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MEMS Pressure sensor

MEMS Pressure Sensor Market and Technologies 2018

MEMS Pressure Sensor Market and Technologies 2018

Product code
EUR 6 490
Automotive Consumer Industrial Medical
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Automotive and consumer applications are propelling the MEMS pressure sensor business to new heights.


The automotive industry is the oldest and the biggest market for MEMS pressure sensors. Powertrain applications represent more than 50% of the business, followed by safety, with tire pressure management systems (TPMS) being the biggest single automotive application. Driven by CO2 emission reduction and automation, pressure sensors will increasingly be used in the next five years, especially in China, whose regulations will require pressure sensors for several applications. These include TPMS, diesel and gasoline particle filters (DPF, GPF) and fuel tank evaporation (EVAP).

The consumer market is now the second largest pressure sensor business, thanks to recent rapid adoption in high-end smartphones and tablets. This will further extend to Android mid-to-low value smartphones, driven by new use cases, such as indoor and outdoor navigation. Lower sensor costs and better accuracy and power also enable new applications to grow, such as wearables, electronic cigarettes, drones, and smart homes.

Avionics and high-end applications are still niche markets, but exhibit the fastest market growth thanks to the dynamic aircraft market and MEMS taking over from traditional technologies.

The medical and industrial markets are growing at a moderate rate because there is no significant change in term of applications, with one exception. New medical smart inhalers are in between the medical and consumer markets, and pave the way for many future medical consumer Internet of Things (IoT) applications.

Overall, the MEMS pressure sensor market will grow by 3.8% per year, reaching a value of $2B in 2023. The report identifies the key driving forces and restraints for each pressure sensor market and application, and provides accurate market value and volume forecasts.

MEMS Pressure sensor market forecast 2018 yole developpement


The competitive landscape varies greatly with the type of market addressed.

  • In both the high-volume automotive and consumer markets, Bosch is clearly the dominant leader. This is a unique position. Bosch has succeeded in leveraging its automotive product leadership to become leader in the newer consumer market.
    Bosch has aggregated both markets’ production volume to reduce cost, and further increase its competitive advantage. Other players like Infineon, Sensata, Denso and Melexis are mainly focused on automotive, while ST Microelectronic and Alps serve the consumer market. Only TE Connectivity and NXP also have multimarket presence. The key players are large groups active in various MEMS sensors, with inertial, pressure and gas sensor devices. Vertical integration is usual in automotive at companies like Bosch, Denso and Sensata, but not in consumer, because systems are smaller and thus there is no need for tier one component suppliers.
  • The medium-to-low-volume medical, industrial, avionics and high-end markets all have many of the same key players. They include Honeywell, Amphenol, NXP, TE Connectivity, Omron, First Sensor, Merit, Elmos SMI, and TDK. These companies grow their business by targeting multiple markets, and by making added-value modules. There are also pure avionics and high-end market players, such as Kulite or Memscap.

Mergers and acquisitions (M&A) between Amphenol and GE, Sensata, Schrader and CST, TDK and Invensense, and Qualcomm, NXP and Freescale all included pressure sensor activities, and activity has therefore been concentrated. The budget for future acquisitions will probably exceed $100M. The report lists future possible targets, and ranks them to help M&A decision makers.

Pressure leading players market 2018 yole developpement


MEMS pressure sensor technologies are now quite mature, and are basically segmented into piezoresistive and capacitive categories. These two technologies are not hugely different. Today piezoresistive is clearly leading in terms of market share, and that will continue. We don’t expect big technical breakthroughs, mainly incremental improvements, with miniaturization as important as in all semiconductor products.

We expect bigger changes at the system level, especially in automotive, which has been shaken by electrification and automation. Electrification is positive for pressure sensors when it is deployed in hybrid vehicles (HEVs) that have combustion engines that use many pressure sensors. But zero emission vehicles (ZEVs), which includes pure battery vehicles (BEVs) and fuel cell vehicles (FCVs), eliminate the combustion engine, and with it the demand for powertrain sensors. With powertrain sensors representing 51% of the automotive MEMS pressure sensor business, leading powertrain pressure sensor makers like Bosch, Infineon, or Denso must be worried about their future business. However, the transition will take more than a decade. This report will help readers find new, alternative markets.

ZEV impact automotive powertrain business 2018 yole developpement


  • To give a detailed analysis of all MEMS pressure sensor applications
    – Application description, sensor function, competing technologies, main market drivers and trends
  • To provide market data on key pressure sensors market metrics and dynamics
    – Pressure sensor sales in volume and value by market, by application, by sensor type, and technology
    – Players market share globally and by market
  • To provide key technical insight on main pressure technologies and main technological trends
    – Description of the main pressure sensor technologies
    – Reverse engineering trends for tire pressure monitoring systems (TPMS) and consumer applications
    – Technological landscape and trends for piezoresistive and capacitive MEMS technologies
  • To provide an in-depth understanding of pressure sensor value chain, infrastructure and players
    – Who are the key pressure sensor players, including integrated device manufacturers, module makers and vertically integrated players, and what is their market and technological position?
    – More generally, who are the key suppliers to watch and how will the pressure sensor market evolve?
    – What are the potential targets for mergers and acquisitions?




MEMS Pressure Sensor: Structure and costing comparison of 34 MEMS pressure sensors from 18 different manufacturers in consumer, automotive and industrial applications 2018MEMS Pressure Sensor Comparison 2018 – by System Plus Consulting

Structure and costing comparison of 34 MEMS pressure sensors from 18 different manufacturers in consumer, automotive and industrial applications.

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  • Package views and dimensions
  • Package cross-sections
  • Precise measurements
  • Die descriptions
  • Technology descriptions
  • Cost analysis
  • Cost comparisons

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Table of contents


Companies cited in this report


Market research scope and methodology

Executive summary 13

Global market forecast 33

  • Market forecast by market: automotive, consumer, industrial, medical and avionics and high-end

Application overviews 37

  • Growth, pressure range, type of sensor used
  • Market forecast by type of sensors

Competitive landscape 46

  • MEMS ranking and global market share
  • Player positions by market
  • Geographical localization
  • Analysis of the value and supply chain
  • M&A and potential acquisitions
  • > Focus on China

Automotive market 66

  • Market segmentation and market forecast by application and ASP
  • Application descriptions and main trends
  • Electrification’s impact on powertrain business
  • Players’ market shares and supply chain analysis

Consumer market 97

  • Similar content to automotive

Industrial market 118

  • Similar content to automotive

Medical market 129

  • Similar content to automotive

Avionics and high end market 143

  • Similar content to automotive

MEMS pressure sensor technologies 154

  • History of MEMS pressure sensors
  • Position of main pressure sensor technologies
  • Pressure range by application
  • Description of the main pressure sensor technologies
  • Position of piezoresistive vs capacitive MEMS
  • Player adoption of piezoresistive and capacitive MEMS
  • Cost breakdown
  • Main technical trends
  • Technological roadmap

General Conclusions 176

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