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MEMS and Sensors for Automotive - Market and Technology Trends 2017

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出 版 商:Yole Développement
出版日期:2017/08/15
價  格:
EUR 5,490 (Single-User License)
EUR 6,490 (Multi-User License)
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 THE REBORN AUTOMOTIVE SENSOR MARKET WILL BE WORTH MORE THAN $20B BY 2022

In a global automotive market worth than US$2.3T, the little world of automotive sensors has recently been shaken up by the emergence of electric and autonomous cars. Despite just 3% growth in the volume of cars sold expected through to 2022, Yole Développement (Yole) expects an average growth rate in sensors sales volumes above 8% over the next five years, and above 14% growth in sales value. This is thanks to the expanding integration of high value sensing modules like RADAR, imaging and LiDAR. The current automotive sensing market groups MEMS and classic active sensors such as pressure, tire pressure monitoring systems (TPMS), chemical, inertial, magnetic, ultrasonic, imaging, RADAR and LiDAR.

We estimate that this market is worth US$11B in 2016 and is expected to reach US$23B by 2022. This is mainly due to the boom in imaging, RADAR and LiDAR sensors, which will respectively be worth US$7.7B, US$6.2B and US$1.4B by 2022. Among classical sensors like pressure, chemical and magnetic sensors, the impact of electric vehicles will remain small in the short term. However, the advent of electrical vehicles will greatly change the amount and the distribution of pressure and magnetic sensors within the car in the longer term. More electric cars will mean fewer pressure sensors and a surge in magnetic sensors for battery monitoring and various positioning and detection of moving pieces. 

Finally, we believe that the automotive world is experiencing one of the fastest-changing eras in its evolution ever. Sensor suppliers are now engaged in a race where they need to be prepared for the golden age of the automotive world.

This report describes the applications, technologies, and players associated with the automotive sensor market’s impending changes.

 

Yole Overview MEMS Sensor market for auto

 

BOSCH, DENSO, SENSATA, NXP AND INFINEON ARE STILL THE TOP PLAYERS IN THE AUTOMOTIVE SPACE, BUT CHANGES MAY OCCUR QUICKLY

The top ten sensor suppliers generated US$4.25 billion in revenue last year, accounting for 77% of the total sensing market at the sensor scale, excluding modules. Revenue growth was affected by price erosion for sensors designed into safety applications, including electronic stability control (ESC) and TPMS. The pressure market remains a fragmented market dominated by Bosch, Sensata and Denso, while magnetic market is driven by Allegro, TDK-Micronas and Infineon.

Regarding the RADAR market, Infineon can be considered as the benchmark and is avidly promoting RADAR as a key technology for the future of automotive. Newcomers, especially from the LiDAR industry, may reshuffle the deck in the near future. Companies like Velodyne, Quanergy, SensL and Leddartech are racing against giant automotive suppliers like Continental and Valeo to commercialize reliable and affordable LiDAR solutions that can answer automotive requirements.

This report describes the associated technologies, trends and players.

Yole Automotive MEMS Sensors player overview 

HOW TO ENVISION THE CAR OF THE FUTURE? ELECTRIFICATION AND AUTONOMOUS DRIVING WILL DEEPLY IMPACT TRANSPORTATION

Among all sensing technologies located in the car, three main sensors will drastically change the landscape: imaging, RADAR and LiDAR sensors.
Imaging sensors were initially mounted for Advanced Driver Assistance System (ADAS) purposes in high-end vehicles, with deep learning image analysis techniques promoting early adoption. It is now a well-established fact that vision-based Autonomous Emergency Braking (AEB) is possible and saves lives.
Adoption of forward ADAS cameras will therefore accelerate. Growth of imaging for automotive is also being fueled by the park assist application, and 360° surround view camera volumes are skyrocketing. While it’s becoming mandatory in the US to have a rear view camera, that uptake is dwarfed by 360° surround view cameras, which enable a “bird’s eye view” perspective. This trend is most beneficial to companies like Omnivision at sensor level and Panasonic and Valeo, which have become the main manufacturers of automotive cameras.

RADAR sensors, which are often wrongly seen as competitors of imaging and LiDAR sensors, are increasingly adopted in high-end vehicles. They are also diffusing into mid-price cars for blind spot detection and adaptive cruise control, pushing Level 2/3 features as a common experience. Lastly, LiDAR remains the “Holy Grail” for most automotive players, allowing 3D sensing of the environment. In this report we highlight the different potential usages of this technology, which will transform the transportation industry completely. We expect tremendous growth of the LiDAR market within the next five years, from being worth US$300M in 2017 to US$4.4B by 2022. LiDAR is expected to be a key technology, but sensing redundancy will still be the backbone of the automotive world where security remains the golden rule.

 Yole Lidar Radars image sensors

OBJECTIVES OF THE REPORT

This report’s objectives are:

Ecosystem identification and analysis:

  • Determination of the application range
  • Technical market segmentation
  • Market trends and forecasts
  • Key players by market, and analysis

Analysis and description of markets and technologies involved:

  • Detailed applications by market segment
  • Major players worldwide
  • Technology trends
  • Main technical challenges
 

Introduction, definitions and methodology  7


 

Executive summary 16


 

Automotive sensing history 44 


 

Power train, in-cabin, safety 58 


 

Sensors for automotive 66


 

Market forecasts 75


 

Automotive trends 107 


Technology overview 130 


> Pressure sensors
> Accelerometer and gyroscope sensors
> Chemical sensors
> Magnetic sensors
> Imaging sensors
> Ultrasonic sensors
> RADAR sensors

 

 

Supply chain 144


 

Autonomous trends 153


> Sensors implied
> LiDAR focus

 

 

Conclusion and perspective 170


 

Yole presentation 177


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