Last Updated: 25 Aug 2025
Source: Statifacts
The global chassis sensors market size accounted for USD 2.31 billion in 2024 and is predicted to touch around USD 4.63 billion by 2034, growing at a CAGR of 7.2% from 2025 to 2034. Incentive programs and subsidies for electric vehicles, rising demand for autonomous vehicles & connected car technologies, mandating advanced safety features, and innovation in sensor integration are driving the growth of the chassis sensors market. Asia Pacific dominated the global market and is projected to host the fastest-growing market in the coming years.
Reports Attributes | Statistics |
Market Size in 2024 | USD 2.31 Billion |
Market Size in 2025 | USD 2.48 Billion |
Market Size in 2031 | USD 3.76 Billion |
Market Size by 2034 | USD 4.63 Billion |
CAGR 2025 to 2034 | 7.2% |
Base Year | 2024 |
Forecast Period | 2025 to 2034 |
The chassis sensors market refers to the production, distribution, and use of chassis sensors, which a single-axis low-g acceleration sensors with analog output in a standardized family housing developed for chassis, wheel, and engine control applications. The chassis position sensor is an angular sensor. This sensor combines the experience and knowledge from our previous ride height and pedal. A strong chassis allows our automobile to withstand on-road jerks and the strains of poor road conditions. The correct automobile chassis also keeps the vehicle stable in quick bends and poor road conditions. The chassis also ensures optimum weight distribution.
Rising collaboration among startups, research institutions, and established players, digital transformation of traditional industries, government-backed sustainability mandates, and technological innovation are driving the growth of the chassis sensors market.
Hall | Autopad | Lateral Hall | |
Linearity | <1% | <1% | <1% |
Measurement Range | Programmable for angular ranges from ±8° to ±120° | Linear: 20-500 mm Rotatory: 360° |
Linear: 4-50 mm Rotatory: 360° |
Artificial intelligence (AI) based sensors combine data from multiple sensors, using AI and machine learning to process and interpret the information more effectively. Sensor fusion can be implemented at many levels within a system. Integrating many sensor data using AI is a critical advancement in automotive technology. This process, known as sensor fusion, combines data from multiple sensors to create a comprehensive understanding of the vehicle’s environment. AI-based engineering helps improve vehicle aerodynamics and engine efficiency to reduce fuel consumption and gas emissions. Automated assembly lines speed up vehicle production, while predictive maintenance allows for minimizing repair costs. AI-based sensor fusion is transforming the industry, improving vehicle safety features.
Chassis sensors market drivers include advancements in low-cost sensor technology and a growing emphasis on environmental sustainability are driving real-time data collection and smarter, eco-conscious operations across industries.
Chassis sensors market expansion is hindered by Supply chain disruptions and high initial investment costs pose major risks by increasing operational complexity, financial uncertainty, and the potential for significant losses.
Chassis sensors market opportunities include increasing investment in green technology drives sustainable growth, fosters innovation, reduces environmental impact, and offers long-term financial and ethical benefits.
CS Chua, President and Managing Director, Infineon Technologies Asia Pacific, said, “We are excited to partner with TESA to create a robust and scalable AIoT platform that will pave the way for innovative solutions in Thailand. This collaboration not only underscores our dedication to driving digitalization and decarbonization, but also supports the Thai government’s investments in the AI, IoT, and semiconductor sectors”.
Why Are SUVs Leading the Chassis Sensors Market While LCVs Are Gaining Ground as the Fastest-Growing Segment?
The SUV segment held a dominant presence in the chassis sensors market in 2024. The benefits of SUV cars include sturdy construction, practicality, plentiful storage, more powerful engines than other vehicles, comfort, ample cargo space, spacious interior, safety features, cargo space, all-wheel drive, versatility, safety, higher sitting position, higher ground clearance, towing capacity, off-road, and fuel efficiency.
The LCV (light commercial vehicle) segment is expected to grow at the fastest rate in the market during the forecast period of 2025 to 2034. The benefits of LCV vehicles include easily adapting to industries like retail, construction, and logistics with multifunctional usage capabilities, easy maintenance with reduced service costs, increased uptime for uninterrupted business operations, and reduced operational expenses due to fuel-efficient designs.
Why Are Temperature Sensors Dominating the Chassis Sensors Market While Acceleration Sensors Are Set to Grow Rapidly?
The temperature sensors segment accounted for a considerable share of the chassis sensors market in 2024. Temperature sensors are small devices used to detect temperature changes within a space. Temperature sensors play an important role in safety by preventing overheating, which can lead to fires or explosions. In industrial settings, where machinery operates at high temperatures, these systems are essential for preventing accidents and ensuring a safe working environment.
The acceleration sensors segment is projected to experience a growth rate in the market between 2025 and 2034. The acceleration sensors have a significant impact on the quality of data, so selecting the right acceleration sensors offers the best chance to improve the vibration measurement channels to signal-to-noise ratio. The benefits of acceleration sensors include a simple interface, robust and rugged design for use in challenging environments.
Why Is the Suspension System Leading the Chassis Sensors Market While ADAS Integration Emerges as the Fastest-Growing Segment?
The suspension system segment led the chassis sensors market. The sensors are used in vehicle suspension systems to monitor air or hydraulic pressure and provide signal input to advanced suspension and chassis control modules. The pressure signal, combined with temperature information, can be used to adjust vehicle height for every load condition. The suspension system in a vehicle is responsible for stabilizing and controlling the vehicle, allowing it to handle bumps and dips on the road. The suspension system helps maximize friction between the tires and the road, ensuring a comfortable ride and providing good steering, handling, and stability.
The ADAS integration segment is set to experience the fastest rate of market growth from 2025 to 2034. The most significant benefit of ADAS is increased driving safety by reducing human error. Due to many of its functions being associated with avoiding accidents before they happen, ADAS is considered a part of a vehicle’s set of “active safety” features.
Asia Pacific dominated the global market and is projected to host the fastest-growing market in the coming years. Rising demand for vehicles, rapid growth due to government initiatives, collaboration among automotive component manufacturers, and new product launches are driving the growth of the chassis sensors market in the Asia Pacific region.
About 100 countries where it operates. It operates in the connected secure systems (CSS), power & sensor systems (PSS), green industrial power (GIP), and automotive (ATV) sectors around the world.
About 30 countries where it operates. It operates in the automotive, industrial & IoT, mobile, and communication infrastructure sectors around the world.
Sensata Technologies operates in 16 countries, mainly producing compressor distributors, motors, aerospace, data/telecom, charging infrastructure, energy, medical, appliance, control, and agriculture sectors around the world.
Published by Ajit Bansod
Subsegment | 2024 | 2025 | 2026 | 2027 | 2028 | 2029 | 2030 | 2031 | 2032 | 2033 | 2034 |
---|---|---|---|---|---|---|---|---|---|---|---|
Hatchback/Sedan | 693 | 742.79 | 796.60 | 856.60 | 916.50 | 981.43 | 1,060.34 | 1,129.11 | 1,218.67 | 1,305.42 | 1,372.97 |
SUVs | 808.50 | 865.09 | 929.74 | 994.78 | 1,066.41 | 1,132.96 | 1232 | 1,315.09 | 1,398.97 | 1,513.29 | 1,630.95 |
LCV | 462 | 496.42 | 531.45 | 570.83 | 614.40 | 657.63 | 689.64 | 754.29 | 814.06 | 834.73 | 916.56 |
HCV | 346.50 | 372.02 | 396.82 | 423.54 | 453.34 | 498.27 | 523.77 | 559.67 | 597.04 | 665.38 | 709.29 |
Subsegment | 2024 | 2025 | 2026 | 2027 | 2028 | 2029 | 2030 | 2031 | 2032 | 2033 | 2034 |
---|---|---|---|---|---|---|---|---|---|---|---|
Speed Sensors | 577.50 | 617.26 | 662.06 | 712.63 | 760.69 | 822.56 | 901.89 | 950.06 | 1,009.99 | 1,068.04 | 1,133.82 |
Pressure Sensors | 462 | 496.57 | 534.71 | 567.47 | 612.25 | 655.73 | 680.07 | 742.49 | 796.94 | 872.01 | 923.37 |
Position Sensors | 462 | 494.18 | 528.89 | 569.19 | 601.20 | 658.30 | 701.79 | 750.80 | 796.78 | 840.50 | 926.63 |
Temperature Sensors | 346.50 | 375.02 | 400.11 | 430.23 | 466.27 | 492.32 | 517.68 | 577.90 | 602.74 | 642.89 | 735.57 |
Acceleration Sensors | 462 | 493.29 | 528.85 | 566.22 | 610.23 | 641.36 | 704.31 | 736.91 | 822.31 | 895.38 | 910.38 |
Subsegment | 2024 | 2025 | 2026 | 2027 | 2028 | 2029 | 2030 | 2031 | 2032 | 2033 | 2034 |
---|---|---|---|---|---|---|---|---|---|---|---|
Suspension Systems | 577.50 | 620.13 | 665.58 | 703.38 | 756.03 | 814.50 | 869.19 | 940.38 | 991.48 | 1,084.06 | 1,158.49 |
Braking Systems | 693 | 741.77 | 795.71 | 856.76 | 914.47 | 976.81 | 1,054.45 | 1,114.37 | 1,205.44 | 1,299.89 | 1,413.61 |
Steering Systems | 462 | 494.35 | 530.59 | 568.48 | 616.47 | 650.77 | 702.69 | 757.86 | 804.73 | 852.97 | 907.87 |
ADAS Integration | 577.50 | 620.07 | 662.73 | 717.13 | 763.68 | 828.20 | 879.42 | 945.55 | 1,027.10 | 1,081.90 | 1,149.81 |
Subsegment | 2024 | 2025 | 2026 | 2027 | 2028 | 2029 | 2030 | 2031 | 2032 | 2033 | 2034 |
---|---|---|---|---|---|---|---|---|---|---|---|
North America | 577.50 | 619.33 | 661.45 | 712.43 | 764.27 | 814.32 | 860.89 | 927.47 | 1005 | 1,079.11 | 1,163.15 |
Europe | 808.50 | 866.79 | 929.12 | 992.93 | 1,072.49 | 1,141.29 | 1,234.75 | 1,308.68 | 1,414.99 | 1,543.61 | 1,615.08 |
Asia Pacific | 577.50 | 618.84 | 664.67 | 719.46 | 763.25 | 818.50 | 876.20 | 936.84 | 994.13 | 1,045.41 | 1,154.52 |
Latin America | 231 | 248.12 | 263.73 | 281.06 | 300.52 | 330.17 | 338.53 | 383.64 | 408.31 | 455.68 | 476.43 |
Middle East and Africa | 115.50 | 123.24 | 135.65 | 139.87 | 150.11 | 166.01 | 195.37 | 201.53 | 206.32 | 195 | 220.60 |
Last Updated: 25 Aug 2025
Source: Statifacts
Subsegment | 2024 | 2025 | 2026 | 2027 | 2028 | 2029 | 2030 | 2031 | 2032 | 2033 | 2034 |
---|---|---|---|---|---|---|---|---|---|---|---|
Hatchback/Sedan | 693 | 742.79 | 796.60 | 856.60 | 916.50 | 981.43 | 1,060.34 | 1,129.11 | 1,218.67 | 1,305.42 | 1,372.97 |
SUVs | 808.50 | 865.09 | 929.74 | 994.78 | 1,066.41 | 1,132.96 | 1232 | 1,315.09 | 1,398.97 | 1,513.29 | 1,630.95 |
LCV | 462 | 496.42 | 531.45 | 570.83 | 614.40 | 657.63 | 689.64 | 754.29 | 814.06 | 834.73 | 916.56 |
HCV | 346.50 | 372.02 | 396.82 | 423.54 | 453.34 | 498.27 | 523.77 | 559.67 | 597.04 | 665.38 | 709.29 |
Subsegment | 2024 | 2025 | 2026 | 2027 | 2028 | 2029 | 2030 | 2031 | 2032 | 2033 | 2034 |
---|---|---|---|---|---|---|---|---|---|---|---|
Speed Sensors | 577.50 | 617.26 | 662.06 | 712.63 | 760.69 | 822.56 | 901.89 | 950.06 | 1,009.99 | 1,068.04 | 1,133.82 |
Pressure Sensors | 462 | 496.57 | 534.71 | 567.47 | 612.25 | 655.73 | 680.07 | 742.49 | 796.94 | 872.01 | 923.37 |
Position Sensors | 462 | 494.18 | 528.89 | 569.19 | 601.20 | 658.30 | 701.79 | 750.80 | 796.78 | 840.50 | 926.63 |
Temperature Sensors | 346.50 | 375.02 | 400.11 | 430.23 | 466.27 | 492.32 | 517.68 | 577.90 | 602.74 | 642.89 | 735.57 |
Acceleration Sensors | 462 | 493.29 | 528.85 | 566.22 | 610.23 | 641.36 | 704.31 | 736.91 | 822.31 | 895.38 | 910.38 |
Subsegment | 2024 | 2025 | 2026 | 2027 | 2028 | 2029 | 2030 | 2031 | 2032 | 2033 | 2034 |
---|---|---|---|---|---|---|---|---|---|---|---|
Suspension Systems | 577.50 | 620.13 | 665.58 | 703.38 | 756.03 | 814.50 | 869.19 | 940.38 | 991.48 | 1,084.06 | 1,158.49 |
Braking Systems | 693 | 741.77 | 795.71 | 856.76 | 914.47 | 976.81 | 1,054.45 | 1,114.37 | 1,205.44 | 1,299.89 | 1,413.61 |
Steering Systems | 462 | 494.35 | 530.59 | 568.48 | 616.47 | 650.77 | 702.69 | 757.86 | 804.73 | 852.97 | 907.87 |
ADAS Integration | 577.50 | 620.07 | 662.73 | 717.13 | 763.68 | 828.20 | 879.42 | 945.55 | 1,027.10 | 1,081.90 | 1,149.81 |
Subsegment | 2024 | 2025 | 2026 | 2027 | 2028 | 2029 | 2030 | 2031 | 2032 | 2033 | 2034 |
---|---|---|---|---|---|---|---|---|---|---|---|
North America | 577.50 | 619.33 | 661.45 | 712.43 | 764.27 | 814.32 | 860.89 | 927.47 | 1005 | 1,079.11 | 1,163.15 |
Europe | 808.50 | 866.79 | 929.12 | 992.93 | 1,072.49 | 1,141.29 | 1,234.75 | 1,308.68 | 1,414.99 | 1,543.61 | 1,615.08 |
Asia Pacific | 577.50 | 618.84 | 664.67 | 719.46 | 763.25 | 818.50 | 876.20 | 936.84 | 994.13 | 1,045.41 | 1,154.52 |
Latin America | 231 | 248.12 | 263.73 | 281.06 | 300.52 | 330.17 | 338.53 | 383.64 | 408.31 | 455.68 | 476.43 |
Middle East and Africa | 115.50 | 123.24 | 135.65 | 139.87 | 150.11 | 166.01 | 195.37 | 201.53 | 206.32 | 195 | 220.60 |
Chassis sensors such as speed, position, pressure, acceleration, and temperature sensors monitor suspension, braking, steering systems, and vehicle dynamics. They ensure safety, enhance stability, and support automated control systems in modern vehicles.
Increased adoption of ADAS and autonomous driving systems, the rise of electric vehicles with specialized performance requirements, and tightening global safety mandates are accelerating demand.
Digital sensors, known for precision and seamless integration, are leading in the passenger vehicles space. Pressure and position sensors support braking and suspension systems, while acceleration sensors enable electronic stability control.
North America holds the largest market share due to strict safety standards and advanced automotive infrastructure, while Asia-Pacific is the fastest-growing region, driven by rising vehicle production and strong EV adoption.
Major hurdles include high sensor costs, integration complexity, and reliability issues under harsh conditions. Key opportunities include multi-functional miniaturized sensor platforms, wireless/IoT-enabled deployment, and AI-supported diagnostics in EV and autonomous systems.
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