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Rapid prototyping of algorithmic A/D converters based on FPAA devices

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A rapid prototyping method for designing mixed signal systems has been presented in the paper. The method is based on implementation of the field programmable analog array (FPAA) to configure and reconfigure mixed signal systems. A serial algorithmic analog digital converter has been used as an example. Three converter architectures have been selected and implemented FPAA device. To verify and illustrate converters operation and prototyping capabilities, implemented converters have been excited by a sinusoidal signal. Analog sinusoidal excitations, digital responses and sinusoidal waveforms after reconstruction are presented.
Słowa kluczowe
Rocznik
Strony
691--696
Opis fizyczny
Bibliogr. 19 poz., wykr., rys.
Twórcy
autor
  • Faculty of Electronics and Information Science, Koszalin University of Technology, 2 Sniadeckich St. 75-453- Koszalin, Poland
autor
  • Faculty of Electronics and Information Science, Koszalin University of Technology, 2 Sniadeckich St. 75-453- Koszalin, Poland
Bibliografia
  • [1] R. Langwieser, C. Angerer, and A.L. Scholtz, “A UHF frontend for MIMO applications in RFID”, Proc. IEEE Radio andWireless Symposium 1, 124-127 (2010).
  • [2] C. Angerer and R. Langwieser, “Flexible evaluation of RFID system parameters using rapid prototyping”, Proc. Third IEEEInt. Conf. on RFID 1, 42-47 (2009).
  • [3] P. Murphy, F. Lou, A. Sabharwal, and J.P. Frantz, “An FPGA based rapid prototyping platform for MIMO systems”, Proc. Thirty-Seventh Asilomar Conf. on Signals, Systems and Computers 1, 900-904 (2010).
  • [4] M. Rice, B. Nelson, M. Padilla, and J. Havican, “On the use of rapid prototyping for designing PCM/FM demodulators in FPGAs”, Proc. 2010 Int. Telemetering Conf. (ITC) 1, 10 (2010).
  • [5] M. Rupp, A. Burg, and E. Beck, “Rapid prototyping for wireless designs: the five-ones approach”, J. Signal Processing 83 (7), 1427-1444 (2003).
  • [6] J. Van den Keybus, B. Bolsens, K. De Brabandere, and J. Driesen, “Using a fully digital rapid prototype platform in gridcoupled power electronics applications”, Proc. IEEE Workshopon Computers in Power Electronics 1, 102-111 (2004).
  • [7] L.S. Milor, “A tutorial Introduction to Research on Analog and Mixed-Signal Circuit Testing”, IEEE Trans. on Circuits an dSystems - II: Analog and Digital Signal Processing 45 (10), 1389-1407 (1998).
  • [8] M. Burns and G.W. Roberts, An Introduction to Mixed-signalIC Testing and Measurement, Oxford University Press, Oxford, 2000.
  • [9] R. Sarahuja, V. Barcons, L. Balado, and J. Figueras, “Experimental test bench for mixed-signal circuits based on FPAA devices”, Proc. XVIII Conf. on Design of Circuit and IntegratedSystem - DCIS 1, 344-349 (2003).
  • [10] R. Caponetto, A. Di Mauro, L. Fortuna, and M. Frasca, “Field programmable analog array to implement a programmable Chua’s circuit”, Int. J. Bifurcation and Chaos 15 (5) 1829-1836 (2005).
  • [11] P.I. Yakimov, E.D. Manolov, and M.H. Hristov, “Design and implementation of a V-f converter using FPAA”, IEEE 27th Int. Spring Seminar on Electronics Technology 1, 126-129 (2004).
  • [12] T. Roberts, “Using field-programmable analog to build adaptable RFID readers”, RF and Microwave Technology for DesignEngineers - RFDESIGN 1, 44-48 (2004).
  • [13] T.R. Balen, A.Q. Andrade, F. Azais, M. Lubaszewski, and M. Renovell, “Applying the oscillation test strategy to FPAA’s configurable analog blocks”, J. Electronic Testing: Theory andApplications 21, 135-146 (2005).
  • [14] L. Znamirowski, O.A. Palusinski, and S.B.K. Vrudhula, “Programmable analog/digital arrays in control and simulation”, Analog Integrated Circuits and Signal Processing 39, 55-73 (2004).
  • [15] T. Slaughter “Fault injection emulation for field programmable analog arrays”, Southwest Symposium on Mixed-Signal Design,SSMSD 2003 1, 212-216 (2003).
  • [16] R. Suszynski and K. Wawryn, “Prototyping of higher order ADC based on implementation of a FPAA”, Proc. 13thIEEE Int. Conf. on Electronics, Circuits and Systems, ICECS 1, CD-ROM (2006).
  • [17] R. van de Plassche, Integrated Analog-to-digital and Digital-toanalogConverters, Kluwer Academic Publishers, New York, 1994.
  • [18] “AN121E04 Field Programmable Analog Arrays - User Manual, Anadigm, Inc, 2003.
  • [19] K. Wawryn, Switched Current Circuits, WNT Publisher, Warsaw, 1997, (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3d27b981-36de-4630-81cc-9cba4db33cfd
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