Quick Takeaways
  • Schaeffler will showcase integrated energy and thermal management technologies for electrified vehicles in Germany.
  • Advanced battery cooling, HV powernet solutions, and vehicle control innovations are key highlights.

Schaeffler AG announced that it will showcase its latest integrated solutions for electrical and thermal energy management in electrified vehicles during its 13th Automotive Symposium taking place in Buhl, Germany in June 2026. The presentation forms part of the company’s Energy Management technology cluster and will focus on technologies designed to improve efficiency, performance, and system integration across modern electric vehicle platforms. The showcased portfolio demonstrates the company’s continued efforts to support the evolving requirements of vehicle electrification through advanced energy-management solutions.

Energy Management Technologies for Electrified Vehicles

During the symposium, the company will present a range of high-voltage powernet and charging components alongside thermal management systems and battery technologies. The portfolio includes oil-cooled battery cells, a battery cooling module, and X-in-1 electronics integration for the HV powernet. These technologies are designed to enhance energy efficiency, optimize charging performance, and improve thermal stability within electrified vehicle architectures. By integrating multiple functions into compact systems, the solutions aim to support higher vehicle efficiency while addressing growing demands for advanced energy management.

Key Technologies Featured at the Automotive Symposium

Technology Purpose
Oil-Cooled Battery Cells Enhanced battery temperature control
Battery Cooling Module Improved thermal management efficiency
X-in-1 Electronics Integration Consolidated HV powernet functions
Vehicle Control Ecosystem Integrated energy-management coordination

Vehicle Control Ecosystem Integration

The company will also highlight its Vehicle Control Ecosystem, a platform designed to integrate critical energy-management subsystems within electrified vehicles. The ecosystem combines the HV powernet and battery system with electric motor and thermal management technologies to create a coordinated operating environment. This integrated approach enables improved communication between vehicle subsystems, supporting optimized energy utilization and more efficient system performance across different driving conditions and operating scenarios.

Next-Generation Battery System Development

For future battery systems, Schaeffler is developing advanced cooling concepts, intelligent battery monitoring technologies, and flexible mechanical structures that can be adapted to different cell formats and cell chemistries. These developments are intended to provide greater scalability and design flexibility for vehicle manufacturers while supporting performance, durability, and thermal efficiency requirements. By focusing on adaptable battery architectures and enhanced monitoring capabilities, the company aims to address the diverse needs of next-generation electrified vehicle platforms.

Frequently Asked Questions

What technologies will Schaeffler showcase at its Automotive Symposium 2026?
Schaeffler will showcase integrated energy management technologies for electrified vehicles, including HV powernet components, charging systems, thermal management solutions, and advanced battery technologies. The portfolio features oil-cooled battery cells, battery cooling modules, X-in-1 electronics integration, and the Vehicle Control Ecosystem. These technologies are designed to improve energy efficiency, optimize thermal performance, and support better integration of key vehicle systems, helping manufacturers address the evolving requirements of electric mobility and next-generation vehicle architectures.

What is Schaeffler’s Vehicle Control Ecosystem?
The Vehicle Control Ecosystem is an integrated platform that connects major energy-management subsystems within electrified vehicles. It combines the HV powernet and battery system, electric motor, and thermal management technologies into a coordinated framework. This approach enables improved interaction among critical vehicle functions, supporting optimized energy usage and system efficiency. The ecosystem is intended to help enhance overall vehicle performance while enabling more effective management of electrical and thermal energy throughout vehicle operation.

Official Disclosures, Public Data & GAI Analysis

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