Global Collision Avoidance Sensors Market Size Study, By Application (FCWS, Parking Assistance, LDWS, BDS and Adaptive Cruise Control), By Technology (LiDAR, Ultrasound, Camera, and Radar,), and By Regional (North America, Europe, Asia Pacific, Latin America, and Rest of the World) Forecasts, 2018-2025

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Global Collision Avoidance Sensors Market valued approximately USD 3.13 billion in 2016 is forecasted to grow with a healthy growth rate of more than 21.94% over the forecast period 2018-2025. The major factors anticipated augmenting the market are high focus on R&D by automobile manufacturers, rise in sales of utility vehicles, sports utility vehicles (SUVs), and high-end luxury vehicles, rising no. of developments in the fields of camera, ultrasound technologies, LiDAR, & radar, improved consumer awareness, and updated safety ratings by regulatory bodies. Collision avoidance sensors use various types of proximity sensors to detect the presence of an object or obstruction. These are a part of the collision avoidance system which is an automobile safety system designed to prevent or reduce the severity of a collision.

The regional analysis of Global Collision Avoidance Sensors Market is considered for the key regions such as Asia Pacific, North America, Europe, Latin America and Rest of the World. Europe are the significant region across the world in terms of market share. Whereas, this region is also expected to exhibit higher growth rate / CAGR over the forecast period 2018-2025.

Global Collision Avoidance Sensors MarketThe objective of the study is to define market sizes of different segments & countries in recent years and to forecast the values to the coming eight years. The report is designed to incorporate both qualitative and quantitative aspects of the industry within each of the regions and countries involved in the study. Furthermore, the report also caters the detailed information about the crucial aspects such as driving factors & challenges which will define the future growth of the market. Additionally, the report shall also incorporate available opportunities in micro markets for stakeholders to invest along with the detailed analysis of competitive landscape and product offerings of key players. The detailed segments and sub-segment of the market are explained below:

By Application:

  • Forward Collision Warning System (FCWS)
  • Parking Assistance
  • Lane Departure Warning System (LDWS)
  • Blind Spot Detection (BDS)
  • Adaptive Cruise Control
  • Others

By Technology:

  • LiDAR
  • Ultrasound
  • Camera
  • Rada

By Regions:

  • North America
    • U.S.
    • Canada
  • Europe
    • UK
    • Germany
  • Asia Pacific
    • China
    • India
    • Japan
  • Latin America
    • Brazil
    • Mexico
  • Rest of the World

Furthermore, years considered for the study are as follows:

Historical year – 2015, 2016

Base year – 2017

Forecast period – 2018 to 2025

The industry is seeming to be fairly competitive. Some of the leading market players include Infineon Technologies AG, Delphi Automotive, Panasonic Corporation, NXP Semiconductors, Continental AG, Murata Manufacturing Co., Ltd., Texas Instruments, Inc., Robert Bosch GmbH, Takata Corporation, Sensata Technologies, Inc., and so on. The fierce competitiveness has made these players spend in product developments to improve the customer’s requirements.

Target Audience of the Collision Avoidance Sensors Market Study:

  • Key Consulting Companies & Advisors
  • Large, medium-sized, and small enterprises
  • Venture capitalists
  • Value-Added Resellers (VARs)
  • Third-party knowledge providers
  • Investment bankers
  • Investors

Chapter 1.           Global Collision Avoidance Sensors Market Definition & Scope

1.1.         Research Objective

1.2.         Market Definition

1.3.         Scope of The Study

1.4.         Years Considered for The Study

1.5.         Currency Conversion Rates

1.6.         Report Limitation

Chapter 2.           Research Methodology

2.1.         Research Process

2.1.1.     Data Mining

2.1.2.     Analysis

2.1.3.     Market Estimation

2.1.4.     Validation

2.1.5.     Publishing

2.2.         Research Assumption

Chapter 3.           Executive Summary

3.1.         Global & Segmental Market Estimates & Forecasts, 2015-2025 (USD Billion)

3.2.         Key Trends

Chapter 4.           Global Collision Avoidance Sensors Market Dynamics

4.1.         Growth Prospects

4.1.1.     Drivers

4.1.2.     Restraints

4.1.3.     Opportunities

4.2.         Industry Analysis

4.2.1.     Porter’s 5 Force Model

4.2.2.     PEST Analysis

4.2.3.     Value Chain Analysis

4.3.         Analyst Recommendation & Conclusion

Chapter 5.           Global Collision Avoidance Sensors Market by Application

5.1.         Market Snapshot

5.2.         Market Performance – Potential Model

5.3.         Collision Avoidance Sensors Market, Sub Segment Analysis

5.3.1.     Forward Collision Warning System (FCWS)

5.3.1.1. Market estimates & forecasts, 2015-2025 (USD Billion)

5.3.1.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

5.3.2.     Parking Assistance

5.3.2.1. Market estimates & forecasts, 2015-2025 (USD Billion)

5.3.2.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

5.3.3.     Lane Departure Warning System (LDWS)

5.3.3.1. Market estimates & forecasts, 2015-2025 (USD Billion)

5.3.3.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

5.3.4.     Blind Spot Detection (BDS)

5.3.4.1. Market estimates & forecasts, 2015-2025 (USD Billion)

5.3.4.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

5.3.5.     Adaptive Cruise Control

5.3.5.1. Market estimates & forecasts, 2015-2025 (USD Billion)

5.3.5.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

5.3.6.     Others

5.3.6.1. Market estimates & forecasts, 2015-2025 (USD Billion)

5.3.6.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

Chapter 6.           Global Collision Avoidance Sensors Market by Technology

6.1.         Market Snapshot

6.2.         Market Performance – Potential Model

6.3.         Collision Avoidance Sensors Market, Sub Segment Analysis

6.3.1.     LiDAR

6.3.1.1. Market estimates & forecasts, 2015-2025 (USD Billion)

6.3.1.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

6.3.2.     Ultrasound

6.3.2.1. Market estimates & forecasts, 2015-2025 (USD Billion)

6.3.2.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

6.3.3.     Camera

6.3.3.1. Market estimates & forecasts, 2015-2025 (USD Billion)

6.3.3.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

6.3.4.     Radar

6.3.4.1. Market estimates & forecasts, 2015-2025 (USD Billion)

6.3.4.2. Regional breakdown estimates & forecasts, 2015-2025 (USD Billion)

Chapter 7.           Global Collision Avoidance Sensors Market, Regional Analysis

7.1.         Collision Avoidance Sensors Market, Regional Market Snapshot (2015-2025)

7.2.         North America Collision Avoidance Sensors Market Snapshot

7.2.1.     U.S.

7.2.1.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.2.1.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.2.1.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.2.2.     Canada

7.2.2.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.2.2.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.2.2.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.3.         Europe Collision Avoidance Sensors Market Snapshot

7.3.1.     U.K.

7.3.1.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.3.1.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.3.1.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.3.2.     Germany

7.3.2.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.3.2.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.3.2.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.3.3.     France

7.3.3.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.3.3.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.3.3.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.3.4.     Rest of Europe

7.3.4.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.3.4.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.3.4.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.4.         Asia Collision Avoidance Sensors Market Snapshot

7.4.1.     China Collision Avoidance Sensors Market Size Estimates & Forecasts, 2015-2025 (USD Billion)

7.4.1.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.4.1.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.4.1.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.4.2.     India

7.4.2.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.4.2.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.4.2.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.4.3.     Japan

7.4.3.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.4.3.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.4.3.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.4.4.     Rest of Asia Pacific

7.4.4.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.4.4.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.4.4.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.5.         Latin America Collision Avoidance Sensors Market Snapshot

7.5.1.     Brazil

7.5.1.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.5.1.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.5.1.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.5.2.     Mexico

7.5.2.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.5.2.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.5.2.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.6.         Rest of The World

7.6.1.     South America

7.6.1.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.6.1.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.6.1.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.6.2.     Middle East and Africa

7.6.2.1. Market estimates & forecasts, 2015-2025 (USD Billion)

7.6.2.2. Application breakdown estimates & forecasts, 2015-2025 (USD Billion)

7.6.2.3. Technology breakdown estimates & forecasts, 2015-2025 (USD Billion)

Chapter 8.           Competitive Intelligence

8.1.         Company Market Share (Subject to Data Availability)

8.2.         Top Market Strategies

8.3.         Company Profiles

8.3.1.     Infineon Technologies AG

8.3.1.1. Overview

8.3.1.2. Financial (Subject to Data Availability)

8.3.1.3. Product Summary

8.3.1.4. Recent Developments

8.3.2.     Delphi Automotive

8.3.3.     Panasonic Corporation

8.3.4.     NXP Semiconductors

8.3.5.     Continental AG

8.3.6.     Murata Manufacturing Co., Ltd.

8.3.7.     Texas Instruments, Inc.

8.3.8.     Robert Bosch GmbH

8.3.9.     Takata Corporation

8.3.10.   Sensata Technologies, Inc.

The research for Global Collision Avoidance Sensors Market focuses deeply on the entire value chain of the market. However, the market size estimates are purely based on the consumer side of the value chain wherein the market sizes have been calculated by analyzing the average demand for Collision Avoidance Sensors across various applications.

The revenue for Global Collision Avoidance Sensors Market is calculated as sum market sizes of different segments such as application, technology, and regions. Further, some other key data points considered to calculate the revenue for Global Collision Avoidance Sensors Market includes:

  • Revenues from key companies
  • Key company market share analysis
  • Consumer spending analysis
  • Regional export and import analysis
  • Sales revenue generated by various applications in different geographies

An extensive primary and secondary research has been conducted on key industry people, through questionnaires, telephonic conversations, email conversations, and interviews to verify the market estimations. Various government websites/portals and paid data sources are considered as a key source of secondary research.

We utilize a combination of bottom-up & top-down methodology for market estimations & forecasts. Additionally, we employ data triangulation techniques to verify each of the market estimates and forecasts through primary interviews and feedbacks.

All the estimates are derived from simulation models which is our proprietary technique. Each of these models is different from each other are a combination of correlation, regression and time series analysis. Each of these models is basically divided into two types namely economic and technological. Economical models are used to determine short-term market estimates and technological models are used for long-term estimates & forecasts. 


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