Automotive control algorithm development is not just about writing a control loop — it's about proving that loop holds up under real vehicle dynamics, sensor noise, and fault conditions. Embien's engineers build embedded control systems for steering assist, braking, motor drive, and actuator control applications, starting from plant modeling and control law design and carrying the same algorithm through to production-grade motor controller firmware for automation on the target microcontroller.
Every automotive control algorithm development engagement follows the same discipline we used on our ASIL-D electric power steering program: model-based design, hardware-in-the-loop validation, and real-time embedded control systems for automation that meet automotive timing budgets, not desktop simulation timing. Read the electric power steering technology demonstrator case study for how that discipline plays out on a real ASIL-D program.
Four capabilities buyers evaluate before trusting a partner with actuator control and embedded control systems work that ships in a vehicle.

Control loops engineered against real-time embedded control systems for automation timing budgets, from sensor sampling to actuator output.

CAN, LIN, and discrete I/O interfacing for actuator control across steering, braking, and motor-drive subsystems.

Field-oriented and trapezoidal motor controller firmware for automation, tuned for automotive-grade MCUs.

Model-in-the-loop and hardware-in-the-loop validation for every automotive control algorithm development deliverable before it reaches a vehicle.
Select the automotive control algorithm development capability that matches your program — from early control law design through ASIL-rated actuator control implementation.

Plant modeling, control law design, and embedded control systems firmware implementation on automotive-grade microcontrollers.

Motor controller firmware for automation and actuator control integration across steering, braking, and drive subsystems.

Hardware-in-the-loop validation and functional safety analysis proven on our ASIL-D electric power steering program.
Tell us about your steering, braking, motor, or actuator control program and where it stands today. Our team can help scope the next step in your automotive control algorithm development.

Everything from plant modeling and control law design through embedded control systems firmware implementation, hardware-in-the-loop validation, and ASIL-rated actuator control deployment on production microcontrollers.
Tell us about your steering, braking, motor, or actuator control program and let us help you plan the next stage.