3346 north Daniels Ct, Arlington Heights, IL 60004
Industry:
Automotive
Work:
Pierburg Us
President
Continental Jul 2015 - Nov 2017
Chief Executive Officer Continental Automotive Systems Rus, Head of Powertrain Division and Bu Engine Systems Russia
Continental Sep 2012 - Jun 2015
Global Director, General Manager Customer Center
Continental 2009 - Sep 2012
Head of Electronic Engineering, Nafta Region
Continental 2006 - 2009
Engineering Program Manager
Education:
Harvard Business School 2014 - 2014
Hult International Business School 2011 - 2013
Lake Forest Graduate School of Management 2006 - 2009
Master of Business Administration, Masters, Management
University of Illinois at Chicago 1995 - 1998
Master of Science, Masters, Electrical Engineering, Electrical Engineering and Computer Science, Computer Science
University of Niš 1989 - 1994
Skills:
Automotive Strategy Continuous Improvement Product Development Manufacturing Cross Functional Team Leadership Management Engineering Business Development Supply Chain Management Lean Manufacturing Six Sigma Sensors Process Improvement Global Management P&L Management Program Management Product Management Team Building Mergers and Acquisitions Portfolio Management Manufacturing and Operations Team Leadership Intercultural Communication Fmea Customer/Supplier Relations Product Engineering Operations P&L Improvement Ic Development of Employees Embedded Software Mergers
Stevan Zivanovic - Wheeling IL, US Stephen Rober - Arlington Heights IL, US
International Classification:
H03L007/00
US Classification:
331016000
Abstract:
A system employing a resonating device and a controller implements a method involving an establishment by the controller of open-loop oscillations of the resonating device at a resonating frequency of the resonating device, and an establishment by the controller of closed-loop oscillations of the resonating device based on the open-loop oscillations of the resonating device at the resonating frequency. To this end, the controller controls an application and a tuning of a first open-loop drive signal to the resonating device based on a design-drive standard resonating frequency range whereby the controller can measure and designate a frequency of a resonating output signal from the resonating device as a calibration resonant frequency, and controls an application and a tuning of a second open-loop drive signal to the resonating device based on the calibration resonant frequency whereby the controller can subsequently apply a closed-loop drive signal to the resonating device.