Market Summary
Research Methodology on Automotive Sensors Market
Introduction
This report presents a research methodology that outlines the approach taken when conducting research into the Automotive Sensors Market. The research methodology employed outlines the data collection methods, the framework used for analysis, and the method applied for interpreting and assessing the findings. This research seeks to answer the research objectives posed in the report by researching appropriate methodologies.
Data Collection
The primary source of data collection for this research was secondary sources. Primary research was conducted for triangulation purposes and for filling in any gaps in the existing information.
Various research, studies, white papers, company reports and other proprietary sources, such as trade association papers, and government websites were used as the main sources of data collection, to examine and analyze the prevailing market segments and to weigh the strengths and weaknesses of the Automotive Sensors Market.
The secondary sources used comprised data collated from:
- Company websites
- Product brochures
- Reports on the market of various countries
- Databases of trade publications
- Databases of magazines and technical journals
- Verified and authenticated industry and market databases
- Conferences, seminars and various other events information
- Government websites and other sources
Data triangulation methods were utilized to validate the data gathered from multiple sources. Data triangulation is the process of combining both primary and secondary research to provide a balanced analysis. The data analysis featured in this report follows a three-step process that starts with the review of existing reports and research and further continues with the collection of data from survey respondents, interviews, and further refining of the data collected and analysed to arrive at the conclusions.
The research for the report was gathered using both primary and secondary data. Primary data was collected from surveys, interviews and expert panel discussions. Data was also collected from secondary sources such as periodicals, websites and other trade publications.
Market Insight
The research was conducted using a market study approach in which quantitative and qualitative observations for the trend being studied were collected. The market insight was obtained through the analysis of company performance, recent news articles, and market performance. The research methodology employed used the collected data to conclude the current market behaviour of the industry to forecast future market performance.
This analysis sought to identify the current market dynamics and their impacts on the Automotive Sensors Market. To ascertain the presence or absence of any industry trend, the analysis used the industry analysis acronym ‘PORTER’, which consists of the following:
- P – Political Factors
- O – Opportunities
- R – Region
- T – Technology
- E – Economic Factors
- R – Regulatory Framework
Further insight was gained from analyzing the data collected for the trend. This analysis allowed the identification of factors such as forces of change, recent developments and their impacts on the current market performance.
Data Interpretation
The collected data from both primary and secondary data collected was used to analyze the scope and presence of the Automotive Sensors Market. Data collected were presented in tables, graphs, and charts. The data was further interpreted by making use of various tools such as Porter’s Five Forces, SWOT Analysis, and PEST Analysis.
The analysis conducted was used to draw conclusions that were integral to the purpose of the research. Drawings from the data collected regarding the market structure and size, market concentration, regulatory environment, demographic factors and recent developments affecting the Automotive Sensors Market were arrived at. This enabled the development of the forecast section of the report, which presented the future state of the Automotive Sensors Market.
Conclusion
The research methodology employed for this report was conducted using both primary and secondary data sources. Data was collected from a variety of sources, analyzed and interpreted using various tools, and qualitative and quantitative insights into the trend were produced. This enabled the development of the forecast section of the report, which provided insight into the future of the Automotive Sensors Market.
Market Size & Forecast
Attribute/Metric | Details |
Market Size 2021 | USD 19.6 billion |
Market Size 2022 | USD 21.4 billion |
Market Size 2030 | USD 39.6 billion |
Compound Annual Growth Rate (CAGR) | 9.20% (2022-2030) |
Base Year | 2021 |
Market Forecast Period | 2022-2030 |
Historical Data | 2018 & 2020 |
Market Forecast Units | Value (USD Billion) |
Report Coverage | Revenue Forecast, Market Competitive Landscape, Growth Factors, and Trends |
Segments Covered | Service Provider, Technology, Vehicle Type and Region |
Geographies Covered | North America, Europe, Asia Pacific, and Rest of the World |
Countries Covered | The U.S, Canada, Germany, France, UK, Italy, Spain, China, Japan, India, Australia, South Korea, and Brazil |
Key Companies Profiled | Bosch Sensortec GmbH, Analog Devices Inc., Avago Technologies, Hella KGaA Hueck & Co., TRW Automotive, Continental AG, CTS Corporation, Delphi Automotive, Denso Corporation, Freescale Semiconductor Holdings Ltd., GE Measurement & Control Solutios, Gill Sensors & Controls, Infineon Technologies, NGK Spark Plugs Co. Ltd., NXP Semiconductors, Panasonic Corporation, Sensata Technologies among others |
Key Market Opportunities | Improvement in safety standards Developing customer Preferences |
Key Market Dynamics | Vehicles will help reduce fuel costs of consumers Increasing use of alternative fuels Rise the energy security of nations Use of alternative fuel cars |
Major Players
Automotive Sensors Market Segmentation
Automotive Sensors Type Outlook (USD Million, 2018-2030)
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Automotive Sensors Technology Outlook (USD Million, 2018-2030)
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Automotive Sensors Vehicle Type Outlook (USD Million, 2018-2030)
Conventional Fuel Cars
Alternative Fuel Cars Heavy Vehicles
Automotive Sensors Regional Outlook (USD Million, 2018-2030)
North America Outlook (USD Million, 2018-2030)
North America Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
North America Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
North America Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
US Outlook (USD Million, 2018-2030)
US Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
US Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
US Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
CANADA Outlook (USD Million, 2018-2030)
CANADA Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
CANADA Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
CANADA Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Europe Outlook (USD Million, 2018-2030)
Europe Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Europe Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Europe Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars Heavy Vehicles
Germany Outlook (USD Million, 2018-2030)
Germany Automotive Sensors by Fusion Technology
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Germany Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Germany Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars Heavy Vehicles
France Outlook (USD Million, 2018-2030)
France Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
France Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
France Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
UK Outlook (USD Million, 2018-2030)
UK Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
UK Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
UK Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
ITALY Outlook (USD Million, 2018-2030)
ITALY Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
ITALY Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
ITALY Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
SPAIN Outlook (USD Million, 2018-2030)
Spain Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Spain Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Spain Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Rest Of Europe Outlook (USD Million, 2018-2030)
Rest Of Europe Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
REST OF EUROPE Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
REST OF EUROPE Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Asia-Pacific Outlook (USD Million, 2018-2030)
Asia-Pacific Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Asia-Pacific Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Asia-Pacific Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
China Outlook (USD Million, 2018-2030)
China Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
China Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
China Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Japan Outlook (USD Million, 2018-2030)
Japan Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Japan Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Japan Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
India Outlook (USD Million, 2018-2030)
India Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
India Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
India Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Australia Outlook (USD Million, 2018-2030)
Australia Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Australia Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Australia Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Rest of Asia-Pacific Outlook (USD Million, 2018-2030)
Rest of Asia-Pacific Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Rest of Asia-Pacific Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Rest of Asia-Pacific Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Rest of the World Outlook (USD Million, 2018-2030)
Rest of the World Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Rest of the World Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Rest of the World Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Middle East Outlook (USD Million, 2018-2030)
Middle East Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Middle East Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Middle East Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Africa Outlook (USD Million, 2018-2030)
Africa Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Africa Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Africa Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
Latin America Outlook (USD Million, 2018-2030)
Latin America Automotive Sensors by Type
Pressure
Temperature
Position
Motion
Optical
Torque
Gas
Level
Other Sensors
Latin America Automotive Sensors by Technology
Micro-Electro-Mechanical Systems(MEMS)
Non-Electro-Mechanical Systems(Non-MEMS)
Nano-Electro-Mechanical Systems(NEMS)
Latin America Automotive Sensors by Vehicle Type
Conventional Fuel Cars
Alternative Fuel Cars
Heavy Vehicles
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