PUBLISHER: AnalystView Market Insights | PRODUCT CODE: 1730718
PUBLISHER: AnalystView Market Insights | PRODUCT CODE: 1730718
Torque Vectoring Market size was valued at US$ 10,997.32 Million in 2024, expanding at a CAGR of 10.20% from 2025 to 2032.
The torque vectoring market refers to technologies used in automotive systems to optimize power Application between wheels, enhancing vehicle stability, traction, and handling. Torque vectoring systems actively manage the torque delivered to individual wheels or axles, particularly during cornering or slippery conditions, improving both performance and safety. These systems are commonly found in high-performance, luxury, and all-wheel-drive vehicles. Growing demand for enhanced driving dynamics, along with rising safety concerns, is driving adoption across conventional and electric vehicles.
Advanced driver-assistance systems (ADAS) and autonomous vehicle development are further boosting the market. Electric vehicles benefit greatly from torque vectoring due to their ability to control individual electric motors more precisely. Key types include active torque vectoring and passive torque vectoring, differing in complexity and Technology. Integration with electronic stability control systems enhances overall vehicle control. The market is also witnessing innovation in software algorithms and sensor end-users. Increasing consumer preference for performance-oriented vehicles and regulatory push for safer systems support market growth.
Torque Vectoring Market- Market Dynamics
Growing demand for high-performance electric vehicles with advanced handling capabilities.
The growing demand for high-performance electric vehicles (EVs) with advanced handling capabilities is a significant driver for the torque vectoring market. As consumers increasingly prefer EVs for their environmental benefits and performance characteristics, manufacturers are focused on enhancing driving dynamics. Torque vectoring systems offer precise control over power Application, improving traction and stability, which is crucial for performance-oriented EVs.
The instantaneous torque delivery of electric motors makes torque vectoring particularly effective, as it can optimize handling in real-time, especially in cornering or challenging road conditions. With the rise of luxury and sports EVs, consumers expect high-performance features, further fueling the need for these advanced systems. Additionally, regulatory standards for vehicle safety and stability are pushing automakers to adopt torque vectoring technologies. This trend is shaping the evolution of the electric vehicle market, as these systems become integral to enhancing both safety and driving experience.
Torque Vectoring Market- Key Insights
As per the analysis shared by our research analyst, the global market is estimated to grow annually at a CAGR of around 10.20% over the forecast period (2025-2032)
Based on Vehicle Type segmentation, Electric Vehicles (EVs) were predicted to show maximum market share in the year 2024
Based on Technology segmentation, Active Torque Vectoring was the leading Technology in 2024
Based on Application segmentation, All-Wheel Drive (AWD) was the leading Application in 2024
Based on End-user segmentation, Automotive was the leading End-user in 2024
On the basis of region, North America was the leading revenue generator in 2024
The Global Torque Vectoring Market is segmented on the basis of Vehicle Type, Technology, Application, End-user, and Region.
The market is divided into three categories based on Vehicle Type: Passenger Vehicles, Commercial Vehicles, and Electric Vehicles (EVs). The Electric Vehicles (EVs) segment is the most dominant in the torque vectoring market. As the demand for EVs continues to rise, the need for advanced technologies like torque vectoring has become more pronounced. EVs benefit from the instant torque delivery provided by electric motors, making them ideal candidates for torque vectoring systems.
These systems enhance vehicle stability, traction, and handling, particularly in all-wheel-drive and performance-oriented electric models. The ability to control torque Application to individual wheels in real-time is crucial for optimizing driving dynamics and safety, particularly in electric vehicles.
The market is divided into three categories based on Technology: Active Torque Vectoring, Passive Torque Vectoring. The Active Torque Vectoring segment is the most dominant in the torque vectoring market. This End-user actively distributes torque to individual wheels based on real-time driving conditions, significantly improving vehicle stability, handling, and traction.
Active torque vectoring systems are particularly beneficial in high-performance vehicles, electric vehicles (EVs), and all-wheel-drive (AWD) configurations, where precise control over wheel dynamics is crucial. The system adjusts torque Application dynamically, providing superior cornering capabilities and enhancing overall safety, especially in slippery or challenging conditions. The growing adoption of electric vehicles, which inherently benefit from precise torque control, further drives the demand for active torque vectoring systems.
Torque Vectoring Market- Geographical Insights
The torque vectoring market is highly competitive, with key players focusing on advanced driveline solutions and innovation in vehicle performance. Companies like GKN Automotive, BorgWarner, and ZF Friedrichshafen dominate the market by offering cutting-edge torque vectoring technologies for both traditional and electric vehicles. With the growing demand for high-performance and electric vehicles, these players are investing heavily in research and development to enhance the efficiency of torque Application systems.
Additionally, partnerships with major automakers are common, as these collaborations enable companies to integrate torque vectoring systems into new vehicle models, improving safety, handling, and fuel efficiency. As the market evolves, players are increasingly focused on producing systems that can support autonomous driving capabilities. Emerging players are also entering the market, introducing new solutions, while established companies continue to strengthen their market position through acquisitions and technological advancements. This competitive landscape is driving continuous innovation and the adoption of torque vectoring across a wider range of vehicles.
Due to the continued development in demand for air conditioning in the coming years, the worldwide market for air-to-air heat pumps is made up of both international and local producers, making it one of the most competitive sectors in the world. Companies sell their products through a variety of channels, including corporate websites, e-commerce websites, retailers, distributors, and end consumers. Product makers compete on a variety of aspects, including product costs, performance, product making, End-user, reputation, and availability.
Some of the primary techniques used by corporations to strengthen their reach and expand their market share include new product launches, Application network development, R&D spending, and mergers and acquisitions. For instance, in 2020, WASSHA and Daikin Industries established a new company, Baridi Baridi Inc., to conduct an air conditioner subscription business.
In May 2024, BorgWarner announced that it is first-to-market with its electric Torque Vectoring and Disconnect (eTVD) system for battery electric vehicles (BEVs). The eTVD system is currently in production on the Polestar 3 SUV, with plans to supply an additional major European original equipment manufacturer (OEM) later in the year.