Specializing in Medical Device,IoT, power systems, circuit design, and cutting-edge electrical automation networks. Turning complex system schematics into highly optimized realities.
I am a passionate and dedicated Electrical & Electronics Engineer with extensive knowledge in computational modeling, industrial control networks, and high-voltage operations. My design ethos hinges on safety, grid efficiency, and smart automation.
Equipped with reliable troubleshooting techniques, Medical Device and other's electronics hardware testing standards, and professional software architectures, I ensure standard-compliant engineering execution across every phase.
Designed a 500kW grid-tied solar photovoltaic array configuration minimizing harmonic distortions down to 2.1% via smart inverter configurations.
Configured a localized SCADA infrastructure over Modbus TCP networks managing automated factory workflows flawlessly with real-time logging.
Engineered a multi-layered high-speed data acquisition embedded controller circuit utilizing multi-phase step-down buck conversion steps safely.
Specialized in Power Systems and Energy Conversion Networks. Graduated with Honors. Conducted Capstone project regarding Micro-Grid fault mitigation matrices.
Ongoing focus modules including advanced Power Quality Analytics, National Electrical Code (NEC) Compliance validation, and Safety Architectures.
Optimizing balancing algorithms inside high-capacity LiFePO4 packs.
Decentralized control mechanics via autonomous power relays.
Predictive motor fault analytics deployed on local edge hardware layers.
Harvesting ambient structural vibrations into usable energy cells.
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