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As EV adoption accelerates, thermal management systems are growing in complexity - spanning high-voltage e-compressors, low-voltage pumps and valves, stepper-driven HVAC flaps, and increasingly integrated multi-actuator architectures. This webinar maps the full EV thermal management system (TMS), walks through semiconductor selection for each sub-application, and shows how Infineon's MOTIX™, CIPOS™, OPTIMOS™, and TRAVEO™ product families - paired with motor control software - help engineers reduce system cost, shrink board size, and manage software complexity at every voltage domain.

You will learn about: 

  • Know the TMS map - 10+ sub-applications across an EV thermal system and the motor topology each demands.
  • Match silicon to voltage - CIPOS™/EasyPACK™ for 400/800 V; MOTIX™/OPTIMOS™ 7 for 12/48 V drives.
  • Simplify software - MOTIX™ integrated devices and Motor Control Library reduce complexity for SDV-ready drives.
  • Prototype faster - Reference designs, eval boards, app notes, and MOTEON shorten time to validated hardware.
Timo
Timo
Timo

System Architect

Timo is a system architect for automotive thermal management systems and smart motors. His experience includes analyzing system trends and defining system solutions. Furthermore, he influences significantly the technology and product definition across different platforms and portfolios.

Nehaja Joglekar
Nehaja Joglekar
Nehaja Joglekar

System Application Engineer

Nehaja is a system application engineer for automotive thermal management systems. Her experience includes analyzing system trends and system requirements, performing system analysis, creating training material, technical collaterals and getting started collaterals motor control applications. 

Architecting Automotive Thermal Management Systems with Infineon
Learn how to architect versatile EV thermal management systems with Infineon. Watch our webinar to gain system design insights and market trends.
October 16, 2026
00:00 ( CET )