  • [14] Kumngern M., Khateb F., Dejhan K., Phasukkit P., Tungjitkusolmun S., Voltage-Mode Multifunction Biquadratic Filters Using New Ultra-Low-Power Differential Difference Current Conveyors, RADIOENGINEERING, 22, No. 2, (2013), 448-457
  • [15] Mohan J., Garg G., Minimum Grounded Component Based Voltage-Mode Quadrature Oscillator using a Single Plus-Type DO-DDCC, IEEE International Conference on Signal Processing, Computing and Control, (2012), 1-4
  • [16] Kumngern M., Versatile Voltage-Mode Quadrature Oscillator Circuit Using DDCCs, Symposium on Wireless Technology and Applications (ISWTA), September 25-28, (2011),44-47
  • [17] Chaturvedi B., Maheshwari S., Simple Voltage-mode Quadrature oscillator using CMOS DDCC, International Conference on Multimedia, Signal Processing and Communication Technologies, (2011), 220-223
  • [18] Kumngern M., Dejhan K., DDCC-Based Quadrature Oscillator with Grounded Capacitors and Resistors, Active and Passive Electronic Components, 2009 (2009), 1-5
  • [19] Kwawsibsam A., Sreewirote B., Jaikla W., Third-Order Voltage- Mode Quadratrue Oscillator Using DDCC and OTAs, International Conference on Circuits, System and Simulation ,(2011), 317-321
  • [20] Aggarwal V., Novel Canonic Current Mode DDCC Based SRCO Synthesized Using a Genetic Algorithm, Analog Integrated Circuits and Signal Processing, 40 ( 2004), 83–85
  • [21] Chiu W., Liu S.I., Tsao H.W., Chen J.J., CMOS differential difference current conveyors and their applications, IEE Proceeding–Circuits Devices and Systems, 143 (1996), 91–96
  • [22] Bhusan M., Newcomb R. W., Grounding of Capacitors in Integrated Circuits, Electronics Letters, 3 (1967) 148–149
  • [23] Jaikla W., Adhan S., Suwanjan P., Kumngern M., Current/Voltage Controlled Quadrature Sinusoidal Oscillators for Phase Sensitive Detection using Commercially Available IC, Sensors, 20 (2020) 1319
  • [24] Rungsa S., Jantakun A. Single Commercially Available IC: LT1228 Based Sinusoidal Oscillator, Przegląd Elektrotechniczny, 95 (2019), nr 4, 218-222
  • [25] AD830 High Speed Video/Difference Amplifier, Analog Devices, Available online, https://www.analog.com/media/ en/technical-documentation /data-sheets/AD830.pdf
  • [26] AD844 60 MHz, 2000 V/µs, Monolithic Op Amp with Quad Low Noise, Analog Devices, Available online, https://www.analog.com/media/en/technical-documentation/ data-sheets/AD844.pd
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c8ae1812-83ad-4e8f-b61e-27c3d9ffae90
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