PUBLISHER: Grand View Research | PRODUCT CODE: 1611099
PUBLISHER: Grand View Research | PRODUCT CODE: 1611099
The global brushless DC motor market size is expected to reach USD 30,862.4 million by 2030, registering a CAGR of 6.8% from 2025 to 2030, according to a study conducted by Grand View Research, Inc. These motors are thermally resistant, require low maintenance, and operate at low temperatures, eliminating any threat of sparks. Low-cost maintenance, high efficiency at lower costs, and the rising adoption of Electric Vehicles (EVs) are some of the key factors driving the product demand over the forecast period.
The emergence of sensor-less controls for brushless DC (BLDC) type is likely to boost the durability and reliability of the product, thereby reducing the number of mechanical misalignments, electrical connections, as well as the weight and size of the end product. These factors are further estimated to drive market growth over the forecast period. Furthermore, the growing production of vehicles, globally, to cope up with the rising demand is anticipated to have a positive impact on the market growth.
The product is extensively used in motorized vehicle applications, such as in sunroof systems, motorized seats, and adjustable mirrors. In addition, these powertrains are extensively being preferred for performance applications in vehicles, such as chassis fittings, power-train systems, and safety fittings, owing to simple structure, fewer maintenance requirements, and extended operational life. Thus, increasing product adoption by the automobile industry for multiple applications is anticipated to drive the market over the forecast period.
Rising product usage in EVs in mechatronic systems, primarily in batteries for accumulators and power electronic converters, owing to advantages, such as high operating speed, compact size, and quick response time, will also augment the market growth. The production of EVs is on the rise, globally, supported by government initiatives to encourage the usage of non-conventional fuels and effectively reduce the adverse impacts of carbon emissions. Thus, the increasing EV production is anticipated to directly influence the product demand over the forecast period.