車載イーサネットのグローバル市場2022-2031:ハードウェア、ソフトウェア、サービス

■ 英語タイトル:Automotive Ethernet Market by Component (Hardware, Software, and Services), Vehicle Type (Passenger Cars and Commercial Vehicles), Application (Chassis, Infotainment, Driver Assistance, Powertrain, Body and Comfort, and Others), and Regional Analysis (North America, Europe, Asia-Pacific, and LAMEA): Global Opportunity Analysis and Industry Forecast, 2022–2031

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■ 発行日:2022年11月8日
■ 調査対象地域:グローバル
■ 産業分野:自動車&輸送
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★グローバルリサーチ資料[車載イーサネットのグローバル市場2022-2031:ハードウェア、ソフトウェア、サービス]についてメールでお問い合わせはこちら
*** レポート概要(サマリー)***

Research Dive社によると、世界の車載イーサネット市場規模は2021年2,135.1百万ドルから2031年には8,765.8百万ドルまで、年平均14.4%の成長率を表すと見込まれます。本レポートでは、車載イーサネットの世界市場を調査・分析し、調査手法、調査範囲、エグゼクティブサマリー、市場概要、コンポーネント別(ハードウェア、ソフトウェア、サービス)分析、車両種類別(乗用車、商用車)分析、用途別(シャーシ、インフォテインメント、ドライバーアシスタンス、パワートレイン、ボディ&コンフォート、その他)分析、地域別(北米、ヨーロッパ、アジア太平洋、中南米・中東・アフリカ)分析、競争状況など、以下のようにまとめました。本書の参入企業情報としては、Vector Informatik GmbH, NXP Semiconductors, Marvell, Molex, Broadcom, Microchip Technology Inc., Aukua Systems Inc., Keysight Technologies, Cadence Design Systems, Inc, and Texas Instruments Incorporated.などがあります。
・調査手法
・調査範囲
・エグゼクティブサマリー
・市場概要
・世界の車載イーサネット市場規模:コンポーネント別
- ハードウェアの市場規模
- ソフトウェアの市場規模
- サービスの市場規模
・世界の車載イーサネット市場規模:車両種類別
- 乗用車における市場規模
- 商用車における市場規模
・世界の車載イーサネット市場規模:用途別
- シャーシ用イーサネットの市場規模
- シインフォテインメント用イーサネットの市場規模
- ドライバーアシスタンス用イーサネットの市場規模
- パワートレイ用イーサネットの市場規模
- その他用途用イーサネットの市場規模
・世界の車載イーサネット市場規模:地域別
- 北米の車載イーサネット市場規模
- ヨーロッパの車載イーサネット市場規模
- アジア太平洋の車載イーサネット市場規模
- 中南米の車載イーサネット市場規模
- 中東/アフリカの車載イーサネット市場規模
・競争状況
・企業情報

According to Research Dive analysis, the global automotive ethernet market is anticipated to generate a revenue of $8,765.8 million by 2031, increasing from $2,135.1 million in 2021, at a healthy CAGR of 14.4%.

COVID-19 Impact on the Global Automotive Ethernet Market:

The COVID-19 pandemic has created several challenges that have drastically affected the automotive industry along with many other industries. Many governments around the globe mandated the restriction to stay inside the home. There were restrictions on public gatherings so the use of vehicles was limited to only emergency purposes such as medical, government officials, and food transportation. Hence, the global automotive ethernet market growth witnessed a negative impact during the Covid-19 pandemic on account supply chain disruption and reduced sales of vehicles. However, the reopening of economies across the world is anticipated to expand the automotive ethernet market size.

Automotive Ethernet Market Analysis:
The automotive industry is rapidly evolving. The newest vehicle models have cutting-edge features such as the internet, smartphone connectivity, automatic mirrors, in-car infotainment systems, etc. Cars are also equipped with sensor-based safety systems that can enhance traffic safety by virtually eliminating car crashes. Most of these features rely on high-bandwidth electronics which need expensive and intricate cabling. This is a key factor in increasing the price and weight of cars. To counter this, automotive companies are increasingly using automotive ethernet systems that will significantly reduce both the cost and weight of the required cabling.
There are several compliance requirements for the automotive ethernet standard. Network standards like LIN, CAN, and FlexRay do not need any compliance testing, however, for automotive ethernet, there is a compliance test determined by the Institute of Electrical and Electronics Engineers (IEEE) that contains many test requirements. In addition, automotive ethernet system is placing greater demands on technology and comprehensive design validation to ensure interoperability between multiple Electronic Control Units (ECUs). These factors may hinder the automotive ethernet market size during the forecast period.
A growing focus by major economies worldwide on reducing carbon emissions is estimated to generate significant growth opportunities in the automotive ethernet market. Road vehicles are accountable for a huge amount of global CO2 emissions. To lower carbon emissions, minimization of the power consumption of different electronic components of a car is necessary. Automotive ethernet allows minimization of CO2 emission. Which in turn, helps in maintaining a healthy ecosystem. For instance, in July 2020, Microchip Technology Inc. announced the official launch of LAN8770 EtherGREEN, an energy-efficiency technology. This provides low-power operation combined with ultra-low wake-up and power sleep modes. Such novel product developments may create favorable conditions for the global automotive Ethernet market, in the future.

Based on Component, the services sub-segment is predicted to show the fastest growth rate during the forecast period majorly due to the increasing instances of troubles experienced during the adoption of ethernet systems in cars.
Based on the application, the driver assistance sub-segment is predicted to hold highest automotive ethernet market share during the forecast period. The use of driver assistance can help reduce accidents, decrease costs, and improve driver safety. Hence, vehicle manufacturers increasingly adopting driver assistance systems in cars. The driver assistance system produces a large volume of data and to process this data, a high-speed network is required and Automotive Ethernet is the right choice for this purpose.
Based on vehicle type, the commercial vehicle sub-segment is predicted to be the fastest sub-segment owing to the surge in the e-commerce industry coupled with increasing industrialization, adoption of e-mobility in commercial sectors, and infrastructure development across the globe.
Based on the geographical scope, the Asia-Pacific region is anticipated to hold the largest automotive ethernet market share. The automotive OEMs in this region highly focusing on safety and security features to improve customer experience. Which in turn, is expected to augment the demand for automotive ethernet networks.
The companies involved in the global automotive Ethernet market are Vector Informatik GmbH, NXP Semiconductors, Marvell, Molex, Broadcom, Microchip Technology Inc., Aukua Systems Inc., Keysight Technologies, Cadence Design Systems, Inc, and Texas Instruments Incorporated.

世界の市場調査レポート販売サイト(H&Iグローバルリサーチ株式会社運営)
*** レポート目次(コンテンツ)***

1.Research Methodology

1.1.Desk Research
1.2.Real time insights and validation
1.3.Forecast model
1.4.Assumptions and forecast parameters
1.5.Market size estimation

1.5.1.Top-down approach
1.5.2.Bottom-up approach

2.Report Scope

2.1.Market definition
2.2.Key objectives of the study
2.3.Report overview
2.4.Market segmentation
2.5.Overview of the impact of COVID-19 on Global Automotive Ethernet Market

3.Executive Summary

4.Market Overview

4.1.Introduction
4.2.Growth impact forces

4.2.1.Drivers
4.2.2.Restraints
4.2.3.Opportunities

4.3.Market value chain analysis

4.3.1.List of raw material suppliers
4.3.2.List of manufacturers
4.3.3.List of distributors

4.4.Innovation & sustainability matrices

4.4.1.Technology matrix
4.4.2.Regulatory matrix

4.5.Porter’s five forces analysis

4.5.1.Bargaining power of suppliers
4.5.2.Bargaining power of consumers
4.5.3.Threat of substitutes
4.5.4.Threat of new entrants
4.5.5.Competitive rivalry intensity

4.6.PESTLE analysis

4.6.1.Political
4.6.2.Economical
4.6.3.Social
4.6.4.Technological
4.6.5.Environmental

4.7.Impact of COVID-19 on Automotive Ethernet Market

4.7.1.Pre-covid market scenario
4.7.2.Post-covid market scenario

5.Automotive Ethernet Market Analysis, by Component

5.1.Overview
5.2.Hardware

5.2.1.Definition, key trends, growth factors, and opportunities, 2022-2031
5.2.2.Market size analysis, by region, 2022-2031
5.2.3.Market share analysis, by country, 2022-2031

5.3.Software

5.3.1.Definition, key trends, growth factors, and opportunities, 2022-2031
5.3.2.Market size analysis, by region, 2022-2031
5.3.3.Market share analysis, by country, 2022-2031

5.4.Services

5.4.1.Definition, key trends, growth factors, and opportunities, 2022-2031
5.4.2.Market size analysis, by region, 2022-2031
5.4.3.Market share analysis, by country, 2022-2031

5.5.Research Dive Exclusive Insights

5.5.1.Market attractiveness, 2022-2031
5.5.2.Competition heatmap, 2022-2031

6.Automotive Ethernet Market Analysis, by Application

6.1.Chassis

6.1.1.Definition, key trends, growth factors, and opportunities, 2022-2031
6.1.2.Market size analysis, by region, 2022-2031
6.1.3.Market share analysis, by country, 2022-2031

6.2.Infotainment

6.2.1.Definition, key trends, growth factors, and opportunities, 2022-2031
6.2.2.Market size analysis, by region, 2022-2031
6.2.3.Market share analysis, by country, 2022-2031

6.3. Driver Assistance

6.3.1.Definition, key trends, growth factors, and opportunities, 2022-2031
6.3.2.Market size analysis, by region, 2022-2031
6.3.3.Market share analysis, by country, 2022-2031

6.4.Power train

6.4.1.Definition, key trends, growth factors, and opportunities, 2022-2031
6.4.2.Market size analysis, by region, 2022-2031
6.4.3.Market share analysis, by country, 2022-2031

6.5. Body and Comfort

6.5.1.Definition, key trends, growth factors, and opportunities, 2022-2031
6.5.2.Market size analysis, by region, 2022-2031
6.5.3.Market share analysis, by country, 2022-2031

6.6.Others

6.6.1.Definition, key trends, growth factors, and opportunities, 2022-2031
6.6.2.Market size analysis, by region, 2022-2031
6.6.3.Market share analysis, by country, 2022-2031

6.7.Research Dive Exclusive Insights

6.7.1.Market attractiveness, 2022-2031
6.7.2.Competition heatmap, 2022-2031

7.Automotive Ethernet Market Analysis, by Vehicle Type

7.1.Passenger Cars

7.1.1.Definition, key trends, growth factors, and opportunities, 2022-2031
7.1.2.Market size analysis, by region, 2022-2031
7.1.3.Market share analysis, by country, 2022-2031

7.2.Commercial Vehicle Types

7.2.1.Definition, key trends, growth factors, and opportunities, 2022-2031
7.2.2.Market size analysis, by region, 2022-2031
7.2.3.Market share analysis, by country, 2022-2031

7.3.Research Dive Exclusive Insights

7.3.1.Market attractiveness, 2022-2031
7.3.2.Competition heatmap, 2022-2031

8.Automotive Ethernet Market, by Region

8.1.North America

8.1.1.U.S.

8.1.1.1.Market size analysis, by Component, 2022-2031
8.1.1.2.Market size analysis, by Vehicle Type, 2022-2031
8.1.1.3.Market size analysis, by Application, 2022-2031

8.1.2.Canada

8.1.2.1.Market size analysis, by Component, 2022-2031
8.1.2.2.Market size analysis, by Vehicle Type, 2022-2031
8.1.2.3.Market size analysis, by Application, 2022-2031

8.1.3.Mexico

8.1.3.1.Market size analysis, by Component, 2022-2031
8.1.3.2.Market size analysis, by Vehicle Type, 2022-2031
8.1.3.3.Market size analysis, by Application, 2022-2031

8.1.4.Research Dive Exclusive Insights

8.1.4.1.Market attractiveness, 2022-2031
8.1.4.2.Competition heatmap, 2022-2031

8.2.Europe

8.2.1.Germany

8.2.1.1.Market size analysis, by Component, 2022-2031
8.2.1.2.Market size analysis, by Vehicle Type, 2022-2031
8.2.1.3.Market size analysis, by Application, 2022-2031

8.2.2.UK

8.2.2.1.Market size analysis, by Component, 2022-2031
8.2.2.2.Market size analysis, by Vehicle Type, 2022-2031
8.2.2.3.Market size analysis, by Application, 2022-2031

8.2.3.France

8.2.3.1.Market size analysis, by Component, 2022-2031
8.2.3.2.Market size analysis, by Vehicle Type, 2022-2031
8.2.3.3.Market size analysis, by Application, 2022-2031

8.2.4.Spain

8.2.4.1.Market size analysis, by Component, 2022-2031
8.2.4.2.Market size analysis, by Vehicle Type, 2022-2031
8.2.4.3.Market size analysis, by Application, 2022-2031

8.2.5.Italy

8.2.5.1.Market size analysis, by Component, 2022-2031
8.2.5.2.Market size analysis, by Vehicle Type, 2022-2031
8.2.5.3.Market size analysis, by Application, 2022-2031

8.2.6.Rest of Europe

8.2.6.1.Market size analysis, by Component, 2022-2031
8.2.6.2.Market size analysis, by Vehicle Type, 2022-2031
8.2.6.3.Market size analysis, by Application, 2022-2031

8.2.7.Research Dive Exclusive Insights

8.2.7.1.Market attractiveness, 2022-2031
8.2.7.2.Competition heatmap, 2022-2031

8.3.Asia Pacific

8.3.1.China

8.3.1.1.Market size analysis, by Component, 2022-2031
8.3.1.2.Market size analysis, by Vehicle Type, 2022-2031
8.3.1.3.Market size analysis, by Application, 2022-2031

8.3.2.Japan

8.3.2.1.Market size analysis, by Component, 2022-2031
8.3.2.2.Market size analysis, by Vehicle Type, 2022-2031
8.3.2.3.Market size analysis, by Application, 2022-2031

8.3.3.India

8.3.3.1.Market size analysis, by Component, 2022-2031
8.3.3.2.Market size analysis, by Vehicle Type, 2022-2031
8.3.3.3.Market size analysis, by Application, 2022-2031

8.3.4.Australia

8.3.4.1.Market size analysis, by Component, 2022-2031
8.3.4.2.Market size analysis, by Vehicle Type, 2022-2031
8.3.4.3.Market size analysis, by Application, 2022-2031

8.3.5.South Korea

8.3.5.1.Market size analysis, by Component, 2022-2031
8.3.5.2.Market size analysis, by Vehicle Type, 2022-2031
8.3.5.3.Market size analysis, by Application, 2022-2031

8.3.6.Rest of Asia Pacific

8.3.6.1.Market size analysis, by Component, 2022-2031
8.3.6.2.Market size analysis, by Vehicle Type, 2022-2031
8.3.6.3.Market size analysis, by Application, 2022-2031

8.3.7.Research Dive Exclusive Insights

8.3.7.1.Market attractiveness, 2022-2031
8.3.7.2.Competition heatmap, 2022-2031

8.4.LAMEA

8.4.1.Brazil

8.4.1.1.Market size analysis, by Component, 2022-2031
8.4.1.2.Market size analysis, by Vehicle Type, 2022-2031
8.4.1.3.Market size analysis, by Application, 2022-2031

8.4.2.Saudi Arabia

8.4.2.1.Market size analysis, by Component, 2022-2031
8.4.2.2.Market size analysis, by Vehicle Type, 2022-2031
8.4.2.3.Market size analysis, by Application, 2022-2031

8.4.3.UAE

8.4.3.1.Market size analysis, by Component, 2022-2031
8.4.3.2.Market size analysis, by Vehicle Type, 2022-2031
8.4.3.3.Market size analysis, by Application, 2022-2031

8.4.4.South Africa

8.4.4.1.Market size analysis, by Component, 2022-2031
8.4.4.2.Market size analysis, by Vehicle Type, 2022-2031
8.4.4.3.Market size analysis, by Application, 2022-2031

8.4.5.Rest of LAMEA

8.4.5.1.Market size analysis, by Component, 2022-2031
8.4.5.2.Market size analysis, by Vehicle Type, 2022-2031
8.4.5.3.Market size analysis, by Application, 2022-2031

8.4.6.Research Dive Exclusive Insights

8.4.6.1.Market attractiveness, 2022-2031
8.4.6.2.Competition heatmap, 2022-2031

9.Competitive Landscape

9.1.Top winning strategies, 2022

9.1.1.By strategy
9.1.2.By year

9.2.Strategic overview

9.3.Market share analysis, 2022

10.Company Profiles

10.1. Vector Informatik GmbH

10.1.1.Overview
10.1.2.Business segments
10.1.3.Product portfolio
10.1.4.Financial performance
10.1.5.Recent developments
10.1.6.SWOT analysis

10.2.NXP Semiconductors

10.2.1.Overview
10.2.2.Business segments
10.2.3.Product portfolio
10.2.4.Financial performance
10.2.5.Recent developments
10.2.6.SWOT analysis

10.3.Marvell

10.3.1.Overview
10.3.2.Business segments
10.3.3.Product portfolio
10.3.4.Financial performance
10.3.5.Recent developments
10.3.6.SWOT analysis

10.4. Molex

10.4.1.Overview
10.4.2.Business segments
10.4.3.Product portfolio
10.4.4.Financial performance
10.4.5.Recent developments
10.4.6.SWOT analysis

10.5.Broadcom

10.5.1.Overview
10.5.2.Business segments
10.5.3.Product portfolio
10.5.4.Financial performance
10.5.5.Recent developments
10.5.6.SWOT analysis

10.6.Microchip Technology Inc.

10.6.1.Overview
10.6.2.Business segments
10.6.3.Product portfolio
10.6.4.Financial performance
10.6.5.Recent developments
10.6.6.SWOT analysis

10.7.Aukua Systems Inc.

10.7.1.Overview
10.7.2.Business segments
10.7.3.Product portfolio
10.7.4.Financial performance
10.7.5.Recent developments
10.7.6.SWOT analysis

10.8.Keysight Technologies

10.8.1.Overview
10.8.2.Business segments
10.8.3.Product portfolio
10.8.4.Financial performance
10.8.5.Recent developments
10.8.6.SWOT analysis

10.9.Cadence Design Systems, Inc.

10.9.1.Overview
10.9.2.Business segments
10.9.3.Product portfolio
10.9.4.Financial performance
10.9.5.Recent developments
10.9.6.SWOT analysis

10.10.Texas Instruments Incorporated.

10.10.1.Overview
10.10.2.Business segments
10.10.3.Product portfolio
10.10.4.Financial performance
10.10.5.Recent developments
10.10.6.SWOT analysis

11.Appendix

11.1.Parent & peer market analysis
11.2.Premium insights from industry experts
11.3.Related reports



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