The global automotive inertial measurement unit sensors market is forecasted to grow by USD 13009.5 mn during 2025-2030, accelerating at a CAGR of 23.1% during the forecast period. The report on the global automotive inertial measurement unit sensors market provides a holistic analysis, market size and forecast, trends, growth drivers, and challenges, as well as vendor analysis covering around 25 vendors.
The report offers an up-to-date analysis regarding the current market scenario, the latest trends and drivers, and the overall market environment. The market is driven by growing adoption of advanced driver-assistance systems, expansion of autonomous and highly automated mobility development, rising production of electric vehicles.
The study was conducted using an objective combination of primary and secondary information including inputs from key participants in the industry. The report contains a comprehensive market size data, segment with regional analysis and vendor landscape in addition to an analysis of the key companies. Reports have historic and forecast data.
| Market Scope |
| Base Year | 2025 |
| End Year | 2030 |
| Series Year | 2026-2030 |
| Growth Momentum | Accelerate |
| YOY 2026 | 22.6% |
| CAGR | 23.1% |
| Incremental Value | $13009.5 mn |
Technavio's global automotive inertial measurement unit sensors market is segmented as below:
By Application
- Passenger cars
- Commercial vehicles
By Product
- FOG-based IMUs
- MEMS gyroscope-based IMUs
By Source
- Safety and stability solutions
- ADAS and autonomous driving solutions
- Navigation and positioning solutions
Geography
- APAC
- China
- Japan
- South Korea
- India
- Australia
- Indonesia
- North America
- Europe
- Germany
- UK
- France
- Italy
- Spain
- The Netherlands
- South America
- Middle East and Africa
- Rest of World (ROW)
This study identifies the transition toward software-defined vehicle sensor architectures as one of the prime reasons driving the global automotive inertial measurement unit sensors market growth during the next few years. Also, expansion of multi-sensor fusion deployment models and movement toward miniaturized and high-performance mems designs will lead to sizable demand in the market.
The report on the global automotive inertial measurement unit sensors market covers the following areas:
- Global automotive inertial measurement unit sensors market sizing
- Global automotive inertial measurement unit sensors market forecast
- Global automotive inertial measurement unit sensors market industry analysis
The robust vendor analysis is designed to help clients improve their market position, and in line with this, this report provides a detailed analysis of several leading global automotive inertial measurement unit sensors market vendors that include 221e Inc., ACEINNA Inc., Advanced Navigation Pty Ltd., Analog Devices Inc., Continental AG, Hexagon AB, Honeywell International Inc., KVH Industries Inc., Memsense Inc., MEMSIC Semiconductor Co. Ltd., Murata Manufacturing Co. Ltd., Oxford Technical Solutions Ltd., Quectel Wireless Solutions Co., Robert Bosch GmbH, SBG Systems SAS, Seiko Epson Corp., Silicon Sensing Systems Ltd., STMicroelectronics NV, TDK Corp., Trimble Inc., VectorNav Technologies LLC. Also, the global automotive inertial measurement unit sensors market analysis report includes information on upcoming trends and challenges that will influence market growth. This is to help companies strategize and leverage all forthcoming growth opportunities.
The publisher presents a detailed picture of the market by the way of study, synthesis, and summation of data from multiple sources by an analysis of key parameters such as profit, pricing, competition, and promotions. It presents various market facets by identifying the key industry influencers. The data presented is comprehensive, reliable, and a result of extensive primary and secondary research. The market research reports provide a complete competitive landscape and an in-depth vendor selection methodology and analysis using qualitative and quantitative research to forecast accurate market growth.
Table of Contents
1 Executive Summary
- 1.1 Market overview
- Executive Summary - Chart on Market Overview
- Executive Summary - Data Table on Market Overview
- Executive Summary - Chart on Global Market Characteristics
- Executive Summary - Chart on Market by Geography
- Executive Summary - Chart on Market Segmentation by Application
- Executive Summary - Chart on Market Segmentation by Product
- Executive Summary - Chart on Market Segmentation by Source
- Executive Summary - Chart on Incremental Growth
- Executive Summary - Data Table on Incremental Growth
- Executive Summary - Chart on Company Market Positioning
2 Technavio Analysis
- 2.1 Analysis of price sensitivity, lifecycle, customer purchase basket, adoption rates, and purchase criteria
- Analysis of price sensitivity, lifecycle, customer purchase basket, adoption rates, and purchase criteria
- 2.2 Criticality of inputs and Factors of differentiation
- 2.3 Factors of disruption
- 2.4 Impact of drivers and challenges
3 Market Landscape
- 3.1 Market ecosystem
- 3.2 Market characteristics
- 3.3 Value chain analysis
4 Market Sizing
- 4.1 Market definition
- 4.2 Market segment analysis
- 4.3 Market size 2025
- 4.4 Market outlook: Forecast for 2025-2030
5 Historic Market Size
- 5.1 Global Automotive Inertial Measurement Unit Sensors Market 2020 - 2024
- Historic Market Size - Data Table on Global Automotive Inertial Measurement Unit Sensors Market 2020 - 2024 ($ million)
- 5.2 Application segment analysis 2020 - 2024
- Historic Market Size - Application Segment 2020 - 2024 ($ million)
- 5.3 Product segment analysis 2020 - 2024
- Historic Market Size - Product Segment 2020 - 2024 ($ million)
- 5.4 Source segment analysis 2020 - 2024
- Historic Market Size - Source Segment 2020 - 2024 ($ million)
- 5.5 Geography segment analysis 2020 - 2024
- Historic Market Size - Geography Segment 2020 - 2024 ($ million)
- 5.6 Country segment analysis 2020 - 2024
- Historic Market Size - Country Segment 2020 - 2024 ($ million)
6 Qualitative Analysis
- 6.1 Impact of AI on global automotive inertial measurement unit sensors market
- 6.2 Impact of geopolitical conflicts on global automotive inertial measurement unit sensors market
7 Five Forces Analysis
- 7.1 Five forces summary
- Five forces analysis - Comparison between 2025 and 2030
- 7.2 Bargaining power of buyers
- Bargaining power of buyers - Impact of key factors 2025 and 2030
- 7.3 Bargaining power of suppliers
- Bargaining power of suppliers - Impact of key factors in 2025 and 2030
- 7.4 Threat of new entrants
- Threat of new entrants - Impact of key factors in 2025 and 2030
- 7.5 Threat of substitutes
- Threat of substitutes - Impact of key factors in 2025 and 2030
- 7.6 Threat of rivalry
- Threat of rivalry - Impact of key factors in 2025 and 2030
- 7.7 Market condition
8 Market Segmentation by Application
- 8.1 Market segments
- 8.2 Comparison by Application
- 8.3 Passenger cars - Market size and forecast 2025-2030
- 8.4 Commercial vehicles - Market size and forecast 2025-2030
- 8.5 Market opportunity by Application
- Market opportunity by Application ($ million)
9 Market Segmentation by Product
- 9.1 Market segments
- 9.2 Comparison by Product
- 9.3 FOG-based IMUs - Market size and forecast 2025-2030
- 9.4 MEMS gyroscope-based IMUs - Market size and forecast 2025-2030
- 9.5 Market opportunity by Product
- Market opportunity by Product ($ million)
10 Market Segmentation by Source
- 10.1 Market segments
- 10.2 Comparison by Source
- 10.3 Safety and stability solutions - Market size and forecast 2025-2030
- 10.4 ADAS and autonomous driving solutions - Market size and forecast 2025-2030
- 10.5 Navigation and positioning solutions - Market size and forecast 2025-2030
- 10.6 Market opportunity by Source
- Market opportunity by Source ($ million)
11 Customer Landscape
- 11.1 Customer landscape overview
- Analysis of price sensitivity, lifecycle, customer purchase basket, adoption rates, and purchase criteria
12 Geographic Landscape
- 12.1 Geographic segmentation
- 12.2 Geographic comparison
- 12.3 APAC - Market size and forecast 2025-2030
- 12.3.1 China - Market size and forecast 2025-2030
- 12.3.2 Japan - Market size and forecast 2025-2030
- 12.3.3 South Korea - Market size and forecast 2025-2030
- 12.3.4 India - Market size and forecast 2025-2030
- 12.3.5 Australia - Market size and forecast 2025-2030
- 12.3.6 Indonesia - Market size and forecast 2025-2030
- 12.4 North America - Market size and forecast 2025-2030
- 12.4.1 US - Market size and forecast 2025-2030
- 12.4.2 Canada - Market size and forecast 2025-2030
- 12.4.3 Mexico - Market size and forecast 2025-2030
- 12.5 Europe - Market size and forecast 2025-2030
- 12.5.1 Germany - Market size and forecast 2025-2030
- 12.5.2 UK - Market size and forecast 2025-2030
- 12.5.3 France - Market size and forecast 2025-2030
- 12.5.4 Italy - Market size and forecast 2025-2030
- 12.5.5 Spain - Market size and forecast 2025-2030
- 12.5.6 The Netherlands - Market size and forecast 2025-2030
- 12.6 South America - Market size and forecast 2025-2030
- 12.6.1 Brazil - Market size and forecast 2025-2030
- 12.6.2 Argentina - Market size and forecast 2025-2030
- 12.6.3 Chile - Market size and forecast 2025-2030
- 12.7 Middle East and Africa - Market size and forecast 2025-2030
- 12.7.1 Saudi Arabia - Market size and forecast 2025-2030
- 12.7.2 Turkey - Market size and forecast 2025-2030
- 12.7.3 UAE - Market size and forecast 2025-2030
- 12.7.4 South Africa - Market size and forecast 2025-2030
- 12.7.5 Israel - Market size and forecast 2025-2030
- 12.8 Market opportunity by geography
- Market opportunity by geography ($ million)
- Data Tables on Market opportunity by geography ($ million)
13 Drivers, Challenges, and Opportunity
- 13.1 Market drivers
- Growing adoption of advanced driver-assistance systems
- Expansion of autonomous and highly automated mobility development
- Rising production of electric vehicles
- 13.2 Market challenges
- Sensor calibration complexity across vehicle platforms
- Stringent compliance and qualification requirements
- Dependence on specialized semiconductor supply networks
- 13.3 Impact of drivers and challenges
- Impact of drivers and challenges in 2025 and 2030
- 13.4 Market opportunities
- Transition toward software-defined vehicle sensor architectures
- Expansion of multi-sensor fusion deployment models
- Movement toward miniaturized and high-performance MEMS designs
14 Competitive Landscape
- 14.1 Overview
- 14.2 Competitive Landscape
- Overview on criticality of inputs and factors of differentiation
- 14.3 Landscape disruption
- Overview on factors of disruption
- 14.4 Industry risks
- Impact of key risks on business
15 Competitive Analysis
- 15.1 Companies profiled
- 15.2 Company ranking index
- 15.3 Market positioning of companies
- Matrix on companies position and classification
- 15.4 Advanced Navigation Pty Ltd.
- Advanced Navigation Pty Ltd. - Overview
- Advanced Navigation Pty Ltd. - Product / Service
- Advanced Navigation Pty Ltd. - Key offerings
- SWOT
- 15.5 Analog Devices Inc.
- Analog Devices Inc. - Overview
- Analog Devices Inc. - Business segments
- Analog Devices Inc. - Key offerings
- Analog Devices Inc. - Segment focus
- SWOT
- 15.6 Continental AG
- Continental AG - Overview
- Continental AG - Business segments
- Continental AG - Key news
- Continental AG - Key offerings
- Continental AG - Segment focus
- SWOT
- 15.7 Hexagon AB
- Hexagon AB - Overview
- Hexagon AB - Business segments
- Hexagon AB - Key news
- Hexagon AB - Key offerings
- Hexagon AB - Segment focus
- SWOT
- 15.8 Honeywell International Inc.
- Honeywell International Inc. - Overview
- Honeywell International Inc. - Business segments
- Honeywell International Inc. - Key news
- Honeywell International Inc. - Key offerings
- Honeywell International Inc. - Segment focus
- SWOT
- 15.9 KVH Industries Inc.
- KVH Industries Inc. - Overview
- KVH Industries Inc. - Product / Service
- KVH Industries Inc. - Key offerings
- SWOT
- 15.10 Murata Manufacturing Co. Ltd.
- Murata Manufacturing Co. Ltd. - Overview
- Murata Manufacturing Co. Ltd. - Business segments
- Murata Manufacturing Co. Ltd. - Key offerings
- Murata Manufacturing Co. Ltd. - Segment focus
- SWOT
- 15.11 Oxford Technical Solutions Ltd.
- Oxford Technical Solutions Ltd. - Overview
- Oxford Technical Solutions Ltd. - Product / Service
- Oxford Technical Solutions Ltd. - Key offerings
- SWOT
- 15.12 Quectel Wireless Solutions Co.
- Quectel Wireless Solutions Co. - Overview
- Quectel Wireless Solutions Co. - Product / Service
- Quectel Wireless Solutions Co. - Key offerings
- SWOT
- 15.13 Robert Bosch GmbH
- Robert Bosch GmbH - Overview
- Robert Bosch GmbH - Product / Service
- Robert Bosch GmbH - Key offerings
- SWOT
- 15.14 Seiko Epson Corp.
- Seiko Epson Corp. - Overview
- Seiko Epson Corp. - Business segments
- Seiko Epson Corp. - Key offerings
- Seiko Epson Corp. - Segment focus
- SWOT
- 15.15 Silicon Sensing Systems Ltd.
- Silicon Sensing Systems Ltd. - Overview
- Silicon Sensing Systems Ltd. - Product / Service
- Silicon Sensing Systems Ltd. - Key offerings
- SWOT
- 15.16 STMicroelectronics NV
- STMicroelectronics NV - Overview
- STMicroelectronics NV - Business segments
- STMicroelectronics NV - Key news
- STMicroelectronics NV - Key offerings
- STMicroelectronics NV - Segment focus
- SWOT
- 15.17 TDK Corp.
- TDK Corp. - Overview
- TDK Corp. - Business segments
- TDK Corp. - Key offerings
- TDK Corp. - Segment focus
- SWOT
- 15.18 Trimble Inc.
- Trimble Inc. - Overview
- Trimble Inc. - Business segments
- Trimble Inc. - Key news
- Trimble Inc. - Key offerings
- Trimble Inc. - Segment focus
- SWOT
16 Appendix
- 16.1 Scope of the report
- Market definition
- Objectives
- Notes and caveats
- 16.2 Inclusions and exclusions checklist
- Inclusions checklist
- Exclusions checklist
- 16.3 Currency conversion rates for US$
- Currency conversion rates for US$
- 16.4 Research methodology
- 16.5 Data procurement
- 16.6 Data validation
- 16.7 Validation techniques employed for market sizing
- Validation techniques employed for market sizing
- 16.8 Data synthesis
- 16.9 360 degree market analysis
- 360 degree market analysis
- 16.10 List of abbreviations