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Shock Sensor Market to Reach US$ 2,726.7 Bn by 2030

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The global Shock Sensor market is expected to grow at a CAGR of around 18.2% over the forecast period 2021 to 2030 and expected to reach the market value of around US$ 2,726.7 billion by 2030.

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Growth Factors

 The increasing use of shock sensors in oil & gas exploration activities and products such as laptops, ATMs, bank vaults, burglar alarms, and sports & safety helmets is expected to remain the key factor driving their demand over the forecast period. The increasing number of smart city initiatives undertaken across different countries is expected to further fuel the shock sensors market growth.

Shock sensors are compact in size as well as affordable. These benefits are leading to their large-scale use by buyers in the consumer electronics segment. They are also deployed inside cars and homes, wherein any kind of forced entry or a slight tap triggers an alarm. Moreover, they are user-friendly and consumers can operate and track the alarm performance using a laptop or a smartphone. These easy-to-use features are leading to a surge in their demand.

Report Coverage 

Report Scope Details
Market Size USD 2,726.7 million by 2030
Growth Rate CAGR of 18.2% From 2021 to 2030
Base Year 2021
Forecast Period 2021 to 2030
Segments Covered Type, Material, End-Use
Regional Scope North America, Europe, Asia Pacific, Latin America, Middle East & Africa
Companies Mentioned TE Connectivity; Murata Manufacturing Co., Ltd.; PCB Piezotronics Inc; Honeywell International, Inc.; Dytran Instruments Inc; Mobitron AB; Meggitt SA; Spotsee; IMI Sensors; SignalQuest, LLC; Climax Technology Co., Ltd.; and i1 Biometrics.

By Type Analysis

Based on type, the shock sensor market has been classified into piezoelectric, piezoresistive, capacitors, strain gage, and others. The strain gage segment is expected to witness steady growth over the forecast period.

The strain gage segment is anticipated to emerge as the fastest-growing segment over the forecast period, especially in the North American and Asia Pacific regions. The growth of the segment can also be attributed to the improved properties and functional features of these sensors.

By Material Analysis

Based on the material used for manufacturing shock sensors, the market has been classified into tourmaline, quartz, salts, and gallium phosphate. Quartz is the most abundantly available, natural material used for manufacturing sensors.

Tourmaline is the most preferred material for manufacturing shock sensors used in underwater explorations. Gallium phosphate is a synthesized chemical used for manufacturing shock sensors that typically operate at an approximate temperature of 10000C in hazardous environments.

By End-Use Analysis

Based on end-use, the market has been segmented into automotive, aerospace, industrial, consumer electronics, and others. The automotive segment dominated the global market in 2020, followed by the aerospace and industrial segments.

the increasing terrorist activities and other forms of external aggression are encouraging most governments across the world to make higher investments for upgrading their aerospace and defense equipment. Shock sensors are typically used in flight controls as well as actuation systems.

By Regional Analysis

The regions covered in the report are North America, Europe, Asia Pacific, Latin America, and MEA. The North American region dominated the market in 2018 owing to the presence of a well-established infrastructure in several industries and the improved after-sales services provided by the sensor manufacturers in the region.

The costs of shock sensors are expected to marginally reduce over the forecast period. The costs have been declining steadily over a while due to various reasons such as competition among manufacturers, advancements in technology, and so on. The demand is anticipated to increase manifold in a wide range of end-use applications, including automotive, industrial, and communication application areas.

Key Players

TE Connectivity; Murata Manufacturing Co., Ltd.; PCB Piezotronics Inc; Honeywell International, Inc.; Dytran Instruments Inc; Mobitron AB; Meggitt SA; Spotsee; IMI Sensors; SignalQuest, LLC; Climax Technology Co., Ltd.; and i1 Biometrics.

Market Segmentation

  • Type
    • Piezoelectric
    • Piezoresistive
    • Capacitors
    • Strain Gage
    • Others
  • Material
    • Tourmaline
    • Quartz
    • Salts
    • Gallium Phosphate
  • End-Use
    • Automotive
    • Aerospace
    • Industrial
    • Consumer Electronics
    • Others
  • Regional
    • North America
      • The U.S.
      • Canada
    • Europe
      • U.K.
      • Germany
    • Asia Pacific
      • China
      • India
      • Japan
    • Latin America
      • Brazil
      • Colombia
    • Middle East & Africa

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Reasons to Purchase this Report:

– Market segmentation analysis including qualitative and quantitative research incorporating the impact of economic and policy aspects
– Regional and country level analysis integrating the demand and supply forces that are influencing the growth of the market.
– Market value USD Million and volume Units Million data for each segment and sub-segment
– Competitive landscape involving the market share of major players, along with the new projects and strategies adopted by players in the past five years
– Comprehensive company profiles covering the product offerings, key financial information, recent developments, SWOT analysis, and strategies employed by the major market players

Table of Contents

Chapter 1.  Introduction

1.1.  Research Objective

1.2.  Scope of the Study

1.3.  Definition

Chapter 2.  Research Methodology

2.1.  Research Approach

2.2.  Data Sources

2.3.  Assumptions & Limitations

Chapter 3.  Executive Summary

3.1.  Market Snapshot

Chapter 4.  Market Variables and Scope

4.1.  Introduction

4.2.  Market Classification and Scope

4.3.  Industry Value Chain Analysis

4.3.1.    Raw Material Procurement Analysis

4.3.2.    Sales and Distribution Channel Analysis

4.3.3.    Downstream Buyer Analysis

Chapter 5.  Market Dynamics Analysis and Trends

5.1.  Market Dynamics

5.1.1.    Market Drivers

5.1.2.    Market Restraints

5.1.3.    Market Opportunities

5.2.  Porter’s Five Forces Analysis

5.2.1.    Bargaining power of suppliers

5.2.2.    Bargaining power of buyers

5.2.3.    Threat of substitute

5.2.4.    Threat of new entrants

5.2.5.    Degree of competition

Chapter 6.  Competitive Landscape

6.1.1.    Company Market Share/Positioning Analysis

6.1.2.    Key Strategies Adopted by Players

6.1.3.    Vendor Landscape

6.1.3.1.        List of Suppliers

6.1.3.2.        List of Buyers

Chapter 7.  Global Shock Sensor Market, By Type

7.1.  Shock Sensor Market, by Type, 2021-2030

7.1.1.    Piezoelectric

7.1.1.1.        Market Revenue and Forecast (2017-2030)

7.1.2.    Piezoresistive

7.1.2.1.        Market Revenue and Forecast (2017-2030)

7.1.3.    Capacitors

7.1.3.1.        Market Revenue and Forecast (2017-2030)

7.1.4.    Strain Gage

7.1.4.1.        Market Revenue and Forecast (2017-2030)

Chapter 8.  Global Shock Sensor Market, By Material

8.1.  Shock Sensor Market, by Material, 2021-2030

8.1.1.    Tourmaline

8.1.1.1.        Market Revenue and Forecast (2017-2030)

8.1.2.    Quartz

8.1.2.1.        Market Revenue and Forecast (2017-2030)

8.1.3.    Salts

8.1.3.1.        Market Revenue and Forecast (2017-2030)

8.1.4.    Gallium Phosphate

8.1.4.1.        Market Revenue and Forecast (2017-2030)

Chapter 9.  Global Shock Sensor Market, By End User

9.1.  Shock Sensor Market, by End User, 2021-2030

9.1.1.    Automotive

9.1.1.1.        Market Revenue and Forecast (2017-2030)

9.1.2.    Aerospace

9.1.2.1.        Market Revenue and Forecast (2017-2030)

9.1.3.    Industrial

9.1.3.1.        Market Revenue and Forecast (2017-2030)

9.1.4.    Consumer Electronics

9.1.4.1.        Market Revenue and Forecast (2017-2030)

Chapter 10.      Global Shock Sensor Market, Regional Estimates and Trend Forecast

10.1.        North America

10.1.1.  Market Revenue and Forecast, by Type (2017-2030)

10.1.2.  Market Revenue and Forecast, by Material (2017-2030)

10.1.3.  Market Revenue and Forecast, by End User (2017-2030)

10.1.4.  U.S.

10.1.4.1.      Market Revenue and Forecast, by Type (2017-2030)

10.1.4.2.      Market Revenue and Forecast, by Material (2017-2030)

10.1.4.3.      Market Revenue and Forecast, by End User (2017-2030)

10.1.5.  Rest of North America

10.1.5.1.      Market Revenue and Forecast, by Type (2017-2030)

10.1.5.2.      Market Revenue and Forecast, by Material (2017-2030)

10.1.5.3.      Market Revenue and Forecast, by End User (2017-2030)

10.2.        Europe

10.2.1.  Market Revenue and Forecast, by Type (2017-2030)

10.2.2.  Market Revenue and Forecast, by Material (2017-2030)

10.2.3.  Market Revenue and Forecast, by End User (2017-2030)

10.2.4.  UK

10.2.4.1.      Market Revenue and Forecast, by Type (2017-2030)

10.2.4.2.      Market Revenue and Forecast, by Material (2017-2030)

10.2.4.3.      Market Revenue and Forecast, by End User (2017-2030)

10.2.5.  Germany

10.2.5.1.      Market Revenue and Forecast, by Type (2017-2030)

10.2.5.2.      Market Revenue and Forecast, by Material (2017-2030)

10.2.5.3.      Market Revenue and Forecast, by End User (2017-2030)

10.2.6.  France

10.2.6.1.      Market Revenue and Forecast, by Type (2017-2030)

10.2.6.2.      Market Revenue and Forecast, by Material (2017-2030)

10.2.6.3.      Market Revenue and Forecast, by End User (2017-2030)

10.2.7.  Rest of Europe

10.2.7.1.      Market Revenue and Forecast, by Type (2017-2030)

10.2.7.2.      Market Revenue and Forecast, by Material (2017-2030)

10.2.7.3.      Market Revenue and Forecast, by End User (2017-2030)

10.3.        APAC

10.3.1.  Market Revenue and Forecast, by Type (2017-2030)

10.3.2.  Market Revenue and Forecast, by Material (2017-2030)

10.3.3.  Market Revenue and Forecast, by End User (2017-2030)

10.3.4.  India

10.3.4.1.      Market Revenue and Forecast, by Type (2017-2030)

10.3.4.2.      Market Revenue and Forecast, by Material (2017-2030)

10.3.4.3.      Market Revenue and Forecast, by End User (2017-2030)

10.3.5.  China

10.3.5.1.      Market Revenue and Forecast, by Type (2017-2030)

10.3.5.2.      Market Revenue and Forecast, by Material (2017-2030)

10.3.5.3.      Market Revenue and Forecast, by End User (2017-2030)

10.3.6.  Japan

10.3.6.1.      Market Revenue and Forecast, by Type (2017-2030)

10.3.6.2.      Market Revenue and Forecast, by Material (2017-2030)

10.3.6.3.      Market Revenue and Forecast, by End User (2017-2030)

10.3.7.  Rest of APAC

10.3.7.1.      Market Revenue and Forecast, by Type (2017-2030)

10.3.7.2.      Market Revenue and Forecast, by Material (2017-2030)

10.3.7.3.      Market Revenue and Forecast, by End User (2017-2030)

10.4.        MEA

10.4.1.  Market Revenue and Forecast, by Type (2017-2030)

10.4.2.  Market Revenue and Forecast, by Material (2017-2030)

10.4.3.  Market Revenue and Forecast, by End User (2017-2030)

10.4.4.  GCC

10.4.4.1.      Market Revenue and Forecast, by Type (2017-2030)

10.4.4.2.      Market Revenue and Forecast, by Material (2017-2030)

10.4.4.3.      Market Revenue and Forecast, by End User (2017-2030)

10.4.5.  North Africa

10.4.5.1.      Market Revenue and Forecast, by Type (2017-2030)

10.4.5.2.      Market Revenue and Forecast, by Material (2017-2030)

10.4.5.3.      Market Revenue and Forecast, by End User (2017-2030)

10.4.6.  South Africa

10.4.6.1.      Market Revenue and Forecast, by Type (2017-2030)

10.4.6.2.      Market Revenue and Forecast, by Material (2017-2030)

10.4.6.3.      Market Revenue and Forecast, by End User (2017-2030)

10.4.7.  Rest of MEA

10.4.7.1.      Market Revenue and Forecast, by Type (2017-2030)

10.4.7.2.      Market Revenue and Forecast, by Material (2017-2030)

10.4.7.3.      Market Revenue and Forecast, by End User (2017-2030)

10.5.        Latin America

10.5.1.  Market Revenue and Forecast, by Type (2017-2030)

10.5.2.  Market Revenue and Forecast, by Material (2017-2030)

10.5.3.  Market Revenue and Forecast, by End User (2017-2030)

10.5.4.  Brazil

10.5.4.1.      Market Revenue and Forecast, by Type (2017-2030)

10.5.4.2.      Market Revenue and Forecast, by Material (2017-2030)

10.5.4.3.      Market Revenue and Forecast, by End User (2017-2030)

10.5.5.  Rest of LATAM

10.5.5.1.      Market Revenue and Forecast, by Type (2017-2030)

10.5.5.2.      Market Revenue and Forecast, by Material (2017-2030)

10.5.5.3.      Market Revenue and Forecast, by End User (2017-2030)

Chapter 11.  Company Profiles

11.1.              TE Connectivity

11.1.1.  Company Overview

11.1.2.  Product Offerings

11.1.3.  Financial Performance

11.1.4.  Recent Initiatives

11.2.              Murata Manufacturing Co., Ltd

11.2.1.  Company Overview

11.2.2.  Product Offerings

11.2.3.  Financial Performance

11.2.4.  Recent Initiatives

11.3.              PCB Piezotronics Inc

11.3.1.  Company Overview

11.3.2.  Product Offerings

11.3.3.  Financial Performance

11.3.4.  Recent Initiatives

11.4.              Honeywell International, Inc.

11.4.1.  Company Overview

11.4.2.  Product Offerings

11.4.3.  Financial Performance

11.4.4.  Recent Initiatives

11.5.              Dytran Instruments Inc

11.5.1.  Company Overview

11.5.2.  Product Offerings

11.5.3.  Financial Performance

11.5.4.  Recent Initiatives

11.6.              Mobitron AB

11.6.1.  Company Overview

11.6.2.  Product Offerings

11.6.3.  Financial Performance

11.6.4.  Recent Initiatives

11.7.              Meggitt SA

11.7.1.  Company Overview

11.7.2.  Product Offerings

11.7.3.  Financial Performance

11.7.4.  Recent Initiatives

11.8.              Spotsee

11.8.1.  Company Overview

11.8.2.  Product Offerings

11.8.3.  Financial Performance

11.8.4.  Recent Initiatives

11.9.              IMI Sensors

11.9.1.  Company Overview

11.9.2.  Product Offerings

11.9.3.  Financial Performance

11.9.4.  Recent Initiatives

11.10.           SignalQuest, LLC

11.10.1.               Company Overview

11.10.2.               Product Offerings

11.10.3.               Financial Performance

11.10.4.               Recent Initiatives

Chapter 12.  Research Methodology

12.1.              Primary Research

12.2.              Secondary Research

12.3.              Assumptions

Chapter 13.  Appendix

13.1.              About Us

13.2.              Glossary of Terms

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