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상품코드
1761744

북미의 역률 개선 시장 : 무효 전력별, 유형별, 판매채널별, 용도별, 지역별 - 예측(-2030년)

North America Power Factor Correction Market by Reactive Power (0-200 KVAr, 200-500 KVAr, 500-1,500 KVAr, Above 1,500 KVAr), Type (Automatic, Fixed), Sales Channel (Distributors, OEM Direct), Application, and Region - Global Trends & Forecast to 2030

발행일: | 리서치사: MarketsandMarkets | 페이지 정보: 영문 161 Pages | 배송안내 : 즉시배송

    
    
    




※ 본 상품은 영문 자료로 한글과 영문 목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문 목차를 참고해주시기 바랍니다.

북미의 역률 개선 시장 규모는 2025년 7억 3,420만 달러에서 2030년에는 9억 9,910만 달러에 이를 것으로 예측되며, 예측 기간(2025년-2030년) CAGR은 6.2%를 나타낼 전망입니다.

에너지 비용의 상승과 엄격한 규제로 인해 제조, 석유 및 가스, HVAC 등의 산업은 무효 전력을 최소화하고 에너지 손실을 줄이며 시스템 신뢰성을 높이기 위해 커패시터 및 자동 제어 시스템과 같은 고급 PFC 솔루션의 채택을 추진하고 있습니다.

조사 범위
조사 대상 연도 2021-2030년
기준 연도 2024년
예측 기간 2025-2030년
대상 대수 금액(100만 달러) 및 Unit
부문 무효 전력별, 유형별, 판매채널별, 용도별, 지역별
대상 지역 북미

OEM 직접 부문은 제조업체에 직접 맞춤형 에너지 효율 솔루션을 제공하는 역할을 하기 때문에 북미의 역률 개선 시장에서 가장 높은 성장률을 나타낼 것으로 예측됩니다. 석유 및 가스, 제조, 수처리 등의 분야에서 산업이 급성장함에 따라 OEM은 에너지 효율 기준을 충족하고 운영 비용을 절감하며 전력 품질을 개선하기 위해 첨단 PFC 기술을 장비에 통합하는 경우가 증가하고 있으며, 이는 이 부문의 성장을 가속하고 있습니다.

자동 부문은 실시간으로 역률을 동적으로 조정할 수 있는 능력으로 북미의 역률 보정 시장 전체를 주도하여 다양한 산업에서 최적의 에너지 효율을 보장할 것으로 예측됩니다. 지능형 컨트롤러가 장착된 커패시터 뱅크와 같은 자동 시스템은 석유 및 가스, 제조, HVAC 등의 분야에서 널리 사용되고 있으며, 무효전력을 최소화하고 에너지 손실을 줄이며 시스템의 신뢰성을 높이기 위해 최신 전력 관리에 적합한 선택이 되고 있습니다.

미국은 급속한 산업화, 인프라 개발, 에너지 효율을 중시하는 태도를 바탕으로 북미에서 가장 빠르게 성장하는 역률 개선 시장이 될 것으로 예측됩니다. 제조, 광업, 수처리 등의 산업에서 전력 품질에 대한 수요 증가와 에너지 절약을 위한 정부의 적극적인 노력이 첨단 역률 개선 솔루션의 채택을 촉진하고 있습니다.

Eaton Corporation plc(아일랜드), GE Vernova(미국), Schneider Electric(프랑스), ABB(스위스), Gentec(캐나다)은 북미의 역률 개선 시장의 주요 진출기업입니다.

북미의 역률 개선 시장의 주요 업체들의 기업 프로파일, 최근 동향, 주요 시장 전략 등 상세한 경쟁 분석이 수록되어 있습니다.

북미의 역률 개선 시장을 유형별(자동, 고정), 판매 채널별(유통업체, OEM 직접 판매), 무효전력별(0-200KVAr, 200-500KVAr, 500-1500KVAr, 1500KVAr 이상), 용도별(산업, 신재생에너지, 상업용, 데이터센터, EV 충전), 지역별(북미)로 정의, 기술, 예측합니다. EV 충전), 지역별(북미)로 정의, 기술, 예측했습니다. 북미의 역률 개선 시장의 성장에 영향을 미치는 시장 성장 촉진요인 및 과제 등 주요 요인에 대한 상세한 정보를 조사 범위로 삼고 있습니다. 주요 업계 참여업체를 상세하게 분석하여 사업 개요, 솔루션, 서비스, 계약, 투자, 파트너십, 제휴, 합작투자, 협약, 신제품 및 서비스 출시, M&A 등 주요 전략, 북미의 역률 개선 시장과 관련된 최근 동향에 대한 통찰력을 제공합니다.

목차

제1장 서론

제2장 조사 방법

제3장 주요 요약

제4장 프리미엄 인사이트

제5장 시장 개요

  • 서론
  • 시장 역학
  • 고객의 비즈니스에 영향을 미치는 동향/혼란
  • 밸류체인 분석
  • 생태계 분석
  • 투자 및 자금조달 시나리오
  • 북미의 역률 개선 시장 AI/생성형 AI의 영향
  • 북미 : 거시경제 전망
  • 기술 분석
  • 특허 분석
  • 무역 분석
  • 2024년-2025년 주요 컨퍼런스 및 이벤트
  • 가격 분석
  • 관세 및 규제 상황
  • Porter의 Five Forces 분석
  • 주요 이해관계자와 구입 기준
  • 사례 연구 분석
  • 2025년 미국 관세의 영향 - 북미의 역률 개선 시장

제6장 북미의 역률 개선 시장(무효 전력별)

  • 서론
  • 0-200KVAR
  • 200-500KVAR
  • 500-1,500KVAR
  • 1,500KVAR 이상

제7장 북미의 역률 개선 시장(유형별)

  • 서론
  • 자동
  • 고정

제8장 북미의 역률 개선 시장(판매채널별)

  • 서론
  • 유통업체
  • OEM 직접

제9장 북미의 역률 개선 시장(용도별)

  • 서론
  • 산업
  • 재생에너지
  • 상업
  • 데이터센터
  • EV 충전

제10장 북미의 역률 개선 시장(지역별)

  • 북미
    • 미국
    • 캐나다
    • 멕시코

제11장 경쟁 구도

  • 개요
  • 주요 시장 진출기업의 전략/강점, 2019년-2023년
  • 2023년 시장 점유율 분석
  • 매출 분석, 2019년-2023년
  • 브랜드/제품 비교
  • 기업 평가와 재무 지표, 2024년
  • 기업 평가 매트릭스 : 주요 시장 진출기업, 2023년
  • 경쟁 시나리오

제12장 기업 개요

  • 주요 시장 진출기업
    • SCHNEIDER ELECTRIC
    • EATON
    • GE VERNOVA
    • ABB
    • HITACHI ENERGY LTD.
    • GENTEC
    • TCI, LLC
    • POWERSIDE
    • COS PHI
    • CONTROLLIX CORPORATION
    • CIRCUTOR

제13장 부록

LSH 25.07.09

The North America power factor correction market is projected to reach USD 999.1 million by 2030 from an estimated USD 734.2 million in 2025, at a CAGR of 6.2% during the forecast period (2025-2030). Rising energy costs and stringent regulations are pushing industries like manufacturing, oil & gas, and HVAC to adopt advanced PFC solutions, such as capacitors and automatic control systems, to minimize reactive power, reduce energy losses, and enhance system reliability.

Scope of the Report
Years Considered for the Study2021-2030
Base Year2024
Forecast Period2025-2030
Units ConsideredValue (USD Million) and Volume (Units)
SegmentsType, Reactive Power, Sales Channel, Application, and Region
Regions coveredNorth America

"OEM direct is expected to be the fastest-growing segment during the forecast period."

The OEM direct segment is projected to register the highest growth in the North America power factor correction market due to its role in delivering tailored, energy-efficient solutions directly to manufacturers. With rapid industrial growth in sectors like oil & gas, manufacturing, and water treatment, OEMs are increasingly integrating advanced PFC technologies into their equipment to meet energy efficiency standards, reduce operational costs, and improve power quality, thereby driving segment growth.

"Automatic segment to be largest type in North America power factor correction market"

The automatic segment is anticipated to lead the overall power factor correction market in the North America due to its ability to dynamically adjust power factor in real-time, ensuring optimal energy efficiency across various industries. Automatic systems, such as capacitor banks with intelligent controllers, are widely adopted in sectors like oil & gas, manufacturing, and HVAC, where they minimize reactive power, reduce energy losses, and enhance system reliability, making them a preferred choice for modern power management.

"US to register highest CAGR in North America power factor correction market"

The US is projected to be the fastest-growing power factor correction market in the North America region driven by rapid industrialization, infrastructure development, and a strong focus on energy efficiency. The increasing demand for power quality in industries such as manufacturing, mining, and water treatment, along with supportive government initiatives promoting energy conservation, is fueling the adoption of advanced power factor correction solutions across the country.

In-depth interviews have been conducted with various key industry participants, subject-matter experts, C-level executives of key market players, and industry consultants, among other experts, to obtain and verify critical qualitative and quantitative information, as well as to assess market prospects. The distribution of primary interviews is as follows:

By Company Type: Tier 1 - 45%, Tier 2 - 30%, and Tier 3 - 25%

By Designation: C-Level - 35%, Director Levels - 25%, and Others - 40%

Note 1: Others include sales managers, engineers, and regional managers.

Note 2: The tiers of the companies are defined based on their total revenues as of 2023. Tier 1: > USD 1 billion, Tier 2: From USD 500 million to USD 1 billion, and Tier 3: < USD 500 million.

Eaton Corporation plc (Ireland), GE Vernova (US), Schneider Electric (France), ABB (Switzerland), and Gentec (Canada) are some of the key players in the North America power factor correction market.

The study includes an in-depth competitive analysis of these key players in the North America power factor correction market, with their company profiles, recent developments, and key market strategies.

Research Coverage:

The report defines, describes, and forecasts the North America power factor correction market by type (Automatic, Fixed), by sales channel (Distributors, OEM direct), by reactive power (0-200 KVAr, 200-500 KVAr, 500-1,500 KVAr, Above 1500 KVAr), by application (Industrial, Renewable, Commercial, Data Center, and EV Charging), and by region (North America). The scope of the report covers detailed information regarding the major factors, such as drivers, restraints, challenges, and opportunities, influencing the growth of the North America power factor correction market. A detailed analysis of the key industry players has been done to provide insights into their business overview, solutions, and services; key strategies such as contracts, investments, partnerships, collaborations, joint ventures, agreements, new product & service launches, and mergers & acquisitions; and recent developments associated with the North America power factor correction market.

Key Benefits of Buying the Report

  • Analysis of key drivers (Increasing investments in clear energy projects, Rising deployment of low-voltage PFC systems in industrial facilities), restraints (High initial installation cost of PFC systems), opportunities (Introduction of incentive schemes by governments for adopting energy saving technologies, Growing inclination toward smart grid deployment, Elevating demand for electric vehicles), and challenges (Complexities associated with integrating PFC systems into existing infrastructure) influencing the growth of the power factor correction market.
  • Product Development/Innovation: With a focus on energy efficiency and regulatory compliance, manufacturers in North America are advancing power factor correction (PFC) technologies. Companies are innovating by developing high-performance capacitors and control systems designed to meet the specific needs of the region's industrial and commercial sectors. These advancements aim to enhance power quality, reduce energy losses, and integrate seamlessly with modern infrastructure, driving broader adoption in applications like manufacturing and HVAC systems during the forecast period.
  • Market Diversification: In August 2023, Eaton invested over USD 500 million to increase the manufacturing of electrical solutions and meet the surging demand for these solutions from the North American industries. This substantial investment aims to expedite the energy transition and digitalization in utilities, commercial, healthcare, industrial, and residential sectors.
  • Market Development: The power factor correction market is driven by increasing emphasis on energy efficiency, regulatory compliance, and sustainable power management. Supportive government policies promoting reduced energy consumption and the rising adoption of PFCs in industrial and commercial applications, such as oil & gas and manufacturing are driving the power factor correction market.
  • Competitive Assessment: In-depth assessment of market shares, growth strategies, and service offerings of leading players such as Eaton Corporation plc (Ireland), GE Vernova (US), Schneider Electric (France), ABB (Switzerland), and Gentec (Canada), among others, in the North America power factor correction market.

TABLE OF CONTENTS

1 INTRODUCTION

  • 1.1 STUDY OBJECTIVES
  • 1.2 MARKET DEFINITION
  • 1.3 STUDY SCOPE
    • 1.3.1 MARKET SEGMENTATION AND REGIONAL SCOPE
    • 1.3.2 INCLUSIONS AND EXCLUSIONS
    • 1.3.3 YEARS CONSIDERED
  • 1.4 LIMITATIONS
  • 1.5 UNITS CONSIDERED
  • 1.6 CURRENCY CONSIDERED
  • 1.7 STAKEHOLDERS

2 RESEARCH METHODOLOGY

  • 2.1 RESEARCH DATA
    • 2.1.1 PRIMARY AND SECONDARY RESEARCH
  • 2.2 DATA TRIANGULATION
    • 2.2.1 SECONDARY DATA
      • 2.2.1.1 Key data from secondary sources
      • 2.2.1.2 Key secondary sources
    • 2.2.2 PRIMARY DATA
      • 2.2.2.1 Major primary interview participants
      • 2.2.2.2 Key data from primary sources
      • 2.2.2.3 Key industry insights
      • 2.2.2.4 Breakdown of primary interviews
  • 2.3 MARKET SIZE ESTIMATION
    • 2.3.1 BOTTOM-UP APPROACH
    • 2.3.2 TOP-DOWN APPROACH
    • 2.3.3 DEMAND-SIDE ANALYSIS
      • 2.3.3.1 Demand-side assumptions
      • 2.3.3.2 Demand-side calculations
    • 2.3.4 SUPPLY-SIDE ANALYSIS
      • 2.3.4.1 Supply-side assumptions
      • 2.3.4.2 Supply-side calculations
    • 2.3.5 GROWTH FORECAST
  • 2.4 RESEARCH ASSUMPTIONS
  • 2.5 RESEARCH LIMITATIONS
  • 2.6 RISK ANALYSIS

3 EXECUTIVE SUMMARY

4 PREMIUM INSIGHTS

  • 4.1 ATTRACTIVE OPPORTUNITIES FOR PLAYERS IN NORTH AMERICA POWER FACTOR CORRECTION MARKET
  • 4.2 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY SALES CHANNEL AND TYPE
  • 4.3 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY SALES CHANNEL
  • 4.4 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY TYPE
  • 4.5 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY REACTIVE POWER
  • 4.6 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY APPLICATION

5 MARKET OVERVIEW

  • 5.1 INTRODUCTION
  • 5.2 MARKET DYNAMICS
    • 5.2.1 DRIVERS
      • 5.2.1.1 Increasing investments in clean energy projects
      • 5.2.1.2 Rising deployment of low-voltage PFC systems in industrial facilities
    • 5.2.2 RESTRAINTS
      • 5.2.2.1 High initial installation cost of PFC systems
    • 5.2.3 OPPORTUNITIES
      • 5.2.3.1 Introduction of incentive schemes by governments for adopting energy-saving technologies
      • 5.2.3.2 Growing inclination toward smart grid deployment
      • 5.2.3.3 Elevating demand for electric vehicles
    • 5.2.4 CHALLENGES
      • 5.2.4.1 Complexities associated with integrating PFC systems into existing infrastructure
  • 5.3 TRENDS/DISRUPTIONS IMPACTING CUSTOMER BUSINESS
  • 5.4 VALUE CHAIN ANALYSIS
  • 5.5 ECOSYSTEM ANALYSIS
  • 5.6 INVESTMENT AND FUNDING SCENARIO
  • 5.7 IMPACT OF AI/GENERATIVE AI ON NORTH AMERICA POWER FACTOR CORRECTION MARKET
    • 5.7.1 RATIONALE FOR IMPACT LEVELS
  • 5.8 NORTH AMERICA: MACROECONOMIC OUTLOOK
    • 5.8.1 INTRODUCTION
    • 5.8.2 GDP TRENDS AND FORECAST
    • 5.8.3 MANUFACTURING VALUE ADDED (% OF GDP)
    • 5.8.4 ELECTRICITY PRODUCTION
  • 5.9 TECHNOLOGY ANALYSIS
    • 5.9.1 KEY TECHNOLOGIES
      • 5.9.1.1 Internet of Things (IoT)
    • 5.9.2 ADJACENT TECHNOLOGIES
      • 5.9.2.1 Solid-state switching devices
  • 5.10 PATENT ANALYSIS
  • 5.11 TRADE ANALYSIS
    • 5.11.1 EXPORT SCENARIO (HS CODE 8532)
    • 5.11.2 IMPORT SCENARIO (HS CODE 8532)
  • 5.12 KEY CONFERENCES AND EVENTS, 2024-2025
  • 5.13 PRICING ANALYSIS
    • 5.13.1 AVERAGE SELLING PRICE TREND OF POWER FACTOR CORRECTION SYSTEM, BY NORTH AMERICA
  • 5.14 TARIFF AND REGULATORY LANDSCAPE
    • 5.14.1 TARIFF ANALYSIS
    • 5.14.2 REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS
    • 5.14.3 REGULATORY FRAMEWORK
  • 5.15 PORTER'S FIVE FORCES ANALYSIS
    • 5.15.1 THREAT OF SUBSTITUTES
    • 5.15.2 BARGAINING POWER OF SUPPLIERS
    • 5.15.3 BARGAINING POWER OF BUYERS
    • 5.15.4 THREAT OF NEW ENTRANTS
    • 5.15.5 INTENSITY OF COMPETITIVE RIVALRY
  • 5.16 KEY STAKEHOLDERS AND BUYING CRITERIA
    • 5.16.1 KEY STAKEHOLDERS IN BUYING PROCESS
    • 5.16.2 BUYING CRITERIA
  • 5.17 CASE STUDY ANALYSIS
    • 5.17.1 ELIMINATING ENERGY PENALTIES THROUGH STRATEGIC POWER FACTOR CORRECTION
  • 5.18 IMPACT OF 2025 US TARIFF - NORTH AMERICA POWER FACTOR CORRECTION MARKET
    • 5.18.1 INTRODUCTION
    • 5.18.2 KEY TARIFF RATES
    • 5.18.3 PRICE IMPACT ANALYSIS
    • 5.18.4 IMPACT ON NORTH AMERICA

6 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY REACTIVE POWER

  • 6.1 INTRODUCTION
  • 6.2 0-200 KVAR
    • 6.2.1 RISING DEMAND ACROSS SMALL COMMERCIAL APPLICATIONS TO DRIVE SEGMENTAL GROWTH
  • 6.3 200-500 KVAR
    • 6.3.1 RISING USE IN MEDIUM-SIZED COMMERCIAL BUILDINGS AND INDUSTRIAL FACILITIES TO DRIVE SEGMENTAL GROWTH
  • 6.4 500-1,500 KVAR
    • 6.4.1 INCREASING FOCUS OF LARGE INDUSTRIAL PLANT OWNERS ON MINIMIZING ENERGY LOSSES TO BOOST DEMAND
  • 6.5 ABOVE 1,500 KVAR
    • 6.5.1 PRESSING NEED TO STABILIZE VOLTAGE LEVELS ACROSS POWER GRID TO SUPPORT SEGMENTAL GROWTH

7 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY TYPE

  • 7.1 INTRODUCTION
  • 7.2 AUTOMATIC
    • 7.2.1 ABILITY TO CRAFT EFFICIENT ELECTRICAL SYSTEMS TO BOOST DEMAND
  • 7.3 FIXED
    • 7.3.1 RISING FOCUS ON ENERGY COST REDUCTION TO SUPPORT SEGMENTAL GROWTH

8 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY SALES CHANNEL

  • 8.1 INTRODUCTION
  • 8.2 DISTRIBUTORS
    • 8.2.1 ABILITY TO COVER BROADER GEOGRAPHIC AREAS AND ENTER NEW MARKETS AT FASTER RATE TO BOOST SEGMENTAL GROWTH
  • 8.3 OEM DIRECT
    • 8.3.1 HIGHER UPFRONT COSTS FOR TRAINING SALES TEAM TO LEAD TO SMALLER MARKET SHARE

9 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY APPLICATION

  • 9.1 INTRODUCTION
  • 9.2 INDUSTRIAL
    • 9.2.1 RISING USE OF POWER-INTENSIVE INDUSTRIAL EQUIPMENT TO BOOST DEMAND
  • 9.3 RENEWABLE
    • 9.3.1 INTEGRATION OF RENEWABLE ENERGY SOURCES INTO POWER GRID TO PROPEL MARKET
  • 9.4 COMMERCIAL
    • 9.4.1 INCREASING DEMAND FOR ENERGY EFFICIENCY AND COST REDUCTION IN COMMERCIAL BUILDINGS TO DRIVE MARKET
  • 9.5 DATA CENTER
    • 9.5.1 SURGING NEED FOR EFFICIENT AND RELIABLE DATA CENTER INFRASTRUCTURE TO DRIVE MARKET GROWTH
  • 9.6 EV CHARGING
    • 9.6.1 INCREASING INVESTMENT AND RAPID EXPANSION OF ELECTRIC VEHICLES TO SUPPORT MARKET GROWTH

10 NORTH AMERICA POWER FACTOR CORRECTION MARKET, BY REGION

  • 10.1 NORTH AMERICA
    • 10.1.1 US
      • 10.1.1.1 Increasing focus on sustainable energy production using renewable sources to boost demand
    • 10.1.2 CANADA
      • 10.1.2.1 Rising demand from automotive sector to augment market growth
    • 10.1.3 MEXICO
      • 10.1.3.1 Thriving industrial sector to drive demand

11 COMPETITIVE LANDSCAPE

  • 11.1 OVERVIEW
  • 11.2 KEY PLAYER STRATEGIES/RIGHT TO WIN, 2019-2023
  • 11.3 MARKET SHARE ANALYSIS, 2023
  • 11.4 REVENUE ANALYSIS, 2019-2023
  • 11.5 BRAND/PRODUCT COMPARISON
  • 11.6 COMPANY VALUATION AND FINANCIAL METRICS, 2024
  • 11.7 COMPANY EVALUATION MATRIX: KEY PLAYERS, 2023
    • 11.7.1 STARS
    • 11.7.2 EMERGING COMPANIES
    • 11.7.3 PERVASIVE PLAYERS
    • 11.7.4 PARTICIPANTS
    • 11.7.5 COMPANY FOOTPRINT: KEY PLAYERS, 2023
      • 11.7.5.1 Company footprint
      • 11.7.5.2 Reactive power footprint
      • 11.7.5.3 Application footprint
      • 11.7.5.4 Type footprint
  • 11.8 COMPETITIVE SCENARIO
    • 11.8.1 PRODUCT LAUNCHES
    • 11.8.2 OTHER DEVELOPMENTS

12 COMPANY PROFILES

  • 12.1 KEY PLAYERS
    • 12.1.1 SCHNEIDER ELECTRIC
      • 12.1.1.1 Business overview
      • 12.1.1.2 Products offered
      • 12.1.1.3 Recent developments
      • 12.1.1.4 MnM view
        • 12.1.1.4.1 Key strengths
        • 12.1.1.4.2 Strategic choices
        • 12.1.1.4.3 Weaknesses and competitive threats
    • 12.1.2 EATON
      • 12.1.2.1 Business overview
      • 12.1.2.2 Products offered
      • 12.1.2.3 Recent developments
      • 12.1.2.4 MnM view
        • 12.1.2.4.1 Key strengths
        • 12.1.2.4.2 Strategic choices
        • 12.1.2.4.3 Weaknesses and competitive threats
    • 12.1.3 GE VERNOVA
      • 12.1.3.1 Business overview
      • 12.1.3.2 Products offered
      • 12.1.3.3 Recent developments
        • 12.1.3.3.1 Deals
      • 12.1.3.4 MnM view
        • 12.1.3.4.1 Key strengths
        • 12.1.3.4.2 Strategic choices
        • 12.1.3.4.3 Weaknesses and competitive threats
    • 12.1.4 ABB
      • 12.1.4.1 Business overview
      • 12.1.4.2 Products offered
      • 12.1.4.3 MnM view
        • 12.1.4.3.1 Key strengths
        • 12.1.4.3.2 Strategic choices
        • 12.1.4.3.3 Weaknesses and competitive threats
    • 12.1.5 HITACHI ENERGY LTD.
      • 12.1.5.1 Business overview
      • 12.1.5.2 Products offered
      • 12.1.5.3 Recent developments
      • 12.1.5.4 MnM view
        • 12.1.5.4.1 Key strengths
        • 12.1.5.4.2 Strategic choices
        • 12.1.5.4.3 Weaknesses and competitive threats
    • 12.1.6 GENTEC
      • 12.1.6.1 Business overview
      • 12.1.6.2 Products offered
      • 12.1.6.3 Recent developments
    • 12.1.7 TCI, LLC
      • 12.1.7.1 Business overview
      • 12.1.7.2 Products offered
    • 12.1.8 POWERSIDE
      • 12.1.8.1 Business overview
      • 12.1.8.2 Products offered
    • 12.1.9 COS PHI
      • 12.1.9.1 Business overview
      • 12.1.9.2 Products offered
    • 12.1.10 CONTROLLIX CORPORATION
      • 12.1.10.1 Business overview
      • 12.1.10.2 Products offered
    • 12.1.11 CIRCUTOR
      • 12.1.11.1 Business overview
      • 12.1.11.2 Products offered

13 APPENDIX

  • 13.1 INSIGHTS FROM INDUSTRY EXPERTS
  • 13.2 DISCUSSION GUIDE
  • 13.3 KNOWLEDGESTORE: MARKETSANDMARKETS' SUBSCRIPTION PORTAL
  • 13.4 CUSTOMIZATION OPTIONS
  • 13.5 RELATED REPORTS
  • 13.6 AUTHOR DETAILS
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