ALTEN Technology USA
Advanced Vehicle Dynamics Engineer
About this role
ALTEN Technology USA seeks an Advanced Vehicle Dynamics Engineer to evaluate and benchmark chassis and suspension systems for future vehicle programs in Auburn Hills, Michigan. The role requires expertise in suspension architecture, vehicle dynamics principles, and hands-on testing experience to support cross-functional automotive development teams.
What you'll do
- Benchmark and evaluate chassis and suspension concepts for upcoming vehicle platforms
- Set performance targets and conduct tire specifications using subjective assessments and objective test data
- Define hard points and calculate center of gravity for suspension systems
- Perform physical testing, modeling, and simulation of vehicle dynamics
- Analyze ride and handling characteristics through tuning and development
- Collaborate across functional teams to integrate dynamics requirements into product development
What they're looking for
- Suspension architecture and component design
- Vehicle ride and handling tuning
- Kinematic and compliance (K&C) testing
- Modal alignment and NVH fundamentals
- ADAMS or multibody dynamics simulation software
- Test data analysis and vehicle dynamics principles
- MS Office proficiency
- Cross-functional project management
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ALTEN Technology USA
ALTEN Technology USA provides engineering validation, testing, and technical support services for automotive systems including connected vehicles, propulsion controls, infotainment, battery systems, and power electronics. The company is hiring validation engineers, test engineers, design engineers, and issue resolution specialists to develop test plans, verify compliance, investigate technical issues, and support product development across automotive hardware and software platforms.
View all jobs at ALTEN Technology USALikely interview questions
- Describe your experience with suspension architecture development and how you've applied cause-and-effect analysis to improve vehicle performance.
- Walk us through a specific project where you set ride and handling targets—what data and methods did you use?