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[ 英語タイトル ] Automotive Communication Technology Market by Bus Module (LIN, CAN, FlexRay, MOST, and Ethernet), Application (Powertrain, Body Control & Comfort, Infotainment & Communication, and Safety & ADAS), Vehicle Class, and Region - Global Forecast to 2025


Product Code : MNMAT00109929
Survey : MarketsandMarkets
Publish On : February, 2021
Category : Automotive and Transportation
Study Area : Global
Report format : PDF
Sales price option (consumption tax not included)
Single User USD5650 / Question Form
5 User USD6650 / Question Form
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[Report Description]

“Growing number of electronic systems in passenger cars, government mandates, and industry norms to reduce emission and improve the safety of vehicles are expected to fuel the demand for the automotive communication technology market”
The global automotive communication technology market is projected to grow at a CAGR of 16.7% during the forecast period, from USD 6.78 billion in 2018 to USD 19.99 billion by 2025. Increasing demand for automotive safety systems supported by government mandates and increasing number of electrical systems in the vehicle are driving the growth of the automotive communication technology market. However, increasing complexity and less reliability of electronics architecture can restrain the growth of the automotive communication technology market. The emergence of autonomous vehicles is expected to create opportunities for the automotive communication technology market in the coming years. On the other hand, factors such as high maintenance cost and troubleshooting for vehicle network architecture can pose challenges for the automotive communication technology market.
“Ethernet segment to grow at a significant rate during the forecast period”
The automotive communication technology market for Ethernet is projected to grow at the highest CAGR during the forecast period. It is followed by FlexRay, local interconnect network (LIN), controller area network (CAN), and media oriented systems transport (MOST). The growth of Ethernet segment is driven by the increasing number of nodes in various applications.
“Asia Pacific to lead the automotive communication technology market during the forecast period”
The Asia Pacific region is estimated to hold the largest share of the global automotive communication technology market in 2018. Government mandates regarding the installation of advanced safety technologies and increasing awareness of green vehicles among people are expected to drive the growth of the automotive communication technology market in the Asia Pacific region.
The study contains insights of various industry experts, ranging from component suppliers to Tier 1 companies and OEMs. The break-up of the primaries is as follows:
• By Company Type: Tier 1 – 65%, Tier 2 – 20%, Tier 3– 15%
• By Designation: C-level – 55%, D-level – 35%, Others – 10%
• By Region: Asia Pacific – 35%, Europe – 45%, North America – 15%, RoW – 5%
Major players profiled in the report are:
• Robert Bosch (Germany)
• Toshiba (Japan)
• Broadcom (US)
• Texas Instruments (US)
• NXP (Netherlands)
• STMicroelectronics (Switzerland)
• Infineon (Germany)
• Renesas (Japan)
• On Semiconductor (US)
• Microchip (US)
• Continental (Germany)
• Cypress Semiconductor (US)
• Rohm Semiconductor (Japan)
• Xilinx (US)
• Melexis (Belgium)
• Elmos Semiconductor (Germany)
• Vector Informatik (Germany)
• Intel (US)
• Maxim Integrated (US)
• Qualcomm (US)

Research Coverage:
The report segments the automotive communication technology market and forecasts its size, by volume and value, on the basis of region (Asia Pacific, Europe, North America, and RoW), bus module [local interconnect network (LIN), controller area network (CAN), FlexRay, media oriented systems transport (MOST), and ethernet], application (powertrain, body control & comfort, infotainment & communication, and safety & ADAS), and vehicle class (economy, mid-size, and luxury). The qualitative analysis of advanced features is also provided.
Reasons to Buy the Report:
This report contains various levels of analysis, including industry analysis (industry trends, technology overview, and competitive leadership mapping) and company profiles, which together comprise and discuss the basic views on the emerging and high-growth segments of the automotive communication technology market, competitive landscape matrix, high-growth regions and countries, government initiatives, and market dynamics such as drivers, restraints, opportunities, and challenges.
The report enables new entrants and small firms as well as established firms to understand the market better to help them acquire a larger market share. Firms purchasing the report could use any one or a combination of the below mentioned 4 strategies (market development, product development/innovation, market diversification, and competitive assessment) to strengthen their position in the market.
The report provides insights into the following points:
• Market Penetration: The report offers comprehensive information about the automotive communication technology market and the top 12 players in the market.
• Product Development/Innovation: The report provides detailed insights into upcoming technologies, R&D activities, and new product launches in the automotive communication technology market.
• Market Development: The report offers comprehensive information about the automotive communication technology market. The report analyzes the automotive communication technology market across regions and provides comprehensive information about lucrative and emerging markets.
• Market Diversification: The report provides exhaustive information about new products, untapped regional markets, recent developments, and investments in the automotive communication technology market.

TABLE OF CONTENTS

1 INTRODUCTION 16
1.1 OBJECTIVES OF THE STUDY 16
1.2 MARKET DEFINITION 16
1.3 MARKET SCOPE 17
1.3.1 MARKET COVERED 17
1.3.2 YEARS CONSIDERED IN THE REPORT 18
1.4 CURRENCY & PRICING 18
1.5 PACKAGE SIZE 19
1.6 LIMITATIONS 19
1.7 STAKEHOLDERS 19
2 RESEARCH METHODOLOGY 20
2.1 RESEARCH DATA 20
2.2 SECONDARY DATA 22
2.2.1 KEY SECONDARY SOURCES 22
2.2.2 KEY DATA FROM SECONDARY SOURCES 22
2.3 PRIMARY DATA 23
2.3.1 SAMPLING TECHNIQUES & DATA COLLECTION METHODS 23
2.3.2 PRIMARY PARTICIPANTS 24
2.4 MARKET SIZE ESTIMATION 24
2.4.1 BOTTOM-UP APPROACH 24
2.4.2 TOP-DOWN APPROACH 25
2.5 MARKET BREAKDOWN AND DATA TRIANGULATION 26
2.5.1 ASSUMPTIONS 27
3 EXECUTIVE SUMMARY 28
4 PREMIUM INSIGHTS 32
4.1 AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, 2018 VS. 2025 32
4.2 AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY REGION 33
4.3 AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY BUS MODULE 33
4.4 AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY APPLICATION 34
4.5 AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY VEHICLE CLASS 35

5 MARKET OVERVIEW 36
5.1 INTRODUCTION 36
5.2 MARKET DYNAMICS 37
5.2.1 DRIVERS 37
5.2.1.1 Growing contribution of electronic systems in passenger cars 37
5.2.1.2 Government mandates and industry norms to reduce emission and improve the safety of vehicles 38
5.2.2 RESTRAINTS 39
5.2.2.1 More complexity and less reliability of electronics architecture 39
5.2.2.2 Higher cost per node with the increase in communication nodes in a vehicle 39
5.2.3 OPPORTUNITIES 39
5.2.3.1 Emergence of autonomous vehicles 39
5.2.3.2 Rise in sales of premium vehicles 40
5.2.4 CHALLENGES 41
5.2.4.1 Increase in cybersecurity threats for connected vehicles 41
5.2.4.2 Maintenance and troubleshooting for vehicle network architecture 42
6 AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY BUS MODULE 43
6.1 INTRODUCTION 44
6.2 LOCAL INTERCONNECT NETWORK (LIN) 46
6.3 CONTROLLER AREA NETWORK (CAN) 47
6.4 FLEXRAY 48
6.5 MEDIA-ORIENTED SYSTEMS TRANSPORT (MOST) 49
6.6 ETHERNET 50
7 AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY APPLICATION 51
7.1 INTRODUCTION 52
7.2 POWERTRAIN 54
7.3 BODY CONTROL & COMFORT 55
7.4 INFOTAINMENT & COMMUNICATION 56
7.5 SAFETY & ADAS 57
8 AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY VEHICLE CLASS 58
8.1 INTRODUCTION 59
8.2 ECONOMY 61
8.3 MID-SIZE 62
8.4 LUXURY 63

9 AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY REGION 64
9.1 INTRODUCTION 65
9.2 ASIA PACIFIC 66
9.2.1 CHINA 69
9.2.2 JAPAN 70
9.2.3 INDIA 71
9.2.4 SOUTH KOREA 72
9.2.5 REST OF ASIA PACIFIC 73
9.3 EUROPE 74
9.3.1 FRANCE 77
9.3.2 GERMANY 78
9.3.3 ITALY 79
9.3.4 SPAIN 80
9.3.5 UK 81
9.3.6 REST OF EUROPE 82
9.4 NORTH AMERICA 83
9.4.1 CANADA 84
9.4.2 MEXICO 85
9.4.3 US 86
9.5 REST OF THE WORLD (ROW) 87
9.5.1 BRAZIL 88
9.5.2 RUSSIA 89
9.5.3 SOUTH AFRICA 90
10 COMPETITIVE LANDSCAPE 91
10.1 OVERVIEW 91
10.2 MARKET RANKING ANALYSIS 92
10.3 COMPETITIVE SITUATION & TRENDS 92
10.3.1 NEW PRODUCT DEVELOPMENT 93
10.3.2 COLLABORATION 94
10.3.3 PARTNERSHIP 95
10.3.4 EXPANSION 96
11 COMPANY PROFILES 97
(Business overview, Products offered, Recent developments & SWOT analysis)*
11.1 ROBERT BOSCH 97
11.2 TOSHIBA 101
11.3 BROADCOM 105
11.4 TEXAS INSTRUMENTS 108
11.5 NXP 113
11.6 STMICROELECTRONICS 118
11.7 INFINEON 121
11.8 RENESAS 125
11.9 ON SEMICONDUCTOR 129
11.10 MICROCHIP 132
11.11 CONTINENTAL 135
11.12 CYPRESS SEMICONDUCTOR 135
11.13 ROHM SEMICONDUCTOR 135
11.14 XILINX 135
11.15 MELEXIS 136
11.16 ELMOS SEMICONDUCTOR 136
11.17 VECTOR INFORMATIK 136
11.18 INTEL 136
11.19 MAXIM INTEGRATED 137
11.20 QUALCOMM 137
*Details on Business overview, Products offered, Recent developments & SWOT analysis might not be captured in case of unlisted companies.
12 APPENDIX 138
12.1 DISCUSSION GUIDE 138
12.2 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 140
12.3 INTRODUCING RT: REAL-TIME MARKET INTELLIGENCE 142
12.4 AVAILABLE CUSTOMIZATIONS 143
12.4.1 ADDITIONAL COMPANY PROFILES 143
12.4.1.1 Business overview 143
12.4.1.2 SWOT analysis 143
12.4.1.3 Recent developments 143
12.4.1.4 MnM view 143
12.4.2 DETAILED ANALYSIS OF THE AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY VEHICLE CLASS 143
12.4.3 DETAILED ANALYSIS OF THE AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET, BY APPLICATION 143
12.4.4 DETAILED ANALYSIS OF COMPETITIVE LANDSCAPE (MICRO QUADRANT)
FOR AUTOMOTIVE COMMUNICATION TECHNOLOGY MARKET 143
12.5 RELATED REPORTS 143
12.6 AUTHOR DETAILS 144

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