Current Sensor Market Research Report Forecast to 2032
상품코드:1460095
리서치사:Market Research Future
발행일:2024년 03월
페이지 정보:영문 342 Pages
라이선스 & 가격 (부가세 별도)
한글목차
전류 센서 시장 규모는 예측 기간 동안 CAGR 7.6%를 기록할 것으로 예상됩니다.
전류 센서는 많은 전기 제품의 건전성, 성능 및 합법적인 작동을 유지하는 데 필수적입니다. 배터리로 구동되는 친환경 전력 애플리케이션의 사용이 빠르게 증가하면서 시장을 주도하고 있습니다. 휴대폰, 태블릿 및 기타 소형 가젯은 더 낮은 구조적 요소와 더 낮은 전력 사용률을 요구하고 있습니다.
미국, 캐나다, 멕시코로 구성된 북미 지역은 시장 발전의 최전선에 위치하고 있습니다. 북미 시장에서는 에너지 효율과 유지보수성에 대한 관심이 높아지면서 다양한 비즈니스에서 전류 센서의 인기가 높아지고 있습니다.
세계의 전류 센서 시장을 조사했으며, 시장 정의와 개요, 시장 성장에 영향을 미치는 요인과 시장 기회 분석, 시장 규모 추정과 예측, 각종 부문별·지역별 분석, 경쟁 환경, 주요 기업 개요 등의 정보를 정리하여 전해드립니다.
목차
제1장 주요 요약
제2장 시장 개요
제3장 조사 방법
제4장 시장 역학
성장 촉진요인
EV 보급이 현재 센서 시장을 견인
스마트 시티 프로젝트 증가
배터리 구동 및 재생에너지 용도 사용이 급증
성장 억제요인
통합의 복잡성
전류 범위와 민감도에 관한 제한
현재 센서 개발비
기회
IIoT 성장
가전제품의 수요 증가
과제
환경에의 유해한 영향
공급망 혼란
COVID-19의 영향 분석
동향
제조업의 IoT와 인더스트리 4.0도입 확대
자동차 산업의 혁신
제5장 시장 요인 분석
밸류체인 분석
Porter's Five Forces 분석
SWOT 분석
PESTEL 분석
특허 분석
제6장 세계의 전류 센서 시장 : 루프 구별
개요
오픈 루프
클로즈드 루프
제7장 세계의 전류 센서 시장 : 센싱 유형별
직류 전류 감지
간접 전류 감지
제8장 세계의 전류 센서 시장 : 기술 유형별
절연 전류 센서
비절연 전류 센서
제9장 세계의 전류 센서 시장 : 전류 범위별
100A 미만
100A-1000A
1000A 이상
제10장 세계의 전류 센서 시장 : 판매 채널별
온라인
오프라인
제11장 세계의 전류 센서 시장 : 용도별
모터 드라이브
컨버터와 인버터
UPS와 SMPS
발전기
전지 관리, 전동 구동
급속 DC 충전기(EV)
과부하 검출
그리드 인프라
자동차용 파워트레인
기타
제12장 세계의 전류 센서 시장 : 최종사용자별
자동차
가전제품
산업용
헬스케어
에너지·전력
항공우주 및 방위
기타
제13장 세계의 전류 센서 시장 : 지역별
개요
북미
유럽
아시아태평양
중동 및 아프리카
남미
제14장 경쟁 상황
시장 점유율 분석
경쟁 대시보드
주요 전개·성장 전략
제15장 기업 개요
INFINEON TECHNOLOGIES AG
HONEYWELL INTERNATIONAL INC.
TEXAS INSTRUMENTS
TAMURA CORPORATION
TDK CORPORATION
ALLEGRO MICROSYSTEMS, LLC
LEM INTERNATIONAL SA
EATON CORPORATION
PULSE ELECTRONICS
NK TECHNOLOGIES
SENSITEC GMBH
SENSOR ELECTRONIC TECHNOLOGY(SET)
MELEXIS
ACEINNA
SCHNEIDER ELECTRIC
LUKSENS
SENSATA TECHNOLOGIES, INC.
ELECTROHMS PRIVATE LIMITED
MAGNELAB
ICE COMPONENTS, INC.
DATA CITATIONS
ksm
영문 목차
영문목차
Market Overview
Current Sensor Market is estimated to record a CAGR of 7.6 % during the review period. Current sensors are essential for keeping up with the wellbeing, proficiency, and legitimate working of numerous electrical frameworks. They give continuous information about current utilization, considering control and observing of gadgets and frameworks. The market is driven by the quickly growing utilization of battery-fueled and environmentally friendly power applications. More modest structure factors and lower power utilization rates are expected for cell phones, tablets, and other compact gadgets. The requirement for current sensors is critical on the grounds that they give an exceptionally exact, super low-power answer for assessing remaining battery duration and shielding the hardware and Li+ battery from overcurrent circumstances.
Players from numerous customer devices markets are growing new innovations that intensely used present sensors. Successful power the executives ICs are required for customer hardware such cell phones, tablets, televisions, wearables, and infotainment gear. GaN (gallium nitride), which empowers organizations to offer compelling answers for their clients, has formed into a significant structure block for power gadgets considering the rising interest for portability, independence, and energy effectiveness. Thus, the current sensor market is seeing a critical expansion in pay due to the developing customer hardware area. To control the result voltage and keep away from over-burdens, current sensors are utilized to supply measure the current traveling through the power. The use of current sensors in purchaser hardware is extending rapidly as the need might arise for additional trustworthy and effective items develops.
Market Segmentation
Based on loop, the Current Sensor Market is divided into includes open loop and closed loop. Based on Sensing Type, the Market is segmented into Direct Current Sensing and Indirect Current Sensing.
Based on the Technology Type, the market is divided into Isolated Current Sensors and Non-isolated current sensors. Based on End User, the market is classified into automotive, consumer electronics, industrial, healthcare, energy & power, aerospace & defense, and others.
Regional Insights
North America, comprising of the US, Canada, and Mexico, remains at the front line of mechanical development in current sensor market. The North American current sensor market is becoming because of a few elements. First and foremost, there is a rising accentuation on energy effectiveness and maintainability in the region, which has prompted a more popularity for current sensors across different businesses.
The European current sensor market is encountering powerful development, driven by a juncture of elements that mirror the region's obligation to energy proficiency, maintainability, and mechanical development. One of the essential drivers of this development is the landmass' unfaltering spotlight on energy proficiency. Europe has effectively advanced supportability and diminished energy utilization, prodding interest for current sensors across different applications.
The current sensor market in the Asia-Pacific (APAC) region is encountering significant development and change. Key nations like China, Japan, South Korea, India, and other APAC countries are at the front line of propelling this industry. State run administrations all through the APAC region is effectively putting resources into current sensor advancements to upgrade different areas, from assembling to energy the executives and then some.
Major Players
The major players in the market are Infineon Technologies, Honeywell International, Texas Instruments Incorporated, TAMURA Corporation, TDK Corporation, Allegro MicroSystems, LLC, LEM International SA, Eaton Corporation, Pulse Electronics, NK Technologies, Sensitec GmbH, Sensor Electronic Technology and Others.
TABLE OF CONTENTS
1 EXECUTIVE SUMMARY 31
2 MARKET INTRODUCTION 33
2.1 DEFINITION 33
2.2 SCOPE OF THE STUDY 33
2.3 RESEARCH OBJECTIVE 33
2.4 MARKET STRUCTURE 34
3 RESEARCH METHODOLOGY 35
3.1 OVERVIEW 35
3.2 DATA FLOW 37
3.2.1 DATA MINING PROCESS 37
3.3 PURCHASED DATABASE: 38
3.4 SECONDARY SOURCES: 39
3.4.1 SECONDARY RESEARCH DATA FLOW: 40
3.5 PRIMARY RESEARCH: 41
3.5.1 PRIMARY RESEARCH DATA FLOW: 42
3.5.2 PRIMARY RESEARCH: NUMBER OF INTERVIEWS CONDUCTED 43
3.5.3 PRIMARY RESEARCH: REGIONAL COVERAGE 43
3.6 APPROACHES FOR MARKET SIZE ESTIMATION: 44
3.6.1 REVENUE ANALYSIS APPROACH 44
3.7 DATA FORECASTING 45
3.7.1 DATA FORECASTING TECHNIQUE 45
3.8 DATA MODELING 46
3.8.1 MICROECONOMIC FACTOR ANALYSIS: 46
3.8.2 DATA MODELING: 47
3.9 TEAMS AND ANALYST CONTRIBUTION 49
4 MARKET DYNAMICS 51
4.1 INTRODUCTION 51
4.2 DRIVERS 51
4.2.1 EV ADOPTION DRIVES CURRENT SENSOR MARKET 51
4.2.2 RISE IN NUMBER OF SMART CITIES PROJECTS 52
4.2.3 RAPIDLY INCREASING USE OF BATTERY-POWERED AND RENEWABLE ENERGY APPLICATIONS 52
4.3 RESTRAINTS 53
4.3.1 COMPLEXITY OF INTEGRATION 53
4.3.2 LIMITATION WITH RESPECT TO CURRENT RANGE AND SENSITIVITY 53
4.3.3 HIGH DEVELOPMENT COSTS OF CURRENT SENSORS 54
4.4 OPPORTUNITY 55
4.4.1 GROWTH OF INDUSTRIAL IOT 55
4.4.2 GROWING DEMAND FROM CONSUMER ELECTRONICS 55
4.5 CHALLENGES 56
4.5.1 HARMFUL IMPACT ON ENVIRONMENT 56
4.5.2 DISRUPTION IN SUPPLY CHAIN 56
4.6 COVID-19 IMPACT ANALYSIS 57
4.7 TRENDS 59
4.7.1 GROWING ADOPTION OF IOT AND INDUSTRY 4.0 IN MANUFACTURING 59
4.7.2 INNOVATION IN AUTOMOTIVE INDUSTRY 59
5 MARKET FACTOR ANALYSIS 60
5.1 VALUE CHAIN ANALYSIS 60
5.1.1 R&D 61
5.1.2 RAW MATERIAL SUPPLIERS 61
5.1.3 ORIGINAL EQUIPMENT MANUFACTURERS (OEMS) 61
5.1.4 SYSTEM INTEGRATORS 61
5.1.5 END USERS 61
5.2 PORTER'S FIVE FORCES MODEL 62
5.2.1 THREAT OF NEW ENTRANTS 62
5.2.2 BARGAINING POWER OF SUPPLIERS 63
5.2.3 THREAT OF SUBSTITUTES 63
5.2.4 BARGAINING POWER OF BUYERS 63
5.2.5 INTENSITY OF RIVALRY 63
5.3 MARKET SWOT ANALYSIS 64
5.4 MARKET PESTEL ANALYSIS 64
5.4.1 POLITICAL 64
5.4.1.1 GOVERNMENT STABILITY 64
5.4.1.2 TAX POLICY 64
5.4.1.3 COMPETITION REGULATION 65
5.4.1.4 TRADE BLOCKS 65
5.4.2 ECONOMIC 65
5.4.2.1 INFLATION RATE 65
5.4.2.2 INTEREST RATE 65
5.4.2.3 CONSUMER SPENDING TRENDS 65
5.4.2.4 UNEMPLOYMENT TRENDS 66
5.4.3 SOCIAL 66
5.4.3.1 DEMOGRAPHICS 66
5.4.3.2 EDUCATION 66
5.4.4 TECHNOLOGICAL 66
5.4.4.1 TECHNOLOGICAL INFRASTRUCTURE 66
5.4.4.2 INVESTMENT IN R &D 66
5.4.5 ENVIRONMENTAL 67
5.4.5.1 RECYCLING 67
5.4.5.2 WASTE MANAGEMENT 67
5.4.5.3 RENEWABLE ENERGY INVESTMENTS 67
5.4.6 LEGAL 67
5.4.6.1 HEALTH AND SAFETY LAW 67
5.4.6.2 EMPLOYMENT LAWS 67
5.4.6.3 ANTI-DISCRIMINATION LAW 67
5.5 PATENT ANALYSIS 68
6 GLOBAL CURRENT SENSOR MARKET, BY LOOP 73
6.1 OVERVIEW 73
6.2 OPEN LOOP 75
6.3 CLOSED LOOP 75
7 GLOBAL CURRENT SENSOR MARKET, BY SENSING TYPE 76
7.1 INTRODUCTION 76
7.2 DIRECT CURRENT SENSING 78
7.3 INDIRECT CURRENT SENSING 78
8 GLOBAL CURRENT SENSOR MARKET, BY TECHNOLOGY TYPE 79
8.1 INTRODUCTION 79
8.2 ISOLATED CURRENT SENSOR 82
8.3 NON-ISOLATED CURRENT SENSORS 82
9 GLOBAL CURRENT SENSOR MARKET, BY CURRENT RANGE 83
9.1 INTRODUCTION 83
9.2 LESS THAN 100A 85
9.3 100A-1000A 85
9.4 MORE THAN 1000A 86
10 GLOBAL CURRENT SENSOR MARKET, BY SALES CHANNEL 87
10.1 INTRODUCTION 87
10.2 ONLINE 89
10.3 OFFLINE 89
11 GLOBAL CURRENT SENSOR MARKET, BY APPLICATION 90
11.1 INTRODUCTION 90
11.2 MOTOR DRIVES 92
11.3 CONVERTERS & INVERTERS 93
11.4 UPS (UNINTERRUPTIBLE POWER SUPPLIES) & SMPS (SWITCHED-MODE POWER SUPPLIES) 93
11.5 GENERATORS 93
11.6 BATTERY MANAGEMENT, ELECTRIC DRIVES 93
11.7 FAST DC CHARGERS (EV) 93
11.8 OVERLOAD DETECTION 94
11.9 GRID INFRASTRUCTURE 94
11.10 AUTOMOTIVE POWER TRAINS 94
11.11 OTHERS 94
12 GLOBAL CURRENT SENSOR MARKET, BY END USER 95
12.1 INTRODUCTION 95
12.2 AUTOMOTIVE 97
12.3 CONSUMER ELECTRONICS 98
12.4 INDUSTRIAL 98
12.5 HEALTHCARE 98
12.6 ENERGY & POWER 98
12.7 AEROSPACE & DEFENSE 98
12.8 OTHERS 99
13 GLOBAL CURRENT SENSOR MARKET, BY REGION 100
13.1 OVERVIEW 100
13.1.1 GLOBAL CURRENT SENSOR MARKET, BY REGION, 2022 VS 2032 (USD MILLION) 100
13.1.2 GLOBAL CURRENT SENSOR MARKET, BY REGION, 2019-2032 (USD MILLION) 101
13.1.3 GLOBAL CURRENT SENSOR MARKET, BY REGION, 2019-2032 (000' UNITS) 101