Linear Resonant Actuator Market: By Application & By Region - Forecast 2016-2021

  • ID: 3920086
  • Report
  • 157 pages
  • IndustryARC
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A linear resonant actuator is a motor used for production of an oscillating force across a single axis. A linear resonant actuator uses AC voltage to drive a voice coil pressed against a moving mass connected to a spring. When the voice coil is driven at the resonant frequency of the spring, the actuator vibrates with an observable force. Although the frequency and amplitude of a linear resonant actuator may be adjusted by changing the AC input, the actuator must be driven at its resonant frequency to generate a meaningful amount of force for a large current. Thus, it is used as a key component in haptics technology. The eccentric rotating mass (ERM) motor and linear resonant actuator (LRA) is two of the most common types of haptic actuator used in the market today.

The haptics technology uses the sense of touch in devices to provide information to the user. This technology can be incorporated into products by using actuator or motors which generate vibration. Many routine devices are haptic enabled such as smartphone dial pads, tablets, and gaming consoles which offer touch vibration feedback to the user; it also allows the users to know that their inputs have been recorded successfully. Haptic technology enables the users to sense and manipulate 3D objects with respect to characteristics like shape, texture, weight and temperature. In the recent past, the haptics technology has attracted the attention of scientists and is also being utilized for various applications.

This report identifies the global Linear Resonant Actuator market size in for the year 2014-2016, and forecast of the same for year 2021. It also highlights the potential growth opportunities in the coming years, while also reviewing the market drivers, restraints, growth indicators, challenges, market dynamics, competitive landscape and other key aspects with respect to global Linear Resonant Actuator market.

Geographically, North America is a key market for Linear Resonant actuator. Asia-Pacific is estimated to witness the highest growth during the forecast period and North America is estimated to hold the highest share in Linear Resonant Actuator market.
This report segments global Linear Resonant Actuator market on the basis of type, application, and regional market as follows:
Global Linear Resonant Actuator Market, by Application: Automotive, Consumer, Medical and Others
This report has been further segmented into major regions, which includes detailed analysis of each region such as: North America, Europe, Asia-Pacific (APAC) and Rest of the World (RoW) covering all the major country level markets in each of the region.

This report identifies all the major companies operating in the global Linear Resonant Actuator market. Some of the major companies’ profiles in detail are as follows:
Immersion Corporation
Texas Instruments
AAC Technologies
Johnson Electric
Densitron Technologies
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1. Global Linear Resonant Actuator – Market Overview

2. Executive Summary

3. Linear Resonant Actuator Market Landscape
3.1. Market Share Analysis
3.2. Comparative Analysis
3.3. Product Benchmarking
3.4. End User Profiling
3.5. Top 5 Financials Analysis

4. Global Linear Resonant Actuator – Market Forces
4.1. Drivers
4.1.1. Growth of Haptics Technology Market
4.2. Restraints
4.2.1. Increasing Demand for ERM Motor
4.3. Opportunities
4.3.1. Growth of Target Markets
4.4. Challenges
4.5. Porter’s Five Forces Analysis
4.5.1. Bargaining Power of Suppliers
4.5.2. Bargaining Power of Buyers
4.5.3. Threat of New Entrants
4.5.4. Threat of Substitutes
4.5.5. Degree of Competition

5. Global Linear Resonant Actuator Market By Application
5.1. Consumer
5.2. Automotive
5.3. Medical
5.4. Others

6. Global Linear Resonant Actuator Market By Geography
6.1. Europe
6.1.1. Germany
6.1.2. France
6.1.3. Italy
6.1.4. Spain
6.1.5. Russia
6.1.6. U.K.
6.1.7. Rest of Europe
6.2. Asia Pacific
6.2.1. China
6.2.2. India
6.2.3. Japan
6.2.4. South Korea
6.2.5. Rest of Asia-Pacific
6.3. North America
6.3.1. U.S.
6.3.2. Canada
6.3.3. Mexico
6.4. Rest of the World (RoW)
6.4.1. Brazil
6.4.2. Rest of RoW

7. Global Linear Resonant Actuator – Market Entropy
7.1. Expansion
7.2. Technological Developments
7.3. Merger & Acquisitions and Joint Ventures
7.4. Supply- Contract

8. Company Profiles
8.1. Immersion Corporation
8.1.1. Introduction
8.1.2. Financials
8.1.3. Key Insights
8.1.4. Key Strategy
8.1.5. Product Portfolio
8.1.6. SWOT Analysis
8.2. Texas Instruments
8.2.1. Introduction
8.2.2. Financials
8.2.3. Key Insights
8.2.4. Key Strategy
8.2.5. Product Portfolio
8.2.6. SWOT Analysis
8.3. AAC Technologies
8.3.1. Introduction
8.3.2. Financials
8.3.3. Key Insights
8.3.4. Key Strategy
8.3.5. Product Portfolio
8.3.6. SWOT Analysis
8.4. Johnson Electric
8.4.1. Introduction
8.4.2. Financials
8.4.3. Key Insights
8.4.4. Key Strategy
8.4.5. Product Portfolio
8.4.6. SWOT Analysis
8.5. Densitron Technologies
8.5.1. Introduction
8.5.2. Financials
8.5.3. Key Insights
8.5.4. Key Strategy
8.5.5. Product Portfolio
8.5.6. SWOT Analysis
8.6. Precision Microdrives
8.6.1. Introduction
8.6.2. Financials
8.6.3. Key Insights
8.6.4. Key Strategy
8.6.5. Product Portfolio
8.6.6. SWOT Analysis
8.7. Tactus Technology
8.7.1. Introduction
8.7.2. Financials
8.7.3. Key Insights
8.7.4. Key Strategy
8.7.5. Product Portfolio
8.7.6. SWOT Analysis
8.8. Haption SA
8.8.1. Introduction
8.8.2. Financials
8.8.3. Key Insights
8.8.4. Key Strategy
8.8.5. Product Portfolio
8.8.6. SWOT Analysis
8.9. 3D System Corporation
8.9.1. Introduction
8.9.2. Financials
8.9.3. Key Insights
8.9.4. Key Strategy
8.9.5. Product Portfolio
8.9.6. SWOT Analysis
8.10. Maxim Integrated Products Inc.
8.10.1. Introduction
8.10.2. Financials
8.10.3. Key Insights
8.10.4. Key Strategy
8.10.5. Product Portfolio
8.10.6. SWOT Analysis
*More than 40 Companies are profiled in this Research Report, Complete List available on Request*
"*Financials would be provided on a best efforts basis for private companies"

9. Appendix
9.1. Abbreviations
9.2. Sources
9.3. Research Methodology
9.4. Expert Insights
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