ACCELERATE CRITICAL VEHICLE SYSTEMS WITH INTELLIGENT ACTUATORS
ENGINEERED FOR PERFORMANCE AND SAFETY

In high-pressure OEM environments, performance, safety and integration risks leave no room for compromise.
 Sonceboz delivers compact, reliable and intelligent mechatronic solutions designed to secure your vehicle motion and thermal architectures while accelerating your development cycles.

From airflow to braking and steering, we help you reduce uncertainty, improve system efficiency and meet the highest industry standards.
 Join us at JSAE Booth N36–37 to discuss your application and explore how to secure your next platform.

SILENT CONTROL

28 dB(A) ultra-quiet operation
 Up to 45 N·cm torque, 31g compact design

AERO EFFICIENCY

Up to −3 g/km CO₂ reduction
 250,000 cycles & IP6K7 protection

EXTREME PRECISION

Up to 35Nm feedback, 0.1° accuracy, gearless direct drive, < 3.5kg

SMART BRAKING

1.6 Nm & <150 ms response
 <0.9 kg with integrated EPB

OPTIMIZE CABIN THERMAL MANAGEMENT WITH A COMPACT, SILENT AND INTELLIGENT ACTUATOR

Silent. Compact. Intelligent

In modern HVAC architectures, noise, integration constraints and long-term reliability directly impact both user experience and system validation cycles.
 eAirvent is designed to eliminate these trade-offs with precise, silent airflow control—even under extreme operating conditions.
Its ultra-compact 31g design simplifies integration in constrained environments, while maintaining consistent torque performance across full temperature and voltage ranges.
 With advanced LIN 2.2 communication and PFAS-free design, it enables smarter, data-driven climate strategies, reduces PCB complexity, and significantly lowers integration and lifecycle risks.

ENHANCE AERODYNAMIC EFFICIENCY WITH A ROBUST ACTUATOR BUILT FOR HARSH ENVIRONMENTS

Efficient. Robust. Aerodynamic

Reducing emissions while maintaining durability and seamless integration remains a key OEM challenge.
 AGS addresses this with a compact, lightweight actuator engineered for high-performance aerodynamic systems.
Its IP6K7 sealing and extended temperature range ensure consistent operation in harsh environments, from dust to thermal stress.
 Combined with a validated lifetime of 250,000 cycles and smart LIN control, it enables precise airflow management, improving vehicle efficiency while minimizing maintenance and system-level risks.

SECURE YOUR STEER-BY-WIRE SYSTEMS WITH EXTREME PRECISION AND REAL-TIME RESPONSIVENESS

Responsive. Scalable. Safety-Driven.

Steer-by-wire systems redefine vehicle dynamics, but they also raise the bar for responsiveness, redundancy and functional safety. OEM platforms must balance compact packaging, torque precision and scalable electronic architectures. Our force feedback actuation solution delivers dynamic torque control with predictable response behavior, supporting advanced driver assistance and software-defined vehicle strategies. Designed for integration into modern 12 V and 48 V environments, it enables modular platform deployment while maintaining stringent safety standards. Optimized power density and a compact design enable reduced space requirements without compromising performance. The result is precise steering control that boosts driver confidence while ensuring system reliability and the platform’s long-term adaptability.

FAST AND MODULAR BRAKE-BY-WIRE FOR SAFER PLATFORMS

Fast. Modular. Safety-Driven.

Electrified architectures demand braking systems that react instantly while remaining modular and integration-friendly. OEMs must ensure functional safety, packaging efficiency and scalable deployment across vehicle segments. Delivering response times below 150 milliseconds, this brake-by-wire actuator ensures highly precise and responsive braking performance in critical situation. Its compact plug-and-play in-wheel concept simplifies caliper integration and supports both 12 V and 48 V architectures. Integrated Electric Parking Brake functionality reduces system complexity while enabling adaptable control strategies. Engineered for environmental robustness and durability, it supports long-term reliability and reduces development risk for modern vehicle platforms.

LET’S SHAPE THE FUTURe TOGETHER!