Press release -

Optical Position Sensors in Semiconductor Modules and Chip Market Worth Around 2766.2 Million USD by 2023 | Significant CAGR 9.8% In Global Market

Global Optical Position Sensors in Semiconductor Modules and Chip Market are expected to increase from USD 1,440.7 million in 2016, to USD 2,766.2 million in 2023, at a significant CAGR of 9.8% from 2017 to 2023.

The factors driving the optical position sensors in semiconductors modules and chip market are increasing demand for smart devices across the globe, increasing application of OPS in automotive systems. Technological advancement and ongoing innovation in the field of electronics reduces the size of chipsets contributed towards the growth of the global OPS market. Safety concerns in automobile industry and government initiatives to enhance safety in automobile sector and the emerging concept of virtual reality and wearable medical devices for remote monitoring of patients fuels the global OPS market.

The years used for the assessment are as follows:

Historical year : 2014, 2015
Base year : 2016
Forecast period : 2017 – 2023

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RESEARCH METHODOLOGY

The research and analysis is based on data and information obtained from various primary and secondary sources. The data obtained is validated by interacting with the companies of the concerned domain. The steps involved in the research methodology are;

Obtaining historical data of the market based on news, articles, publications, annual reports, white papers, and other secondary sources
Interacting with key opinion leaders of the market and developing data points based on interaction with them
Study of past trends in the market and their year on year Impact on the market size and share
Analyzing the collected data points
Bridging the data points to calculate the total Optical position sensors in semiconductor modules and chip market and it various segments
Anticipating potential risks
Analyzing market forces such as drivers, restraints, and opportunities to assess new growth areas for the Optical position sensors in semiconductor modules and chip market
Finalizing the overall size and share for the global optical position sensors in semiconductor modules and chip market

OBJECTIVES:

To classify the global Optical position sensors in semiconductor modules and chip market into segments by payload, application, industries and region and analyze their growth prospects individually
To analyze market trends, opportunities, drivers and restraints associated with the optical position sensors in semiconductor modules and chip market
Profiling key companies operating in the global optical position sensors in semiconductor modules and chip market
To study market response with respect to the mergers and acquisitions in the industry

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MARKET SCOPE

The research scope for global optical position sensors in semiconductor modules and chip market is as follows:

By Types
One-Dimensional optical position sensors
Two-Dimensional optical position sensors
Multi-Axial optical position sensors

By Application
Aerospace & Defense
Automotive
Consumer Electronics
Healthcare
Others

By Region
North America
Europe
Asia-Pacific
Rest of the World (RoW)

FREE ANALYSIS

The global optical position sensors (OPS) in semiconductors modules and chip market are expected to increase from USD 1,440.7 million in 2016, to USD 2,766.2 million in 2023, at a significant CAGR of 9.8% from 2017 to 2023. The factors driving the optical position sensors in semiconductors modules and chip market are increasing demand for smart devices across the globe, increasing application of OPS in automotive systems. Technological advancement and ongoing innovation in the field of electronics reduces the size of chipsets contributed towards the growth of the global OPS market. And, the use of OPS in semiconductors modules and chip technology in the various sectors such as automotive, consumer electronics and healthcare propels the growth of the global OPS market. Safety concerns in automobile industry and government initiatives to enhance safety in automobile sector and the emerging concept of virtual reality and wearable medical devices for remote monitoring of patients fuels the global OPS market. Lack of international standards to determine the performance of the sensors may hinder the growth of the global OPS in semiconductors modules and chip market.

In automobile industry, the OPS technology is used to detect the object before collision and vehicle position to help the driver with parking assistance. OPS technology take care of the driver by providing security while driving in case of an accident and releasing the air bags accordingly. Furthermore, the increasing demand of hand held devices such as smart-phones and tablets with power management features and gesture detection makes OPS technology more popular among mobile device manufacturers and users.

Based on types, the multi-axial optical position sensors segment held the major share of the optical position sensors in semiconductors modules and chip market in 2016 owing to the factors such as growing demand for commercial aircrafts in aerospace and defense industry. One-dimensional optical position sensors segment is expected to be the fastest growing segment. On the basis of application, the consumer electronics segment was the largest segment in 2016 while healthcare sector is anticipated to be the fastest growing segment and the OPS technology offers an opportunity for virtual reality, molecular modeling and medical training concept with futuristic approach.

Geographically, North American region held the largest share of the global optical position sensors market in 2016. The rising safety concerns in automobiles sector, government initiatives to implement safety features and technological advancement in the field of electronics and chipsets are the major driving factors for the largest share of the OPS market in the years to come. Asia-Pacific region is expected to hold the major share of the optical position sensors in semiconductors modules and chip market during the forecast period. The factors driving the growth of the OPS market in the Asia-Pacific region are increasing demand of smart-phones and hand held devices and rising disposable income in the region.

The key players operating in the optical position sensors in semiconductor modules and chips market include Panasonic Corporation, Siemens AG, Sensata Technologies, First Sensor AG, Micro-Epsilon, Hamamatsu Photonics K.K., Opto Diode Corporation, Melexis N.V., Balluff GmbH and Sharp Corporation.

Available customization:

With the given market information, Ameco research offers customization's in line with the company's specific wishes. The following customization choices unit of measurement accessible for the report:
Regional and country-level analysis of the Optical Position Sensors in Semiconductor Modules and Chip Market, by end-use.
Detailed analysis and profiles of additional market players.

Table of Contents

Optical Position Sensors in Semiconductor Modules and Chip Market Outlook, Trend and Opportunity Analysis, Competitive Insights, Actionable Segmentation & Forecast 2023

CHAPTER 1. Market Scope and Methodology

1.1. Market Definition

1.2. Market Segmentation

1.2.1. Market Breakdown, By Types

1.2.2. Market Breakdown, By Application

1.2.3. Market Breakdown, By Region

1.3. Research Methodology

1.4. Executive Summary

CHAPTER 2. Market Outlook

2.1. Introduction

2.2. Landscape

2.2.1. Market Share

2.2.2. Opportunities

2.2.2.1. Optical position sensors to be implemented in virtual reality tools

2.2.3. Trends

2.2.3.1. Increasing usage in aerospace, defense, automotive, consumer electronics and healthcare

2.2.4. Growth Drivers

2.2.4.1. Increasing application in automotive systems

2.2.4.2. Increasing demand for smart devices globally

2.2.5. Impact Analysis of Drivers on Future Forecast of the Market

2.2.6. Restraints of the Market

2.2.6.1. Lack of international standards to determine the performance of sensors

2.2.7. Impact Analysis of Restraints on Future Forecast of the Market

CHAPTER 3. COMPETITIVE LANDSCAPE

3.1. Player Positioning Analysis, 2016

3.2. Key Strategies Adopted by Leading Players

CHAPTER 4. Market Entry Strategy

4.1. Regulatory Affairs

4.2. Competitive Analysis

4.3. Investment Analysis

4.4. Recommendations

CHAPTER 5. Optical Position Sensors in Semiconductor Modules and Chip Market Size and Forecast (2013 – 2023)

5.1. Optical Position Sensors in Semiconductor Modules and Chip Market, By Types

5.1.1. One-Dimensional optical position sensors

5.1.2. Two-Dimensional optical position sensors

5.1.3. Multi-Axial optical position sensors

5.2. Optical Position Sensors in Semiconductor Modules and Chip Market, By Application

5.2.1. Aerospace & Defense

5.2.2. Automotive

5.2.3. Consumer Electronics

5.2.4. Healthcare

5.2.5. Others

5.3. Optical Position Sensors in Semiconductor Modules and Chip Market, By Region

5.3.1. North America

5.3.2. Europe

5.3.3. Asia-Pacific

5.3.4. Rest of the World

CHAPTER 6. Optical Position Sensors in Semiconductor Modules and Chip Market, By Region

6.1. North America Optical Position Sensors in Semiconductor Modules and Chip Market

6.1.1. North America Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.1.2. North America Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.1.3. North America Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.1.4. North America Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.1.5. North America Optical Position Sensors in Semiconductor Modules and Chip Market, By Country

6.1.5.1. The U.S.

6.1.5.1.1. U.S. Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.1.5.1.2. U.S. Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.1.5.1.3. U.S. Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.1.5.1.4. U.S. Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.1.5.2. Canada

6.1.5.2.1. Canada Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.1.5.2.2. Canada Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.1.5.2.3. Canada Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.1.5.2.4. Canada Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.1.5.3. Mexico

6.1.5.3.1. Mexico Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.1.5.3.2. Mexico Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.1.5.3.3. Mexico Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.1.5.3.4. Mexico Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.2. Europe Optical Position Sensors in Semiconductor Modules and Chip Market

6.2.1. Europe Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.2.2. Europe Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.2.3. Europe Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.2.4. Europe Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.2.5. Europe Optical Position Sensors in Semiconductor Modules and Chip Market, By Country

6.2.5.1. Germany

6.2.5.1.1. Germany Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.2.5.1.2. Germany Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.2.5.1.3. Germany Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.2.5.1.4. Germany Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.2.5.2. France

6.2.5.2.1. France Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.2.5.2.2. France Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.2.5.2.3. France Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.2.5.3. Italy

6.2.5.3.1. Italy Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.2.5.3.2. Italy Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.2.5.3.3. Italy Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.2.5.3.4. Italy Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.2.5.4. The U.K.

6.2.5.4.1. U.K. Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.2.5.4.2. U.K. Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.2.5.4.3. U.K. Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.2.5.4.4. U.K. Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.2.5.5. Rest of Europe

6.2.5.5.1. Rest of Europe Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.2.5.5.2. Rest of Europe Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.2.5.5.3. Rest of Europe Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.2.5.5.4. Rest of Europe Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.3. Asia-Pacific Optical Position Sensors in Semiconductor Modules and Chip Market

6.3.1. Asia-Pacific Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (USD Million)

6.3.2. Asia-Pacific Optical Position Sensors in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.3.3. Asia-Pacific Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (USD Million)

6.3.4. Asia-Pacific Optical Position Sensors in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.3.5. Asia-Pacific Optical Position Sensors in Semiconductor Modules and Chip Market, By Country

6.3.5.1. China

6.3.5.1.1. China Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (USD Million)

6.3.5.1.2. China Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.3.5.1.3. China Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (USD Million)

6.3.5.1.4. China Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.3.5.2. Japan

6.3.5.2.1. Japan Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (USD Million)

6.3.5.2.2. Japan Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.3.5.2.3. Japan Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (USD Million)

6.3.5.2.4. Japan Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.3.5.3. India

6.3.5.3.1. India Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (USD Million)

6.3.5.3.2. India Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.3.5.3.3. India Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (USD Million)

6.3.5.4. South Korea

6.3.5.4.1. South Korea Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (USD Million)

6.3.5.4.2. South Korea Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.3.5.4.3. South Korea Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (USD Million)

6.3.5.4.4. South Korea Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.3.5.5. Rest of Asia-Pacific

6.3.5.5.1. Rest of Asia-Pacific Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (USD Million)

6.3.5.5.2. Rest of Asia-Pacific Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.3.5.5.3. Rest of Asia-Pacific Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (USD Million)

6.3.5.5.4. Rest of Asia-Pacific Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.4. Rest of the World (RoW) Optical Position Sensor in Semiconductor Modules and Chip Market

6.4.1. Rest of the World (RoW) Optical Position Sensor in Semiconductor Modules and Chip Market, By Type (USD Million)

6.4.2. Rest of the World (RoW) Optical Position Sensor in Semiconductor Modules and Chip Market, By Type (Thousand Units)

6.4.3. Rest of the World (RoW) Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (USD Million)

6.4.4. Rest of the World (RoW) Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.4.5. Rest of the World (RoW) Optical Position Sensor in Semiconductor Modules and Chip Market, By Country

6.4.5.1. South America

6.4.5.1.1. South America Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (USD Million)

6.4.5.1.2. South America Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.4.5.1.3. South America Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (USD Million)

6.4.5.1.4. South America Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (Thousand Units)

6.4.5.2. Middle East

6.4.5.2.1. Middle East Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (USD Million)

6.4.5.2.2. Middle East Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.4.5.2.3. Middle East Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (USD Million)

6.4.5.3. Africa

6.4.5.3.1. Africa Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (USD Million)

6.4.5.3.2. Africa Optical Position Sensor in Semiconductor Modules and Chip Market, By Types (Thousand Units)

6.4.5.3.3. Africa Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (USD Million)

6.4.5.3.4. Africa Optical Position Sensor in Semiconductor Modules and Chip Market, By Application (Thousand Units)

CHAPTER 7. COMPETITIVE ANALYSIS

7.1. Porters Five Forces Analysis

7.1.1. Bargaining Power of Buyers

7.1.2. Bargaining Power of Suppliers

7.1.3. Threat of New Entrants

7.1.4. Intensity of Rivalry

7.1.5. Threat of Substitutes

CHAPTER 8. Key Players and Strategic Developments

8.1. Sharp Corporation

8.1.1. Business Overview

8.1.2. Product and Service Offering

8.1.3. Financial Overview

8.1.4. Strategic Developments

8.2. First Sensors AG

8.2.1. Business Overview

8.2.2. Product and Service Offering

8.2.3. Financial Overview

8.2.4. Strategic Developments

8.3. Balluff GmbH

8.3.1. Business Overview

8.3.2. Product and Service Offering

8.3.3. Financial Overview

8.3.4. Strategic Developments

8.4. Siemens AG

8.4.1. Business Overview

8.4.2. Product and Service Offering

8.4.3. Financial Overview

8.4.4. Strategic Developments

8.5. Sensata Technologies

8.5.1. Business Overview

8.5.2. Product and Service Offering

8.5.3. Financial Overview

8.5.4. Strategic Developments

8.6. Micro-Epsilon

8.6.1. Business Overview

8.6.2. Product and Service Offering

8.6.3. Financial Overview

8.6.4. Strategic Developments

8.7. Melexis N.V.

8.7.1. Business Overview

8.7.2. Product and Service Offering

8.7.3. Financial Overview

8.7.4. Strategic Developments

8.8. Hamamatsu Photonics K.K.

8.8.1. Business Overview

8.8.2. Product and Service Offering

8.8.3. Financial Overview

8.8.4. Strategic Developments

8.9. Panasonic Corporation

8.9.1. Business Overview

8.9.2. Product and Service Offering

8.9.3. Financial Overview

8.9.4. Strategic Developments

8.10. Opto Diode Corporation

8.10.1. Business Overview

8.10.2. Product and Service Offering

8.10.3. Financial Overview

8.10.4. Strategic Developments

CHAPTER 9. Research Approach

9.1. Initial Data Search

9.2. Secondary Research

9.3. Primary Research

9.4. Scope and Assumptions

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