PUBLISHER: AnalystView Market Insights | PRODUCT CODE: 2111515
PUBLISHER: AnalystView Market Insights | PRODUCT CODE: 2111515
Electric Vehicle Motor (EVM) Controller Market size was valued at US$ 5,807.9 Million in 2025, expanding at a CAGR of 10.6% from 2026 to 2033.
The motor controller in an electric vehicle is an advanced power electronics device that manages the torque, speed and regenerative braking through the production of variable three-phase alternating voltages from the direct current voltages supplied by the batteries. There are a number of features in which it serves as the control mechanism for the drivetrain in the electric vehicle. The major components involved in it include: A high-power inverter bridge based on the use of IGBT and SiC switching devices. A digital signal processor that makes use of advanced field-oriented control algorithms. Gate drivers. A series of DC-link capacitors for power filtering. Inbuilt current and rotor position sensors for feedback control. Therefore, a motor controller in an EV provides contributions towards improved performance and reliability.
Electric Vehicle Motor (EVM) Controller Market- Market Dynamics
Growing Electrification and Electric Vehicle Adoption to Drive Market Growth
An increase in electrification around the globe and usage of electric vehicles is expected to increase the demand for electric vehicle motor controllers because automobile companies will require a good control system for their cars to improve their efficiency in the use of electricity, improve their performance, extend their range, and adopt sustainable transportation. For example, in March 2026, the International Energy Agency reported that the use of electric vehicles increased in 2025 and exceeded 20 million and accounted for more than 25% of all new car sales globally-one in four cars sold was electric. This is because some 5% of the global car fleet has been electrified, thus displacing close to 1.2 million barrels of oil per day in 2025. This trend will ensure an increasing demand for electric vehicle motor controllers.
The Global Electric Vehicle Motor (EVM) Controller Market is segmented on the basis of Motor Type, Communication Protocol, Vehicle Type, Propulsion Type, and Region.
Permanent-Magnet Synchronous Motors (PMSMs) under By Motor Type hold a notable share in the Electric Vehicle Motor (EVM) Controller market because of their higher performance due to increased efficiency, more power density, and high accuracy of controlling the speed of the motor. In June 2025, Continental introduced e-Motor Rotor Temperature Sensor (eRTS) technology as an innovative feature, which is the first-ever sensor in the electric vehicle motors for sensing the temperature of PMSM rotors. The innovation not only improves the performance of the electric vehicle motor but also improves its thermal management and reduces rare earth element usage, as it can be coupled with the inverter/motor controllers. Thus, a requirement for PMSM can also be expected in future models of EVs.
Electric Vehicle Motor (EVM) Controller Market- Geographical Insights
Asia Pacific accounts for a significant share of the Electric Vehicle Motor (EVM) Controller market because of the government's involvement in development, rapid urbanization, and the availability of established electric vehicle manufacturing centers in the region. For instance, in August 2025, according to NITI Aayog's Unlocking a $200 Billion Opportunity: Electric Vehicles in India report, India has become an established electric vehicle manufacturing center. The country has an automotive sector accounting for 7.1% of GDP, contributing approximately USD 274,000 million to the economy, and provides employment to more than 37 million individuals. Additionally, as per the report, the electric vehicles of India will unlock a USD 200,000 million market by 2030. These factors collectively reinforce Asia Pacific's leadership in the global electric vehicle motor controller market.
UK Electric Vehicle Motor (EVM) Controller Market- Country Insights
The UK is making significant investments in green mobility, smart grid integration, and EV infrastructure, driving the adoption of advanced motor control technologies. For instance, in July 2026, according to the UK government, the government has announced a (approximately USD 9.8 million) investment in eight UK companies for developing zero-emission aviation infrastructure, including charging infrastructure for electric planes and hydrogen storage infrastructure for flights and aviation. This is part of a total (approximately USD 57.8 million) investment program aimed at developing future aviation technologies, which is further supplemented by a total of (approximately USD 3.4 million) in addition to being invested by the end of Mar 2027 in airport-related activities. Moreover, by the end of Mar 2027, the UK government will have pledged (approximately USD 3.4 million) in order to test hydrogen-powered jet engines to make the country net zero in carbon emissions by 2050. The above activities will ensure accelerated adoption of advanced EV motor controller technologies in the UK.
Landscape Analysis The Electric Vehicle Motor (EVM) Controller market is relatively consolidated, as there is significant activity among key players in terms of product developments and innovations, investments in advanced power electronics products, and strategic collaborations and partnerships. Major companies operating in this market are, among others, Siemens AG, Infineon Technologies, ZF Friedrichshafen AG, BorgWarner Inc., and Valeo SA. In July 2025, for instance, Siemens AG acquired the company of ebm-papst known as Industrial Drive Technology (IDT). This resulted in the development of new technologies based on the intelligent mechatronics drive and batteries for electric mobility and industrial automation. These strategies are likely to fuel innovation and intensify the competition in the market.
In March 2026, Infineon Technologies released the MOTIX(TM) TLE9954QSW40-33, which is the company's first all-in-one automotive motor control System-in-Package (SiP) that integrates an MCU and power stage to offer a compact and efficient design of electric motor controllers for automotive uses.