目次
1.要旨
2.調査方法
2.1.二次調査
2.2.一次データ収集
2.3.市場形成と検証
2.4.報告書作成、品質チェック、納品
3.市場構造
3.1.市場への配慮
3.2.前提条件
3.3.限界
3.4.略語
3.5.情報源
3.6.定義
4.経済・人口統計
5.カーエレクトロニクスの世界市場展望
5.1.市場規模(金額ベース
5.2.地域別市場シェア
5.3.市場規模および予測、コンポーネント別
5.4.市場規模・予測:車両タイプ別
5.5.市場規模・予測:流通チャネル別
5.6.市場規模・予測:用途別
6.アジア太平洋地域のカーエレクトロニクス市場展望
6.1.市場規模:金額別
6.2.国別市場シェア
6.3.市場規模および予測、コンポーネント別
6.4.市場規模・予測:車両タイプ別
6.5.市場規模・予測:流通チャネル別
6.6.市場規模・予測:用途別
7.市場ダイナミクス
7.1.市場促進要因と機会
7.2.市場の阻害要因と課題
7.3.市場動向
7.3.1.XXXX
7.3.2.XXXX
7.3.3.XXXX
7.3.4.XXXX
7.3.5.XXXX
7.4.コビッド19効果
7.5.サプライチェーン分析
7.6.政策と規制の枠組み
7.7.業界専門家の見解
7.8.中国カーエレクトロニクス市場の展望
7.8.1.市場規模(金額ベース
7.8.2.部品別市場規模と予測
7.8.3.車両タイプ別市場規模・予測
7.8.4.流通チャネル別市場規模・予測
7.8.5.用途別市場規模・予測
7.9.日本のカーエレクトロニクス市場展望
7.9.1.金額別市場規模
7.9.2.部品別市場規模・予測
7.9.3.車両タイプ別市場規模・予測
7.9.4.流通チャネル別市場規模・予測
7.9.5.用途別市場規模・予測
7.10.インドのカーエレクトロニクス市場展望
7.10.1.金額別市場規模
7.10.2.部品別市場規模と予測
7.10.3.車両タイプ別市場規模・予測
7.10.4.流通チャネル別市場規模・予測
7.10.5.用途別市場規模・予測
7.11.オーストラリアのカーエレクトロニクス市場展望
7.11.1.金額別市場規模
7.11.2.部品別市場規模と予測
7.11.3.車両タイプ別市場規模・予測
7.11.4.流通チャネル別市場規模・予測
7.11.5.用途別市場規模・予測
7.12.韓国カーエレクトロニクス市場の展望
7.12.1.金額別市場規模
7.12.2.部品別市場規模と予測
7.12.3.車両タイプ別市場規模・予測
7.12.4.流通チャネル別市場規模・予測
7.12.5.用途別市場規模・予測
8.競争環境
8.1.競合ダッシュボード
8.2.主要企業の事業戦略
8.3.主要企業の市場ポジショニングマトリックス
8.4.ポーターの5つの力
8.5.会社概要
8.5.1.Hella GmbH & Co.KGaA
8.5.1.1.会社概要
8.5.1.2.会社概要
8.5.1.3.財務ハイライト
8.5.1.4.地理的洞察
8.5.1.5.事業セグメントと業績
8.5.1.6.製品ポートフォリオ
8.5.1.7.主要役員
8.5.1.8.戦略的な動きと展開
8.5.2.株式会社デンソー
8.5.3.ロバート・ボッシュ
8.5.4.ヴァレオS.A.
8.5.5.ゼット・エフ・フリードリヒスハーフェンAG
8.5.6.マグナ・インターナショナル
8.5.7.インフィニオンテクノロジーズAG
8.5.8.オートリブ
8.5.9.コンチネンタルAG
8.5.10.HLマンドコーポレーション
8.5.11.三菱電機株式会社
8.5.12.リア・コーポレーション
9.戦略的提言
10.付録
10.1.よくある質問
10.2.注意事項
10.3.関連レポート
11.免責事項
図表一覧
図1:カーエレクトロニクスの世界市場規模(億ドル)、地域別、2023年・2029年
図2: 市場魅力度指数(2029年地域別)
図3:市場魅力度指数(2029年セグメント別
図4:カーエレクトロニクスの世界市場規模(金額ベース)(2018年、2023年、2029年)(単位:億米ドル
図5:カーエレクトロニクスの世界地域別市場シェア(2023年)
図6:アジア太平洋地域のカーエレクトロニクス市場規模:金額(2018年、2023年、2029年)(単位:億米ドル)
図7:アジア太平洋地域のカーエレクトロニクス市場 国別シェア(2023年)
図8:中国カーエレクトロニクス市場規模:金額(2018年、2023年、2029年)(単位:億米ドル)
図9:日本のカーエレクトロニクス市場規模:金額ベース(2018年、2023年、2029年)(単位:億米ドル)
図10:インドのカーエレクトロニクス市場規模:金額(2018年、2023年、2029年)(単位:億米ドル)
図11: オーストラリア自動車用エレクトロニクス市場規模:金額(2018年、2023年、2029年)(単位:億米ドル)
図12: 韓国の自動車用エレクトロニクス市場規模:金額(2018年、2023年、2029年) (単位:億米ドル)
図13:上位5社の競争ダッシュボード(2023年
図14: 自動車用エレクトロニクス世界市場のポーターの5つの力
表一覧
表1:カーエレクトロニクスの世界市場スナップショット(セグメント別)(2023年、2029年)(単位:億米ドル
表2:上位10カ国の経済スナップショット(2022年
表3:その他の主要国の経済スナップショット(2022年
表4:外国通貨から米ドルへの平均為替レート
表5:カーエレクトロニクスの世界市場規模・予測(2018年~2029F)(単位:億米ドル)
表6:カーエレクトロニクスの世界市場規模・予測:自動車タイプ別(2018年~2029年)(単位:億米ドル)
表7:カーエレクトロニクスの世界市場規模・予測:流通チャネル別(2018~2029F)(単位:億米ドル)
表8:カーエレクトロニクスの世界市場規模・予測:用途別(2018~2029F)(単位:億米ドル)
表9:アジア太平洋地域のカーエレクトロニクス市場規模・予測:部品別(2018~2029F)(単位:億米ドル)
表10:アジア太平洋地域のカーエレクトロニクス市場規模・予測:自動車タイプ別(2018~2029F)(単位:億米ドル)
表11:アジア太平洋地域のカーエレクトロニクス市場規模・予測:流通チャネル別(2018~2029F)(単位:億米ドル)
表12:アジア太平洋地域のカーエレクトロニクス市場規模・予測:用途別(2018年~2029年)(単位:億米ドル)
表13:カーエレクトロニクス市場の影響要因(2023年
表14:中国カーエレクトロニクス市場規模・予測:コンポーネント別(2018年~2029年)(単位:億米ドル)
表15:中国カーエレクトロニクス市場規模・予測:自動車タイプ別(2018年~2029年)(単位:億米ドル)
表16:中国カーエレクトロニクス市場規模・予測:流通チャネル別(2018~2029F)(単位:億米ドル)
表17:中国カーエレクトロニクス市場規模・予測:用途別(2018~2029F)(単位:億米ドル)
表18:日本のカーエレクトロニクス市場規模・予測:部品別(2018年~2029年)(単位:億米ドル)
表19:日本のカーエレクトロニクス市場規模・予測:自動車タイプ別(2018年~2029年)(単位:億米ドル)
表20:日本のカーエレクトロニクス市場規模・予測:流通チャネル別(2018年~2029F)(単位:億米ドル)
表21:日本のカーエレクトロニクス市場規模・予測:用途別(2018年~2029F)(単位:億米ドル)
表22:インドのカーエレクトロニクス市場規模・予測:部品別(2018~2029F)(単位:億米ドル)
表23:インドのカーエレクトロニクス市場規模・予測:自動車タイプ別(2018年~2029F)(単位:億米ドル)
表24:インドのカーエレクトロニクス市場規模・予測:流通チャネル別(2018~2029F)(単位:億米ドル)
表25:インドのカーエレクトロニクス市場インドのカーエレクトロニクス市場規模・予測:用途別(2018~2029F)(単位:億米ドル)
表26:オーストラリアオーストラリア 自動車用エレクトロニクスの市場規模・予測(2018~2029F) (単位:億米ドル)
表27:オーストラリアの自動車用エレクトロニクス市場オーストラリア:自動車タイプ別カーエレクトロニクス市場規模・予測(2018~2029F) (単位:億米ドル)
表28:オーストラリア自動車用エレクトロニクス市場規模・予測:流通チャネル別(2018~2029F) (単位:億米ドル)
表29:オーストラリアの自動車用エレクトロニクス市場規模・予測オーストラリア自動車用エレクトロニクス市場規模・予測:用途別(2018~2029F) (単位:億米ドル)
表30:韓国 自動車用エレクトロニクスの市場規模・予測:コンポーネント別(2018~2029F) (単位:億米ドル)
表31:韓国自動車用エレクトロニクスの市場規模・予測:車種別(2018~2029F) (単位:億米ドル)
表32:韓国自動車用エレクトロニクスの市場規模・予測:流通チャネル別(2018~2029F)(単位:億米ドル)
表33:韓国自動車用エレクトロニクスの市場規模・予測:用途別(2018~2029F) (単位:億米ドル)
According to the research report "Asia-Pacific Automotive Electronics Market Outlook, 2029," published by Bonafide research, the Asia-Pacific automotive electronics market is anticipated to grow with more than 5% CAGR from 2024–2029. A variety of factors drive the asia-pacific automotive electronics business, each of which has an impact on market dynamics and trends. The diverse range of automotive cultures and preferences seen throughout the region has a significant impact on this terrain. From bustling urban centers to distant rural areas, each location brings unique demands and opportunities for automotive electronics makers. Furthermore, the fast urbanization and economic success seen in many asia-pacific countries have resulted in an increase in disposable income and the emergence of a middle-class demographic, driving consumer spending on automotive technologies and electronic advancements. The growing domestic and international tourist industry has spurred demand for vehicle electronics among travelers seeking adventure and exploration along scenic routes and off-the -beaten-path trails around the region. In response to these factors, industry participants in the asia-pacific automotive electronics market have adopted a wide range of tactics to capitalize on opportunities and overcome problems. A key strategic endeavor is product diversity, in which manufacturers offer a wide range of automotive electronics customized to different vehicle types, climatic circumstances, and consumer preferences found throughout the region. Sustainability has emerged as a critical factor in the asia-pacific automotive electronics area, driven by rising environmental awareness and regulatory regulations. Industry stakeholders are actively implementing initiatives to address environmental concerns and meet changing customer expectations. Companies strive to reduce environmental impact throughout the product lifecycle by lowering reliance on traditional petroleum-based components and incorporating sustainable alternatives. Furthermore, regulatory frameworks and safety standards established by governments across the asia-pacific region have a considerable impact on the market environment.
major drivers
• Evolving consumer preferences: evolving consumer preferences for safety, comfort, and advanced features are shaping the demand for electronic systems in passenger vehicles in the Apac region.
• Government initiatives like 'make in India' and 'made in China 2025': government initiatives promoting local manufacturing are boosting the automotive industry and driving innovation in the Apac region.
• Increasing demand for vehicles in key markets: countries like Japan, China, and India are experiencing a surge in demand for vehicles due to economic growth and changing consumer preferences.
major challenges
• Market fragmentation: The Apac region is highly diverse, with different countries having varying regulatory frameworks, consumer preferences, and market dynamics.
• Infrastructure development: in many Apac countries, the infrastructure for electric vehicles (evs) and connected car technologies is still in its early stages. Developing the necessary infrastructure, such as charging stations and communication networks, is crucial for the successful adoption of these technologies.
• Cost competitiveness: The Apac market is highly cost-sensitive, and automakers must strike a balance between offering advanced features and maintaining affordability.
Market Trends
• EVs for short-haul applications: Electric trucks are gaining traction for short-haul deliveries and intra-city logistics, particularly in forerunners like China and India, due to government initiatives and shorter distances.
• Focus on cost and infrastructure: The high initial cost of evs and limitations in charging infrastructure are key challenges, but government incentives and investments in charging networks are driving growth.
• Beyond evs telematics and adas: Telematics systems for fleet management and route optimization are becoming commonplace, alongside advanced driver-assistance systems for safety improvements.
Sensors are growing in the automotive electronics market due to vehicular enhancements, the necessity for cost-efficient repairs and safety measures
The Apac area is a leader in the creation of high-quality wiring harnesses due to its thriving automotive industry and strong emphasis on safety and performance criteria. These harnesses often use high-quality materials such as annealed copper for increased conductivity and flexibility, as well as long-lasting insulators such as polyvinyl chloride (pvc) or the rmoplastic, to ensure peak performance and longevity. The manufacturers in the region are increasingly using innovative techniques like 3d modelling and automated assembly procedures to increase harness production precision and efficiency. Connectors, which are used to make and break electrical connections, are another key component in the Apac region. They are known for their strong design, durability, and resistance to external variables like as heat, dampness, and vibration. These connectors frequently use materials like tin-plated copper or gold-plated brass to avoid corrosion and ensure a stable connection. Furthermore, Apac manufacturers are leading the way in developing innovative connection designs, such as waterproof connectors and high-speed data connectors, to meet the growing need for enhanced car features and electric vehicles. Another area in which the Apac region excels is in power distribution systems, which manage and distribute electrical power from the battery to various vehicle systems. These systems are well-known for their efficiency, dependability, and safety. They frequently use advanced technologies such as intelligent power distribution modules and diagnostic fuse boxes to monitor and manage power flow, preventing overloads and short circuits. Manufacturers in the region are also investing in r&d to build smart power distribution systems that can adapt to the changing power requirements of modern vehicles, particularly electric and hybrid vehicles.
Commercial vehicles are growing in the automotive electronics market due to its environmental concerns, escalating fuel prices, and the potential to significantly enhance fleet management and efficiency.
Electric vehicles (evs) are spearheading this transformation, particularly within the heavy-duty truck segment. Forerunners like China and India are actively deploying electric trucks for short-haul deliveries and intra-city logistics. This is attributed to the suitability of evs for these applications due to their predictable routes and shorter distances. Additionally, government initiatives in the form of subsidies and tax breaks are accelerating ev adoption in the Apac region. For example, India has implemented a faster adoption and manufacturing of electric vehicles (fame) scheme that offers financial incentives for electric trucks and buses. The advantages of electric trucks are undeniable. They generate zero tailpipe emissions, contributing to cleaner air in urban areas. Moreover, electric motors boast superior efficiency compared to conventional diesel engines, resulting in substantial fuel cost savings for fleet operators. Furthermore, evs empower advancements in fleet management. Operators can leverage remote monitoring capabilities to track battery health, optimize charging schedules, and streamline maintenance routines. However, widespread ev adoption in the Apac region faces certain hurdles. The initial cost of electric trucks remains higher than their diesel counterparts. Additionally, the region grapples with limitations in charging infrastructure, particularly for long-distance haulage. Governments and private entities are actively collaborating to address these challenges by investing in the development of a robust network of charging stations along major transportation corridors. Telematics systems, extending beyond evs, are making significant inroads into commercial vehicles across the Apac region. These systems are increasingly deployed to track vehicle location in real-time, monitor driver behavior, and optimize routes. This data empowers fleet managers to augment operational efficiency and prioritize driver safety. Advanced driver-assistance systems (adas) such as lane departure warnings and automatic emergency braking are also gaining traction, with the potential to reduce accidents and insurance costs.
After market are growing in the automotive electronics market due to vehicular enhancements, the necessity for cost-efficient repairs, and the enthusiasm for customization among automobile aficionados.
A significant catalyst propelling the growth of the electronic aftermarket in Apac is the rising levels of disposable income and the consequent surge in demand for vehicle upgrades. As consumers' financial capabilities strengthen, they seek to elevate the performance, comfort, and aesthe tic appeal of their automobiles. This has led to an upsurge in demand for aftermarket electronic components such as advanced infotainment systems, premium audio solutions, and performance-enhancing electronic control units (ecus). Moreover, the age of the vehicle fleet in the Apac region plays a pivotal role in fueling the expansion of the electronic aftermarket. Numerous vehicles on the roads are older models, and their owners frequently opt for aftermarket solutions to replace outdated or malfunctioning electronic components. This trend is particularly prevalent in countries like India, indonesia, and thailand, where the average age of vehicles is relatively high. Cost-effectiveness emerges as another driving force behind the growth of the electronic aftermarket in apac. Aftermarket electronic components and services often provide more economical alternatives to original equipment manufacturer (oem) parts and repairs. This appeal resonates with budget-conscious consumers who seek to prolong the lifespan of their vehicles without incurring exorbitant expenses. Furthermore, the electronic aftermarket in the Apac region caters to the burgeoning community of automobile enthusiasts and customization aficionados. These individuals aspire to personalize their vehicles with unique electronic features, such as bespoke lighting systems, advanced driver assistance systems (adas), and performance-enhancing electronic modifications. The availability of aftermarket electronic products and services enables the m to tailor their vehicles to their specific preferences and requirements. In terms of product offerings, the electronic aftermarket in Apac encompasses a diverse range. Infotainment systems, encompassing multimedia players, navigation solutions, and smartphone integration capabilities, are in high demand as consumers strive to elevate their in-vehicle entertainment and connectivity experiences. Advanced driver assistance systems (adas), such as blind spot monitoring, lane departure warning, and collision avoidance technologies, are also gaining traction as safety becomes a paramount priority for vehicle owners.
Adas are growing in the automotive electronics market due to stringent safety regulations, and technological advancements.
The European union (eu) has implemented comprehensive regulations and standards aimed at improving vehicle safety and reducing emissions. These regulations have mandated the inclusion of certain safety features, such as electronic stability control and advanced emergency braking systems, in new vehicles sold within the eu. To comply with these regulations, automakers have had to integrate a range of sensors, including radar, cameras, and lidar, to enable these advanced safety systems. Additionally, European consumers have become increasingly aware of the importance of safety features in vehicles, driving the demand for adas technologies. As disposable incomes in the region continue to rise, more consumers are willing to invest in vehicles equipped with advanced safety systems, such as lane departure warning, adaptive cruise control, and pedestrian detection. These systems rely heavily on sensors to collect data about the vehicle's surroundings and make real-time decisions to enhance safety. The growth of adas and sensor technology in Europe is facilitated by technological advancements and the increasing availability of cost-effective components. As sensor technologies become more affordable and compact, automakers can integrate the m into a wider range of vehicle models, making advanced safety features more accessible to a broader consumer base. The radar sensors are widely used in adas applications for their ability to detect and measure the distance, speed, and direction of objects in the vehicle's surroundings. These sensors are crucial for features like adaptive cruise control, blind spot monitoring, and rear cross-traffic alert. Camera sensors are employed for lane departure warning, traffic sign recognition, and pedestrian detection, providing visual data to the adas system. Lidar (light detection and ranging) sensors, although still relatively expensive, are gaining traction in the European market due to their ability to create highly detailed 3d maps of the vehicle's environment. Lidar sensors are particularly useful for advanced features like autonomous emergency braking and autonomous driving capabilities, which are being actively developed and tested in Europe.
Based on report market is divided into five major categories including, China, Japan, India, Australia and South Korea. Japan is expected to grow at fastest rate in asia-pacific automotive electronics market.
Japan’s automotive industry is globally renowned for its exceptional quality, reliability, and innovation, with numerous leading automakers and suppliers headquartered in the country. This robust industry backbone has significantly propelled the progress of the automotive electronics sector. Japanese companies are dedicated to developing technologies that meet the local market's high expectations, such as advanced hybrid and electric vehicle systems, cutting-edge safety features, and autonomous driving technologies. The Japanese government, togethe r with academic institutions and private enterprises, actively promotes and invests in research and development initiatives in the automotive electronics field. This collaborative approach has led to the establishment of numerous world-class research institutions, technology centers, and strategic partnerships committed to advancing the boundaries of automotive electronics technology. Consequently, Japan is at the forefront of pioneering innovations such as battery management systems, intelligent transportation systems, and vehicle-to-everything (v2x) communication, Japan enforces rigorous regulations and standards for vehicle safety, emissions, and fuel efficiency, which necessitate automakers to incorporate sophisticated electronic systems in their vehicles. This demanding regulatory environment, coupled with a highly skilled, knowledgeable, and dedicated workforce, fosters a conducive atmosphere for the development, deployment, and refinement of advanced automotive electronics in Japan. Apac consumers, particularly those in Japan, demonstrate a growing preference for vehicles equipped with state-of-the -art features such as advanced driver assistance systems (adas), connected car technologies, and eco-friendly powertrain solutions. This shift in consumer demand, driven by a desire for enhanced safety, convenience, sustainability, and digital connectivity, motivates automakers to integrate more innovative, complex, and user-friendly electronic systems in their vehicles. The Japanese market is characterized by fierce competition among automakers, which fuels continuous innovation and improvement in automotive electronics. This competitive landscape, along with the country's resilient economy and strong export-oriented focus, contributes to Japan's dominance in the Global automotive electronics market.
Considered in this report
• Historic year: 2018
• Base year: 2023
• Estimated year: 2024
• Forecast year: 2029
Aspects covered in this report
• Automotive Electronics market Outlook with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation
By Component
• Electronic Control Unit
• Sensors
• Current Carrying Devices
• Others
By vehicle type
• Passenger Vehicles
• Commercial Vehicles
By distribution channel
• OEM
• Aftermarket
By Application
• Advanced Driver Assistance Systems
• Safety Systems
• Body Electronics
• Entertainment
• Powertrain
The approach of the report:
This report consists of a combined approach of primary and secondary research. Initially, secondary research was used to get an understanding of the market and list the companies that are present in it. The secondary research consists of third-party sources such as press releases, annual reports of companies, and government-generated reports and databases. After gathering the data from secondary sources, primary research was conducted by conducting telephone interviews with the leading players about how the market is functioning and then conducting trade calls with dealers and distributors of the market. Post this; we have started making primary calls to consumers by equally segmenting them in regional aspects, tier aspects, age group, and gender. Once we have primary data with us, we can start verifying the details obtained from secondary sources.
Intended audience
This report can be useful to industry consultants, manufacturers, suppliers, associations, and organizations related to the Automotive Electronics industry, government bodies, and other stakeholders to align their market-centric strategies. In addition to marketing and presentations, it will also increase competitive knowledge about the industry.
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