Industrial Robot Motor Market Report 2026-2031: Global Trends, China s Rise, and Strategic M&A Analysis

By: HDIN Research Published: 2026-02-28 Pages: 101
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Industrial Robot Motor Market Summary

The industrial robot motor market represents the critical "muscle" of the automation age, driving the precise movement, torque, and efficiency required by modern manufacturing. As the robotics sector undergoes a profound transformation characterized by market saturation in traditional sectors and explosive growth in emerging economies, the demand for specialized motors—including AC servos, DC brushless motors, and stepper motors—has evolved. The market is currently navigating a period of significant structural readjustment, influenced heavily by geopolitical localization trends, particularly in China, and major consolidation events among global industrial giants.

Based on current industry trajectories, the market size for industrial robot motors in 2026 is estimated to range between 0.9 billion and 1.7 billion USD. Looking forward, the market is expected to experience a period of stabilized maturity and moderate expansion, with a Compound Annual Growth Rate (CAGR) projected between 2.3% and 3.6% from 2026 through 2031. This growth profile reflects a balance between the rapid adoption of automation in logistics and new energy sectors against the cyclical headwinds facing traditional automotive manufacturing.

Regional Market Analysis

The geographical distribution of the industrial robot motor market has shifted decisively toward Asia, creating a monopolar dominance that fundamentally alters supply chain strategies for global motor manufacturers. The demand is no longer evenly distributed but is heavily concentrated in manufacturing hubs that are aggressively pursuing industrial modernization and labor substitution.

● Asia Pacific: This region is the undisputed engine of the global market. In 2024, Asia accounted for approximately 74% of new robot deployments. The centerpiece of this dominance is China, which represented 54% of global deployments with 295,000 installations in 2024 alone. China's operational robot stock has exceeded the 2 million mark, the largest of any country. A critical trend within China is the rise of domestic supply chains; for the first time, Chinese robot manufacturers have outsold foreign suppliers in their home market, claiming a 57% market share. This shift places immense pressure on international motor suppliers to localize production or face displacement by increasingly capable domestic competitors. The estimated market share for the Asia Pacific region for robot motors falls between 70% and 76%.

● Europe: The European market, while technologically advanced, shows signs of maturity and saturation relative to Asia. Accounting for approximately 16% of new deployments, Europe remains a stronghold for high-precision engineering and premium motor applications. The focus here is less on volume expansion and more on retrofitting, "Industry 4.0" integration, and specialized applications in pharmaceuticals and food processing. The estimated market share for Europe is likely between 14% and 18%.

● The Americas: Representing roughly 9% of global deployments, the Americas market is driven primarily by the United States and Mexico. The demand in this region is heavily tied to the reshoring of manufacturing and the automotive sector's transition to electric vehicles. While the volume is lower than in Asia, the average selling price (ASP) of motors tends to be higher due to strict requirements for safety and software integration. The estimated market share for North America and South America combined is between 8% and 11%.

● Middle East and Africa (MEA): This region remains a nascent market for industrial robotics, primarily driven by investments in Saudi Arabia and the UAE to diversify economies beyond oil. The market share is estimated to be less than 2%.

Application and Segmentation Analysis

The demand for robot motors is dictated by the specific requirements of downstream applications. Different industries demand varying levels of precision, torque density, and environmental resistance, shaping the product portfolios of motor manufacturers.

● Automotive Manufacturing: Historically the largest consumer of industrial robots, the automotive sector remains a foundational pillar. However, the nature of the demand is changing. As the industry pivots to Electric Vehicle (EV) production, robot lines are being retooled. Heavy-duty payload robots used in chassis welding require high-torque AC servo motors, while final assembly lines for battery packs require smaller, highly precise motors. Despite a slowdown in internal combustion engine investment, the EV transition sustains demand.

● Electronic Manufacturing (3C): The Electronics, Communication, and Computer sector is the second-largest driver. This sector demands high-speed, low-vibration, and compact motors. SCARA robots and small 6-axis articulated robots are prevalent here. The trend towards miniaturization in electronics forces motor manufacturers to develop frameless motors and direct drive technologies that reduce size without compromising power.

● Metal Processing and Machinery: This segment involves harsh operating environments. Motors used in robots for grinding, polishing, and loading/unloading (machine tending) must feature high IP ratings (ingress protection) to withstand dust and coolants. Reliability and thermal management are the primary competitive factors in this segment.

● Logistics and Warehousing: This is the fastest-growing segment in terms of unit volume, though often utilizing different motor specifications compared to articulated arms. The explosion of e-commerce has driven the adoption of Autonomous Mobile Robots (AMRs) and Automated Guided Vehicles (AGVs). These applications prioritize energy efficiency (to extend battery life) and compact integration. Low-voltage servo systems and brushless DC motors are witnessing a surge in demand from this sector.

● Aerospace: While lower in volume, the aerospace sector commands the highest premium. Robots used for drilling composite materials or painting fuselage sections require motors with zero-backlash capabilities and extreme precision. This segment often utilizes specialized frameless motors integrated directly into the robot joints to minimize weight and maximize stiffness.

Value Chain and Supply Chain Structure

The industrial robot motor value chain is complex, characterized by a high degree of technical specialization and an increasing trend towards vertical integration.

The upstream segment comprises raw material suppliers. Key materials include rare earth magnets (Neodymium Iron Boron - NdFeB), copper wire, and silicon steel sheets. The volatility of rare earth prices, primarily controlled by Chinese supply chains, significantly impacts the cost structure of high-performance permanent magnet synchronous motors (PMSM).

The midstream segment consists of the motor manufacturers themselves. This layer is divided into two distinct groups: specialized motor suppliers (like Maxon, Kollmorgen) who sell components to robot OEMs, and vertically integrated robot manufacturers (like Yaskawa or Fanuc, though not listed in the target group, they represent the competitive benchmark) who produce their own motors to control costs and performance. A significant trend in the midstream is the integration of the "joint module," where the motor, encoder, brake, and reducer are sold as a single pre-assembled unit, simplifying the supply chain for robot makers.

The downstream segment includes the robot manufacturers (OEMs) and system integrators who deploy the solutions to end-users. The recent divestiture of ABB's Robotics & Discrete Automation division to SoftBank Group for $5.375 billion signals a major shift in this layer. It suggests a commoditization of hardware where profitability is increasingly difficult without massive scale or software differentiation.

Key Market Players and Company Developments

The competitive landscape is a mix of established Western precision engineering firms and rapidly rising Chinese manufacturers who are aggressively capturing market share through acquisition and localized innovation.

● Kollmorgen: A global leader in motion control, known for its high-performance frameless motors which are critical for "cobots" (collaborative robots) where space and weight are at a premium. Their TBM and KBM series are industry benchmarks for direct-drive applications.

● Nidec: A massive Japanese conglomerate with a comprehensive portfolio ranging from small precision motors to large industrial drives. Nidec's strategy often involves aggressive M&A to consolidate the supply chain, offering complete joint solutions including their Shimpo reduction gears.

● Maxon Motor and Faulhaber: These European manufacturers (Swiss and German, respectively) dominate the high-precision, small-form-factor segment. Their motors are essential for medical robotics, dexterous robotic hands, and precision electronics assembly robots where standard industrial servos are too bulky.

● Shanghai Moons' Electric: A leading Chinese manufacturer known initially for stepper motors, now successfully transitioning into high-end servo systems. They represent the "import substitution" trend in China, offering performance comparable to Tier 1 global brands at competitive price points.

● Estun Automation / Xinshida (STEP Electric): While listed as robot makers, their corporate movements affect the motor market. The acquisition of a controlling stake in Xinshida by Haier Group is a strategic maneuver to compete with Midea Group (which owns Kuka). This signals that consumer electronics and appliance giants are becoming the new overlords of the robotics supply chain, likely driving internal demand for motor components.

● Jiangsu Leili Motor and Jiangsu DINGS' Intelligent Control Technology: These companies specialize in linear actuators and stepper solutions, finding niches in the automation of fixtures and peripheral robotic equipment.

● Shenzhen Topband and Suzhou Veichi Electric: Originally focused on general industrial automation and frequency converters, these companies have expanded into motion control and servo drives, leveraging their electronic manufacturing expertise to offer cost-effective drive-motor combinations.

● Guangzhou Haozhi Industrial: This company is notable for targeting the core components bottleneck, developing harmonic reducers and integrated motor-drive units to break foreign monopolies in the robot joint market.

Market Opportunities

The market presents several strategic avenues for growth, driven by technological shifts and macroeconomic demands.

● Localization and Import Substitution in China: With China's domestic market share hitting 57% and the government's push for self-sufficiency, there is a massive opportunity for domestic motor manufacturers to displace legacy Japanese and European suppliers. International brands also have the opportunity to establish "China-for-China" R&D centers to compete on speed and cost.

● Humanoid Robotics: Although still in the early commercialization phase, the surge of interest in humanoid robots (driven by AI advancements) creates a new market for high-torque-density, lightweight motors. These robots require dozens of actuators, significantly multiplying the volume of motors needed per unit compared to a standard 6-axis arm.

● Energy Efficiency Upgrades: As global manufacturing faces stricter carbon mandates, there is a replacement cycle opportunity for high-efficiency motors (IE4/IE5 standards) in industrial automation. Robots that consume less power during hold-states or regeneration cycles are becoming preferred.

● Integration of Smart Sensors: The move towards predictive maintenance offers an opportunity to sell "smart motors" equipped with vibration and thermal sensors that can communicate health status directly to the central controller, bypassing the need for external sensor arrays.

Market Challenges

Despite the growth potential, the market faces significant headwinds that could dampen profitability.

● Intense Price Competition: The commoditization of standard AC servo systems has led to a price war, particularly in the Chinese market. The entry of massive conglomerates like Haier and the aggressive expansion of domestic players create a low-margin environment for mid-range products.

● Geopolitical Fragmentation: The bifurcation of technology standards and supply chains between the West and China complicates operations for global players. Export controls on high-end chips or advanced manufacturing equipment can disrupt the supply chain for motor controllers and encoders.

● Technical Barriers in High-End Applications: While Chinese manufacturers have captured the low-to-mid market, the ultra-high-precision segment (e.g., aerospace, semiconductor handling) is still dominated by European and Japanese firms. Bridging this gap requires sustained R&D investment which is difficult in a price-sensitive market.

● Macroeconomic Uncertainty: The divestiture of ABB's robotics division highlights a softening in capital expenditure across major markets. When global manufacturing output slows, robot orders are often the first to be delayed, directly impacting motor suppliers.

The industrial robot motor market is in a transition phase. It is moving from a high-margin, specialized hardware market to a volume-driven, cost-competitive battlefield centered in Asia. Success in the coming five years will depend on a company's ability to navigate the Chinese ecosystem, integrate advanced software capabilities, and secure supply chains against geopolitical friction.
Chapter 1 Report Overview 1
1.1 Study Scope 1
1.2 Research Methodology 2
1.2.1 Data Sources 2
1.2.2 Assumptions 3
1.3 Abbreviations and Acronyms 5

Chapter 2 Global Industrial Robot Motor Market Assessment 6
2.1 Global Industrial Robot Motor Market Size (2021-2031) 6
2.2 Global Industrial Robot Motor Market Volume (2021-2031) 7
2.3 Global Industrial Robot Motor Average Price Trends (2021-2031) 8
2.4 Growth Drivers and Market Opportunities 9
2.5 Industry Challenges and Risks 10

Chapter 3 Competitive Landscape by Key Players 12
3.1 Global Industrial Robot Motor Sales and Market Share by Players (2021-2026) 12
3.2 Global Industrial Robot Motor Revenue and Market Share by Players (2021-2026) 14
3.3 Global Industrial Robot Motor Average Price by Players (2021-2026) 16
3.4 Global Key Players Headquarter and Manufacturing Base Analysis 17
3.5 Market Concentration Rate Analysis (CR5 and HHI) 18

Chapter 4 Industrial Robot Motor Value Chain and Technology Analysis 20
4.1 Industrial Robot Motor Value Chain Analysis 20
4.2 Key Raw Materials and Suppliers 21
4.3 Manufacturing Process Analysis 22
4.4 Patent Analysis and Technological Trends 23
4.5 Cost Structure Analysis 25

Chapter 5 Global Industrial Robot Motor Market by Type 26
5.1 Global Industrial Robot Motor Sales by Type (2021-2031) 26
5.2 Global Industrial Robot Motor Revenue by Type (2021-2031) 27
5.3 Servo Motors 28
5.4 Stepper Motors 29
5.5 DC Brushless Motors 30
5.6 Others 31

Chapter 6 Global Industrial Robot Motor Market by Application 32
6.1 Global Industrial Robot Motor Sales by Application (2021-2031) 32
6.2 Global Industrial Robot Motor Revenue by Application (2021-2031) 33
6.3 Automotive Manufacturing 34
6.4 Electronic Manufacturing 35
6.5 Metal Processing 36
6.6 Aerospace 37
6.7 Logistics Warehousing 38

Chapter 7 Key Regions Status and Outlook 40
7.1 Global Industrial Robot Motor Sales by Region (2021-2031) 40
7.2 Global Industrial Robot Motor Revenue by Region (2021-2031) 42
7.3 North America Market Status and Forecast 44
7.3.1 United States 45
7.3.2 Canada 46
7.3.3 Mexico 47
7.4 Europe Market Status and Forecast 48
7.4.1 Germany 49
7.4.2 United Kingdom 50
7.4.3 France 51
7.4.4 Italy 52
7.5 Asia-Pacific Market Status and Forecast 53
7.5.1 China 54
7.5.2 Japan 55
7.5.3 South Korea 56
7.5.4 Taiwan (China) 57
7.5.5 India 58
7.5.6 Southeast Asia 59
7.6 South America Market Status and Forecast 60
7.6.1 Brazil 61
7.7 Middle East and Africa Market Status and Forecast 62
7.7.1 Turkey 63
7.7.2 Saudi Arabia 64

Chapter 8 Company Profiles and Key Data 66
8.1 Kollmorgen 66
8.1.1 Company Introduction 66
8.1.2 Kollmorgen Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 67
8.1.3 Kollmorgen SWOT Analysis 68
8.1.4 Kollmorgen R&D Investment and Marketing Strategy 69
8.2 Kinco 70
8.2.1 Company Introduction 70
8.2.2 Kinco Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 71
8.2.3 Kinco SWOT Analysis 72
8.2.4 Kinco R&D Investment and Marketing Strategy 73
8.3 Nidec 74
8.3.1 Company Introduction 74
8.3.2 Nidec Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 75
8.3.3 Nidec SWOT Analysis 76
8.3.4 Nidec R&D Investment and Marketing Strategy 77
8.4 Maxon Motor 78
8.4.1 Company Introduction 78
8.4.2 Maxon Motor Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 79
8.4.3 Maxon Motor SWOT Analysis 80
8.4.4 Maxon Motor R&D Investment and Marketing Strategy 81
8.5 Faulhaber 82
8.5.1 Company Introduction 82
8.5.2 Faulhaber Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 83
8.5.3 Faulhaber SWOT Analysis 84
8.5.4 Faulhaber R&D Investment and Marketing Strategy 85
8.6 Portescap 86
8.6.1 Company Introduction 86
8.6.2 Portescap Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 87
8.6.3 Portescap SWOT Analysis 88
8.6.4 Portescap R&D Investment and Marketing Strategy 89
8.7 Shanghai Moons' Electric 90
8.7.1 Company Introduction 90
8.7.2 Shanghai Moons' Electric Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 91
8.7.3 Shanghai Moons' Electric SWOT Analysis 92
8.7.4 Shanghai Moons' Electric R&D Investment and Marketing Strategy 93
8.8 Jiangsu Leili Motor 94
8.8.1 Company Introduction 94
8.8.2 Jiangsu Leili Motor Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 95
8.8.3 Jiangsu Leili Motor SWOT Analysis 96
8.8.4 Jiangsu Leili Motor R&D Investment and Marketing Strategy 97
8.9 Jiangsu DINGS' Intelligent Control Technology 98
8.9.1 Company Introduction 98
8.9.2 Jiangsu DINGS' Intelligent Control Technology Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 99
8.9.3 Jiangsu DINGS' Intelligent Control Technology SWOT Analysis 100
8.9.4 Jiangsu DINGS' Intelligent Control Technology R&D Investment and Marketing Strategy 101
8.10 Shenzhen Topband 102
8.10.1 Company Introduction 102
8.10.2 Shenzhen Topband Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 103
8.10.3 Shenzhen Topband SWOT Analysis 104
8.10.4 Shenzhen Topband R&D Investment and Marketing Strategy 105
8.11 Suzhou Veichi Electric 106
8.11.1 Company Introduction 106
8.11.2 Suzhou Veichi Electric Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 107
8.11.3 Suzhou Veichi Electric SWOT Analysis 108
8.11.4 Suzhou Veichi Electric R&D Investment and Marketing Strategy 109
8.12 Guangzhou Haozhi Industrial 110
8.12.1 Company Introduction 110
8.12.2 Guangzhou Haozhi Industrial Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 111
8.12.3 Guangzhou Haozhi Industrial SWOT Analysis 112
8.12.4 Guangzhou Haozhi Industrial R&D Investment and Marketing Strategy 113
8.13 Zhejiang He Chuan Technology 114
8.13.1 Company Introduction 114
8.13.2 Zhejiang He Chuan Technology Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 115
8.13.3 Zhejiang He Chuan Technology SWOT Analysis 116
8.13.4 Zhejiang He Chuan Technology R&D Investment and Marketing Strategy 117
8.14 Johnson Electric 118
8.14.1 Company Introduction 118
8.14.2 Johnson Electric Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 119
8.14.3 Johnson Electric SWOT Analysis 120
8.14.4 Johnson Electric R&D Investment and Marketing Strategy 121

Chapter 9 Marketing Channel, Distributors and Customers 122
9.1 Marketing Channels 122
9.2 Top Distributors/Dealers 123
9.3 Major Customers by Application 124

Chapter 10 Market Forecast (2027-2031) 125
10.1 Global Industrial Robot Motor Sales and Revenue Forecast (2027-2031) 125
10.2 Global Industrial Robot Motor Sales Forecast by Type (2027-2031) 126
10.3 Global Industrial Robot Motor Sales Forecast by Application (2027-2031) 127
10.4 Global Industrial Robot Motor Sales Forecast by Region (2027-2031) 128

Chapter 11 Research Findings and Conclusion 130
Table 1 Global Industrial Robot Motor Market Size (Million USD), 2021-2031 6
Table 2 Global Industrial Robot Motor Market Volume (K Units), 2021-2031 7
Table 3 Global Industrial Robot Motor Average Price (USD/Unit), 2021-2031 8
Table 4 Market Growth Drivers 9
Table 5 Key Industry Challenges 10
Table 6 Global Industrial Robot Motor Sales (K Units) by Players, 2021-2026 12
Table 7 Global Industrial Robot Motor Sales Market Share by Players, 2021-2026 13
Table 8 Global Industrial Robot Motor Revenue (Million USD) by Players, 2021-2026 14
Table 9 Global Industrial Robot Motor Revenue Market Share by Players, 2021-2026 15
Table 10 Global Industrial Robot Motor Average Price (USD/Unit) by Players, 2021-2026 16
Table 11 Global Key Players Headquarter and Manufacturing Base 17
Table 12 Key Raw Materials and Major Suppliers 21
Table 13 Global Industrial Robot Motor Sales (K Units) by Type, 2021-2031 26
Table 14 Global Industrial Robot Motor Revenue (Million USD) by Type, 2021-2031 27
Table 15 Global Industrial Robot Motor Sales (K Units) by Application, 2021-2031 32
Table 16 Global Industrial Robot Motor Revenue (Million USD) by Application, 2021-2031 33
Table 17 Global Industrial Robot Motor Sales (K Units) by Region, 2021-2031 40
Table 18 Global Industrial Robot Motor Revenue (Million USD) by Region, 2021-2031 42
Table 19 North America Industrial Robot Motor Sales by Country (2021-2031) 44
Table 20 Europe Industrial Robot Motor Sales by Country (2021-2031) 48
Table 21 Asia-Pacific Industrial Robot Motor Sales by Region (2021-2031) 53
Table 22 South America Industrial Robot Motor Sales by Country (2021-2031) 60
Table 23 Middle East and Africa Industrial Robot Motor Sales by Country (2021-2031) 62
Table 24 Kollmorgen Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 67
Table 25 Kinco Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 71
Table 26 Nidec Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 75
Table 27 Maxon Motor Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 79
Table 28 Faulhaber Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 83
Table 29 Portescap Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 87
Table 30 Shanghai Moons' Electric Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 91
Table 31 Jiangsu Leili Motor Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 95
Table 32 Jiangsu DINGS' Intelligent Control Technology Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 99
Table 33 Shenzhen Topband Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 103
Table 34 Suzhou Veichi Electric Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 107
Table 35 Guangzhou Haozhi Industrial Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 111
Table 36 Zhejiang He Chuan Technology Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 115
Table 37 Johnson Electric Industrial Robot Motor Sales, Price, Cost and Gross Profit Margin (2021-2026) 119
Table 38 Global Industrial Robot Motor Sales Forecast (K Units), 2027-2031 125
Table 39 Global Industrial Robot Motor Revenue Forecast (Million USD), 2027-2031 125
Figure 1 Research Methodology 2
Figure 2 Global Industrial Robot Motor Market Size (Million USD), 2021-2031 6
Figure 3 Global Industrial Robot Motor Market Volume (K Units), 2021-2031 7
Figure 4 Global Industrial Robot Motor Average Price Trends (2021-2031) 8
Figure 5 Global Industrial Robot Motor Sales Market Share by Players in 2025 13
Figure 6 Global Industrial Robot Motor Revenue Market Share by Players in 2025 15
Figure 7 Global Market Concentration Rate (CR5 and HHI) in 2025 18
Figure 8 Industrial Robot Motor Value Chain 20
Figure 9 Manufacturing Process Analysis 22
Figure 10 Global Industrial Robot Motor Sales Market Share by Type in 2025 26
Figure 11 Global Industrial Robot Motor Revenue Market Share by Type in 2025 27
Figure 12 Global Industrial Robot Motor Sales Market Share by Application in 2025 32
Figure 13 Global Industrial Robot Motor Revenue Market Share by Application in 2025 33
Figure 14 Global Industrial Robot Motor Sales Market Share by Region in 2025 41
Figure 15 Global Industrial Robot Motor Revenue Market Share by Region in 2025 43
Figure 16 North America Industrial Robot Motor Sales Growth Rate (2021-2031) 44
Figure 17 Europe Industrial Robot Motor Sales Growth Rate (2021-2031) 48
Figure 18 Asia-Pacific Industrial Robot Motor Sales Growth Rate (2021-2031) 53
Figure 19 South America Industrial Robot Motor Sales Growth Rate (2021-2031) 60
Figure 20 Middle East and Africa Industrial Robot Motor Sales Growth Rate (2021-2031) 62
Figure 21 Kollmorgen Industrial Robot Motor Market Share (2021-2026) 67
Figure 22 Kinco Industrial Robot Motor Market Share (2021-2026) 71
Figure 23 Nidec Industrial Robot Motor Market Share (2021-2026) 75
Figure 24 Maxon Motor Industrial Robot Motor Market Share (2021-2026) 79
Figure 25 Faulhaber Industrial Robot Motor Market Share (2021-2026) 83
Figure 26 Portescap Industrial Robot Motor Market Share (2021-2026) 87
Figure 27 Shanghai Moons' Electric Industrial Robot Motor Market Share (2021-2026) 91
Figure 28 Jiangsu Leili Motor Industrial Robot Motor Market Share (2021-2026) 95
Figure 29 Jiangsu DINGS' Intelligent Control Technology Industrial Robot Motor Market Share (2021-2026) 99
Figure 30 Shenzhen Topband Industrial Robot Motor Market Share (2021-2026) 103
Figure 31 Suzhou Veichi Electric Industrial Robot Motor Market Share (2021-2026) 107
Figure 32 Guangzhou Haozhi Industrial Industrial Robot Motor Market Share (2021-2026) 111
Figure 33 Zhejiang He Chuan Technology Industrial Robot Motor Market Share (2021-2026) 115
Figure 34 Johnson Electric Industrial Robot Motor Market Share (2021-2026) 119

Research Methodology

  • Market Estimated Methodology:

    Bottom-up & top-down approach, supply & demand approach are the most important method which is used by HDIN Research to estimate the market size.

1)Top-down & Bottom-up Approach

Top-down approach uses a general market size figure and determines the percentage that the objective market represents.

Bottom-up approach size the objective market by collecting the sub-segment information.

2)Supply & Demand Approach

Supply approach is based on assessments of the size of each competitor supplying the objective market.

Demand approach combine end-user data within a market to estimate the objective market size. It is sometimes referred to as bottom-up approach.

  • Forecasting Methodology
  • Numerous factors impacting the market trend are considered for forecast model:
  • New technology and application in the future;
  • New project planned/under contraction;
  • Global and regional underlying economic growth;
  • Threatens of substitute products;
  • Industry expert opinion;
  • Policy and Society implication.
  • Analysis Tools

1)PEST Analysis

PEST Analysis is a simple and widely used tool that helps our client analyze the Political, Economic, Socio-Cultural, and Technological changes in their business environment.

  • Benefits of a PEST analysis:
  • It helps you to spot business opportunities, and it gives you advanced warning of significant threats.
  • It reveals the direction of change within your business environment. This helps you shape what you’re doing, so that you work with change, rather than against it.
  • It helps you avoid starting projects that are likely to fail, for reasons beyond your control.
  • It can help you break free of unconscious assumptions when you enter a new country, region, or market; because it helps you develop an objective view of this new environment.

2)Porter’s Five Force Model Analysis

The Porter’s Five Force Model is a tool that can be used to analyze the opportunities and overall competitive advantage. The five forces that can assist in determining the competitive intensity and potential attractiveness within a specific area.

  • Threat of New Entrants: Profitable industries that yield high returns will attract new firms.
  • Threat of Substitutes: A substitute product uses a different technology to try to solve the same economic need.
  • Bargaining Power of Customers: the ability of customers to put the firm under pressure, which also affects the customer's sensitivity to price changes.
  • Bargaining Power of Suppliers: Suppliers of raw materials, components, labor, and services (such as expertise) to the firm can be a source of power over the firm when there are few substitutes.
  • Competitive Rivalry: For most industries the intensity of competitive rivalry is the major determinant of the competitiveness of the industry.

3)Value Chain Analysis

Value chain analysis is a tool to identify activities, within and around the firm and relating these activities to an assessment of competitive strength. Value chain can be analyzed by primary activities and supportive activities. Primary activities include: inbound logistics, operations, outbound logistics, marketing & sales, service. Support activities include: technology development, human resource management, management, finance, legal, planning.

4)SWOT Analysis

SWOT analysis is a tool used to evaluate a company's competitive position by identifying its strengths, weaknesses, opportunities and threats. The strengths and weakness is the inner factor; the opportunities and threats are the external factor. By analyzing the inner and external factors, the analysis can provide the detail information of the position of a player and the characteristics of the industry.

  • Strengths describe what the player excels at and separates it from the competition
  • Weaknesses stop the player from performing at its optimum level.
  • Opportunities refer to favorable external factors that the player can use to give it a competitive advantage.
  • Threats refer to factors that have the potential to harm the player.
  • Data Sources
Primary Sources Secondary Sources
Face to face/Phone Interviews with market participants, such as:
Manufactures;
Distributors;
End-users;
Experts.
Online Survey
Government/International Organization Data:
Annual Report/Presentation/Fact Book
Internet Source Information
Industry Association Data
Free/Purchased Database
Market Research Report
Book/Journal/News

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