세계의 자동차용 인버터 시장 : 인버터 유형, 추진 유형, 재료, 전력 출력, 기술, 차종, 출력전압, 지역별 예측(-2033년)
Global Automotive Inverter Market Research Report Information by Inverter Type, By Propulsion Type By Material By Power Output By Technology By Vehicle Type By Voltage Output and By Region -Forecast Till 2033
상품코드:1555574
리서치사:Market Research Future
발행일:2024년 08월
페이지 정보:영문 205 Pages
라이선스 & 가격 (부가세 별도)
한글목차
자동차용 인버터 시장 규모는 2023년 29억 5,753만 달러에서 예측 기간 중 CAGR 14.8%로 추이하며, 2033년에는 133억 3,370만 달러 규모로 성장할 것으로 예측됩니다.
지역별 인사이트
아시아태평양의 자동차 인버터 시장은 2023년 약 41.40%의 점유율을 차지할 것으로 예상됩니다. 이 지역 시장은 자동차 인버터에 대한 지속적인 수요와 자동차 생산량 증가에 힘입어 성장하고 있습니다. 또한 자동차의 안전성을 높이기 위한 정부의 요구도 이 지역의 자동차 인버터 수요를 크게 증가시키고 있습니다.
북미는 자동차 인버터의 장기적인 성장 시장이며, 특히 미국에서는 트럭과 버스 생산량 증가가 예상되고, 자동차 안전 및 효율 시스템 채택이 증가하고 있습니다. 북미 시장을 촉진하는 요인으로는 많은 소형 차량의 노후화, 소형 차량 1대당 평균 주행거리 증가 등을 들 수 있습니다.
유럽도 2023년 큰 시장 잠재력을 보여주고 있습니다. 유럽 자동차 인버터 시장은 산업 발전, 정부의 교통안전에 대한 지원 등으로 인해 크게 성장할 것으로 예상됩니다.
세계의 자동차용 인버터 시장을 조사했으며, 시장의 정의와 개요, 시장 성장에 대한 각종 영향요인 분석, 시장 규모 추이·예측, 각종 구분·지역별 내역, 경쟁 환경, 주요 기업의 개요 등을 정리하여 전해드립니다.
목차
제1장 개요
제2장 시장 개요
제3장 조사 방법
제4장 시장 역학
촉진요인
연비 효율 요건의 강화
온실가스 배출량의 증가
급속한 상업화
억제요인
충전 인프라의 부족과 높은 유지비
높은 초기 비용
기회
인버터 업계에서 급속한 혁신과 R&D의 강화
태양광 자동차의 수요 증가
동향
인버터 기술의 진보
전기자동차와 하이브리드차의 급증
공급망의 최적화
COVID-19의 영향 분석
제5장 시장 요인 분석
공급망 분석
Porter's Five Forces 모델
SWOT 분석
PESTEL 분석
규제 전망
제6장 세계의 자동차용 인버터 시장 : 인버터 유형별
개요
트랙션 인버터
소프트 스위칭 인버터
제7장 세계의 자동차용 인버터 시장 : 추진 유형별
배터리 전기자동차
플러그인 하이브리드차
하이브리드차
제8장 세계의 자동차용 인버터 시장 : 재료별
질화갈륨
실리콘
실리콘 카바이드
기타
제9장 세계의 자동차용 인버터 시장 : 전력 출력별
200KW 미만
200-300KW
400KW 초과
제10장 세계의 자동차용 인버터 시장 : 기술별
IGBT
MOSFET
제11장 세계의 자동차용 인버터 시장 : 차종별
승용차
상용차
제12장 세계의 자동차용 인버터 시장 : 지역별
개요
북미
유럽
아시아태평양
중동 및 아프리카
남미
제13장 경쟁 구도
시장 점유율 분석
경쟁 대시보드
주요 개발와 성장 전략
제14장 기업 개요
BORGWARNER INC.
ROBERT BOSCH
GKN AUTOMOTIVE
TOYOTA INDUSTRIES CORPORATION
LEAR CORPORATION
SENSATATECHNOLOGIES, INC.
MITSUBISHI ELECTRIC CORPORATION
VALEO
INFINEON
NXP SEMICONDUCTORS
STMICROELECTRONICS
MARELLI
NISSAN MOTOR CORPORATION
DANFOSS
CONTINENTAL AG
DENSO CORPORATION
KSA
영문 목차
영문목차
Global Automotive Inverter Market Research Report Information by Inverter Type (Traction Inverter, and Soft Switching Inverter), By Propulsion Type (Battery Electric Vehicle, Plug in Hybrid Vehicle, and Hybrid Vehicle) By Material (Gallium Nitride, Silicon, Silicon Carbide, and Others) By Power Output (upto 200, 200kW-300kW, Above 400kW) By Technology (IGBT, mosfet) By Vehicle Type (Passenger Car, and Commercial Vehicles) By Voltage Output (Below 400 V, and Above 400 V) and By Region (North America, Europe, Asia-Pacific, Middle East and Africa, South America) -Forecast Till 2033
Market Overview
The Automotive Inverter market is expected to increase from USD 2,957.53 million in 2023 to USD 13,333.7 million by 2033, with a compound yearly growth rate (CAGR) of 14.8% over the forecast period (2024-2033). Global Automotive inverters convert the DC power output stored in the battery to AC power, which is needed to operate the motor. The motor torque and speed can be adjusted, as well as the vehicle speed, by utilizing the inverter to regulate the quantity and frequency of the Power Output delivered to the motor. High output density is an essential factor for automotive inverters, which have tighter space limits than other applications.
One of the most well-known techniques for storing solar energy is Tesla Power output, which is sold as a complement to a photovoltaic solar panel system. The Tesla Power Wall is a large lithium solar battery that stores the energy generated by a home's solar panels throughout the day. This zero-carbon method to power generation and consumption is a great example of reducing the environmental impact of mass transportation. There are currently start-ups focusing on materials innovation and sustainable mobility. They are also using solar technologies to develop solar-electric vehicles. Tesla is the only automaker to offer a complete end-to-end solution for the generation, storage, and use of solar energy at the home.
Market Segmentation
The Automotive Inverter Market is segmented by propulsion type, including battery electric, plug-in hybrid, and hybrid vehicles.
The market is segmented by material, including gallium nitride, silicon, silicon carbide, and others.
The market is segmented based on power output: up to 200 kW, 200 kW to 400 kW, and more than 400 kW.
Regional insights
The study covers North America, Europe, Asia-Pacific, the Middle East and Africa, and South America. By 2023, the Asia-Pacific Automotive Inverter market will account for roughly 41.40% of the global market. The automotive inverter market in Asia Pacific is driven by ongoing demand for automotive inverters and increased vehicle production. Furthermore, rising government demands for boosting vehicle safety have significantly boosted demand for the Asia-Pacific automotive engine automotive inverter.
North America represents a long-term growth market for automotive inverters, particularly in the United States, because to the anticipated volume of truck and bus manufacturing and the increasing adoption of vehicle safety and efficiency systems. Factors driving the North American market include a big and aging light vehicle park, as well as a greater average number of miles traveled per light vehicle.
Meanwhile, Europe appears as a major rival, with significant market potential in 2023. The European automotive inverter market is predicted to grow significantly as a result of increased industrial development, rising demand for automotive inverters, and supportive government road safety efforts.
Major Players
Some of the major players in the global market include Robert Bosch, BorgWarner Inc., Toyota Industries Corporation, Infineon, NXP Semiconductors, STMicroelectronics, Marelli, Lear Corporation, SensataTechnologies, Inc., Mitsubishi Electric Corporation, Nissan Motor Corporation, Danfoss, Continental AG, Denso Corporation, Continental AG, Valeo, and others.
TABLE OF CONTENTS
1 EXECUTIVE SUMMARY
2 MARKET INTRODUCTION
2.1 DEFINITION
2.2 SCOPE OF THE STUDY
2.3 RESEARCH OBJECTIVE
2.4 MARKET STRUCTURE
3 RESEARCH METHODOLOGY
3.1 OVERVIEW
3.2 DATA FLOW
3.2.1 DATA MINING PROCESS
3.3 PURCHASED DATABASE:
3.4 SECONDARY SOURCES:
3.4.1 SECONDARY RESEARCH DATA FLOW:
3.5 PRIMARY RESEARCH:
3.5.1 PRIMARY RESEARCH DATA FLOW:
3.5.2 PRIMARY RESEARCH: NUMBER OF INTERVIEWS CONDUCTED
3.5.3 PRIMARY RESEARCH: REGIONAL COVERAGE
3.6 APPROACHES FOR MARKET SIZE ESTIMATION:
3.6.1 REVENUE ANALYSIS APPROACH
3.7 DATA FORECASTING
3.7.1 DATA FORECASTING TECHNIQUE
3.8 DATA MODELING
3.8.1 MICROECONOMIC FACTOR ANALYSIS:
3.8.2 DATA MODELING:
3.9 TEAMS AND ANALYST CONTRIBUTION
4 MARKET DYNAMICS
4.1 INTRODUCTION
4.2 DRIVERS
4.2.1 INCREASING FUEL EFFICIENCY REQUIREMENTS
4.2.2 RISING GREENHOUSE GAS EMISSION
4.2.3 RAPID COMMERCIALIZATION
4.3 RESTRAINTS
4.3.1 LACK OF CHARGING INFRASTRUCTURE AND HIGH MAINTENANCE COST
4.3.2 HIGH INITIAL COSTS
4.4 OPPORTUNITY
4.4.1 RAPID INNOVATION AND INCREASED R&D IN THE INVERTERS INDUSTRY
4.4.2 RISE IN DEMAND FOR SOLAR-POWER OUTPUTED ELECTRIC VEHICLES
4.5 TRENDS
4.5.1 ADVANCEMENTS IN INVERTER TECHNOLOGY
4.5.2 SURGE IN ELECTRIC VEHICLES (EVS) AND HYBRIDS
4.5.3 SUPPLY CHAIN OPTIMIZATION
4.6 COVID-19 IMPACT ANALYSIS
4.6.1 IMPACT ON OVERALL AUTOMOTIVE INDUSTRY
4.6.1.1 ECONOMIC IMPACT
4.6.2 IMPACT ON AUTOMOTIVE INVERTER MARKET
4.6.3 IMPACT ON SUPPLY CHAIN OF AUTOMOTIVE INVERTER
4.6.3.1 PRICE VARIATION OF KEY RAW MATERIAL
4.6.3.2 PRODUCTION SHUTDOWN
4.6.3.3 CASH FLOW CONSTRAINTS
4.6.3.4 IMPACT ON IMPORT/EXPORT
4.6.4 IMPACT ON MARKET DEMAND OF AUTOMOTIVE INVERTER
4.6.4.1 IMPACT DUE TO RESTRICTIONS/LOCKDOWN
4.6.4.2 CONSUMER SENTIMENTS
4.6.5 IMPACT ON PRICING OF AUTOMOTIVE INVERTER
5 MARKET FACTOR ANALYSIS
5.1 SUPPLY CHAIN ANALYSIS
5.1.1 R&D
5.1.2 COMPONENT SUPPLY
5.1.3 MANUFACTURE & ASSEMBLY
5.1.4 SALES & DISTRIBUTION
5.1.5 END USERS
5.2 PORTER'S FIVE FORCES MODEL
5.2.1 THREAT OF NEW ENTRANTS
5.2.2 BARGAINING POWER OUTPUT OF SUPPLIERS
5.2.3 THREAT OF SUBSTITUTES
5.2.4 BARGAINING POWER OUTPUT OF BUYERS
5.2.5 INTENSITY OF RIVALRY
5.3 MARKET SWOT ANALYSIS
5.4 MARKET PESTEL ANALYSIS
5.5 REGULATORY OUTLOOK
6 GLOBAL AUTOMOTIVE INVERTER MARKET, BY INVERTER TYPE
6.1 OVERVIEW
6.2 TRACTION INVERTER
6.3 SOFT SWITCHING INVERTER
7 GLOBAL AUTOMOTIVE INVERTER MARKET, BY PROPULSION TYPE
7.1 INTRODUCTION
7.2 BATTERY ELECTRIC VEHICLE
7.3 PLUG IN HYBRID VEHICLE
7.4 HYBRID VEHICLE
8 GLOBAL AUTOMOTIVE INVERTER MARKET, BY MATERIAL
8.1 INTRODUCTION
8.2 GALLIUM NITRIDE
8.3 SILICON
8.4 SILICON CARBIDE
8.5 OTHERS
9 GLOBAL AUTOMOTIVE INVERTER MARKET, BY POWER OUTPUT
9.1 INTRODUCTION
9.2 UPTO 200 KW
9.3 200KW-300 KW
9.4 ABOVE 400 KW
10 GLOBAL AUTOMOTIVE INVERTER MARKET, BY TECHNOLOGY
10.1 INTRODUCTION
10.2 IGBT
10.3 MOSFET
11 GLOBAL AUTOMOTIVE INVERTER MARKET, BY VEHICLE TYPE
11.1 INTRODUCTION
11.2 PASSENGER CAR
11.3 COMMERCIAL VEHICLES
12 GLOBAL AUTOMOTIVE INVERTER MARKET, BY REGION
12.1 OVERVIEW
12.1.1 GLOBAL AUTOMOTIVE INVERTER MARKET, BY REGION, 2022 VS 2033 (USD MILLION)
12.1.2 GLOBAL AUTOMOTIVE INVERTER MARKET, BY REGION, 2019-2033 (USD MILLION)