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Automotive MEMS Sensors Market - Analysis Of Growth, Trends, And Forecast (2020 - 2025)

Published on: Jan 2020 | From USD $4250 | Published By: MORDOR INTELLIGENCE | Number Of Pages: 100

Market Overview

The Automotive MEMS Sensors market was valued at USD 1815.41 million in 2019 and is expected to reach USD 4024.88 million by 2025, at a CAGR of 14.4% over the forecast period 2020 - 2025. The automotive MEMS sensors can be used in a number of applications, such as tire pressure monitoring systems, oil pressure sensing, pedestrian protection, and in exhaust gas recirculation. The market serves a vast variety of industry verticals, ranging from very small consumer electronic devices to very large automotive manufacturers. Automotive MEMS sensors provide various advantages of high efficiency, small size, and low cost.
The growing demand for safety and security in automobiles is one of the main factors that is playing a vital role in the growth of the market. According to the World Health Organization, globally, more than 1.55 million people are killed in road accidents every year, and about 50 million people get injured. MEMS sensors play a critical role in improving the safety features of vehicles and act as catalysts for the growth of the market.
The emergence of electric vehicles (EVs) in the industry has dramatically impacted the demand for and distribution of pressure and magnetic sensors, and is expected to further increase the demand in the long-term. Increasing sales of electric cars is thereby increasing the demand for sensors, along with the surge in sensors for used battery monitoring, and various positioning and detection of moving parts of the automobiles.
Mandated safety systems, such as tire pressure monitoring systems (TPMS) and electronic stability control (ESC) attained full implementation in new vehicles in major automotive markets. The United States, for instance, is currently driving the revenue growth for MEMS sensors.

Scope of the Report

Microelectromechanical systems (MEMS) technology is used in a wide variety of modern era automotive sensors. The small size of MEMS sensors provides a quicker response to rapid change in measured parameter, and because of the extremely low-cost, the use has been extensive. One of the most well-known MEMS devices for automotive applications are inertial sensors and pressure sensors.

Key Market Trends

Air Bag Deployment Sensors to Witness Highest Growth

Passive safety applications, like the airbag deployment, make use of MEMS sensors for communicating vehicle deceleration inputs to the electronic control unit (ECU) that controls the airbags.

Crash sensing for airbag control is a compelling factor for the demand of inertial MEMS sensors. Companies, like ST Electronics, Bosch, and Analog Devices, among others, have been instrumental in developing MEMS-based accelerometer sensors and inertial sensors specified for a temperature range extending from -40°C to +125°C, which are suitable for enabling passive safety during a crash.
Innovations in the MEMS sensors for airbag applications are toward increasing the processing speed of the sensors and sensors that can detect forces up to 120g or 480g. For instance, Bosch, in November 2018, launched a new generation of high-g acceleration sensors, SMA7xy sensor family, which are designed to enable faster signal processing, as compared to the sensors of the preceding generation (SMA6xy released in 2014). With higher bandwidth, these sensors detect impact and facilitate more rapid deployment of the vehicle's passive safety systems.
In the light of the road crash fatalities, governments across regions, like the United States and Europe, have mandated automobiles to have airbag functions even in non-luxury variants. These regulations, therefore, have fueled the demand for MEMS sensors for airbag deployments.

Asia-Pacific to Witness Highest Growth

Asia-Pacific is expected to exhibit the highest growth rate in the automotive MEMS sensors market, owing to the rapidly growing automotive industry in economies, such as China and Japan. In the automotive industry, tire pressure monitoring system (TPMS) is one of the applications of MEMS sensors. China's prominent role in implementing TPMS for its vehicles is expected to contribute to the market’s growth positively over the forecast period. Additionally, the standardization of autonomous driving and advanced driver assistance systems (ADAS) is accelerating the growth.

Competitive Landscape

The automotive MEMS sensors market is highly competitive and consists of several major players. In terms of market share, few of the major players currently dominate the market. These major players with a prominent share in the market are focusing on expanding their customer base across foreign countries. These companies are leveraging on strategic collaborative initiatives to increase their market share and increase their profitability. For instance, in November 2018, Analog Devices Inc. launched a broad range of new Industry 4.0 solutions, enabled with MEMS sensor within its advanced Industry 4.0 roadmap that aimed at helping the industrial equipment accelerate their path to Industry 4.0. These new solutions deliver next-generation flexibility, connectivity, and efficiency for today’s existing factory infrastructure.

Reasons to Purchase this report:

- The market estimate (ME) sheet in Excel format
- Report customization as per the client's requirements
- 3 months of analyst support

1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study



4.1 Market Overview
4.2 Industry Attractiveness- Porter's Five Forces Analysis
4.2.1 Threat of New Entrants
4.2.2 Bargaining Power of Buyers/Consumers
4.2.3 Bargaining Power of Suppliers
4.2.4 Threat of Substitute Products
4.2.5 Intensity of Competitive Rivalry
4.3 Introduction to Market Drivers and Restraints
4.4 Market Drivers
4.4.1 Passenger Safety and Security Regulations, and Increased Focus on Compliance
4.4.2 Increased Automation Features and Performance Improvements Preferred by Customers
4.5 Market Restraints
4.5.1 Increase in Overall Cost of MEMS Sensors Implementation due to Interface Design Considerations
4.6 Technology Snapshot

5.1 By Type
5.1.1 Tire Pressure Sensors
5.1.2 Engine Oil Sensors
5.1.3 Combustion Sensors
5.1.4 Fuel Injection and Fuel Pump Sensors
5.1.5 Air Bag Deployment Sensors
5.1.6 Gyroscopes
5.1.7 Fuel Rail Pressure Sensors
5.1.8 Other Types
5.2 Geography
5.2.1 North America US Canada
5.2.2 Europe Germany UK France Rest of Europe
5.2.3 Asia-Pacific China Japan India Rest of Asia-Pacific
5.2.4 Rest of World

6.1 Company Profiles
6.1.1 Analog Devices Inc.
6.1.2 Delphi Automotive PLC
6.1.3 Denso Corporation
6.1.4 General Electric Co.
6.1.5 NXP Semiconductors NV
6.1.6 Infineon Technologies AG
6.1.7 Sensata Technologies Inc.
6.1.8 STMicroelectronics NV
6.1.9 Panasonic Corporation
6.1.10 Robert Bosch GmbH



Secondary Research Information is collected from a number of publicly available as well as paid databases. Public sources involve publications by different associations and governments, annual reports and statements of companies, white papers and research publications by recognized industry experts and renowned academia etc. Paid data sources include third party authentic industry databases.

Once data collection is done through secondary research, primary interviews are conducted with different stakeholders across the value chain like manufacturers, distributors, ingredient/input suppliers, end customers and other key opinion leaders of the industry. Primary research is used both to validate the data points obtained from secondary research and to fill in the data gaps after secondary research.

The market engineering phase involves analyzing the data collected, market breakdown and forecasting. Macroeconomic indicators and bottom-up and top-down approaches are used to arrive at a complete set of data points that give way to valuable qualitative and quantitative insights. Each data point is verified by the process of data triangulation to validate the numbers and arrive at close estimates.

The market engineered data is verified and validated by a number of experts, both in-house and external.

After the data is curated by the mentioned highly sophisticated process, the analysts begin to write the report. Garnering insights from data and forecasts, insights are drawn to visualize the entire ecosystem in a single report.

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