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Torque Vectoring Market

ID: MRFR/AT/5191-CR
138 Pages
Swapnil Palwe
January 2025

Torque Vectoring Market Research Report By Technology (Active Torque Vectoring, Passive Torque Vectoring, Mechanically Controlled Torque Vectoring), By Vehicle Type (Passenger Cars, Commercial Vehicles, Motorcycles, Heavy Trucks), By Drive System (All Wheel Drive, Rear Wheel Drive, Front Wheel Drive), By End Use (Personal Use, Fleet Use, Emergency Services) and By Regional (North America, Europe, South America, Asia Pacific, Middle East and Africa) - Forecast to 2035

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Torque Vectoring Market Summary

As per Market Research Future analysis, the Torque Vectoring Market Size was estimated at 11624.58 USD Billion in 2024. The Torque Vectoring industry is projected to grow from 13166.23 USD Billion in 2025 to 45740.91 USD Billion by 2035, exhibiting a compound annual growth rate (CAGR) of 13.26% during the forecast period 2025 - 2035.

Key Market Trends & Highlights

The Torque Vectoring Market is poised for substantial growth driven by technological advancements and increasing consumer demand.

  • The market is witnessing a notable integration with electric vehicles, enhancing performance and efficiency.
  • North America remains the largest market, while Asia-Pacific is emerging as the fastest-growing region for torque vectoring technologies.
  • Passenger vehicles dominate the market, yet commercial vehicles are rapidly gaining traction due to evolving consumer preferences.
  • Rising demand for all-wheel drive systems and increased investment in electric vehicles are key drivers propelling market expansion.

Market Size & Forecast

2024 Market Size 11624.58 (USD Billion)
2035 Market Size 45740.91 (USD Billion)
CAGR (2025 - 2035) 13.26%

Major Players

BorgWarner (US), GKN Automotive (GB), ZF Friedrichshafen (DE), Aisin Seiki (JP), Magna International (CA), Dana Incorporated (US), Continental AG (DE), Nissan Motor Corporation (JP), Toyota Motor Corporation (JP)

Torque Vectoring Market Trends

The Torque Vectoring Market is currently experiencing a notable evolution, driven by advancements in automotive technology and increasing consumer demand for enhanced vehicle performance. This market encompasses systems that distribute power to individual wheels, thereby improving traction, stability, and handling. As manufacturers strive to differentiate their offerings, the integration of torque vectoring systems is becoming more prevalent in both conventional and electric vehicles. This trend reflects a broader shift towards more sophisticated driving dynamics, which are increasingly valued by consumers seeking superior driving experiences. Moreover, the growing emphasis on safety and efficiency is propelling the adoption of torque vectoring technologies. These systems not only enhance vehicle control but also contribute to fuel efficiency by optimizing power distribution. As regulatory frameworks evolve to prioritize sustainability, the Torque Vectoring Market is likely to witness further innovations aimed at reducing emissions while maintaining performance standards. The interplay between technological advancements and consumer preferences suggests a dynamic landscape, where the demand for torque vectoring solutions is poised to expand significantly in the coming years.

Integration with Electric Vehicles

The Torque Vectoring Market is witnessing a surge in the integration of torque vectoring systems within electric vehicles. This trend is largely attributed to the unique performance characteristics of electric drivetrains, which allow for precise control of power distribution. As electric vehicles gain traction, manufacturers are increasingly incorporating advanced torque vectoring technologies to enhance handling and responsiveness, thereby appealing to a growing base of environmentally conscious consumers.

Focus on Performance Enhancement

Another prominent trend in the Torque Vectoring Market is the heightened focus on performance enhancement. Automakers are recognizing the importance of delivering superior driving experiences, which has led to the incorporation of torque vectoring systems in high-performance models. This shift not only caters to enthusiasts but also aligns with broader consumer expectations for vehicles that offer both power and agility, thereby driving market growth.

Advancements in Software Algorithms

Advancements in software algorithms are playing a crucial role in the evolution of the Torque Vectoring Market. Enhanced algorithms enable more sophisticated control of torque distribution, allowing for real-time adjustments based on driving conditions. This technological progression is likely to improve the overall effectiveness of torque vectoring systems, making them more appealing to manufacturers and consumers alike.

Torque Vectoring Market Drivers

Market Growth Projections

The Global Torque Vectoring Market Industry is projected to experience substantial growth over the next decade. With a market value of 4.17 USD Billion in 2024, it is anticipated to reach 9.41 USD Billion by 2035. This growth trajectory reflects a compound annual growth rate (CAGR) of 7.68% from 2025 to 2035, driven by various factors including technological advancements, increasing vehicle electrification, and heightened consumer demand for performance. The market's expansion indicates a robust future for torque vectoring technologies, positioning them as a critical component in the evolution of modern automotive engineering.

Regulatory Support for Emission Reduction

Regulatory support for emission reduction is influencing the Global Torque Vectoring Market Industry, as governments worldwide implement stricter emissions standards. Torque vectoring systems contribute to improved fuel efficiency and reduced emissions by optimizing power delivery to the wheels. This is particularly relevant in regions with stringent environmental regulations, where automakers are compelled to adopt technologies that enhance vehicle efficiency. As a result, the market is likely to benefit from increased investments in torque vectoring technologies, aligning with global sustainability goals and further driving market growth.

Rising Adoption of Electric and Hybrid Vehicles

The Global Torque Vectoring Market Industry is witnessing a notable increase in the adoption of electric and hybrid vehicles, which often utilize torque vectoring systems to optimize performance and efficiency. Electric drivetrains can independently control torque delivery to each wheel, enhancing traction and stability. This capability is particularly advantageous in electric SUVs and performance cars, where agility and responsiveness are paramount. The shift towards electrification is expected to contribute significantly to market growth, with projections indicating a market value of 9.41 USD Billion by 2035, as manufacturers increasingly incorporate torque vectoring in their electric vehicle designs.

Increasing Demand for Enhanced Vehicle Performance

The Global Torque Vectoring Market Industry experiences a surge in demand for enhanced vehicle performance, driven by consumer preferences for superior handling and stability. Torque vectoring technology allows for the distribution of torque to individual wheels, improving traction and cornering capabilities. This trend is particularly evident in high-performance vehicles, where manufacturers are integrating advanced torque vectoring systems to differentiate their offerings. As a result, the market is projected to reach 4.17 USD Billion in 2024, reflecting a growing recognition of the benefits of torque vectoring in enhancing driving dynamics.

Growing Interest in Autonomous Driving Technologies

The Global Torque Vectoring Market Industry is also being shaped by the growing interest in autonomous driving technologies. Torque vectoring plays a crucial role in enhancing the stability and control of autonomous vehicles, allowing for smoother navigation and improved safety. As manufacturers invest in developing self-driving capabilities, the integration of torque vectoring systems becomes increasingly vital. This trend is expected to drive demand for advanced torque vectoring solutions, as they are essential for achieving the high levels of performance and safety required in autonomous driving applications.

Technological Advancements in Automotive Engineering

Technological advancements in automotive engineering are propelling the Global Torque Vectoring Market Industry forward. Innovations in sensors, control algorithms, and electronic systems enable more precise torque distribution, enhancing vehicle dynamics. For instance, the integration of advanced driver-assistance systems (ADAS) with torque vectoring allows for real-time adjustments based on driving conditions. This synergy not only improves safety but also elevates the overall driving experience. As these technologies continue to evolve, the market is expected to grow at a CAGR of 7.68% from 2025 to 2035, indicating a robust future for torque vectoring solutions.

Market Segment Insights

By Application: Passenger Vehicle (Largest) vs. Commercial Vehicle (Fastest-Growing)

The Torque Vectoring Market is distributed among various applications, including Passenger Vehicles, Commercial Vehicles, Motorcycles, and All-Terrain Vehicles. Passenger Vehicles hold the largest share due to their widespread adoption in the automotive industry, offering enhanced handling and stability. Conversely, Commercial Vehicles are witnessing rapid growth, driven by the increasing demand for advanced driving technologies that optimize vehicle performance and safety. The rising focus on vehicle electrification and automation is also contributing to this growth.

Passenger Vehicle (Dominant) vs. Motorcycle (Emerging)

Passenger Vehicles dominate the Torque Vectoring Market, benefiting from manufacturers’ emphasis on improved in-vehicle experiences and increased consumer demand for high-performance vehicles. These vehicles integrate torque vectoring systems to enhance traction and control, crucial for stability under various driving conditions. On the other hand, Motorcycles represent an emerging segment, appealing to a niche market interested in high-performance two-wheelers. As manufacturers innovate in motorcycle design, torque vectoring systems are being adopted to enhance riders' experiences by providing superior cornering capabilities and making motorcycles safer and more enjoyable to ride. This segment is anticipated to expand as interest in recreational motorcycling grows.

By Type: Active Torque Vectoring (Largest) vs. Dynamic Torque Vectoring (Fastest-Growing)

In the Torque Vectoring Market, the distribution of market share among the various types highlights the dominance of Active Torque Vectoring, which accounts for a significant portion of the market due to its advanced capabilities. In contrast, Passive Torque Vectoring, while still relevant, holds a smaller share, as it is often seen in older or lower-tier models that prioritize cost over performance. This market segmentation indicates a clear trend towards more sophisticated torque vectoring solutions that enhance vehicle dynamics and safety. The growth trends for this segment are primarily driven by technological advancements and increasing consumer demand for performance-oriented vehicles. As manufacturers aim to improve fuel efficiency and handling characteristics, Active Torque Vectoring is increasingly favored. Meanwhile, Dynamic Torque Vectoring is experiencing rapid growth as automakers seek innovative solutions that enhance traction and stability under varying driving conditions, appealing to performance enthusiasts and general consumers alike.

Torque Vectoring: Active (Dominant) vs. Dynamic (Emerging)

Active Torque Vectoring stands as the dominant force in the torque vectoring segment, characterized by its ability to precisely control the distribution of torque to individual wheels, thereby enhancing vehicle stability and handling. Its application in high-performance vehicles and luxury segments has solidified its position, as consumers increasingly expect advanced driving dynamics. On the other hand, Dynamic Torque Vectoring, though categorized as an emerging technology, is quickly gaining traction. It features adaptive systems that adjust torque distribution based on real-time driving conditions. This makes it particularly appealing for a wide range of vehicles aiming for improved performance and safety. As both segments evolve, they illustrate the industry's shift towards integrating more proactive and responsive technologies to meet consumer demands.

By Drive Type: All-Wheel Drive (Largest) vs. Rear-Wheel Drive (Fastest-Growing)

In the Torque Vectoring Market, the All-Wheel Drive (AWD) segment is the largest, holding significant market share due to its widespread application in performance vehicles and SUVs. This segment benefits from enhanced traction and stability, making it a preferred choice for both manufacturers and consumers. Meanwhile, the Front-Wheel Drive (FWD) segment, while important, is seeing a gradual decline in favor of AWD and Rear-Wheel Drive options, which offer superior power distribution and handling under various driving conditions. When it comes to growth trends, the Rear-Wheel Drive segment is emerging as the fastest-growing drive type, driven by increasing demand for high-performance vehicles. Power distribution capabilities offered by torque vectoring technologies are appealing to automakers seeking to enhance vehicle dynamics and efficiency. The shift towards performance-oriented vehicles and advancements in torque vectoring systems are contributing to the growth of Rear-Wheel Drive, making it an exciting segment to watch in the coming years.

All-Wheel Drive (Dominant) vs. Rear-Wheel Drive (Emerging)

The All-Wheel Drive (AWD) segment stands as the dominant player in the Torque Vectoring Market, owing to its versatility and ability to provide better handling across diverse driving conditions. Its applications in luxury and performance vehicles further solidify its position, as consumers increasingly prefer the enhanced traction and control that AWD systems offer. On the other hand, the Rear-Wheel Drive (RWD) segment is emerging, fueled by a growing consumer interest in sports cars and high-performance vehicles. RWD systems allow for improved weight distribution and driving dynamics, making them attractive for manufacturers focused on performance enhancement. As automakers explore innovative torque vectoring solutions, RWD is expected to gain prominence, catering to enthusiasts looking for engaging driving experiences.

By Component: Electronic Control Unit (Largest) vs. Actuators (Fastest-Growing)

In the Torque Vectoring Market, the Electronic Control Unit (ECU) holds the largest share, primarily due to its critical role in managing power distribution across the drivetrain. It enables enhanced vehicle stability and performance, appealing to consumers interested in high-performance vehicles. Differential systems and sensors also occupy significant positions, supporting the ECU’s functions and providing essential feedback for optimized torque delivery, yet they remain secondary to the dominance of ECUs in the segment.

Actuators (Emerging) vs. Sensors (Dominant)

In the current landscape of the Torque Vectoring Market, sensors emerge as a dominant component, ensuring precise feedback on vehicle dynamics and aiding in the efficient functioning of torque vectoring systems. In contrast, actuators are gaining traction as an emerging technology given their pivotal role in the active engagement of torque delivery systems. As vehicle technology advances, the demand for reliable and responsive actuators is anticipated to escalate. This progress is driven by the increasing focus on vehicle handling, enhanced performance, and the integration of advanced driver assistance systems (ADAS). Consequently, while sensors provide crucial data, actuators are being recognized for their transformative potential in delivering effective torque vectoring solutions.

By Technology: Electronic (Largest) vs. Mechanical (Fastest-Growing)

In the Torque Vectoring Market, the technology segment is primarily dominated by electronic systems, which account for a significant share of the market. Mechanical systems, while historically prevalent, are gradually being overtaken by newer innovations, showcasing their market potential. Hydraulic systems occupy a vital niche yet don't match the extensive user interest seen in electronic advancements. Over recent years, the acceptance of advanced control technologies has shifted consumer preference toward electronic solutions, marking them as the leading choice in torque vectoring applications.

Technology: Electronic (Dominant) vs. Mechanical (Emerging)

The electronic torque vectoring systems are characterized by their ability to adaptively control power distribution across different wheels based on real-time driving conditions. This precise control enhances vehicle stability and performance, making it the dominant choice among manufacturers prioritizing efficiency and safety. Mechanical torque vectoring systems, while being eclipsed by electronic alternatives, are emerging as a faster-growing segment due to their lower production costs and lesser complexity in design. As automotive innovations continue to evolve, both technologies are likely to coexist, catering to varying demands within the market.

Get more detailed insights about Torque Vectoring Market

Regional Insights

North America : Market Leader in Torque Vectoring

North America is poised to maintain its leadership in the torque vectoring market, holding a significant share of 5800.0. The region's growth is driven by increasing demand for advanced vehicle dynamics and enhanced safety features. Regulatory support for electric and hybrid vehicles further catalyzes market expansion, as manufacturers seek to improve performance and efficiency. The push for sustainability and innovation in automotive technology is also a key driver of growth in this sector. The competitive landscape in North America is robust, featuring key players such as BorgWarner, Dana Incorporated, and Continental AG. These companies are at the forefront of technological advancements, focusing on R&D to enhance torque vectoring systems. The U.S. and Canada are leading markets, with significant investments in electric vehicle infrastructure and a growing consumer preference for high-performance vehicles. This competitive environment fosters innovation and positions North America as a critical hub for torque vectoring technology.

Europe : Emerging Hub for Innovation

Europe is emerging as a vital hub for the torque vectoring market, with a market size of 3500.0. The region's growth is fueled by stringent emissions regulations and a strong push towards electric vehicles (EVs). European governments are implementing policies that encourage the adoption of advanced automotive technologies, which is expected to drive demand for torque vectoring systems. The focus on sustainability and performance enhancement is reshaping the automotive landscape in Europe. Leading countries in this region include Germany, the UK, and France, where major automotive manufacturers like ZF Friedrichshafen and GKN Automotive are investing heavily in R&D. The competitive landscape is characterized by collaborations between automotive companies and tech firms to develop innovative solutions. As Europe transitions to greener technologies, the torque vectoring market is set to benefit significantly from these advancements. "The European automotive industry is committed to achieving carbon neutrality by 2050, driving innovation in vehicle technologies."

Asia-Pacific : Rapid Growth in Automotive Sector

Asia-Pacific is witnessing rapid growth in the torque vectoring market, with a market size of 2000.0. The region's expansion is driven by increasing vehicle production and a rising demand for advanced automotive technologies. Countries like China, Japan, and South Korea are leading the charge, supported by government initiatives aimed at enhancing vehicle safety and performance. The growing middle class and urbanization are also contributing to the demand for high-performance vehicles equipped with torque vectoring systems. China stands out as a key player in the automotive sector, with significant investments from companies like Aisin Seiki and Nissan Motor Corporation. The competitive landscape is evolving, with local manufacturers increasingly adopting advanced technologies to meet consumer expectations. As the region continues to innovate, the torque vectoring market is expected to grow, driven by both domestic and international players seeking to capitalize on the burgeoning automotive market.

Middle East and Africa : Emerging Market with Potential

The Middle East and Africa region is an emerging market for torque vectoring, with a market size of 324.58. The growth in this region is primarily driven by increasing vehicle sales and a growing interest in advanced automotive technologies. Governments are beginning to recognize the importance of enhancing vehicle performance and safety, leading to a gradual shift towards adopting torque vectoring systems. The region's diverse automotive landscape presents unique opportunities for growth. Countries like South Africa and the UAE are at the forefront of this market, with local manufacturers exploring partnerships with global players to enhance their technological capabilities. The competitive landscape is still developing, but there is a clear trend towards modernization and innovation in the automotive sector. As the region continues to invest in infrastructure and technology, the torque vectoring market is expected to gain traction, offering significant growth potential.

Key Players and Competitive Insights

The Torque Vectoring Market is currently characterized by a dynamic competitive landscape, driven by advancements in automotive technology and increasing consumer demand for enhanced vehicle performance and safety. Key players such as BorgWarner (US), GKN Automotive (GB), and ZF Friedrichshafen (DE) are strategically positioned to leverage innovation and partnerships to maintain their competitive edge. BorgWarner (US) focuses on developing advanced torque vectoring systems that enhance vehicle dynamics, while GKN Automotive (GB) emphasizes its commitment to sustainability through the development of lightweight and efficient drivetrains. ZF Friedrichshafen (DE) is actively pursuing digital transformation initiatives to integrate smart technologies into its torque vectoring solutions, thereby enhancing user experience and operational efficiency.

The market structure appears moderately fragmented, with several players competing on various fronts, including technology, pricing, and customer service. Key business tactics such as localizing manufacturing and optimizing supply chains are increasingly prevalent among these companies. This approach not only reduces operational costs but also enhances responsiveness to regional market demands. The collective influence of these key players shapes a competitive environment where innovation and strategic partnerships are paramount.

In October 2025, BorgWarner (US) announced a collaboration with a leading electric vehicle manufacturer to develop next-generation torque vectoring systems tailored for electric drivetrains. This strategic move is likely to position BorgWarner at the forefront of the electric vehicle market, as the demand for efficient torque management solutions continues to rise. The partnership underscores the importance of aligning product offerings with emerging market trends, particularly in the realm of electrification.

In November 2025, GKN Automotive (GB) unveiled its latest torque vectoring technology, which incorporates artificial intelligence to optimize power distribution in real-time. This innovation is expected to enhance vehicle stability and performance, particularly in challenging driving conditions. By integrating AI into its systems, GKN Automotive not only addresses consumer safety concerns but also reinforces its commitment to technological advancement in the automotive sector.

In December 2025, ZF Friedrichshafen (DE) launched a new initiative aimed at enhancing its supply chain resilience through digitalization. This initiative focuses on utilizing advanced analytics and machine learning to predict supply chain disruptions and optimize inventory management. Such a proactive approach is likely to improve ZF's operational efficiency and responsiveness, thereby solidifying its competitive position in the Torque Vectoring Market.

As of December 2025, current trends in the Torque Vectoring Market indicate a strong emphasis on digitalization, sustainability, and the integration of artificial intelligence. Strategic alliances among key players are shaping the competitive landscape, fostering innovation and collaboration. The shift from price-based competition to a focus on technological differentiation and supply chain reliability is becoming increasingly evident. Moving forward, companies that prioritize innovation and adaptability are likely to thrive in this evolving market.

Key Companies in the Torque Vectoring Market market include

Industry Developments

Recent developments in the Torque Vectoring Market have been significant, with numerous companies enhancing their offerings to improve vehicle performance and efficiency. Delphi Technologies and BorgWarner are advancing their technologies, focusing on integrating electric vehicle capabilities, which are becoming crucial in the industry as consumers demand greener alternatives.

Honda Motor Co. and Nissan Motor Corporation continue to innovate in this space, with a commitment to developing advanced traction and stability systems. Moreover, Continental AG and ZF Friedrichshafen are strengthening their positions through strategic partnerships aimed at enhancing automotive safety and drivability.

In terms of mergers and acquisitions, Magna International has been active in acquiring companies that provide advanced torque vectoring solutions to strengthen its product portfolio. Meanwhile, Hyundai Mobis maintains a focus on integrating torque vectoring in electric vehicles, reflecting the ongoing transition in the automotive sector.

Recent market valuations have indicated a positive growth trend, propelled by the increasing demand for high-performance vehicles and the rise of electric mobility, further influencing the strategies of companies like Aisin Seiki and Voith GmbH as they adapt to shifting consumer preferences and technological advancements.

Future Outlook

Torque Vectoring Market Future Outlook

The Torque Vectoring Market is projected to grow at a 13.26% CAGR from 2024 to 2035, driven by advancements in automotive technology, increasing demand for electric vehicles, and enhanced vehicle performance.

New opportunities lie in:

  • Development of advanced torque vectoring systems for electric vehicles
  • Integration of torque vectoring with autonomous driving technologies
  • Expansion into emerging markets with tailored torque vectoring solutions

By 2035, the Torque Vectoring Market is expected to achieve substantial growth and innovation.

Market Segmentation

Torque Vectoring Market Type Outlook

  • Active Torque Vectoring
  • Passive Torque Vectoring
  • Dynamic Torque Vectoring

Torque Vectoring Market Component Outlook

  • Electronic Control Unit
  • Differential
  • Sensors
  • Actuators

Torque Vectoring Market Drive Type Outlook

  • All-Wheel Drive
  • Front-Wheel Drive
  • Rear-Wheel Drive

Torque Vectoring Market Technology Outlook

  • Mechanical
  • Hydraulic
  • Electronic

Torque Vectoring Market Application Outlook

  • Passenger Vehicle
  • Commercial Vehicle
  • Motorcycle
  • All-Terrain Vehicle

Report Scope

MARKET SIZE 2024 11624.58(USD Billion)
MARKET SIZE 2025 13166.23(USD Billion)
MARKET SIZE 2035 45740.91(USD Billion)
COMPOUND ANNUAL GROWTH RATE (CAGR) 13.26% (2024 - 2035)
REPORT COVERAGE Revenue Forecast, Competitive Landscape, Growth Factors, and Trends
BASE YEAR 2024
Market Forecast Period 2025 - 2035
Historical Data 2019 - 2024
Market Forecast Units USD Billion
Key Companies Profiled BorgWarner (US), GKN Automotive (GB), ZF Friedrichshafen (DE), Aisin Seiki (JP), Magna International (CA), Dana Incorporated (US), Continental AG (DE), Nissan Motor Corporation (JP), Toyota Motor Corporation (JP)
Segments Covered Application, Type, Drive Type, Component, Technology
Key Market Opportunities Integration of advanced artificial intelligence in Torque Vectoring Market enhances vehicle performance and safety.
Key Market Dynamics Rising demand for enhanced vehicle performance drives innovation in torque vectoring technologies and competitive market dynamics.
Countries Covered North America, Europe, APAC, South America, MEA

Market Highlights

Author
Swapnil Palwe
Team Lead - Research

With a technical background as Bachelor's in Mechanical Engineering, with MBA in Operations Management , Swapnil has 6+ years of experience in market research, consulting and analytics with the tasks of data mining, analysis, and project execution. He is the POC for our clients, for their consulting projects running under the Automotive/A&D domain. Swapnil has worked on major projects in verticals such as Aerospace & Defense, Automotive and many other domain projects. He has worked on projects for fortune 500 companies' syndicate and consulting projects along with several government projects.

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FAQs

What was the market size of the Torque Vectoring Market in 2023?

The Torque Vectoring Market was valued at 3.79 USD Billion in 2023.

What is the projected market size of the Torque Vectoring Market by 2032?

By 2032, the Torque Vectoring Market is projected to reach a value of 7.5 USD Billion.

What is the expected CAGR for the Torque Vectoring Market from 2024 to 2032?

The Torque Vectoring Market is expected to grow at a CAGR of 7.87% from 2024 to 2032.

Which region is expected to have the largest market share in the Torque Vectoring Market?

North America is anticipated to hold the largest market share, valued at 2.4 USD Billion by 2032.

What is the expected market size for Active Torque Vectoring technology in 2032?

The market for Active Torque Vectoring technology is expected to reach 3.0 USD Billion by 2032.

What is the projected value of Passive Torque Vectoring by 2032?

The projected value for Passive Torque Vectoring by 2032 is 2.4 USD Billion.

How much is the Mechanically Controlled Torque Vectoring market expected to grow by 2032?

The Mechanically Controlled Torque Vectoring market is expected to grow to 2.1 USD Billion by 2032.

Who are the key players in the Torque Vectoring Market?

Key players in the market include Delphi Technologies, Honda Motor Co., and Nissan Motor Corporation, among others.

What was the market size for the Europe region in 2023?

In 2023, the market size for the Europe region was valued at 1.1 USD Billion.

What challenges does the Torque Vectoring Market face amid current scenarios?

The market faces challenges such as supply chain disruptions and evolving consumer preferences.

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