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High-End Accelerometer Market Outlook 2019 | Shows Industry Overview, Size, Share, Remarkable Growth Factors, Types, and Applications Forecast to 2024


The “High-End Accelerometer Market” 2019 report provides market size (value and volume), market share, growth rate by types, applications, and combines both qualitative and quantitative methods to make micro and macro forecasts in different regions or countries. High-End Accelerometer Market report also aims to provide useful and comprehensive insights into current market trends and future growth scenarios. High-End Accelerometer market report contains information like SWOT analysis, business highlights, strength, weakness, threats and opportunities of industry.

Top Manufacturers of High-End Accelerometer Market Are:

  • Sercel SA
  • Safran Colibrys
  • Physical Logic AG
  • Innalabs Limited
  • Sensonor AS
  • Tronics Microsystems (EPCOS)
  • Bosch Sensortec GmbH
  • Thales SA
  • Analog Devices Inc.
  • Honeywell International Inc.
  • STMicroelectronics NV
  • TE Connectivity

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    Market Overview:

  • The global high-end accelerometer market was valued at USD 202.42 million in 2018, and it is expected to register a CAGR of 4.2% over the forecast period (2019-2024). The increasing adoption of MEMS technology has also played a significant role in expanding the application base for high-end accelerometers by scaling down the size and power consumption of these devices, without compromising on the performance metrics.
  • High-end accelerometers are also being increasingly used in navigation systems for high-speed trains and autonomous vehicles. These devices are widely used for performing shock and vibrational test for evaluating the performance of automobiles in duress.
  • The increased vibration levels of automated machinery in high-end industrial applications during high-speed operations, such as cutting or milling, are expected to damage critical materials and reduce precision. Such cases require higher stability to have higher machine control. Thus, high-end accelerometers are being adopted significantly for these applications.
  • Furthermore, increasing adoption of automated solutions aided the sales of triaxial accelerometers as they have low noise and temperature compensated design that can transmit the data with high precision and speed without any loss of data.

    Scope of the Report:

  • Accelerometers are capable of measuring acceleration, vibration, and tilt or shock. Thus, they are used in a diverse range of applications, such as industrial platform stabilization systems. High-end accelerometers are primarily used in high-grade applications for calculating the magnitude and direction of acceleration. Piezoelectric, capacitive and geophone technologies drive these systems as they have achieved reduced size and low-cost capabilities.

    High-End Accelerometer Market Report Answers the Following Questions:

    • What will the market size and the growth rate be in 2024?
    • What are the key factors driving the global High-End Accelerometer market?
    • What are the key market trends impacting the growth of the global High-End Accelerometer market?
    • What are the challenges to market growth?
    • Who are the key vendors in the global High-End Accelerometer market?
    • What are the market opportunities and threats faced by the vendors in the global High-End Accelerometer market?
    • Trending factors influencing the market shares of the relevant regions.
    • What are the key outcomes of the five forces analysis of the global High-End Accelerometer market?

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    Key Market Trends:

    Tactical Applications to Hold Major Share

    The limited number of measurements and the significantly high-cost of the system under test have historically generated demands on the part of tactical applications, such as military and aerospace customers for a high degree of reliability in accelerometer performance. When the high-end accelerometer is permanently integrated into the system for control and monitoring functions, the reliability requirements are intensified.

    High-end accelerometers for tactical grade applications are mainly used in the defense and military sectors. These devices operate with bias stability of less than 1mg, with a working range of 20 to 100g and temperature range starting from -55°C. A number of factors have notably contributed to the aforementioned increased reliability.

    The need for proper fabrication method is of utmost importance for high-performance accelerometers. In order to achieve high-performance tactical grade accelerometers, high aspect ratio devices should be fabricated with great accuracy.

    North America to Hold Major Share

    The North American region is witnessing a growth in the development of new high-performance accelerometers, as companies in the region are investing in introducing advanced and innovative accelerometers. The increased spending by the US defense to acquire high-performance equipment is the major factor driving the growth of high-end accelerometers in the country. Moreover, according to the Small Business Innovation Research (or SBIR) program, the objective of the US Navy is to develop and demonstrate an innovative acceleration technology applicable to inertial navigation, real-time gravimetry, and gradient measurements that can be met by introducing improvements and innovative changes to an existing government-owned accelerometer technology. Increasing mining and exploration activities in the region also pose a high demand for high-end accelerometers. According to Mining Engineering, the United States and Canada together accounted for 33.33% of active mineral exploration sites in 2017.

    Market Dynamics: –

    • Drivers: (Developing regions and growing markets)
    • Limitations: (Regional, Key Player facing Issues, Future Barriers for growth)
    • Opportunities: (Regional, Growth Rate, Competitive, Consumption)

    The report provides key statistics on the market status of the High-End Accelerometer Market manufacturers and is a valuable source of guidance and direction for companies and individuals interested in the High-End Accelerometer.

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    Report Objectives:

    • Analyzing the size of the High-End Accelerometer market on the basis of value and volume.
    • Accurately calculating the market segments, consumption, and other dynamic factors of different sections of the global High-End Accelerometer market.
    • Determining the key dynamics of the High-End Accelerometer market.
    • Highlighting significant trends of the High-End Accelerometer market in terms of manufacture, revenue, and sales.
    • Deeply summarizing top players of the High-End Accelerometer market and showing how they compete in the industry.
    • Studying industry processes and costs, product pricing, and various trends related to them.
    • Displaying the performance of different regions and countries in the global High-End Accelerometer market.

    Detailed TOC of High-End Accelerometer Market Report 2019-2024:

    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 Industry Value Chain Analysis
    4.4 Introduction to Market Drivers and Restraints
    4.5 Market Drivers
    4.5.1 Increasing Adoption of MEMS Technology
    4.5.2 Inclination of Growth Toward Defense and Aerospace
    4.5.3 Technological Advancements in Navigation Systems
    4.6 Market Restraints
    4.6.1 Operational Complexity Coupled With High Maintenance Costs

    5.1 By Application
    5.1.1 Tactical Applications
    5.1.2 Navigational Applications
    5.1.3 Industrial Applications
    5.1.4 Automotive Applications
    5.2 Geography
    5.2.1 North America
    5.2.2 Europe
    5.2.3 Asia-Pacific
    5.2.4 Rest of the World

    6.1 Company Profiles
    6.1.1 Sercel SA
    6.1.2 Safran Colibrys
    6.1.3 Physical Logic AG
    6.1.4 Innalabs Limited
    6.1.5 Sensonor AS
    6.1.6 Tronics Microsystems (EPCOS)
    6.1.7 Bosch Sensortec GmbH
    6.1.8 Thales SA
    6.1.9 Analog Devices Inc.
    6.1.10 Honeywell International Inc.
    6.1.11 STMicroelectronics NV
    6.1.12 TE Connectivity




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