Brush DC Motors Market Growth Prospects Driven by Robust Demand in Automation 2030
Brush DC Motors Market to Reach USD 9.20 Billion by 2030, Driven by Rising Electric Vehicle Adoption and Automation Trends
The Brush DC Motors Market is projected to grow from USD 6.41 billion in 2023 to USD 9.20 billion by 2030, registering a steady CAGR of 5.3% during the forecast period (2024–2030). The market’s expansion is primarily attributed to the increasing adoption of electric and hybrid vehicles, growing automation in the automotive industry, and rising demand for cost-effective motor solutions in industrial and commercial applications.
Market Overview
Brush DC (BDC) motors are widely used across multiple industries due to their simple design, high torque output, and low manufacturing cost. In the automotive sector, these motors play a crucial role in systems such as power windows, adjustable seats, motorized toys, and computer peripherals. Their ability to deliver a steady and continuous current while allowing variable speed and torque makes them ideal for both low- and high-power applications.
A typical Brush DC motor comprises key components like the armature, commutator, stator, brushes, magnets, and axle. Despite requiring regular maintenance to replace worn-out brushes, their affordability and ease of control continue to drive widespread adoption, especially in OEM and aftermarket automotive applications.
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Key Market Drivers
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Rising Demand for Electric and Hybrid Vehicles:
Stricter emission regulations and a global shift toward cleaner energy sources have accelerated EV adoption. Brush DC motors are integral in EV components requiring precise control and torque, further driving market demand. -
Growing Vehicle Automation:
The increasing use of powered components—such as power windows, seats, and mirrors—in mid-range and entry-level vehicles fuels the demand for DC motors. -
Cost and Design Efficiency:
Unlike brushless variants, brushed DC motors do not require controllers, reducing the overall system cost and simplifying design requirements. -
Industrial and Consumer Applications:
Their use extends beyond vehicles into industrial machinery, home appliances, and robotics, where low power consumption and size flexibility are advantageous.
Regional Insights
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Asia Pacific dominates the global Brush DC Motors Market, supported by strong automotive manufacturing bases in China, Japan, and India. Rising disposable incomes and increasing vehicle production enhance the regional demand.
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Europe and North America remain key markets, driven by technological innovation, EV adoption, and the presence of leading automakers such as BMW, Tesla, and Toyota.
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Middle East & Africa and South America are expected to exhibit gradual growth, supported by industrial automation and infrastructure development.
Segmentation Analysis
By Type:
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Series Wound Brush DC Motors
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Permanent Magnet Brush DC Motors
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Shunt Wound Brush DC Motors
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Compound Wound Brush DC Motors
By Sales Channel:
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OEM
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Aftermarket
By End User:
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Automotive
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Industrial
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Residential
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Commercial
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Others
Among these, the automotive sector leads the market, accounting for a significant share due to its integration into vehicle systems. The passenger vehicle segment alone was valued at USD 6.41 billion in 2023, projected to reach USD 9.20 billion by 2030.
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Competitive Landscape
Key market participants are focusing on product innovation, strategic partnerships, and regional expansion to strengthen their global footprint. Companies like ABB Ltd, Johnson Electric, Nidec Motor Corporation, and maxon motor ag are investing in R&D to improve efficiency and durability of brushed DC motor designs.
Leading Players Include:
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ABB Ltd
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Allied Motion Technologies
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AMETEK Inc.
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Anaheim Automation
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FAULHABER Group
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Hansen Corporation
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Johnson Electric
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Kählig Antriebstechnik GmbH
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Kollmorgen Corporation
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maxon motor ag
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Minebea Mitsumi, Inc.
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Moog Inc.
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Nidec Motor Corporation
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Shenzhen Power Motor Industrial Co., Ltd.
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Toshiba Corp
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WEG Electric Corp
Future Outlook
The Brush DC Motors Market is expected to sustain steady growth as industries continue to balance performance with cost efficiency. Advancements in material science, enhanced brush designs, and integration with smart control systems are expected to improve efficiency and reduce maintenance frequency.
Furthermore, as electric mobility and industrial automation gain momentum, manufacturers investing in energy-efficient and durable motor technologies will be best positioned to capitalize on future opportunities.




