Development of vhdl-ams model of integrated microaccelerometer with sigma-delta control

2013;
: pp. 66 – 73
Authors: 

Holovatyy A., Teslyuk V., Lobur M.

A. Holovatyy1, V. Teslyuk2, M. Lobur2

  1. Ternopil Ivan Pul’uj National Technical University, Software Engineering Department
  2. Lviv Polytechnic National University, Computer Aided Design Department

In the paper, VHDL-AMS model of microaccelerometer with sigma-delta control for computer-aided design has been developed. The created model has made possible the simulation of dynamic characteristics of the integrated capacitive microaccelerometer, signal processing and digitizing, simulation of force feedback control using sigma-delta technique on the applied force of acceleration and also to perform the analysis of the device at the behavioral level of computer-aided design.

1. Kanchan Sharma, Isaac G. Macwan, Linfeng Zhang, Lawrence Hmurcik, Xingguo Xiong. Design Optimization of MEMS C omb Accele rometer, D epartment of Ele ctrical and Com puter Eng ineering. – pp. 10.2. To lga Ka ya, B ehrouz Shiari, Kev in P etsch1 and Da vid Yates. Des ign of a MEMS Capa citive Comb-drive Accelerometer. Central Michigan University, University of Michigan, 2012. – pp. 6. 3 . Akila Kannan. Design and Modeling of a MEMS-Bas ed Accelerometer with Pull In A nalysis. Thesis, University of British Columbia, 1 49, pp. 149. 4. hAMSter Softw are fo r VHDL- AMS Simulatio ns, http://www.theoinf.tuilmenau.de/~twangl/VHDL-AMS_online_en/Home.html. 5. Peter J. Ashenden ED A CONSULTANT, ASHENDEN D ESIGNS PT Y. LTD., “V HDL Tutorial”, Elsevier Science 2004. – pp. 84. 6. Standar d VH DL Analog and Mixed-Signal Extensions - Packages for Multiple Energy D omain S upport – 2003. – p p. 21. 7. VHDL 1076.1: Analog Extensions to VHDL, Ernst Christen, Analogy Inc. – April 1997. – pp. 9 .