Vehicle Inverters Market Propulsion Type (BEV, HEV, and PHEV), Output Power Type (<=130 kW and >130 kW), Technology Type (IGBT and MOSFET), Semiconductor Materials Type (GaN, Si, and SiC), By Vehicle Type (PC and CV), and Region - Global Forecast to 2025

車両用インバーターの世界市場予測(~2025年)

◆タイトル:Vehicle Inverters Market Propulsion Type (BEV, HEV, and PHEV), Output Power Type (<=130 kW and >130 kW), Technology Type (IGBT and MOSFET), Semiconductor Materials Type (GaN, Si, and SiC), By Vehicle Type (PC and CV), and Region - Global Forecast to 2025
◆商品コード:AT 6880
◆調査・発行会社:MarketsandMarkets
◆発行日:2019年1月29日
◆ページ数:161
◆レポート形式:PDF / 英語
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◆調査対象地域:グローバル
◆産業分野:自動車・輸送
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【レポートの概要】

車両用インバーターの世界市場は、2018年の25億米ドルから2025年には77億米ドルに達し、この期間中17.57%の年平均成長率で成長すると予測されています。この市場の成長を促す要因として、環境基準を重視した電気自動車市場の確実な成長が考えられます。一方で、自動車内の電子ユニットが進歩したことにより、コントローラー、センサー、およびコンデンサーなどの様々なユニットの故障や誤動作といった課題があります。たとえば、DCリンクコンデンサーやその他のIGBTパワーデバイスが故障すると、インバーターが車輪に十分なトルクを伝達できず、危険な運転状態を引き起こす可能性があります。当調査レポートでは、車両用インバーターの世界市場について調査・分析し、エグゼクティブサマリー、市場インサイト、市場概観/市場動向、推進のタイプ別(BEV、HEV、PHEV)分析、出力電力別(130kW以下、130kW超)分析、技術別(IGBT、MOSFET)分析、半導体材料別(GaN、Si、SiC)分析、車両用インバーターの世界市場規模及び予測、市場動向、競争状況、関連企業分析などの情報をお届けいたします。

“Strict government regulations regarding carbon emissions and an increase in sales of electric vehicles have driven the vehicle inverters market globally.”The global vehicle inverters market is estimated to grow from USD 2.5 billion in 2018 at a CAGR of 17.57% to reach USD 7.7 billion by 2025. With a huge emphasis on the environmental norms, the electric vehicle market has seen decent growth, and this has led to a growth in its adjacent markets. However, improvement in electronic units in vehicles is challenged by the rising faults and malfunctioning of various units such as controllers, sensors, and capacitors. For example, the failure of DC link capacitors or any IGBT power device can cause an inverter to generate faulty torques at the wheels, causing unsafe driving conditions.
“Increasing adoption of EVs in the automotive industry is expected to drive the BEV-based vehicle inverters market.”
The BEV-based vehicle inverters market is the fastest and the largest growing segment of the vehicle inverters market. BEVs are considered as zero-emission vehicles. The rebates from the governments on ZEV’s (Zero-Emission Vehicles) purchase can help to increase the BEV sales. Hence, the sale of BEVs is expected to increase in the coming years, which will drive the BEV-based vehicle inverters market.
“IGBT-based vehicle inverters market is projected to be the largest market during the forecast period.”
Heavy investments by vehicle manufacturers in the research and development of the electrification of vehicles is contributing to the growth of the vehicle inverters market. IGBT-based vehicle inverters can withstand high voltage as the newer version of electric vehicles needs to have higher output capacity. The IGBT market is projected to grow due to the growing demand for electric vehicles that require high power efficiency and faster switching capabilities. Hence, IGBT-based vehicle inverters market, by technology type (power module), is projected to be the largest.
“North America is expected to be the second largest market during the forecast period.”
Asia Pacific is estimated to be the largest automotive market followed by North America and Europe. North America is home to leading vehicle manufacturers such as Ford Motors, General Motors, and Tesla. The North American automotive industry has witnessed rapid development because of favorable policies adopted by the government in the manufacturing sector. The US is estimated to account for the largest share of the North American vehicle inverters market during the forecast period. The US automotive industry is highly inclined toward innovation, technology, and development of carbon emission free vehicles. Factors such as stringent emission norms and rising technological advancements in the manufacturing of environment friendly vehicles are expected to propel the North American vehicle inverters market.
In-depth interviews were conducted with CEOs, marketing directors, other innovation and technology directors, and executives from various key organizations operating in the vehicle inverters market.
• By Company Type: OEM – 11% Tier I – 42%, Tier II – 37%, and Tier III – 10%
• By Designation: C Level – 40%, D Level – 35%, and Others – 25%
• By Region: North America – 25%, Europe – 40%, and Asia Pacific – 35%
The vehicle inverters market comprises major manufacturers such as Denso (Japan), Delphi Technologies (UK), Continental AG (Germany), Mitsubishi Electric Corporation (Japan), Toshiba (Japan), and Hitachi (Japan).

Research Coverage:
The market study covers the vehicle inverters market across different segments. It aims at estimating the market size and future growth potential of this market across different segments such as by propulsion type, technology type (power module), semiconductor materials type, output power type, vehicle type, and region. The study also includes an in-depth competitive analysis of the key players in the market along with their company profiles, key observations related to product and business offerings, recent developments, and key market strategies.

Key Benefits of Buying the Report:
The report will help the market leaders/new entrants in this market with information on the closest approximations of the revenue numbers for the overall vehicle inverters market and the subsegments. This report will help stakeholders understand the competitive landscape and gain more insights to better position their businesses and plan suitable go-to-market strategies. The report also helps stakeholders understand the pulse of the market and provides them with information on key market drivers, restraints, challenges, and opportunities.

【レポートの目次】

TABLE OF CONTENTS

1 INTRODUCTION 17
1.1 OBJECTIVES OF THE STUDY 17
1.2 MARKET DEFINITION 17
1.3 MARKET SCOPE 18
1.3.1 MARKETS COVERED 18
1.3.2 YEARS CONSIDERED FOR THE STUDY 19
1.4 CURRENCY 19
1.5 PACKAGE SIZE 20
1.6 LIMITATIONS 20
1.7 STAKEHOLDERS 20
2 RESEARCH METHODOLOGY 21
2.1 RESEARCH DATA 21
2.2 SECONDARY DATA 23
2.2.1 KEY SECONDARY SOURCES 23
2.2.2 KEY DATA FROM SECONDARY SOURCES 24
2.3 PRIMARY DATA 25
2.3.1 SAMPLING TECHNIQUES & DATA COLLECTION METHODS 25
2.3.2 PRIMARY PARTICIPANTS 26
2.3.3 KEY DATA FROM PRIMARY SOURCES 27
2.4 MARKET SIZE ESTIMATION 28
2.4.1 BOTTOM-UP APPROACH 28
2.4.2 TOP-DOWN APPROACH 29
2.5 MARKET BREAKDOWN AND DATA TRIANGULATION 30
2.6 ASSUMPTIONS 31
3 EXECUTIVE SUMMARY 32
4 PREMIUM INSIGHTS 36
4.1 ATTRACTIVE OPPORTUNITIES IN THE VEHICLE INVERTERS MARKET 36
4.2 VEHICLE INVERTERS MARKET, BY REGION 37
4.3 VEHICLE INVERTERS MARKET, BY COUNTRY 38
4.4 VEHICLE INVERTERS MARKET, BY OUTPUT POWER 39
4.5 VEHICLE INVERTERS MARKET, BY TECHNOLOGY (POWER MODULE) 39
4.6 VEHICLE INVERTERS MARKET, BY PROPULSION TYPE 40
4.7 VEHICLE INVERTERS MARKET, BY SEMICONDUCTOR MATERIALS TYPE 41
4.8 VEHICLE INVERTERS MARKET, BY VEHICLE TYPE 42

5 MARKET OVERVIEW 43
5.1 INTRODUCTION 43
5.2 MARKET DYNAMICS 44
5.2.1 DRIVERS 45
5.2.1.1 Rise in sales of electric vehicles globally 45
5.2.1.2 Surge in the use of various handheld and household devices in vehicles 46
5.2.1.3 Usage of navigation devices and smartphones by cab aggregators, car rental, and fleet management service providers 47
5.2.2 RESTRAINTS 47
5.2.2.1 Lower utilization of battery power for necessary vehicle applications 47
5.2.2.2 Complex design and integration process for advanced applications 48
5.2.2.3 Functional safety requirements 48
5.2.3 OPPORTUNITIES 49
5.2.3.1 Development of high power density inverters 49
5.2.3.2 Demand for combined inverter and DC/DC converter 49
5.2.4 CHALLENGES 50
5.2.4.1 Increase in the overall weight of the vehicle and more space consumption by the inverter 50
6 INDUSTRY TRENDS 52
6.1 INTRODUCTION 52
6.2 TECHNOLOGY OVERVIEW 53
6.2.1 DEVELOPMENT OF MULTILEVEL INVERTERS FOR EV APPLICATIONS 53
6.2.2 NEW SEMICONDUCTOR MATERIALS: SILICON CARBIDE AND GALLIUM NITRIDE 54
6.2.2.1 Silicon Carbide (SiC) 54
6.2.2.2 Gallium Nitride (GaN) 55
6.2.3 EMERGENCE OF ADVANCED VEHICLE INVERTERS IN ELECTRIC VEHICLES 56
6.3 REGULATORY OVERVIEW 57
6.4 VALUE CHAIN ANALYSIS 58
7 ELECTRIC VEHICLE INVERTERS MARKET, BY PROPULSION TYPE 59
7.1 INTRODUCTION 60
7.2 RESEARCH METHODOLOGY 61
7.3 BATTERY ELECTRIC VEHICLE (BEV) 62
7.3.1 INCREASE IN SALES OF BEV WILL BOOST THE MARKET OF VEHICLE INVERTERS GLOBALLY 63
7.4 HYBRID ELECTRIC VEHICLE (HEV) 64
7.4.1 RISE IN USAGE OF FULLY HYBRID VEHICLES WILL FUEL THE MARKET OF VEHICLE INVERTERS 64
7.5 PLUG-IN HYBRID ELECTRIC VEHICLE (PHEV) 65
7.5.1 BETTER CHARGING INFRASTRUCTURE WILL DIRECTLY PROPEL THE VEHICLE INVERTERS MARKET 66
7.6 KEY INDUSTRY INSIGHTS 67
8 ELECTRIC VEHICLE INVERTERS MARKET, BY TECHNOLOGY TYPE (POWER MODULE) 68
8.1 INTRODUCTION 69
8.2 RESEARCH METHODOLOGY 70
8.3 IGBT 71
8.3.1 IGBT PROVIDES FASTER SWITCHING CAPABILITIES AND SUITABLE FOR HIGH POWER APPLICATIONS 71
8.4 MOSFET 72
8.4.1 MOSFET HAS THE ADVANTAGES OF HIGHER COMMUTATION SPEED AND GREATER EFFICIENCY DURING OPERATION AT LOW VOLTAGES 72
8.5 KEY INDUSTRY INSIGHTS 73
9 ELECTRIC VEHICLE INVERTERS MARKET, BY SEMICONDUCTOR MATERIALS TYPE 74
9.1 INTRODUCTION 75
9.2 RESEARCH METHODOLOGY 75
9.3 GALLIUM NITRIDE 77
9.3.1 GALLIUM NITRIDE SPECIALIZED SEMICONDUCTOR USUALLY USED IN OPTICAL ELECTRONICS 77
9.4 SILICON 78
9.4.1 SILICON DEVICES SUPPORTS HIGH FREQUENCY SWITCHING APPLICATIONS 78
9.5 SILICON CARBIDE 79
9.5.1 SILICON CARBIDE MATERIALS PROVIDE GREATER THERMAL MANAGEMENT FLEXIBILITY 79
9.6 KEY INDUSTRY INSIGHTS 80
10 ELECTRIC VEHICLE INVERTERS MARKET, BY OUTPUT POWER 81
10.1 INTRODUCTION 82
10.2 RESEARCH METHODOLOGY 82
10.3 <= 130KW 84
10.3.1 SUITABLE FOR FWD OR RWD WHEEL DRIVE VEHICLES 84
10.4 > 130 KW 84
10.4.1 BEST SUITED FOR AWD WHEEL DRIVE VEHICLES 84
10.5 KEY INDUSTRY INSIGHTS 85
11 VEHICLE INVERTERS MARKET, BY VEHICLE TYPE 86
11.1 INTRODUCTION 87
11.2 RESEARCH METHODOLOGY 87
11.3 PASSENGER CARS 89
11.3.1 VEHICLE INVERTERS FIND APPLICATION IN LOWER POWER USAGE DEVICES IN PASSENGER CARS 89
11.4 COMMERCIAL VEHICLES 90
11.4.1 VEHICLE INVERTERS ENABLE THE USAGE OF HOUSEHOLD ELECTRIC APPLIANCES IN COMMERCIAL VEHICLES 90
11.5 KEY INDUSTRY INSIGHTS 91
12 ELECTRIC VEHICLE INVERTERS MARKET, BY REGION 92
12.1 INTRODUCTION 93
12.2 ASIA PACIFIC 96
12.2.1 CHINA 98
12.2.1.1 Incentives and subsidy will push the growth of electric vehicles in China 98
12.2.2 INDIA 99
12.2.2.1 Favorable government policies will foster the growth of the electric vehicle industry 99
12.2.3 JAPAN 100
12.2.3.1 Major OEMs operating in Japan will foster the market for electric vehicles 100
12.2.4 SOUTH KOREA 101
12.2.4.1 Rise in sales of HEV and BEV vehicles is boosting the market for vehicle inverters in South Korea 101
12.3 NORTH AMERICA 102
12.3.1 CANADA 104
12.3.1.1 Government initiatives for the development of electric vehicle infrastructure will foster the growth of electric vehicles in Canada 104
12.3.2 MEXICO 105
12.3.2.1 Cheap labor cost is fueling the growth of the automotive industry in Mexico 105
12.3.3 US 106
12.3.3.1 Strict emission norms and huge expenditure on the development of electric vehicles are driving the development of vehicle inverters in the US market 106
12.4 EUROPE 107
12.4.1 FRANCE 109
12.4.1.1 Rising number of HEVs and PHEVs in France is boosting the market for vehicle inverters 109
12.4.2 GERMANY 110
12.4.2.1 High focus on reducing carbon emissions is driving the market for electric vehicles in Germany 110
12.4.3 NETHERLANDS 111
12.4.3.1 Netherlands has the highest adoption of electric vehicles driven by government incentives 111
12.4.4 NORWAY 112
12.4.4.1 Various tax exemption for electric vehicles such as road tax, purchase tax, registration tax, import tax, and annual tax is boosting the e-mobility 112

12.4.5 SWEDEN 113
12.4.5.1 Strong electric vehicle infrastructure 113
12.4.6 UK 114
12.4.6.1 UK is among the largest markets for electric vehicles in the Europe region 114
13 COMPETITIVE LANDSCAPE 115
13.1 OVERVIEW 115
13.2 MARKET RANKING ANALYSIS 117
13.3 COMPETITIVE SITUATIONS & TRENDS 118
13.3.1 NEW PRODUCT DEVELOPMENTS 119
13.3.2 EXPANSIONS 121
13.3.3 PARTNERSHIPS/SUPPLY CONTRACTS/COLLABORATIONS/ JOINT VENTURES/AGREEMENTS/MERGERS & ACQUISITIONS 122
13.4 COMPETITIVE LEADERSHIP MAPPING 123
13.4.1 VISIONARY LEADERS 123
13.4.2 INNOVATORS 123
13.4.3 DYNAMIC DIFFERENTIATORS 124
13.4.4 EMERGING COMPANIES 124
14 COMPANY PROFILES 125
(Business overview, Products offered, Recent Developments, SWOT analysis, MNM view)*
14.1 DENSO 125
14.2 DELPHI TECHNOLOGIES 128
14.3 CONTINENTAL AG 132
14.4 ROBERT BOSCH GMBH 135
14.5 MITSUBISHI ELECTRIC CORPORATION 137
14.6 HITACHI 140
14.7 VALEO 142
14.8 FUJI ELECTRIC 145
14.9 LEAR CORPORATION 147
14.10 TOSHIBA 148
14.11 ADDITIONAL COMPANY PROFILES 150
14.11.1 TOYOTA INDUSTRIES 150
14.11.2 CALSONIC KANSEI 150
14.11.3 SENSATA TECHNOLOGIES 150
14.11.4 SAMLEX EUROPE 151
14.11.5 METRIC MIND CORPORATION 151
14.11.6 XANTREX 151

14.11.7 AIMS POWER COMPACTS 151
14.11.8 STANLEY BLACK & DECKER 152
14.11.9 BESTEK CORP 152
14.11.10 ENERGIZER 152
*Details on Business overview, Products offered, Recent Developments, SWOT analysis, MNM view might not be captured in case of unlisted companies.
15 APPENDIX 153
15.1 INSIGHTS FROM INDUSTRY EXPERTS 153
15.2 DISCUSSION GUIDE 154
15.3 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 157
15.4 AVAILABLE CUSTOMIZATIONS 159
15.4.1 VEHICLE INVERTERS MARKET, BY OUTPUT POWER, BY VALUE 159
15.5 RELATED REPORTS 159
15.6 AUTHOR DETAILS 160

LIST OF TABLES

TABLE 1 CURRENCY EXCHANGE RATES (WRT USD) 19
TABLE 2 VEHICLE INVERTERS MARKET SIZE, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 62
TABLE 3 VEHICLE INVERTERS MARKET SIZE, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 62
TABLE 4 BATTERY ELECTRIC VEHICLE: VEHICLE INVERTERS MARKET SIZE, BY REGION, 2016–2025 (‘000 UNITS) 63
TABLE 5 BATTERY ELECTRIC VEHICLE: VEHICLE INVERTERS MARKET SIZE, BY REGION, 2016–2025 (USD MILLION) 63
TABLE 6 HYBRID ELECTRIC VEHICLE: VEHICLE INVERTERS MARKET SIZE, BY REGION, 2016–2025 (’000 UNITS) 64
TABLE 7 HYBRID ELECTRIC VEHICLE: VEHICLE INVERTERS MARKET SIZE, BY REGION, 2016–2025 (USD MILLION) 65
TABLE 8 PLUG-IN HYBRID ELECTRIC VEHICLE: VEHICLE INVERTERS MARKET SIZE,
BY REGION, 2016–2025 (’000 UNITS) 66
TABLE 9 PLUG-IN HYBRID ELECTRIC VEHICLE: VEHICLE INVERTERS MARKET SIZE,
BY REGION, 2016–2025 (USD MILLION) 66
TABLE 10 VEHICLE INVERTERS MARKET SIZE, BY TECHNOLOGY TYPE,
2016–2025 (000’ UNITS) 70
TABLE 11 VEHICLE INVERTERS MARKET SIZE, BY TECHNOLOGY TYPE,
2016–2025 (USD MILLION) 71
TABLE 12 IGBT: VEHICLE INVERTERS MARKET SIZE, BY REGION, 2016–2025 (000’ UNITS) 71
TABLE 13 IGBT: VEHICLE INVERTERS MARKET SIZE, BY REGION, 2016–2025 (USD MILLION) 72
TABLE 14 MOSFET: VEHICLE INVERTERS MARKET SIZE, BY REGION,
2016–2025 (000’ UNITS) 72
TABLE 15 MOSFET: VEHICLE INVERTERS MARKET SIZE, BY REGION,
2016–2025 (USD MILLION) 73
TABLE 16 VEHICLE INVERTERS MARKET SIZE, BY SEMICONDUCTOR MATERIALS TYPE,
2016–2025 (USD MILLION) 76
TABLE 17 GALLIUM NITRIDE: VEHICLE INVERTERS MARKET SIZE, BY REGION,
2016–2025 (USD MILLION) 77
TABLE 18 SILICON: VEHICLE INVERTERS MARKET SIZE, BY REGION,
2016–2025 (USD MILLION) 78
TABLE 19 SILICON CARBIDE: VEHICLE INVERTERS MARKET SIZE, BY REGION,
2016–2025 (USD MILLION) 79
TABLE 20 VEHICLE INVERTERS MARKET SIZE, BY OUTPUT POWER, 2016–2025 (000’ UNITS) 83
TABLE 21 <= 130KW: VEHICLE INVERTERS MARKET SIZE, BY REGION,
2016–2025 (000’ UNITS) 84
TABLE 22 > 130 KW: VEHICLE INVERTERS MARKET SIZE, BY REGION,
2016–2025 (000’ UNITS) 84
TABLE 23 VEHICLE INVERTERS MARKET, BY VEHICLE TYPE, 2016–2025 (’000 UNITS) 88
TABLE 24 VEHICLE INVERTERS MARKET, BY VEHICLE TYPE, 2016–2025 (USD MILLION) 88
TABLE 25 PASSENGER CARS: VEHICLE INVERTERS MARKET, BY REGION,
2016–2025 (’000 UNITS) 89
TABLE 26 PASSENGER CARS: VEHICLE INVERTERS MARKET, BY REGION,
2016–2025 (USD MILLION) 89
TABLE 27 COMMERCIAL VEHICLES: VEHICLE INVERTERS MARKET, BY REGION,
2016–2025 (’000 UNITS) 90
TABLE 28 COMMERCIAL VEHICLES: VEHICLE INVERTERS MARKET, BY REGION,
2016–2025 (USD MILLION) 90
TABLE 29 VEHICLE INVERTERS MARKET, BY REGION, 2016–2025 (‘000 UNITS) 94
TABLE 30 VEHICLE INVERTERS MARKET, BY REGION, 2016–2025 (USD MILLION) 95
TABLE 31 ASIA PACIFIC: VEHICLE INVERTERS MARKET, BY COUNTRY,
2016–2025 (‘000 UNITS) 97
TABLE 32 ASIA PACIFIC: VEHICLE INVERTERS MARKET, BY COUNTRY,
2016–2025 (USD MILLION) 97
TABLE 33 CHINA: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 98
TABLE 34 CHINA: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 98
TABLE 35 INDIA: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 99
TABLE 36 INDIA: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 99
TABLE 37 JAPAN: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 100
TABLE 38 JAPAN: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 100
TABLE 39 SOUTH KOREA: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 101
TABLE 40 SOUTH KOREA: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 101
TABLE 41 NORTH AMERICA: VEHICLE INVERTERS MARKET, BY COUNTRY,
2016–2025 (‘000 UNITS) 103
TABLE 42 NORTH AMERICA: VEHICLE INVERTERS MARKET, BY COUNTRY,
2016–2025 (USD MILLION) 103
TABLE 43 CANADA: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 104
TABLE 44 CANADA: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 104
TABLE 45 MEXICO: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 105
TABLE 46 MEXICO: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 105
TABLE 47 US: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 106
TABLE 48 US: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 106
TABLE 49 EUROPE: VEHICLE INVERTERS MARKET, BY COUNTRY, 2016–2025 (‘000 UNITS) 108
TABLE 50 EUROPE: VEHICLE INVERTERS MARKET, BY COUNTRY, 2016–2025 (USD MILLION) 108
TABLE 51 FRANCE: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 109
TABLE 52 FRANCE: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 109
TABLE 53 GERMANY: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (‘000 UNITS) 110
TABLE 54 GERMANY: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 110
TABLE 55 NETHERLANDS: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 ('000 UNITS) 111
TABLE 56 NETHERLANDS: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 111
TABLE 57 NORWAY: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 ('000 UNITS) 112
TABLE 58 NORWAY: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 112
TABLE 59 SWEDEN: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 ('000 UNITS) 113
TABLE 60 SWEDEN: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 113
TABLE 61 UK: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 ('000 UNITS) 114
TABLE 62 UK: VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2016–2025 (USD MILLION) 114
TABLE 63 NEW PRODUCT DEVELOPMENTS, 2015–2018 119
TABLE 64 EXPANSIONS, 2015–2018 121
TABLE 65 PARTNERSHIPS/SUPPLY CONTRACTS/COLLABORATIONS/JOINT VENTURES/ AGREEMENTS/MERGERS & ACQUISITIONS, 2015–2018 122


LIST OF FIGURES

FIGURE 1 VEHICLE INVERTERS MARKET SEGMENTATION 18
FIGURE 2 VEHICLE INVERTERS MARKET SEGMENTATION, BY REGION 18
FIGURE 3 RESEARCH DESIGN 21
FIGURE 4 RESEARCH METHODOLOGY MODEL 22
FIGURE 5 BREAKDOWN OF PRIMARY INTERVIEWS 25
FIGURE 6 GLOBAL VEHICLE INVERTERS MARKET SIZE: BOTTOM-UP APPROACH 28
FIGURE 7 GLOBAL VEHICLE INVERTERS MARKET SIZE: TOP-DOWN APPROACH 29
FIGURE 8 DATA TRIANGULATION 30
FIGURE 9 VEHCILE INVERTERS MARKET: MARKET DYNAMICS 33
FIGURE 10 MOSFET BASED VEHCILE INVERTER BY TECHNOLOGY TYPE IS EXPECTED TO WITNESS THE FASTEST GROWTH IN THE VEHICLE INVERTERS MARKET,
2018 VS. 2025 (USD MILLION) 34
FIGURE 11 SIC (SILICON CARBIDE) IS EXPECTED TO HAVE THE FASTEST GROWTH IN THE VEHICLE INVERTERS MARKET BY 2025 (USD MILLION) 34
FIGURE 12 VEHICLE INVERTERS MARKET: MARKET SIZE 35
FIGURE 13 TECHNOLOGICAL ADVANCEMENTS AND THE GROWTH OF ELECTRIC VEHICLES ARE EXPECTED TO DRIVE THE VEHICLE INVERTERS MARKET 36
FIGURE 14 ASIA PACIFIC IS ESTIMATED TO BE THE LARGEST VEHICLE INVERTERS MARKET,
BY VALUE 37
FIGURE 15 CHINESE MARKET IS EXPECTED TO WITNESS THE HIGHEST GROWTH
DURING THE FORECAST PERIOD (BY VALUE) 38
FIGURE 16 >130 KW SEGEMENT IS PROJECTED TO HAVE THE LARGEST MARKET SHARE
IN 2025, BY VOLUME 39
FIGURE 17 IGBT-BASED VEHICLE INVERTERS IS ESTIMATED TO DOMINATE THE MARKET,
BY VALUE 39
FIGURE 18 BEVS ARE PROJECTED TO DOMINATE THE VEHICLE INVERTERS MARKET, BY VALUE 40
FIGURE 19 SI MATERIALS ARE PROJECTED TO DOMINATE THE VEHICLE INVERTERS MARKET, BY VALUE 41
FIGURE 20 COMMERCIAL VEHICLES ARE PROJECTED TO DOMINATE THE VEHICLE INVERTERS MARKET, BY VALUE 42
FIGURE 21 VEHICLE INVERTERS MARKET: MARKET DYNAMICS 44
FIGURE 22 SALES OF ELECTRIC VEHICLES 45
FIGURE 23 USAGE OF INVERTERS IN EV/HEV 46
FIGURE 24 POWERTRAIN ARCHITECTURE OF ELECTRIC VEHICLE 48
FIGURE 25 HITACHI’S FUTURE INVERTER DEVELOPMENT PLAN 50
FIGURE 26 2012 NISSAN LEAF INVERTER WEIGHT DISTRIBUTION 51
FIGURE 27 USAGE OF INVERTERS TO POWER VARIOUS DEVICES 52
FIGURE 28 ADVANTAGES OF MULTILEVEL INVERTERS 53
FIGURE 29 POWER COMPARISON OF SILICON POWER SEMICONDUCTOR VS. SILICON CARBIDE POWER SEMICONDUCTOR 54
FIGURE 30 SILICON CARBIDE VS. GALLIUM NITRIDE 55
FIGURE 31 HITACHI’S VEHICLE INVERTER EVOLUTION 56
FIGURE 32 HITACHI: COMPARISON OF MAXIMUM CURRENT RATIOS 57
FIGURE 33 VALUE CHAIN ANALYSIS: VEHICLE INVERTERS MARKET 58
FIGURE 34 VEHICLE INVERTERS MARKET, BY PROPULSION TYPE,
2018 VS 2025 (USD MILLION) 61
FIGURE 35 VEHICLE INVERTERS MARKET, BY TECHNOLOGY TYPE,
2018 VS. 2025 (USD MILLION) 70
FIGURE 36 VEHICLE INVERTERS MARKET, BY SEMICONDUCTOR MATERIALS TYPE,
2018 VS. 2025 (USD MILLION) 76
FIGURE 37 VEHICLE INVERTERS MARKET, BY OUTPUT POWER, 2018 VS. 2025 (‘000 UNITS) 83
FIGURE 38 VEHICLE INVERTERS MARKET, BY VEHICLE TYPE, 2018 VS. 2025 (USD MILLION) 88
FIGURE 39 ASIA PACIFIC IS ESTIMATED TO HOLD THE LARGEST MARKET SHARE IN 94
FIGURE 40 ASIA PACIFIC: VEHICLE INVERTERS MARKET SNAPSHOT 96
FIGURE 41 NORTH AMERICA: VEHICLE INVERETERS MARKET SNAPSHOT 102
FIGURE 42 EUROPE: VEHICLE INVERTERS MARKET SNAPSHOT, BY COUNTRY,
2018 VS. 2025 (USD MILLION) 107
FIGURE 43 KEY DEVELOPMENTS BY LEADING PLAYERS IN THE VEHICLE INVERTERS MARKET FOR 2015–2018 116
FIGURE 44 CONTINENTAL LEAD THE VEHICLE INVERTERS MARKET IN 2017 117
FIGURE 45 COMPETITIVE LEADERSHIP MAPPING: VEHICLE INVERTERS MARKET, 2018 124
FIGURE 46 COMPANY SNAPSHOT: DENSO 125
FIGURE 47 SWOT ANALYSIS: DENSO 127
FIGURE 48 COMPANY SNAPSHOT: DELPHI TECHNOLOGIES 128
FIGURE 49 SWOT ANALYSIS: DELPHI TECHNOLOGIES 131
FIGURE 50 COMPANY SNAPSHOT: CONTINENTAL AG 132
FIGURE 51 SWOT ANALYSIS: CONTINENTAL AG 134
FIGURE 52 COMPANY SNAPSHOT: ROBERT BOSCH GMBH 135
FIGURE 53 SWOT ANALYSIS: ROBERT BOSCH GMBH 136
FIGURE 54 COMPANY SNAPSHOT: MITSUBISHI ELECTRIC CORPORATION 137
FIGURE 55 SWOT ANALYSIS: MITSUBISHI ELECTRIC CORPORATION 139
FIGURE 56 COMPANY SNAPSHOT: HITACHI 140
FIGURE 57 COMPANY SNAPSHOT: VALEO 142
FIGURE 58 COMPANY SNAPSHOT: FUJI ELECTRIC 145
FIGURE 59 COMPANY SNAPSHOT: LEAR CORPORATION 147
FIGURE 60 COMPANY SNAPSHOT: TOSHIBA 148


★調査レポート[車両用インバーターの世界市場予測(~2025年)] ( Vehicle Inverters Market Propulsion Type (BEV, HEV, and PHEV), Output Power Type (<=130 kW and >130 kW), Technology Type (IGBT and MOSFET), Semiconductor Materials Type (GaN, Si, and SiC), By Vehicle Type (PC and CV), and Region - Global Forecast to 2025 / AT 6880) 販売に関する免責事項
[車両用インバーターの世界市場予測(~2025年)] ( Vehicle Inverters Market Propulsion Type (BEV, HEV, and PHEV), Output Power Type (<=130 kW and >130 kW), Technology Type (IGBT and MOSFET), Semiconductor Materials Type (GaN, Si, and SiC), By Vehicle Type (PC and CV), and Region - Global Forecast to 2025 / AT 6880) についてEメールでお問い合わせ


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