+353-1-416-8900REST OF WORLD
+44-20-3973-8888REST OF WORLD
1-917-300-0470EAST COAST U.S
1-800-526-8630U.S. (TOLL FREE)

Global Permanent Magnet Motor Market Size, Share & Industry Analysis Report by Motor Type, Power Rating, Magnetic Material Type, Cooling Method, End User Industry, Regional Outlook and Forecast, 2026-2033

  • PDF Icon

    Report

  • 853 Pages
  • May 2026
  • Marqual IT Solutions Pvt. Ltd (KBV Research)
  • ID: 6276054
The Global Permanent Magnet Motor Market is expected to reach USD 115.80 billion by 2033, growing at a CAGR of 9.6% during 2026-2033.

Permanent magnet motor market is experiencing significant growth due to increasing deployment of energy-efficient motor systems across industrial automation, electric vehicles, HVAC equipment, renewable energy systems, and consumer electronics applications. Rising focus on sustainability, electrification, and industrial productivity optimization is substantially surging the demand for permanent magnet motor technologies across the globe.

Permanent magnet motors are heavily replacing conventional induction motors because of their superior operational efficiency, higher torque density, compact size, lower energy consumption, and reduced maintenance requirements. Rising demand for high-performance electric drive systems and smart industrial machinery is further driving adoption across manufacturing and automotive sectors worldwide.

Moreover, rising investments in smart manufacturing ecosystems, electric mobility infrastructure, and industrial automation technologies are supporting innovation across the market. Companies are largely focusing on thermal efficiency enhancement, lightweight motor architectures, sustainable magnet technologies, and advanced cooling systems to strengthen their market position.

Key Market Trends & Insights
  • Increasing adoption of Permanent Magnet Synchronous Motors (PMSM) across electric vehicle and industrial automation applications.
  • Rising investments in energy-efficient industrial motor systems and sustainable rare-earth magnet technologies.
  • Growing demand for compact, lightweight, and high torque-density motor solutions.
  • Expansion of smart manufacturing and Industry 4.0 ecosystems globally.
  • Increasing integration of advanced cooling technologies including liquid-cooled and hybrid cooling systems.
  • Asia Pacific continues to dominate the market due to strong industrial manufacturing and electric vehicle production capabilities.
Market players are heavily investing in smart motor systems, energy-efficient industrial automation technologies, and advanced cooling solutions to support their market position. Enterprises are largely focusing on operational efficiency, enhancing motor durability, thermal management capabilities, and torque performance to drive rising industrial and automotive demand.

Additionally, strategic partnerships between electric vehicle companies, motor manufacturers, rare-earth material suppliers are surging innovation and supply chain expansion. Market player are investing in sustainable magnet material alternatives and domestic manufacturing facilities to reduce supply chain risks associated with rare-earth material dependency.

Drivers
  • Growing Demand for Electric Vehicles Driving Permanent Magnet Motor Adoption
  • Supply Chain Constraints and Innovation in Rare Earth Magnet Materials Impacting Motor Production
  • Increasing Investment in Sustainable and High-Performance Motor Technologies
  • Geographic Expansion and Domestic Production Efforts Bolstering Market Stability
Restraints
  • High Cost and Supply Chain Constraints of Rare Earth Materials
  • Technical Challenges in Thermal Management and Durability
  • Regulatory and Environmental Compliance Pressures
Opportunities
  • Expansion of Domestic Rare Earth Magnet Production to Mitigate Supply Chain Vulnerabilities
  • Integration of Advanced Motor and Compressor Solutions for Smart Manufacturing Systems
  • Development of Rare Earth-Free Permanent Magnet Alternatives to Address Material Sustainability Challenges
Challenges
  • Supply Chain Vulnerabilities Due to Rare Earth Material Dependence
  • Thermal Management and Efficiency Degradation Challenges
  • Environmental and Regulatory Pressures on Material Lifecycle
Market Share Analysis

The global permanent magnet motor market remains moderately consolidated with the presence of major industrial motor manufacturers, automation technology providers, and electric mobility component suppliers. Leading companies including ABB Ltd., Siemens AG, Mitsubishi Electric Corporation, Toshiba Corporation, Hitachi Ltd., Nidec Corporation, Regal Rexnord Corporation, Wolong Electric Group, WEG S.A., and Yaskawa Electric Corporation continue to strengthen their market positions through technological innovation, energy-efficient motor systems, and industrial automation capabilities.

Companies are increasingly focusing on high-efficiency permanent magnet synchronous motors, integrated smart motor systems, lightweight motor architectures, and sustainable manufacturing capabilities to improve market competitiveness. Strategic partnerships, mergers, production capacity expansions, and investments in advanced magnet technologies are expected to intensify competition during the forecast period.

Motor Type Outlook

The motor type segment includes Permanent Magnet Synchronous Motor (PMSM), Brushless DC Motor (BLDC), and Brushed Permanent Magnet DC Motor. The Permanent Magnet Synchronous Motor (PMSM) market dominated the Global Permanent Magnet Motor Market by Motor Type in 2025 and is expected to continue to be a dominant segment till 2033, thereby achieving a market value of USD 58.19 billion by 2033, growing at a CAGR of 9.2% during the forecast period. Meanwhile, the Brushless DC Motor (BLDC) segment is projected to register a CAGR of 9.9% during 2026-2033, whereas the Brushed Permanent Magnet DC Motor segment is expected to witness a CAGR of 10.2% during the forecast period.

Power Rating Outlook

The power rating segment comprises Up to 4 kW, 4-22 kW, 22-75 kW, and Above 75 kW. The Up to 4 kW segment accounted for the largest revenue share of the market in 2025 owing to its extensive deployment across consumer electronics, HVAC systems, industrial automation equipment, and compact mobility applications. The segment is anticipated to reach USD 40.35 billion by 2033 while expanding at a CAGR of 8.9% during 2026-2033. In addition, the Above 75 kW segment is expected to emerge as the fastest-growing category with a CAGR of 10.2% during the forecast period.

Magnetic Material Type Outlook

The magnetic material type segment includes Neodymium Iron Boron (NdFeB), Ferrite, and Samarium Cobalt (SmCo). The Neodymium Iron Boron (NdFeB) segment dominated the market in 2025 due to its superior magnetic strength, compact motor design capability, and widespread utilization across electric vehicles and industrial motor systems. The segment is forecast to attain a market value of USD 75.01 billion by 2033. On the other hand, the Ferrite segment is anticipated to grow at a CAGR of 10.1% during 2026-2033, while the Samarium Cobalt (SmCo) segment is expected to register a CAGR of 11.0% over the forecast period.

Cooling Method Outlook

The cooling method segment includes Air-Cooled, Liquid-Cooled, Oil-Cooled, and Hybrid Cooling. The Air-Cooled market held the highest share in 2025 owing to its cost-effectiveness, operational simplicity, and extensive adoption across industrial machinery and automotive applications. The segment is projected to reach USD 62.74 billion by 2033 while growing at a CAGR of 9.1% during the forecast period. Furthermore, the Liquid-Cooled segment is expected to witness a CAGR of 9.8%, whereas the Oil-Cooled segment is likely to record the highest CAGR of 10.8% during 2026-2033.

End User Industry Outlook

The end user industry segment includes Automotive, Industrial / Manufacturing, Consumer Electronics, Aerospace & Defense, Oil & Gas / Mining, Healthcare Equipment, and Other End User Industry. The Automotive segment dominated the Global Permanent Magnet Motor Market by End User Industry in 2025 driven by rising electric vehicle production, increasing automotive electrification, and growing deployment of energy-efficient drive systems. The segment is expected to achieve a market value of USD 37.86 billion by 2033, growing at a CAGR of 8.2% during the forecast period. Additionally, the Industrial / Manufacturing segment is expected to witness a CAGR of 9.4%, while the Consumer Electronics segment is projected to emerge as the fastest-growing category with a CAGR of 10.4% during 2026-2033.

Regional Outlook

North America region lead the Global Permanent Magnet Motor Market by region in 2025 because of strong industrial automation infrastructure, increasing investment in advanced manufacturing technologies, and rising electric vehicle deployment. The market is expected to attain a value of USD 28.32 billion by 2033 with a CAGR of 8.8% in the projection period. Furthermore, the Asia Pacific region is predicted to grow at a CAGR of 10.0% during 2026-2033, driven by accelerating electric mobility adoption, and expanding industrialization.

Market Competition And Attributes

The market is characterized by strong competition among industrial motor manufacturers, automation technology providers, electric mobility component suppliers, and energy-efficient equipment manufacturers. Companies are increasingly focusing on high-efficiency motor systems, advanced thermal management technologies, intelligent motor monitoring systems, and lightweight motor architectures to strengthen market competitiveness.

Major players are investing heavily in sustainable rare-earth magnet technologies, domestic manufacturing expansion, AI-enabled predictive maintenance solutions, and advanced industrial automation ecosystems. Strategic collaborations between electric vehicle manufacturers, industrial automation providers, and magnet material suppliers are expected to intensify market competition during the forecast period.

Global Permanent Magnet Motor Market Coverage:

List of Key Companies Profiled
  • ABB Ltd.
  • Siemens AG
  • Mitsubishi Electric Corporation
  • Toshiba Corporation
  • Hitachi Ltd.
  • Nidec Corporation
  • Regal Rexnord Corporation
  • Wolong Electric Group
  • WEG S.A.
  • Yaskawa Electric Corporation
Recent Strategies Deployed In The Market
  • Companies are increasing investments in sustainable rare-earth magnet technologies and supply chain localization initiatives.
  • Major manufacturers are expanding production capacities for high-efficiency permanent magnet motors used in electric vehicles and industrial automation systems.
  • Market participants are increasingly developing rare-earth-free motor technologies to reduce material dependency risks.
  • Strategic partnerships between motor manufacturers and EV companies are accelerating advanced motor system innovation.
  • Increasing integration of AI-enabled predictive maintenance and intelligent motor monitoring technologies across industrial motor systems.
Global Permanent Magnet Motor Market Report Segmentation

By Motor Type
  • Permanent Magnet Synchronous Motor (PMSM)
  • Brushless DC Motor (BLDC)
  • Brushed Permanent Magnet DC Motor
By Power Rating
  • Up to 4 kW
  • 4-22 kW
  • 22-75 kW
  • Above 75 kW
By Magnetic Material Type
  • Neodymium Iron Boron (NdFeB)
  • Ferrite
  • Samarium Cobalt (SmCo)
By Cooling Method
  • Air-Cooled
  • Liquid-Cooled
  • Oil-Cooled
  • Hybrid Cooling
By End User Industry
  • Automotive
  • Industrial / Manufacturing
  • Consumer Electronics
  • Aerospace & Defense
  • Oil & Gas / Mining
  • Healthcare Equipment
  • Other End User Industry
By Geography
  • North America
  • US

  • Canada

  • Mexico

  • Rest of North America
  • Europe
  • Germany

  • UK

  • France

  • Russia

  • Spain

  • Italy

  • Rest of Europe
  • Asia Pacific
  • China

  • Japan

  • India

  • South Korea

  • Singapore

  • Malaysia

  • Rest of Asia Pacific
  • LAMEA
  • Brazil

  • Argentina

  • UAE

  • Saudi Arabia

  • South Africa

  • Nigeria

  • Rest of LAMEA

Table of Contents

Chapter 1. Research Scope & Methodology
1.1 Market Definition
1.2 Analysis Period & Currency
1.3 Segmentation
1.3.1 Permanent Magnet Motor Market, by Motor Type
1.3.2 Permanent Magnet Motor Market, by Power Rating
1.3.3 Permanent Magnet Motor Market, by Magnetic Material Type
1.3.4 Permanent Magnet Motor Market, by Cooling Method
1.3.5 Permanent Magnet Motor Market, by End User Industry
1.3.6 Permanent Magnet Motor Market, by Geography
1.4 Research Methodology
Chapter 2. Market Overview
2.1 COVID-19 Impact
2.2 Market Composition and Scenario
2.3 Key Factors Impacting Market
2.3.1 Market Drivers
2.3.2 Market Restraints
2.3.3 Market Opportunities
2.3.4 Market Challenges
2.3.5 Market Trends
2.3.6 State of Competition
2.3.7 Market Consolidation
2.3.8 Key Customer Criteria
Chapter 3. Product Life CycleChapter 4. Value Chain Analysis of Permanent Magnet Motor Market
Chapter 5. Competition Analysis - Global
5.1 Market Share Analysis
5.2 Recent Developments and Strategies
5.2.1 Mergers & Acquisitions
5.2.2 Product Launch & Product Expansion
5.2.3 Partnership, Collaboration & Agreements
5.2.4 Geographical Expansion
Chapter 6. Segmentation By Motor Type
6.1 Permanent Magnet Synchronous Motor (PMSM)
6.2 Brushless DC Motor (BLDC)
6.3 Brushed Permanent Magnet DC Motor
Chapter 7. Segmentation By Magnetic Material Type
7.1 Neodymium Iron Boron (NdFeB)
7.2 Samarium Cobalt (SmCo)
7.3 Ferrite
Chapter 8. Segmentation By Power Rating
8.1 Up to 4 kW
8.2 -22 kW
8.3 -75 kW
8.4 Above 75 kW
Chapter 9. Segmentation By Cooling Method
9.1 Air-Cooled
9.2 Liquid-Cooled
9.3 Oil-Cooled
9.4 Hybrid Cooling
Chapter 10. Segmentation By End User Industry
10.1 Automotive
10.2 Industrial / Manufacturing
10.3 Aerospace & Defense
10.4 Oil & Gas / Mining
10.5 Healthcare Equipment
10.6 Consumer Electronics
10.7 Other End Use Industry
Chapter 11. North America Market
11.1 Market Overview
11.2 Key Factors Impacting Market
11.2.1 Market Drivers
11.2.2 Market Restraints
11.2.3 Market Opportunities
11.2.4 Market Challenges
11.2.5 Market Trends
11.2.6 State of Competition
11.2.7 Market Consolidation
11.2.8 Key Customer Criteria
11.3 Product Life Cycle
11.4 Segmentation By Motor Type
11.4.1 Permanent Magnet Synchronous Motor (PMSM)
11.4.2 Brushless DC Motor (BLDC)
11.4.3 Brushed Permanent Magnet DC Motor
11.5 Segmentation By Magnetic Material Type
11.5.1 Neodymium Iron Boron (NdFeB)
11.5.2 Samarium Cobalt (SmCo)
11.5.3 Ferrite
11.6 Segmentation By Power Rating
11.6.1 Up to 4 kW
11.6.2 -22 kW
11.6.3 -75 kW
11.6.4 Above 75 kW
11.7 Segmentation By Cooling Method
11.7.1 Air-Cooled
11.7.2 Liquid-Cooled
11.7.3 Oil-Cooled
11.7.4 Hybrid Cooling
11.8 Segmentation By End User Industry
11.8.1 Automotive
11.8.2 Industrial / Manufacturing
11.8.3 Aerospace & Defense
11.8.4 Oil & Gas / Mining
11.8.5 Healthcare Equipment
11.8.6 Consumer Electronics
11.8.7 Other End Use Industry
11.9 Segmentation By Country
11.9.1 United States
11.9.1.1 Segmentation By Motor Type
11.9.1.1.1 Permanent Magnet Synchronous Motor (PMSM)
11.9.1.1.2 Brushless DC Motor (BLDC)
11.9.1.1.3 Brushed Permanent Magnet DC Motor
11.9.1.2 Segmentation By Power Rating
11.9.1.2.1 Up to 4 kW
11.9.1.2.2 -22 kW
11.9.1.2.3 -75 kW
11.9.1.2.4 Above 75 kW
11.9.1.3 Segmentation By Magnetic Material Type
11.9.1.3.1 Neodymium Iron Boron (NdFeB)
11.9.1.3.2 Ferrite
11.9.1.3.3 Samarium Cobalt (SmCo)
11.9.1.3.4 Air-Cooled
11.9.1.3.5 Liquid-Cooled
11.9.1.3.6 Oil-Cooled
11.9.1.3.7 Hybrid Cooling
11.9.1.4 Segmentation By End User Industry
11.9.1.4.1 Automotive
11.9.1.4.2 Industrial / Manufacturing
11.9.1.4.3 Consumer Electronics
11.9.1.4.4 Aerospace & Defense
11.9.1.4.5 Oil & Gas / Mining
11.9.1.4.6 Healthcare Equipment
11.9.1.4.7 Other End User Industry
11.9.2 Canada
11.9.2.1 Segmentation By Motor Type
11.9.2.1.1 Permanent Magnet Synchronous Motor (PMSM)
11.9.2.1.2 Brushless DC Motor (BLDC)
11.9.2.1.3 Brushed Permanent Magnet DC Motor
11.9.2.2 Segmentation By Power Rating
11.9.2.2.1 Up to 4 kW
11.9.2.2.2 -22 kW
11.9.2.2.3 -75 kW
11.9.2.2.4 Above 75 kW
11.9.2.3 Segmentation By Magnetic Material Type
11.9.2.3.1 Neodymium Iron Boron (NdFeB)
11.9.2.3.2 Ferrite
11.9.2.3.3 Samarium Cobalt (SmCo)
11.9.2.3.4 Air-Cooled
11.9.2.3.5 Liquid-Cooled
11.9.2.3.6 Oil-Cooled
11.9.2.3.7 Hybrid Cooling
11.9.2.4 Segmentation By End User Industry
11.9.2.4.1 Automotive
11.9.2.4.2 Industrial / Manufacturing
11.9.2.4.3 Consumer Electronics
11.9.2.4.4 Aerospace & Defense
11.9.2.4.5 Oil & Gas / Mining
11.9.2.4.6 Healthcare Equipment
11.9.2.4.7 Other End User Industry
11.9.3 Mexico
11.9.3.1 Segmentation By Motor Type
11.9.3.1.1 Permanent Magnet Synchronous Motor (PMSM)
11.9.3.1.2 Brushless DC Motor (BLDC)
11.9.3.1.3 Brushed Permanent Magnet DC Motor
11.9.3.2 Segmentation By Power Rating
11.9.3.2.1 Up to 4 kW
11.9.3.2.2 -22 kW
11.9.3.2.3 -75 kW
11.9.3.2.4 Above 75 kW
11.9.3.3 Segmentation By Magnetic Material Type
11.9.3.3.1 Neodymium Iron Boron (NdFeB)
11.9.3.3.2 Ferrite
11.9.3.3.3 Samarium Cobalt (SmCo)
11.9.3.3.4 Air-Cooled
11.9.3.3.5 Liquid-Cooled
11.9.3.3.6 Oil-Cooled
11.9.3.3.7 Hybrid Cooling
11.9.3.4 Segmentation By End User Industry
11.9.3.4.1 Automotive
11.9.3.4.2 Industrial / Manufacturing
11.9.3.4.3 Consumer Electronics
11.9.3.4.4 Aerospace & Defense
11.9.3.4.5 Oil & Gas / Mining
11.9.3.4.6 Healthcare Equipment
11.9.3.4.7 Other End User Industry
11.9.4 Rest of North America
11.9.4.1 Segmentation By Motor Type
11.9.4.1.1 Permanent Magnet Synchronous Motor (PMSM)
11.9.4.1.2 Brushless DC Motor (BLDC)
11.9.4.1.3 Brushed Permanent Magnet DC Motor
11.9.4.2 Segmentation By Power Rating
11.9.4.2.1 Up to 4 kW
11.9.4.2.2 -22 kW
11.9.4.2.3 -75 kW
11.9.4.2.4 Above 75 kW
11.9.4.3 Segmentation By Magnetic Material Type
11.9.4.3.1 Neodymium Iron Boron (NdFeB)
11.9.4.3.2 Ferrite
11.9.4.3.3 Samarium Cobalt (SmCo)
11.9.4.3.4 Air-Cooled
11.9.4.3.5 Liquid-Cooled
11.9.4.3.6 Oil-Cooled
11.9.4.3.7 Hybrid Cooling
11.9.4.4 Segmentation By End User Industry
11.9.4.4.1 Automotive
11.9.4.4.2 Industrial / Manufacturing
11.9.4.4.3 Consumer Electronics
11.9.4.4.4 Aerospace & Defense
11.9.4.4.5 Oil & Gas / Mining
11.9.4.4.6 Healthcare Equipment
11.9.4.4.7 Other End User Industry
Chapter 12. Europe Market
12.1 Market Overview
12.2 Key Factors Impacting Market
12.2.1 Market Drivers
12.2.2 Market Restraints
12.2.3 Market Opportunities
12.2.4 Market Challenges
12.2.5 Market Trends
12.2.6 State of Competition
12.2.7 Market Consolidation
12.2.8 Key Customer Criteria
12.3 Product Life Cycle
12.4 Segmentation By Motor Type
12.4.1 Permanent Magnet Synchronous Motor (PMSM)
12.4.2 Brushless DC Motor (BLDC)
12.4.3 Brushed Permanent Magnet DC Motor
12.5 Segmentation By Magnetic Material Type
12.5.1 Neodymium Iron Boron (NdFeB)
12.5.2 Samarium Cobalt (SmCo)
12.5.3 Ferrite
12.6 Segmentation By Power Rating
12.6.1 Up to 4 kW
12.6.2 -22 kW
12.6.3 -75 kW
12.6.4 Above 75 kW
12.7 Segmentation By Cooling Method
12.7.1 Air-Cooled
12.7.2 Liquid-Cooled
12.7.3 Oil-Cooled
12.7.4 Hybrid Cooling
12.8 Segmentation By End User Industry
12.8.1 Automotive
12.8.2 Industrial / Manufacturing
12.8.3 Aerospace & Defense
12.8.4 Oil & Gas / Mining
12.8.5 Healthcare Equipment
12.8.6 Consumer Electronics
12.8.7 Other End Use industry
12.9 Segmentation By Country
12.9.1 Germany
12.9.1.1 Segmentation By Motor Type
12.9.1.1.1 Permanent Magnet Synchronous Motor (PMSM)
12.9.1.1.2 Brushless DC Motor (BLDC)
12.9.1.1.3 Brushed Permanent Magnet DC Motor
12.9.1.2 Segmentation By Power Rating
12.9.1.2.1 Up to 4 kW
12.9.1.2.2 -22 kW
12.9.1.2.3 -75 kW
12.9.1.2.4 Above 75 kW
12.9.1.3 Segmentation By Magnetic Material Type
12.9.1.3.1 Neodymium Iron Boron (NdFeB)
12.9.1.3.2 Ferrite
12.9.1.3.3 Samarium Cobalt (SmCo)
12.9.1.3.4 Air-Cooled
12.9.1.3.5 Liquid-Cooled
12.9.1.3.6 Oil-Cooled
12.9.1.3.7 Hybrid Cooling
12.9.1.4 Segmentation By End User Industry
12.9.1.4.1 Automotive
12.9.1.4.2 Industrial / Manufacturing
12.9.1.4.3 Consumer Electronics
12.9.1.4.4 Aerospace & Defense
12.9.1.4.5 Oil & Gas / Mining
12.9.1.4.6 Healthcare Equipment
12.9.1.4.7 Other End User Industry
12.9.2 UK
12.9.2.1 Segmentation By Motor Type
12.9.2.1.1 Permanent Magnet Synchronous Motor (PMSM)
12.9.2.1.2 Brushless DC Motor (BLDC)
12.9.2.1.3 Brushed Permanent Magnet DC Motor
12.9.2.2 Segmentation By Power Rating
12.9.2.2.1 Up to 4 kW
12.9.2.2.2 -22 kW
12.9.2.2.3 -75 kW
12.9.2.2.4 Above 75 kW
12.9.2.3 Segmentation By Magnetic Material Type
12.9.2.3.1 Neodymium Iron Boron (NdFeB)
12.9.2.3.2 Ferrite
12.9.2.3.3 Samarium Cobalt (SmCo)
12.9.2.3.4 Air-Cooled
12.9.2.3.5 Liquid-Cooled
12.9.2.3.6 Oil-Cooled
12.9.2.3.7 Hybrid Cooling
12.9.2.4 Segmentation By End User Industry
12.9.2.4.1 Automotive
12.9.2.4.2 Industrial / Manufacturing
12.9.2.4.3 Consumer Electronics
12.9.2.4.4 Aerospace & Defense
12.9.2.4.5 Oil & Gas / Mining
12.9.2.4.6 Healthcare Equipment
12.9.2.4.7 Other End User Industry
12.9.3 France
12.9.3.1 Segmentation By Motor Type
12.9.3.1.1 Permanent Magnet Synchronous Motor (PMSM)
12.9.3.1.2 Brushless DC Motor (BLDC)
12.9.3.1.3 Brushed Permanent Magnet DC Motor
12.9.3.2 Segmentation By Power Rating
12.9.3.2.1 Up to 4 kW
12.9.3.2.2 -22 kW
12.9.3.2.3 -75 kW
12.9.3.2.4 Above 75 kW
12.9.3.3 Segmentation By Magnetic Material Type
12.9.3.3.1 Neodymium Iron Boron (NdFeB)
12.9.3.3.2 Ferrite
12.9.3.3.3 Samarium Cobalt (SmCo)
12.9.3.3.4 Air-Cooled
12.9.3.3.5 Liquid-Cooled
12.9.3.3.6 Oil-Cooled
12.9.3.3.7 Hybrid Cooling
12.9.3.4 Segmentation By End User Industry
12.9.3.4.1 Automotive
12.9.3.4.2 Industrial / Manufacturing
12.9.3.4.3 Consumer Electronics
12.9.3.4.4 Aerospace & Defense
12.9.3.4.5 Oil & Gas / Mining
12.9.3.4.6 Healthcare Equipment
12.9.3.4.7 Other End User Industry
12.9.4 Russia
12.9.4.1 Segmentation By Motor Type
12.9.4.1.1 Permanent Magnet Synchronous Motor (PMSM)
12.9.4.1.2 Brushless DC Motor (BLDC)
12.9.4.1.3 Brushed Permanent Magnet DC Motor
12.9.4.2 Segmentation By Power Rating
12.9.4.2.1 Up to 4 kW
12.9.4.2.2 -22 kW
12.9.4.2.3 -75 kW
12.9.4.2.4 Above 75 kW
12.9.4.3 Segmentation By Magnetic Material Type
12.9.4.3.1 Neodymium Iron Boron (NdFeB)
12.9.4.3.2 Ferrite
12.9.4.3.3 Samarium Cobalt (SmCo)
12.9.4.3.4 Air-Cooled
12.9.4.3.5 Liquid-Cooled
12.9.4.3.6 Oil-Cooled
12.9.4.3.7 Hybrid Cooling
12.9.4.4 Segmentation By End User Industry
12.9.4.4.1 Automotive
12.9.4.4.2 Industrial / Manufacturing
12.9.4.4.3 Consumer Electronics
12.9.4.4.4 Aerospace & Defense
12.9.4.4.5 Oil & Gas / Mining
12.9.4.4.6 Healthcare Equipment
12.9.4.4.7 Other End User Industry
12.9.5 Spain
12.9.5.1 Segmentation By Motor Type
12.9.5.1.1 Permanent Magnet Synchronous Motor (PMSM)
12.9.5.1.2 Brushless DC Motor (BLDC)
12.9.5.1.3 Brushed Permanent Magnet DC Motor
12.9.5.2 Segmentation By Power Rating
12.9.5.2.1 Up to 4 kW
12.9.5.2.2 -22 kW
12.9.5.2.3 -75 kW
12.9.5.2.4 Above 75 kW
12.9.5.3 Segmentation By Magnetic Material Type
12.9.5.3.1 Neodymium Iron Boron (NdFeB)
12.9.5.3.2 Ferrite
12.9.5.3.3 Samarium Cobalt (SmCo)
12.9.5.3.4 Air-Cooled
12.9.5.3.5 Liquid-Cooled
12.9.5.3.6 Oil-Cooled
12.9.5.3.7 Hybrid Cooling
12.9.5.4 Segmentation By End User Industry
12.9.5.4.1 Automotive
12.9.5.4.2 Industrial / Manufacturing
12.9.5.4.3 Consumer Electronics
12.9.5.4.4 Aerospace & Defense
12.9.5.4.5 Oil & Gas / Mining
12.9.5.4.6 Healthcare Equipment
12.9.5.4.7 Other End User Industry
12.9.6 Italy
12.9.6.1 Segmentation By Motor Type
12.9.6.1.1 Permanent Magnet Synchronous Motor (PMSM)
12.9.6.1.2 Brushless DC Motor (BLDC)
12.9.6.1.3 Brushed Permanent Magnet DC Motor
12.9.6.2 Segmentation By Power Rating
12.9.6.2.1 Up to 4 kW
12.9.6.2.2 -22 kW
12.9.6.2.3 -75 kW
12.9.6.2.4 Above 75 kW
12.9.6.3 Segmentation By Magnetic Material Type
12.9.6.3.1 Neodymium Iron Boron (NdFeB)
12.9.6.3.2 Ferrite
12.9.6.3.3 Samarium Cobalt (SmCo)
12.9.6.3.4 Air-Cooled
12.9.6.3.5 Liquid-Cooled
12.9.6.3.6 Oil-Cooled
12.9.6.3.7 Hybrid Cooling
12.9.6.4 Segmentation By End User Industry
12.9.6.4.1 Automotive
12.9.6.4.2 Industrial / Manufacturing
12.9.6.4.3 Consumer Electronics
12.9.6.4.4 Aerospace & Defense
12.9.6.4.5 Oil & Gas / Mining
12.9.6.4.6 Healthcare Equipment
12.9.6.4.7 Other End User Industry
12.9.7 Rest of Europe
12.9.7.1 Segmentation By Motor Type
12.9.7.1.1 Permanent Magnet Synchronous Motor (PMSM)
12.9.7.1.2 Brushless DC Motor (BLDC)
12.9.7.1.3 Brushed Permanent Magnet DC Motor
12.9.7.2 Segmentation By Power Rating
12.9.7.2.1 Up to 4 kW
12.9.7.2.2 -22 kW
12.9.7.2.3 -75 kW
12.9.7.2.4 Above 75 kW
12.9.7.3 Segmentation By Magnetic Material Type
12.9.7.3.1 Neodymium Iron Boron (NdFeB)
12.9.7.3.2 Ferrite
12.9.7.3.3 Samarium Cobalt (SmCo)
12.9.7.3.4 Air-Cooled
12.9.7.3.5 Liquid-Cooled
12.9.7.3.6 Oil-Cooled
12.9.7.3.7 Hybrid Cooling
12.9.7.4 Segmentation By End User Industry
12.9.7.4.1 Automotive
12.9.7.4.2 Industrial / Manufacturing
12.9.7.4.3 Consumer Electronics
12.9.7.4.4 Aerospace & Defense
12.9.7.4.5 Oil & Gas / Mining
12.9.7.4.6 Healthcare Equipment
12.9.7.4.7 Other End User Industry
Chapter 13. Asia Pacific Market
13.1 Market Overview
13.2 Key Factors Impacting Market
13.2.1 Market Drivers
13.2.2 Market Restraints
13.2.3 Market Opportunities
13.2.4 Market Challenges
13.2.5 Market Trends
13.2.6 State of Competition
13.2.7 Market Consolidation
13.2.8 Key Customer Criteria
13.3 Product Life Cycle
13.4 Segmentation By Motor Type
13.4.1 Permanent Magnet Synchronous Motor (PMSM)
13.4.2 Brushless DC Motor (BLDC)
13.4.3 Brushed Permanent Magnet DC Motor
13.5 Segmentation By Magnetic Material Type
13.5.1 Neodymium Iron Boron (NdFeB)
13.5.2 Samarium Cobalt (SmCo)
13.5.3 Ferrite
13.6 Segmentation By Power Rating
13.6.1 Up to 4 kW
13.6.2 -22 kW
13.6.3 -75 kW
13.6.4 Above 75 kW
13.7 Segmentation By Cooling Method
13.7.1 Air-Cooled
13.7.2 Liquid-Cooled
13.7.3 Oil-Cooled
13.7.4 Hybrid Cooling
13.8 Segmentation By End User Industry
13.8.1 Automotive
13.8.2 Industrial / Manufacturing
13.8.3 Aerospace & Defense
13.8.4 Oil & Gas / Mining
13.8.5 Healthcare Equipment
13.8.6 Consumer Electronics
13.8.7 Other End User Industry
13.9 Segmentation By Country
13.9.1 China
13.9.1.1 Segmentation By Motor Type
13.9.1.1.1 Permanent Magnet Synchronous Motor (PMSM)
13.9.1.1.2 Brushless DC Motor (BLDC)
13.9.1.1.3 Brushed Permanent Magnet DC Motor
13.9.1.2 Segmentation By Power Rating
13.9.1.2.1 Up to 4 kW
13.9.1.2.2 -22 kW
13.9.1.2.3 -75 kW
13.9.1.2.4 Above 75 kW
13.9.1.3 Segmentation By Magnetic Material Type
13.9.1.3.1 Neodymium Iron Boron (NdFeB)
13.9.1.3.2 Ferrite
13.9.1.3.3 Samarium Cobalt (SmCo)
13.9.1.3.4 Air-Cooled
13.9.1.3.5 Liquid-Cooled
13.9.1.3.6 Oil-Cooled
13.9.1.3.7 Hybrid Cooling
13.9.1.4 Segmentation By End User Industry
13.9.1.4.1 Automotive
13.9.1.4.2 Industrial / Manufacturing
13.9.1.4.3 Consumer Electronics
13.9.1.4.4 Aerospace & Defense
13.9.1.4.5 Oil & Gas / Mining
13.9.1.4.6 Healthcare Equipment
13.9.1.4.7 Other End User Industry
13.9.2 Japan
13.9.2.1 Segmentation By Motor Type
13.9.2.1.1 Permanent Magnet Synchronous Motor (PMSM)
13.9.2.1.2 Brushless DC Motor (BLDC)
13.9.2.1.3 Brushed Permanent Magnet DC Motor
13.9.2.2 Segmentation By Power Rating
13.9.2.2.1 Up to 4 kW
13.9.2.2.2 -22 kW
13.9.2.2.3 -75 kW
13.9.2.2.4 Above 75 kW
13.9.2.3 Segmentation By Magnetic Material Type
13.9.2.3.1 Neodymium Iron Boron (NdFeB)
13.9.2.3.2 Ferrite
13.9.2.3.3 Samarium Cobalt (SmCo)
13.9.2.3.4 Air-Cooled
13.9.2.3.5 Liquid-Cooled
13.9.2.3.6 Oil-Cooled
13.9.2.3.7 Hybrid Cooling
13.9.2.4 Segmentation By End User Industry
13.9.2.4.1 Automotive
13.9.2.4.2 Industrial / Manufacturing
13.9.2.4.3 Consumer Electronics
13.9.2.4.4 Aerospace & Defense
13.9.2.4.5 Oil & Gas / Mining
13.9.2.4.6 Healthcare Equipment
13.9.2.4.7 Other End User Industry
13.9.3 India
13.9.3.1 Segmentation By Motor Type
13.9.3.1.1 Permanent Magnet Synchronous Motor (PMSM)
13.9.3.1.2 Brushless DC Motor (BLDC)
13.9.3.1.3 Brushed Permanent Magnet DC Motor
13.9.3.2 Segmentation By Power Rating
13.9.3.2.1 Up to 4 kW
13.9.3.2.2 -22 kW
13.9.3.2.3 -75 kW
13.9.3.2.4 Above 75 kW
13.9.3.3 Segmentation By Magnetic Material Type
13.9.3.3.1 Neodymium Iron Boron (NdFeB)
13.9.3.3.2 Ferrite
13.9.3.3.3 Samarium Cobalt (SmCo)
13.9.3.3.4 Air-Cooled
13.9.3.3.5 Liquid-Cooled
13.9.3.3.6 Oil-Cooled
13.9.3.3.7 Hybrid Cooling
13.9.3.4 Segmentation By End User Industry
13.9.3.4.1 Automotive
13.9.3.4.2 Industrial / Manufacturing
13.9.3.4.3 Consumer Electronics
13.9.3.4.4 Aerospace & Defense
13.9.3.4.5 Oil & Gas / Mining
13.9.3.4.6 Healthcare Equipment
13.9.3.4.7 Other End User Industry
13.9.4 South Korea
13.9.4.1 Segmentation By Motor Type
13.9.4.1.1 Permanent Magnet Synchronous Motor (PMSM)
13.9.4.1.2 Brushless DC Motor (BLDC)
13.9.4.1.3 Brushed Permanent Magnet DC Motor
13.9.4.2 Segmentation By Power Rating
13.9.4.2.1 Up to 4 kW
13.9.4.2.2 -22 kW
13.9.4.2.3 -75 kW
13.9.4.2.4 Above 75 kW
13.9.4.3 Segmentation By Magnetic Material Type
13.9.4.3.1 Neodymium Iron Boron (NdFeB)
13.9.4.3.2 Ferrite
13.9.4.3.3 Samarium Cobalt (SmCo)
13.9.4.3.4 Air-Cooled
13.9.4.3.5 Liquid-Cooled
13.9.4.3.6 Oil-Cooled
13.9.4.3.7 Hybrid Cooling
13.9.4.4 Segmentation By End User Industry
13.9.4.4.1 Automotive
13.9.4.4.2 Industrial / Manufacturing
13.9.4.4.3 Consumer Electronics
13.9.4.4.4 Aerospace & Defense
13.9.4.4.5 Oil & Gas / Mining
13.9.4.4.6 Healthcare Equipment
13.9.4.4.7 Other End User Industry
13.9.5 Singapore
13.9.5.1 Segmentation By Motor Type
13.9.5.1.1 Permanent Magnet Synchronous Motor (PMSM)
13.9.5.1.2 Brushless DC Motor (BLDC)
13.9.5.1.3 Brushed Permanent Magnet DC Motor
13.9.5.2 Segmentation By Power Rating
13.9.5.2.1 Up to 4 kW
13.9.5.2.2 -22 kW
13.9.5.2.3 -75 kW
13.9.5.2.4 Above 75 kW
13.9.5.3 Segmentation By Magnetic Material Type
13.9.5.3.1 Neodymium Iron Boron (NdFeB)
13.9.5.3.2 Ferrite
13.9.5.3.3 Samarium Cobalt (SmCo)
13.9.5.3.4 Air-Cooled
13.9.5.3.5 Liquid-Cooled
13.9.5.3.6 Oil-Cooled
13.9.5.3.7 Hybrid Cooling
13.9.5.4 Segmentation By End User Industry
13.9.5.4.1 Automotive
13.9.5.4.2 Industrial / Manufacturing
13.9.5.4.3 Consumer Electronics
13.9.5.4.4 Aerospace & Defense
13.9.5.4.5 Oil & Gas / Mining
13.9.5.4.6 Healthcare Equipment
13.9.5.4.7 Other End User Industry
13.9.6 Malaysia
13.9.6.1 Segmentation By Motor Type
13.9.6.1.1 Permanent Magnet Synchronous Motor (PMSM)
13.9.6.1.2 Brushless DC Motor (BLDC)
13.9.6.1.3 Brushed Permanent Magnet DC Motor
13.9.6.2 Segmentation By Power Rating
13.9.6.2.1 Up to 4 kW
13.9.6.2.2 -22 kW
13.9.6.2.3 -75 kW
13.9.6.2.4 Above 75 kW
13.9.6.3 Segmentation By Magnetic Material Type
13.9.6.3.1 Neodymium Iron Boron (NdFeB)
13.9.6.3.2 Ferrite
13.9.6.3.3 Samarium Cobalt (SmCo)
13.9.6.3.4 Air-Cooled
13.9.6.3.5 Liquid-Cooled
13.9.6.3.6 Oil-Cooled
13.9.6.3.7 Hybrid Cooling
13.9.6.4 Segmentation By End User Industry
13.9.6.4.1 Automotive
13.9.6.4.2 Industrial / Manufacturing
13.9.6.4.3 Consumer Electronics
13.9.6.4.4 Aerospace & Defense
13.9.6.4.5 Oil & Gas / Mining
13.9.6.4.6 Healthcare Equipment
13.9.6.4.7 Other End User Industry
13.9.7 Rest of Asia Pacific
13.9.7.1 Segmentation By Motor Type
13.9.7.1.1 Permanent Magnet Synchronous Motor (PMSM)
13.9.7.1.2 Brushless DC Motor (BLDC)
13.9.7.1.3 Brushed Permanent Magnet DC Motor
13.9.7.2 Segmentation By Power Rating
13.9.7.2.1 Up to 4 kW
13.9.7.2.2 -22 kW
13.9.7.2.3 -75 kW
13.9.7.2.4 Above 75 kW
13.9.7.3 Segmentation By Magnetic Material Type
13.9.7.3.1 Neodymium Iron Boron (NdFeB)
13.9.7.3.2 Ferrite
13.9.7.3.3 Samarium Cobalt (SmCo)
13.9.7.3.4 Air-Cooled
13.9.7.3.5 Liquid-Cooled
13.9.7.3.6 Oil-Cooled
13.9.7.3.7 Hybrid Cooling
13.9.7.4 Segmentation By End User Industry
13.9.7.4.1 Automotive
13.9.7.4.2 Industrial / Manufacturing
13.9.7.4.3 Consumer Electronics
13.9.7.4.4 Aerospace & Defense
13.9.7.4.5 Oil & Gas / Mining
13.9.7.4.6 Healthcare Equipment
13.9.7.4.7 Other End User Industry
Chapter 14. LAMEA Market
14.1 Market Overview
14.2 Key Factors Impacting Market
14.2.1 Market Drivers
14.2.2 Market Restraints
14.2.3 Market Opportunities
14.2.4 Market Challenges
14.2.5 Market Trends
14.2.6 State of Competition
14.2.7 Market Consolidation
14.2.8 Key Customer Criteria
14.3 Product Life Cycle
14.4 Segmentation By Motor Type
14.4.1 Permanent Magnet Synchronous Motor (PMSM)
14.4.2 Brushless DC Motor (BLDC)
14.4.3 Brushed Permanent Magnet DC Motor
14.5 Segmentation By Magnetic Material Type
14.5.1 Neodymium Iron Boron (NdFeB)
14.5.2 Samarium Cobalt (SmCo)
14.5.3 Ferrite
14.6 Segmentation By Power Rating
14.6.1 Up to 4 kW
14.6.2 -22 kW
14.6.3 -75 kW
14.6.4 Above 75 kW
14.7 Segmentation By Cooling Method
14.7.1 Air-Cooled
14.7.2 Liquid-Cooled
14.7.3 Oil-Cooled
14.7.4 Hybrid Cooling
14.8 Segmentation By End User Industry
14.8.1 Automotive
14.8.2 Industrial / Manufacturing
14.8.3 Aerospace & Defense
14.8.4 Oil & Gas / Mining
14.8.5 Healthcare Equipment
14.8.6 Consumer Electronics
14.8.7 Other End Use Industry
14.9 Segmentation By Country
14.9.1 Brazil
14.9.1.1 Segmentation By Motor Type
14.9.1.1.1 Permanent Magnet Synchronous Motor (PMSM)
14.9.1.1.2 Brushless DC Motor (BLDC)
14.9.1.1.3 Brushed Permanent Magnet DC Motor
14.9.1.2 Segmentation By Power Rating
14.9.1.2.1 Up to 4 kW
14.9.1.2.2 -22 kW
14.9.1.2.3 -75 kW
14.9.1.2.4 Above 75 kW
14.9.1.3 Segmentation By Magnetic Material Type
14.9.1.3.1 Neodymium Iron Boron (NdFeB)
14.9.1.3.2 Ferrite
14.9.1.3.3 Samarium Cobalt (SmCo)
14.9.1.3.4 Air-Cooled
14.9.1.3.5 Liquid-Cooled
14.9.1.3.6 Oil-Cooled
14.9.1.3.7 Hybrid Cooling
14.9.1.4 Segmentation By End User Industry
14.9.1.4.1 Automotive
14.9.1.4.2 Industrial / Manufacturing
14.9.1.4.3 Consumer Electronics
14.9.1.4.4 Aerospace & Defense
14.9.1.4.5 Oil & Gas / Mining
14.9.1.4.6 Healthcare Equipment
14.9.1.4.7 Other End User Industry
14.9.2 Argentina
14.9.2.1 Segmentation By Motor Type
14.9.2.1.1 Permanent Magnet Synchronous Motor (PMSM)
14.9.2.1.2 Brushless DC Motor (BLDC)
14.9.2.1.3 Brushed Permanent Magnet DC Motor
14.9.2.2 Segmentation By Power Rating
14.9.2.2.1 Up to 4 kW
14.9.2.2.2 -22 kW
14.9.2.2.3 -75 kW
14.9.2.2.4 Above 75 kW
14.9.2.3 Segmentation By Magnetic Material Type
14.9.2.3.1 Neodymium Iron Boron (NdFeB)
14.9.2.3.2 Ferrite
14.9.2.3.3 Samarium Cobalt (SmCo)
14.9.2.3.4 Air-Cooled
14.9.2.3.5 Liquid-Cooled
14.9.2.3.6 Oil-Cooled
14.9.2.3.7 Hybrid Cooling
14.9.2.4 Segmentation By End User Industry
14.9.2.4.1 Automotive
14.9.2.4.2 Industrial / Manufacturing
14.9.2.4.3 Consumer Electronics
14.9.2.4.4 Aerospace & Defense
14.9.2.4.5 Oil & Gas / Mining
14.9.2.4.6 Healthcare Equipment
14.9.2.4.7 Other End User Industry
14.9.3 UAE
14.9.3.1 Segmentation By Motor Type
14.9.3.1.1 Permanent Magnet Synchronous Motor (PMSM)
14.9.3.1.2 Brushless DC Motor (BLDC)
14.9.3.1.3 Brushed Permanent Magnet DC Motor
14.9.3.2 Segmentation By Power Rating
14.9.3.2.1 Up to 4 kW
14.9.3.2.2 -22 kW
14.9.3.2.3 -75 kW
14.9.3.2.4 Above 75 kW
14.9.3.3 Segmentation By Magnetic Material Type
14.9.3.3.1 Neodymium Iron Boron (NdFeB)
14.9.3.3.2 Ferrite
14.9.3.3.3 Samarium Cobalt (SmCo)
14.9.3.3.4 Air-Cooled
14.9.3.3.5 Liquid-Cooled
14.9.3.3.6 Oil-Cooled
14.9.3.3.7 Hybrid Cooling
14.9.3.4 Segmentation By End User Industry
14.9.3.4.1 Automotive
14.9.3.4.2 Industrial / Manufacturing
14.9.3.4.3 Consumer Electronics
14.9.3.4.4 Aerospace & Defense
14.9.3.4.5 Oil & Gas / Mining
14.9.3.4.6 Healthcare Equipment
14.9.3.4.7 Other End User Industry
14.9.4 Saudi Arabia
14.9.4.1 Segmentation By Motor Type
14.9.4.1.1 Permanent Magnet Synchronous Motor (PMSM)
14.9.4.1.2 Brushless DC Motor (BLDC)
14.9.4.1.3 Brushed Permanent Magnet DC Motor
14.9.4.2 Segmentation By Power Rating
14.9.4.2.1 Up to 4 kW
14.9.4.2.2 -22 kW
14.9.4.2.3 -75 kW
14.9.4.2.4 Above 75 kW
14.9.4.3 Segmentation By Magnetic Material Type
14.9.4.3.1 Neodymium Iron Boron (NdFeB)
14.9.4.3.2 Ferrite
14.9.4.3.3 Samarium Cobalt (SmCo)
14.9.4.3.4 Air-Cooled
14.9.4.3.5 Liquid-Cooled
14.9.4.3.6 Oil-Cooled
14.9.4.3.7 Hybrid Cooling
14.9.4.4 Segmentation By End User Industry
14.9.4.4.1 Automotive
14.9.4.4.2 Industrial / Manufacturing
14.9.4.4.3 Consumer Electronics
14.9.4.4.4 Aerospace & Defense
14.9.4.4.5 Oil & Gas / Mining
14.9.4.4.6 Healthcare Equipment
14.9.4.4.7 Other End User Industry
14.9.5 South Africa
14.9.5.1 Segmentation By Motor Type
14.9.5.1.1 Permanent Magnet Synchronous Motor (PMSM)
14.9.5.1.2 Brushless DC Motor (BLDC)
14.9.5.1.3 Brushed Permanent Magnet DC Motor
14.9.5.2 Segmentation By Power Rating
14.9.5.2.1 Up to 4 kW
14.9.5.2.2 -22 kW
14.9.5.2.3 -75 kW
14.9.5.2.4 Above 75 kW
14.9.5.3 Segmentation By Magnetic Material Type
14.9.5.3.1 Neodymium Iron Boron (NdFeB)
14.9.5.3.2 Ferrite
14.9.5.3.3 Samarium Cobalt (SmCo)
14.9.5.3.4 Air-Cooled
14.9.5.3.5 Liquid-Cooled
14.9.5.3.6 Oil-Cooled
14.9.5.3.7 Hybrid Cooling
14.9.5.4 Segmentation By End User Industry
14.9.5.4.1 Automotive
14.9.5.4.2 Industrial / Manufacturing
14.9.5.4.3 Consumer Electronics
14.9.5.4.4 Aerospace & Defense
14.9.5.4.5 Oil & Gas / Mining
14.9.5.4.6 Healthcare Equipment
14.9.5.4.7 Other End User Industry
14.9.6 Nigeria
14.9.6.1 Segmentation By Motor Type
14.9.6.1.1 Permanent Magnet Synchronous Motor (PMSM)
14.9.6.1.2 Brushless DC Motor (BLDC)
14.9.6.1.3 Brushed Permanent Magnet DC Motor
14.9.6.2 Segmentation By Power Rating
14.9.6.2.1 Up to 4 kW
14.9.6.2.2 -22 kW
14.9.6.2.3 -75 kW
14.9.6.2.4 Above 75 kW
14.9.6.3 Segmentation By Magnetic Material Type
14.9.6.3.1 Neodymium Iron Boron (NdFeB)
14.9.6.3.2 Ferrite
14.9.6.3.3 Samarium Cobalt (SmCo)
14.9.6.3.4 Air-Cooled
14.9.6.3.5 Liquid-Cooled
14.9.6.3.6 Oil-Cooled
14.9.6.3.7 Hybrid Cooling
14.9.6.4 Segmentation By End User Industry
14.9.6.4.1 Automotive
14.9.6.4.2 Industrial / Manufacturing
14.9.6.4.3 Consumer Electronics
14.9.6.4.4 Aerospace & Defense
14.9.6.4.5 Oil & Gas / Mining
14.9.6.4.6 Healthcare Equipment
14.9.6.4.7 Other End User Industry
14.9.7 Rest of LAMEA
14.9.7.1 Segmentation By Motor Type
14.9.7.1.1 Permanent Magnet Synchronous Motor (PMSM)
14.9.7.1.2 Brushless DC Motor (BLDC)
14.9.7.1.3 Brushed Permanent Magnet DC Motor
14.9.7.2 Segmentation By Power Rating
14.9.7.2.1 Up to 4 kW
14.9.7.2.2 -22 kW
14.9.7.2.3 -75 kW
14.9.7.2.4 Above 75 kW
14.9.7.3 Segmentation By Magnetic Material Type
14.9.7.3.1 Neodymium Iron Boron (NdFeB)
14.9.7.3.2 Ferrite
14.9.7.3.3 Samarium Cobalt (SmCo)
14.9.7.3.4 Air-Cooled
14.9.7.3.5 Liquid-Cooled
14.9.7.3.6 Oil-Cooled
14.9.7.3.7 Hybrid Cooling
14.9.7.4 Segmentation By End User Industry
14.9.7.4.1 Automotive
14.9.7.4.2 Industrial / Manufacturing
14.9.7.4.3 Consumer Electronics
14.9.7.4.4 Aerospace & Defense
14.9.7.4.5 Oil & Gas / Mining
14.9.7.4.6 Healthcare Equipment
14.9.7.4.7 Other End User Industry
Chapter 15. Company Snapshot
15.1 ABB Ltd.
15.1.1 Business Overview
15.1.2 Key Information
15.1.3 Company Focus on Permanent Magnet Motor Market
15.1.4 Strategic Insights on Permanent Magnet Motor Market
15.1.5 Strategy Deployed for Permanent Magnet Motor Market
15.1.6 Product & Service Portfolio
15.1.7 Key Products / Services (Representative)
15.1.8 SWOT Analysis (Permanent Magnet Motor Market)
15.1.9 Customers / End Users
15.1.10 Competitive Positioning
15.1.11 Key Differentiators
15.1.12 Portfolio Matrix
15.1.13 Analyst View
15.1.14 Future Outlook for Permanent Magnet Motor Market
15.2 Siemens AG
15.2.1 Business Overview
15.2.2 Key Information
15.2.3 Company Focus on Permanent Magnet Motor Market
15.2.4 Strategic Insights on Permanent Magnet Motor Market
15.2.5 Strategy Deployed for Permanent Magnet Motor Market
15.2.6 Product & Service Portfolio
15.2.7 Key Products / Services (Representative)
15.2.8 Capability Overview
15.2.9 SWOT Analysis (Permanent Magnet Motor Market)
15.2.10 Customers / End Users
15.2.11 Competitive Positioning
15.2.12 Key Differentiators
15.2.13 Portfolio Matrix
15.2.14 Analyst View
15.2.15 Future Outlook for Permanent Magnet Motor Market
15.3 Nidec Corporation
15.3.1 Business Overview
15.3.2 Key Information
15.3.3 Company Focus on Permanent Magnet Motor Market
15.3.4 Strategic Insights on Permanent Magnet Motor Market
15.3.5 Strategy Deployed for Permanent Magnet Motor Market
15.3.6 Product & Service Portfolio
15.3.7 SWOT Analysis (Permanent Magnet Motor Market)
15.3.8 Customers / End Users
15.3.9 Competitive Positioning
15.3.10 Key Differentiators
15.3.11 Portfolio Matrix
15.3.12 Analyst View
15.3.13 Future Outlook for Permanent Magnet Motor Market
15.4 Wolong Electric Group Co., Ltd.
15.4.1 Business Overview
15.4.2 Key Information
15.4.3 Company Focus on Permanent Magnet Motor Market
15.4.4 Strategic Insights on Permanent Magnet Motor Market
15.4.5 Strategy Deployed for Permanent Magnet Motor Market
15.4.6 Product & Service Portfolio
15.4.7 Key Products / Services (Representative)
15.4.8 Capability Overview
15.4.9 SWOT Analysis (Permanent Magnet Motor Market)
15.4.10 Customers / End Users
15.4.11 Competitive Positioning
15.4.12 Key Differentiators
15.4.13 Portfolio Matrix
15.4.14 Analyst View
15.4.15 Future Outlook for Permanent Magnet Motor Market
15.5 WEG Group
15.5.1 Business Overview
15.5.2 Key Information
15.5.3 Company Focus on Permanent Magnet Motor Market
15.5.4 Strategic Insights on Permanent Magnet Motor Market
15.5.5 Strategy Deployed for Permanent Magnet Motor Market
15.5.6 Product & Service Portfolio
15.5.7 Key Products / Services (Representative)
15.5.8 Capability Overview
15.5.9 Technology & Innovation Focus
15.5.10 SWOT Analysis (Permanent Magnet Motor Market)
15.5.11 Customers / End Users
15.5.12 Competitive Positioning
15.5.13 Key Differentiators
15.5.14 Portfolio Matrix
15.5.15 Analyst View
15.5.16 Future Outlook for Permanent Magnet Motor Market
15.6 Yaskawa Electric Corporation
15.6.1 Business Overview
15.6.2 Key Information
15.6.3 Company Focus on Permanent Magnet Motor Market
15.6.4 Strategic Insights on Permanent Magnet Motor Market
15.6.5 Strategy Deployed for Permanent Magnet Motor Market
15.6.6 Product & Service Portfolio
15.6.7 Key Products / Services (Representative)
15.6.8 Capability Overview
15.6.9 SWOT Analysis (Permanent Magnet Motor Market)
15.6.10 Customers / End Users
15.6.11 Competitive Positioning
15.6.12 Key Differentiators
15.6.13 Portfolio Matrix
15.6.14 Analyst View
15.6.15 Future Outlook for Permanent Magnet Motor Market
15.7 Mitsubishi Electric Corporation
15.7.1 Business Overview
15.7.2 Key Information
15.7.3 Company Focus on Permanent Magnet Motor Market
15.7.4 Strategic Insights on Permanent Magnet Motor Market
15.7.5 Strategy Deployed for Permanent Magnet Motor Market
15.7.6 Product & Service Portfolio
15.7.7 Key Products / Services (Representative)
15.7.8 Capability Overview
15.7.9 Technology & Innovation Focus
15.7.10 SWOT Analysis (Permanent Magnet Motor Market)
15.7.11 Customers / End Users
15.7.12 Competitive Positioning
15.7.13 Key Differentiators
15.7.14 Portfolio Matrix
15.7.15 Analyst View
15.7.16 Future Outlook for Permanent Magnet Motor Market
15.8 Toshiba Corporation
15.8.1 Business Overview
15.8.2 Key Information
15.8.3 Company Focus on Permanent Magnet Motor Market
15.8.4 Strategic Insights on Permanent Magnet Motor Market
15.8.5 Strategy Deployed for Permanent Magnet Motor Market
15.8.6 Product & Service Portfolio
15.8.7 Key Products / Services (Representative)
15.8.8 SWOT Analysis (Permanent Magnet Motor Market)
15.8.9 Customers / End Users
15.8.10 Competitive Positioning
15.8.11 Key Differentiators
15.8.12 Portfolio Matrix
15.8.13 Analyst View
15.8.14 Future Outlook for Permanent Magnet Motor Market
15.9 Hitachi, Ltd.
15.9.1 Business Overview
15.9.2 Key Information
15.9.3 Company Focus on Permanent Magnet Motor Market
15.9.4 Strategic Insights on Permanent Magnet Motor Market
15.9.5 Strategy Deployed for Permanent Magnet Motor Market
15.9.6 Product & Service Portfolio
15.9.7 Key Products / Services (Representative)
15.9.8 SWOT Analysis (Permanent Magnet Motor Market)
15.9.9 Customers / End Users
15.9.10 Competitive Positioning
15.9.11 Key Differentiators
15.9.12 Portfolio Matrix
15.9.13 Analyst View
15.9.14 Future Outlook for Permanent Magnet Motor Market
15.10 Regal Rexnord Corporation
15.10.1 Business Overview
15.10.2 Key Information
15.10.3 Company Focus on Permanent Magnet Motor Market
15.10.4 Strategic Insights on Permanent Magnet Motor Market
15.10.5 Strategy Deployed for Permanent Magnet Motor Market
15.10.6 Product & Service Portfolio
15.10.7 Key Products / Services (Representative)
15.10.8 SWOT Analysis (Permanent Magnet Motor Market)
15.10.9 Customers / End Users
15.10.10 Competitive Positioning
15.10.11 Key Differentiators
15.10.12 Portfolio Matrix
15.10.13 Analyst View
15.10.14 Future Outlook for Permanent Magnet Motor Market
Chapter 16. Winning Imperatives of Permanent Magnet Motor Market

Companies Mentioned

  • ABB Ltd.
  • Siemens AG
  • Mitsubishi Electric Corporation
  • Toshiba Corporation
  • Hitachi Ltd.
  • Nidec Corporation
  • Regal Rexnord Corporation
  • Wolong Electric Group
  • WEG S.A.
  • Yaskawa Electric Corporation
  • Recent Strategies Deployed In The Market
  • Companies are increasing investments in sustainable rare-earth magnet technologies and supply chain localization initiatives.
  • Major manufacturers are expanding production capacities for high-efficiency permanent magnet motors used in electric vehicles and industrial automation systems.
  • Market participants are increasingly developing rare-earth-free motor technologies to reduce material dependency risks.
  • Strategic partnerships between motor manufacturers and EV companies are accelerating advanced motor system innovation.
  • Increasing integration of AI-enabled predictive maintenance and intelligent motor monitoring technologies across industrial motor systems.