Engineer - R&D
CurrentIn my current role at Livguard Drivetrain Private Limited, I focus on advancing technologies related to vehicle controllers and battery chargers.Key Responsibilities:Automated Flashing Process: Designed and implemented a GUI-based bootloader to automate the flashing process for vehicle controllers. This innovation significantly reduced manual intervention and cut down the time required for flashing by 80%. This system utilizes advanced microcontroller peripherals such as ADC (Analog-to-Digital Converter) for precise data input, PWM (Pulse Width Modulation) for signal generation, and communication protocols like UART (Universal Asynchronous Receiver-Transmitter) for data exchange.Improved the functionality of battery chargers for Lithium-ion and Lead Acid batteries by addressing debugging issues and integrating additional features. This involved:Integration of SSDs (Solid-State Drives) for efficient data handling and storage.LED Indicators for clear user interface feedback and status indication.Buzzers for operational alerts and notifications.Focused on developing efficient and reliable chargers tailored for both Lithium-ion and Lead Acid batteries. The project emphasized optimizing charging algorithms and integrating essential peripherals to ensure robust performance.Developed software and algorithms for the precise management of Brushless DC (BLDC) motor operations in electric vehicles. This project aimed at enhancing motor performance and propulsion system efficiency by utilizing various microcontroller peripherals and communication protocols, including CAN (Controller Area Network) for real-time data exchange and PID (Proportional-Integral-Derivative) controllers for accurate speed and torque management.My work involves a deep understanding of microcontroller peripherals, such as ADC, PWM, and communication protocols, and I continually strive to improve system performance and user experience through innovative solutions and enhancements.