Energy Efficient Low Horsepower AC Motors Market Size, Share & Trends

Energy Efficient Low Horsepower AC Motors Market by Product (Synchronous, Asynchronous), Current (Single phase, Three-phase), Application (Consumer, Industrial, Refrigeration, Medical) - Global Forecast to 2035

Report Code: SE 2117 Sep, 2026, by marketsandmarkets.com

Energy Efficient Low Horsepower AC Motors Market Summary

The Energy Efficient Low Horsepower AC Motors Market is witnessing consistent global growth as industries increasingly prioritize energy conservation, sustainability, and operational efficiency. The market is estimated to be valued at approximately USD 12 - 14 Billion in 2025 and is projected to reach nearly USD 30 billion by 2035, expanding at a CAGR of around 8% during the forecast period. Rising energy costs, stringent energy-efficiency regulations, and increasing investments in industrial automation are accelerating the adoption of high-efficiency low horsepower AC motors across manufacturing, HVAC systems, consumer appliances, water treatment, agriculture, and commercial buildings. The integration of Artificial Intelligence (AI), Internet of Things (IoT), automation, cloud-based monitoring, and predictive maintenance technologies is transforming conventional motor systems into intelligent, connected assets capable of optimizing performance while reducing energy consumption and maintenance costs.

Growing emphasis on carbon emission reduction, smart factories, and Industry 4.0 initiatives continues to support market expansion. Organizations are increasingly replacing conventional electric motors with premium-efficiency AC motors that comply with international efficiency standards while improving productivity and lowering total operating costs. The growing adoption of variable frequency drives (VFDs), digital motor control systems, and AI-powered condition monitoring is expected to create significant growth opportunities for the Energy Efficient Low Horsepower AC Motors Market through 2035.

Key Market Trends & Insights

  • North America remains a leading regional market due to strong industrial automation, energy-efficiency regulations, and investments in smart manufacturing.
  • Asia Pacific is projected to witness the fastest growth owing to expanding industrialization, manufacturing investments, and increasing adoption of energy-efficient equipment.
  • Induction AC motors continue to dominate the market because of their reliability, cost-effectiveness, and widespread industrial use.
  • AI-powered predictive maintenance and IoT-enabled motor monitoring are improving operational efficiency and reducing equipment downtime.
  • Variable Frequency Drives (VFDs) are becoming increasingly integrated with low horsepower AC motors to optimize energy consumption.
  • Sustainability initiatives and carbon reduction targets continue driving demand for premium-efficiency electric motors.

Market Size & Forecast

  • Base Year Market Size (2025): USD 12 - 14 Billion
  • Forecast Market Value (2035): USD 26 - 30 Billion
  • Forecast CAGR (2025–2035): 6% - 8%
  • Market growth is supported by industrial automation, energy-efficiency regulations, AI-enabled monitoring, IoT integration, smart manufacturing, and increasing demand for sustainable motor solutions.

Energy Efficient Low Horsepower AC Motors Market Top 10 key takeaway

  • North America remains a major market leader.
  • Asia Pacific records the fastest projected growth.
  • Induction motors dominate product demand.
  • AI improves predictive motor maintenance.
  • IoT enables real-time performance monitoring.
  • Variable Frequency Drives enhance energy efficiency.
  • Industrial automation accelerates motor replacement.
  • Sustainability regulations support market expansion.
  • HVAC applications remain key demand drivers.
  • Smart factories increase adoption of intelligent motors.

Product Insights

Induction AC motors continue to represent the largest product segment within the Energy Efficient Low Horsepower AC Motors Market due to their robust construction, high operational reliability, low maintenance requirements, and cost-effective performance. These motors are widely deployed in industrial machinery, HVAC systems, pumps, compressors, conveyors, agricultural equipment, and commercial appliances where consistent performance and energy efficiency are critical.

Permanent Magnet AC motors are emerging as a rapidly growing product category because they deliver higher efficiency, greater torque density, and reduced energy losses compared to conventional induction motors. Their compact design and superior performance make them increasingly attractive for advanced manufacturing systems, robotics, electric mobility support equipment, and precision automation applications.

Single-phase low horsepower AC motors remain highly popular in residential and commercial applications, including household appliances, ventilation systems, refrigeration units, and small industrial equipment. Three-phase motors continue dominating industrial environments requiring continuous operation and higher efficiency.

AI integration enables intelligent motor diagnostics, automated fault detection, energy optimization, and predictive maintenance through real-time operational data analysis. Digital motor controllers further improve efficiency by dynamically adjusting motor performance based on workload conditions.

Motor Technology Insights

Artificial Intelligence is transforming the Energy Efficient Low Horsepower AC Motors Market by enabling predictive maintenance, intelligent energy management, anomaly detection, and automated performance optimization. AI algorithms analyze vibration, temperature, power consumption, and operating conditions to identify potential failures before equipment downtime occurs.

The Internet of Things connects motors with industrial control systems, cloud platforms, and manufacturing execution systems (MES), enabling continuous remote monitoring and centralized asset management. IoT-enabled smart motors provide valuable operational insights that improve productivity while reducing maintenance costs.

Cloud computing facilitates centralized motor performance analytics, software updates, fleet management, and predictive maintenance services across geographically distributed industrial facilities. Cloud-based dashboards improve decision-making by providing real-time visibility into equipment health and energy consumption.

Automation technologies, including Variable Frequency Drives (VFDs), programmable logic controllers (PLCs), and digital motor control systems, optimize speed, torque, and energy consumption according to process requirements. Automated control significantly reduces electricity usage while extending equipment lifespan.

Future innovations include digital twin technology, edge AI diagnostics, self-optimizing motor controllers, advanced magnetic materials, wireless condition monitoring, and integrated sustainability analytics supporting net-zero industrial operations.

Application Insights

Industrial manufacturing remains the largest application segment within the Energy Efficient Low Horsepower AC Motors Market because factories continue upgrading equipment to improve productivity, reduce energy costs, and comply with increasingly stringent efficiency regulations. Automated production lines, conveyors, pumps, compressors, and machine tools rely extensively on energy-efficient AC motors.

HVAC systems represent another major application area as commercial buildings, hospitals, airports, educational institutions, and residential complexes increasingly adopt energy-efficient ventilation and climate control equipment. Smart building initiatives continue accelerating demand for intelligent motor systems integrated with building automation platforms.

Water and wastewater treatment facilities increasingly deploy energy-efficient low horsepower motors to reduce electricity consumption while improving operational reliability in pumping, aeration, and filtration systems.

Agriculture, food processing, pharmaceuticals, consumer appliances, mining, oil & gas support equipment, logistics, and warehouse automation also contribute significantly to market expansion through increasing automation and sustainability investments.

Future opportunities are expected to emerge from smart factories, robotics, renewable energy systems, intelligent infrastructure, and digitally connected industrial ecosystems.

Regional Insights

North America continues leading the Energy Efficient Low Horsepower AC Motors Market due to advanced industrial infrastructure, widespread Industry 4.0 adoption, government energy-efficiency initiatives, and significant investments in manufacturing modernization. The United States remains the largest regional contributor through ongoing industrial automation and sustainable manufacturing programs.

Europe maintains a substantial market share driven by strict environmental regulations, carbon neutrality initiatives, advanced manufacturing capabilities, and widespread implementation of premium-efficiency motor standards. Industrial energy optimization remains a strategic priority across the region.

Asia Pacific is expected to register the fastest CAGR throughout the forecast period because of rapid industrialization, manufacturing expansion, infrastructure development, and increasing adoption of smart production technologies. China, Japan, India, and South Korea continue investing heavily in energy-efficient industrial equipment.

Latin America and the Middle East & Africa continue expanding industrial modernization initiatives while increasing investments in manufacturing efficiency and infrastructure development.

Regional Insights Summary

  • North America leads industrial automation adoption.
  • Asia Pacific records the fastest market growth.
  • Europe strengthens sustainability-driven investments.
  • Manufacturing expansion drives APAC demand.
  • Government energy policies support long-term growth.

Country-Specific Market Trends

The United States remains the largest national market with an estimated 8% CAGR, driven by industrial automation, smart manufacturing investments, and energy-efficiency regulations.

Canada is expected to grow at approximately 8% CAGR, supported by sustainable industrial development, commercial infrastructure modernization, and energy conservation initiatives.

Mexico is projected to register around 9% CAGR, benefiting from expanding manufacturing, automotive production, and industrial modernization.

China is anticipated to achieve nearly 10% CAGR, supported by large-scale manufacturing expansion, industrial automation, and government energy-efficiency programs.

Japan is expected to witness approximately 8% CAGR, driven by robotics, advanced manufacturing, and high-efficiency industrial equipment adoption.

Germany is projected to record around 8% CAGR, supported by Industry 4.0 implementation, sustainable manufacturing, and industrial digitalization.

France is expected to register nearly 7% CAGR, fueled by energy transition initiatives, smart industrial infrastructure, and manufacturing modernization.

Country-Level Insights Summary

  • China remains the fastest-growing country.
  • The United States leads industrial automation investments.
  • Germany advances Industry 4.0 deployment.
  • Japan strengthens robotics-driven motor adoption.
  • Mexico expands manufacturing modernization.

Key Energy Efficient Low Horsepower AC Motors Market Company Insights

The Energy Efficient Low Horsepower AC Motors Market is characterized by continuous innovation in motor efficiency, digital monitoring, and intelligent automation. Leading manufacturers focus on developing premium-efficiency motors, AI-enabled predictive maintenance platforms, IoT-connected motor systems, and advanced motor control technologies that improve operational performance while reducing lifecycle costs.

Major companies operating in the market include ABB, Siemens, WEG, Nidec Corporation, Regal Rexnord Corporation, Schneider Electric, Rockwell Automation, Toshiba Corporation, Mitsubishi Electric, and Johnson Electric. These organizations continue strengthening their market positions through strategic acquisitions, smart motor technologies, AI-powered diagnostics, digital services, and investments in sustainable manufacturing solutions.

Company Strategy Summary

  • AI-powered predictive maintenance remains a major innovation focus.
  • Companies expand premium-efficiency motor portfolios.
  • IoT-enabled monitoring enhances asset performance.
  • Strategic partnerships strengthen digital industrial ecosystems.
  • Sustainability remains central to product development.

Recent Developments

Leading motor manufacturers recently introduced next-generation IE4 and IE5 energy-efficient low horsepower AC motors featuring integrated IoT connectivity, real-time diagnostics, and predictive maintenance capabilities.

Several industrial automation companies expanded partnerships with cloud software providers to develop AI-powered motor performance monitoring platforms for smart factories and industrial facilities.

Major manufacturers launched intelligent Variable Frequency Drive (VFD) solutions that optimize motor speed, reduce electricity consumption, and improve equipment reliability across manufacturing and HVAC applications.

Market Segmentation

The Energy Efficient Low Horsepower AC Motors Market is segmented by Product, Technology, Application, and Region. Product categories include induction motors, permanent magnet motors, single-phase AC motors, three-phase AC motors, and integrated motor-drive systems. Technology segmentation covers Artificial Intelligence, IoT, cloud computing, Variable Frequency Drives, predictive maintenance, automation, and digital motor control technologies. Applications include industrial manufacturing, HVAC, water and wastewater treatment, agriculture, food processing, consumer appliances, logistics, healthcare, and commercial infrastructure. Regionally, the market spans North America, Europe, Asia Pacific, Latin America, and the Middle East & Africa, with growth driven by energy efficiency initiatives, industrial modernization, and digital transformation.

Segmentation Summary

  • Induction motors dominate global product demand.
  • AI and IoT lead technology adoption.
  • Manufacturing remains the largest application sector.
  • Asia Pacific offers the strongest long-term growth.
  • Smart motor systems create significant future opportunities.

The Energy Efficient Low Horsepower AC Motors Market is expected to experience sustained expansion through 2035, driven by increasing emphasis on energy efficiency, industrial automation, and sustainable manufacturing. Artificial Intelligence, IoT, cloud computing, predictive maintenance, and automation will continue transforming conventional motor systems into intelligent industrial assets capable of optimizing energy consumption and operational performance. As organizations worldwide pursue carbon reduction targets and smart factory initiatives, energy-efficient low horsepower AC motors will remain a strategic technology supporting productivity, sustainability, and long-term industrial competitiveness.

FAQs

1. What is the current Energy Efficient Low Horsepower AC Motors Market size?

The market is estimated at approximately USD 12 - 14 Billion in 2025.

2. What is the expected growth rate of the market?

The market is projected to grow at a CAGR of around 6% - 8% during the 2025–2035 forecast period.

3. What are the major growth drivers of the Energy Efficient Low Horsepower AC Motors Market?

Key growth drivers include industrial automation, energy-efficiency regulations, AI-powered predictive maintenance, IoT-enabled monitoring, Variable Frequency Drives (VFDs), smart manufacturing, and sustainability initiatives.

4. Which region leads the Energy Efficient Low Horsepower AC Motors Market?

North America currently leads the market, while Asia Pacific is expected to register the fastest growth due to rapid industrialization and expanding manufacturing investments.

5. Who are the major companies operating in the Energy Efficient Low Horsepower AC Motors Market?

Leading companies include ABB, Siemens, WEG, Nidec Corporation, Regal Rexnord Corporation, Schneider Electric, Rockwell Automation, Toshiba Corporation, Mitsubishi Electric, and Johnson Electric.

Exclusive indicates content/data unique to MarketsandMarkets and not available with any competitors.

 

Table of Contents 
 
1 Introduction (Page No. - 17)
  1.1 Key Take-Aways
  1.2 Report Description
  1.3 Stakeholders
  1.4 Research Methodology
      1.4.1 Market Size
      1.4.2 Key Data Points Taken From Secondary Sources
      1.4.3 Key Data Points Taken From Primary Sources
      1.4.4 Assumptions Made For This Report

2 Executive Summary (Page No. - 26)

3 Market Overview (Page No. - 31)
  3.1 Introduction
  3.2 Market Segmentation
  3.3 History & Evolution Of Energy Efficient Low Horsepower AC Motors
  3.4 Market Dynamics
      3.4.1 Drivers
            3.4.1.1 Reduction In Costs Incurred For Energy In Industry
            3.4.1.2 Encouragement By The Governments Through Funding And Other Incentives
            3.4.1.3 Increasing Concern Over Greenhouse Gases And Pressure To Reduce These Emissions
            3.4.1.4 Huge Demand From The Industrial Sector In Emerging Economies
      3.4.2 Restraints
            3.4.2.1 High Initial Cost Of Energy Efficient Low Horsepower AC Motors Restricts Their Use In Consumer Applications
            3.4.2.2 Lack Of Awareness Of End User Regarding The Advantages
            3.4.2.3 Uncertain Economic Conditions
      3.4.3 Opportunities
            3.4.3.1 Adoption Of The International Standards In The Developing Regions
            3.4.3.2 Emerging Green Field Plants In The Developing Nations
  3.5 Porter’s Five Forces
      3.5.1 Bargaining Power Of Buyers
      3.5.2 Bargaining Power Of Suppliers
      3.5.3 Threat Of New Entrants
      3.5.4 Threat Of Substitutes
      3.5.5 Intensity Of Rivalry
  3.6 Value Chain Analysis
      3.6.1 Materials
      3.6.2 Manufacture & Assemble
      3.6.3 System Integration
      3.6.4 End-Users
      3.6.5 Supporting Institutions

4 Market By Type (Page No. - 52)
  4.1 Market By Product Type
      4.1.1 Synchronous Motors
            4.1.1.1 Permanent Magnet Synchronous Motors Have Higher Efficiency Than The Induction Motors
      4.1.2 Types Of Energy-Efficient Synchronous Motors
            4.1.2.1 Reluctance Motor
            4.1.2.2 Permanent Magnet Motor
      4.1.3 Asynchronous Motors
            4.1.3.1 Majority Of IE3 Efficiency Class Motors Are Asynchronous Type
            4.1.3.2 Types Of Energy-Efficient Asynchronous Motors
                    4.1.3.2.1 Squirrel Cage Motor
                    4.1.3.2.2 Wound Rotor Induction Motor
  4.2 Market By Current Type

5 Market By Applications (Page No. - 69)
  5.1 Introduction
  5.2 Consumer Applications
      5.2.1 Air-Conditioners
      5.2.2 Washing Machines
      5.2.3 Optical Disk CD/DVD Spindle Motors
      5.2.4 Printers/Scanners
      5.2.5 Electronic Toys
      5.2.6 Fans
      5.2.7 PC Fans
      5.2.8 Mixers
      5.2.9 Others
  5.3 Industrial Applications
      5.3.1 Small Capacity Pumps
      5.3.2 Surveillance Cameras
      5.3.3 Direct-Drive Turntables
      5.3.4 Compressors
      5.3.5 Small Centrifuge /Separator Spindle Motors
      5.3.6 Robots
      5.3.7 Portable Power Tools
      5.3.8 Packaging
      5.3.9 Material Handling
      5.3.10 Others
  5.4 Refrigeration
      5.4.1 Bottle Coolers
      5.4.2 Vending Machines
      5.4.3 Freezer Cabinets
      5.4.4 Display Units
      5.4.5 Others
  5.5 Medical
      5.5.1 Sleep Apnea Treatment
      5.5.2 Medical Analysers
      5.5.3 Others
  5.6 Others

6 Market By Geography (Page No. - 99)
  6.1 Introduction
  6.2 North America
      6.2.1 U.S. Leads In The Penetration Of Higher Efficiency Class Motors
  6.3 Europe
      6.3.1 Industrial Application To Witness Fastest Growth In Europe
  6.4 Asia Pacific
      6.4.1 China Is One Of The Major Exporter Of Efficient Motors
  6.5 Rest Of The World
      6.5.1 Brazil To Be The Key Market For Energy Efficient Low Horsepower AC Motors Amongst ROW Countries

7 Competitive Landscape (Page No. - 114)
  7.1 Key Growth Strategies
  7.2 Competitive Situation & Trends
  7.3 New Product Developments & Announcements
  7.4 Agreements, Partnerships, Joint Ventures And Collaborations
  7.5 Mergers & Acquisitions
  7.6 Others

8 Company Profiles (Overview, Products And Services, Financials, Strategy And Developments)* (Page No. - 133)
  8.1 ABB Ltd.
  8.2 Bosch Rexroth Ag
  8.3 Crompton Greaves
  8.4 Emerson Electric CO.
  8.5 General Electric
  8.6 Honeywell International Inc.
  8.7 Johnson Electric
  8.8 Kirloskar Electric Company
  8.9 Leeson Electric Corporation
  8.10 Magnetek, Inc.
  8.11 Marathon Electric
  8.12 Mitsubishi Electric Corporation
  8.13 Nidec Motor Corporation
  8.14 Power Efficiency Corporation
  8.15 Regal Beloit Corporation
  8.16 Schneider Electric S.A.
  8.17 Siemens AG
  8.18 Toshiba Corporation
  8.19 UQM Technologies, Inc
  8.20 WEG S.A.
  8.21 Wellington Drive Technologies Ltd.
*Details On Overview, Financials, Products And Services, Strategy & Development Might Not Be Captured In Case Of Unlisted Companies.  
  

List of Tables (64 Tables)

Table 1 Global Energy Efficient Motors: Low Horsepower Ac Motors Market Revenue, 2012-2018 ($Billion)
Table 2 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) Ac Motors Market Revenue, By Application, 2012-2018 ($Billion) 
Table 3 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) Ac Motors Market Revenue, By Geography, 2012-2018 ($Billion) 
Table 4 Major Programs Under The Clean Energy Future Package, By Australian Government 
Table 5 Different Regulations In Different Regions
Table 6 Global Energy Efficient Low Horsepower (FHP+1HP-3HP) AC Motors Market By Type, 2012-2018 ($Billion) 
Table 7 Global FHP Ac Motors Market By Type, 2012-2018 ($Billion)
Table 8 Global Energy Efficient Low Horsepower (1HP-3HP) AC Motors Market By Type, 2012-2018 ($Billion) 
Table 9 Global Synchronous FHP Ac Motors Market By Application, 2012-2018 ($Billion)
Table 10 Global Synchronous Energy Efficient Low Horsepower (1hp-3hp) Ac Motors Market By Application, 2012-2018 ($Billion) 
Table 11 Global Asynchronous FHP Ac Motors Market By Application, 2012-2018 ($Billion)
Table 12 Global Asynchronous Energy Efficient Low Horsepower (1hp-3hp) Ac Motors Market By Application, 2012-2018 ($Billion) 
Table 13 Induction Motor Applications According To Nema Design
Table 14 Global Low Horsepower Single Phase AC Motors Market, 2012-2018 ($Billion)
Table 15 Global Low Horsepower Three Phase AC Motors Market, 2012-2018 ($Billion) 
Table 16 Global FHP AC Motors Market By Application, 2012-2018 ($Billion) 
Table 17 Global Energy Efficient Low Horsepower (1hp-3hp) AC Motors Market By Application, 2012-2018 ($Billion) 
Table 18 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Market Revenue, By Consumer Applications, 2012 -2018 ($Billion) 
Table 19 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Consumer Applications Market Revenue, By Geography, 2012-2018 ($Billion) 
Table 20 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Market Revenue, By Industrial Application, 2012-2018 ($Billion) 
Table 21 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Industrial Applications Market Revenue, By Geography, 2012-2018 ($Billion) 
Table 22 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Market Revenue, By Refrigeration Application, 2012-2018 ($Billion) 
Table 23 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Refrigeration Application Market Revenue, By Geography, 2012-2018 ($Billion) 
Table 24 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Market Revenue, By Refrigeration Application, 2012-2018 ($Billion) 
Table 25 Global Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Medical Application Market Revenue, By Geography, 2012-2018 ($Billion) 
Table 26 Global FHP Ac Motors Market Revenue, By Geography, 2012-2018 ($Billion) 
Table 27 Global Energy Efficient Low Horsepower (1hp-3hp) Ac Motors Market Revenue, By Geography, 2012-2018 ($Billion)
Table 28 North America Energy Efficient Motors: Low Horsepower (Fhp+1hp-3hp) AC Motors Market Revenue, By Application, 2012-2018 ($Billion)
Table 29 Europe Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Market Revenue, By Application, 2012-2018 ($Billion) 
Table 30 APAC Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Market Revenue, By Application, 2012-2018 ($Billion) 
Table 31 Row Energy Efficient Motors: Low Horsepower (FHP+1HP-3HP) AC Motors Market Revenue, By Application, 2012-2018 ($Billion) 
Table 32 Competitive Analysis Of Major Industry Players
Table 33 New Product Launch/Development, 2010 – 2013
Table 34 Agreements, Partnerships, Joint Ventures & Collaborations 2010 – 2013
Table 35 Mergers And Acquisitions, 2010 – 2013
Table 36 Other Developments, 2010 – 2013
Table 37 ABB Ltd.: Total Revenue And Net Income, 2011 – 2012 ($Billion)
Table 38 ABB Ltd.: Market Revenue, By Geography, 2011 – 2012 ($Billion)
Table 39 ABB Ltd.: Total Revenue, By Segments, 2011 – 2012 ($Billion)
Table 40 Crompton Greaves Ltd.: Energy Efficient Electric Motors, By Types 
Table 41 Crompton Greaves Ltd.: Total Revenue, 2012 – 2013 ($Million)
Table 42 Emerson Electric Co.: Total Revenue, 2011 – 2012 ($Billion)
Table 43 Emerson Electric Co.: Market Revenue, By Segments, 2011 – 2012 ($Billion) 
Table 44 Emerson Electric Co.: Market Revenue, By Geography, 2011 – 2012 ($Billion) 
Table 45 General Electric: Total Revenue, 2011 - 2012 ($Billion)
Table 46 Honeywell International, Inc.: Total Revenue 2011 – 2012 ($Billion) 
Table 47 Honeywell International, Inc.: Market Revenue, By Segments, 2011 – 2012 ($Billion) 
Table 48 Honeywell International, Inc.: Market Revenue, By Geography, 2011 – 2012 ($Billion) 
Table 49 Johnson Electric: Total Revenue, 2011 – 2012 ($Million)
Table 50 Johnson Electric: Total Revenue, By Geography, 2011-2012 ($Million) 
Table 51 Kirloskar Electric Co. Ltd.: Overall Revenue 2011 - 2012 ($Million) 
Table 52 Magnetek Inc.: Total Revenue, 2011 – 2012 ($Million)
Table 53 Mitsubishi Electric Corporation: Total Revenue, 2012 – 2013 ($Million) 
Table 54 Power Efficiency Corporation: Total Revenue, 2010 – 2011 ($Million) 
Table 55 Regal Beloit Corporation: Overall Revenue, 2011 – 2012 ($Million) 
Table 56 Schneider Electric S.A.: Total Revenue And Net Income, 2011 – 2012, ($Billion) 
Table 57 Siemens Ag: Total Revenue And Net Income, 2011– 2012 ($Million) 
Table 58 Siemens Ag: Market Revenue, By Segments, 2011 – 2012 ($Million) 
Table 59 Siemens Ag: Market Revenue, By Geography, 2011– 2012 ($Million) 
Table 60 Toshiba Corporation: Market Revenue, 2011 - 2012 ($Billion)
Table 61 Toshiba Corporation: Market Revenue, By Business Segment, 2011 - 2012 ($Billion)
Table 62 UQM Technologies, Inc.: Total Revenue, 2012 – 2013 ($Million)
Table 63 WEG S.A.: Total Revenue And Net Income, 2010 – 2011 ($Million) 
Table 64 Wellington Drive Technologies Ltd.: Total Revenue, 2011 – 2012 ($Million)  
  

List of Figures (41 Figures)  
  
Figure 1 Research Methodology For The Energy Efficient Low Horsepower AC Motors Market
Figure 2 Energy Efficient Low Horsepower AC Motors Market Research Strategy
Figure 3 Energy Efficient Low Horsepower AC Motors Market Crackdown Strategy
Figure 4 Energy Efficient Low Horsepower AC Motors Market Segmentation
Figure 5 Evolution Of The Energy Efficient Low Horsepower AC Motors 
Figure 6 Impact Analysis Of The Drivers
Figure 7 Comparison Of The Operating Cost
Figure 8 Impact Analysis Of The Restraints
Figure 9 Comparison Of The Initial Or Purchasing Price
Figure 10 Energy Efficient Low Horsepower AC Motors: Porter’s Five Force Model 
Figure 11 Energy Efficient Low Horsepower AC Motors Market: Value Chain Analysis 
Figure 12 Intermediary Channels In The Energy Efficient Low Horse Power Ac Motors Market
Figure 13 Energy Efficient Motors Classification
Figure 14 Basic Components Involved In Construction Of Synchronous Motors
Figure 15 Synchronous Motors Classification
Figure 16 Asynchronous Motors Classification
Figure 17 Different Types Of Fans
Figure 18 Different Types Of Pumps
Figure 19 Different Methods Used For Designing The Energy Efficient Pumps 
Figure 20 Sub Types Of Compressor
Figure 21 Important Measures Adopted To Make Compressors Energy Efficient 
Figure 22 Refrigeration Process
Figure 23 Energy Efficiency Techniques For Refrigeration
Figure 24 Key Growth Strategies
Figure 25 ABB Ltd.: Products And Services
Figure 26 ABB Ltd.: SWOT Analysis
Figure 27 General Electric: Products And Services
Figure 28 Honeywell International Inc.: Business Segments
Figure 29 Johnson Electric: Products And Services
Figure 30 Leeson Electric Corporation: Products And Services
Figure 31 Marathon Electric: Products And Services
Figure 32 Nidec Motor Corporation: Products And Services
Figure 33 Nidec Motor Corporation: SWOT Analysis
Figure 34 Power Efficiency Corporation: Products And Services
Figure 35 Regal Beloit Corporation: Products And Services
Figure 36 Schneider Electric SA: Products And Services
Figure 37 Siemens AG: Business Segments
Figure 38 Toshiba Corporation: Products And Services
Figure 39 UQM Technologies Inc.: Products And Services
Figure 40 Wellington Drive Technologies: ECR Series
Figure 41 Wellington Drive Technologies Ltd.: SWOT Analysis 


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