- Marelli introduces advanced suspension systems to improve vehicle stability and driving performance.
- Hybrid electromechanical suspension balances performance enhancement with cost efficiency.
Marelli has introduced a suite of advanced vehicle dynamics and suspension technologies at Auto China 2026, held in China from April 24 to May 3. The company’s latest developments focus on enhancing ride quality, stability, and driving precision across modern passenger vehicles. Among the key highlights are the Active Camber system, the Electromechanical Lifter, and a Hybrid Electromechanical Suspension architecture, all designed to respond dynamically to varying road and driving conditions while maintaining efficiency and integration flexibility.
Active Camber Enhances Real-Time Wheel Control
The Active Camber system introduces an electronically controlled smart actuator equipped with integrated sensors that continuously monitor driving conditions. This setup enables real-time adjustment of wheel angles, allowing the vehicle to maintain optimal tire contact with the road surface. By dynamically adapting camber angles, the system improves cornering stability, braking efficiency, and overall handling performance while also contributing to reduced tire wear. The integration of sensing and actuation into a single unit ensures precise control and responsiveness under diverse driving scenarios.
Electromechanical Lifter Enables Flexible Ride Height Adjustment
The Electromechanical Lifter is engineered as part of the shock absorber assembly, offering a compact and efficient solution for adjusting vehicle height. Using a lightweight actuator that operates without oil, the system provides quick and reliable lift functionality suited for performance-oriented vehicles and sporty SUVs. This approach eliminates the complexity associated with traditional hydraulic systems while delivering consistent performance. The design supports improved ground clearance management and adaptability, enhancing both comfort and vehicle usability in different driving environments.
Hybrid Electromechanical Suspension Balances Performance and Cost
The Hybrid Electromechanical Suspension system combines fully active actuators at the front with semi-active dampers at the rear, all coordinated through an electronic control unit. This configuration enables precise control of vehicle dynamics while maintaining cost efficiency compared to fully active systems. By selectively applying advanced actuation where it is most impactful, the system enhances ride comfort and handling without significantly increasing system complexity. It builds upon the Fully Active Electromechanical Suspension concept, also presented at the event, demonstrating scalable innovation in suspension technologies.
Key Technologies and Functional Benefits
The showcased solutions reflect a shift toward intelligent, electronically controlled suspension architectures that integrate sensing, actuation, and control strategies into cohesive systems. These technologies aim to deliver measurable improvements in vehicle stability, responsiveness, and efficiency across various driving conditions.
| Technology | Key Function | Primary Benefit |
|---|---|---|
| Active Camber | Real-time wheel angle adjustment | Improved handling and reduced tire wear |
| Electromechanical Lifter | Vehicle height adjustment | Enhanced flexibility and comfort |
| Hybrid Electromechanical Suspension | Combined active and semi-active control | Balanced performance and cost efficiency |
Through these developments, Marelli continues to expand its capabilities in vehicle dynamics by integrating advanced electronics and control systems into suspension technologies. The solutions presented at Auto China 2026 highlight the company’s focus on scalable architectures that address both performance demands and cost considerations in next-generation passenger vehicles.
Frequently Asked Questions
What are Marelli vehicle dynamics technologies introduced at Auto China 2026?
Marelli vehicle dynamics technologies introduced at Auto China 2026 include Active Camber, Electromechanical Lifter, and Hybrid Electromechanical Suspension systems designed to improve stability, handling, and ride comfort. These systems utilize smart actuators, integrated sensors, and electronic control units to dynamically adjust wheel angles, vehicle height, and suspension response. The technologies aim to enhance driving performance while maintaining efficiency and scalability for modern passenger vehicles.
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