e-Motor Controls Engineer at Ford Global Career Site
Dearborn, Michigan, United States -
Full Time


Start Date

Immediate

Expiry Date

14 Jan, 26

Salary

0.0

Posted On

16 Oct, 25

Experience

2 year(s) or above

Remote Job

Yes

Telecommute

Yes

Sponsor Visa

No

Skills

Electric Machine Drive Control Systems, Power Electronics, Control Software Tuning, Fuel Economy Optimization, NVH Reduction, Hardware Sensors, Switching Devices, Passive Components, Design Verification, Testing in HIL, Electric Motor Dynamometer, MATLAB, SIMULINK, C Programming, Control System Design, Power Electronics Control

Industry

Motor Vehicle Manufacturing

Description
Lead the development of electric machine and power electronics algorithm improving fuel economy, driving performance and NVH reduction Lead the development of electric machine and power electronics control software tuning and the optimization for fuel economy and NVH Support hardware sensors, switching devices and passive components specification development Specify design verification methods and plan testing in HIL, electric motor dynamometer & Vehicle. Established and active employee resource groups M.S. degree in Electrical Engineering with a specialty in electric machine drive control systems 2+ years of motor control related working experience or advanced training in electric machine drive or power electronics controls design or development of calibration Working knowledge of electric motor modeling and control algorithm, simulation tools including MATLAB/SIMULINK PhD in Electrical/Mechanical Engineering with specialty in electric machine drive control systems Working knowledge of control system and software design, including C Programming language Experience with electric motor dynamometers, ATI Vision and hybrid vehicle operation is a plus Course or training experience in electric machine design and modeling, discrete-time digital control and power electronics control
Responsibilities
Lead the development of electric machine and power electronics algorithms to improve fuel economy, driving performance, and NVH reduction. Support hardware sensors and specification development while planning testing in HIL and vehicle environments.
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