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Dopar Energy

Dopar Energy builds custom brushless DC motor control units for electric two‑ and three‑wheel vehicles, offering high efficiency, low noise, and thermal derating for reliable operation across a wide temperature range. Their controllers include a self‑learning auto‑tune algorithm and fully brushless design, reducing manual calibration and maintenance while allowing manufacturers to quickly integrate performance‑optimized powertrains.

Aurangabad, IndiaFounded 2021121K+ followers
Updated 3 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Electric vehicle manufacturers often face limited options for motor control units that can be tailored to specific vehicle dynamics, leading to longer development cycles, suboptimal performance, and reliability concerns.

Solution

Dopar Energy designs and manufactures custom brushless DC (BLDC) motor control units (MCUs) for electric vehicle powertrains. Their controllers are engineered for high efficiency, low noise, and thermal derating, allowing safe operation across a wide temperature range. Integrated self‑learning algorithms automatically tune the controller to the motor, reducing the need for manual calibration. The fully brushless design eliminates wear‑out parts, providing virtually maintenance‑free operation. By offering highly configurable hardware and firmware, Dopar enables manufacturers of e‑bikes, scooters, rickshaws, and other EV platforms to accelerate time‑to‑market with reliable, performance‑optimized powertrain solutions.

Target Audience

Primary customers are manufacturers of electric two‑wheel and three‑wheel vehicles—such as e‑bikes, electric scooters, and e‑rickshaws—who require bespoke motor control solutions for their powertrains.

Features

  • Customizable BLDC controller architecture that can be tuned to specific vehicle dynamics and power requirements
  • Real‑time thermal monitoring with automatic current derating to protect against overheating
  • Low‑noise operation achieved through optimized PWM switching and motor drive techniques
  • Self‑learning auto‑tune algorithm that adapts control parameters to the motor without manual intervention
  • Brushless design eliminates wear components, delivering virtually maintenance‑free performance
  • High reliability and durability validated for industrial‑grade electric mobility applications
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