I turn engineering fundamentals into working systems — from power and electronics prototypes to computational analysis and cloud software. My work sits at the intersection of electrical engineering, applied research, and practical product building.
I'm an Electrical & Electronics Engineering undergraduate at Daffodil International University. My work spans power systems, electromagnetics, electrical machines, digital electronics, control, embedded hardware, software, and applied research.
I take engineering fundamentals beyond the classroom: a fire-fighting robot, a hand-wound transformer tested against its design target, a window-comparator protection circuit, a TTL voting machine, numerical engineering analysis in Python, and a cloud invoicing platform evolving from localStorage into a multi-user architecture.
Alongside my studies, I'm Co-Founder and COO of Visiotec Alchemy, where I lead the build of our internal software and our client-facing web presence, and run day-to-day operations. It's given me a second discipline — shipping real tools that a business depends on, not just a grade.
The projects that best show how I move from an engineering problem to a design, implementation, calculation, or working prototype. Evidence is labeled so completed builds and design-stage research are never conflated.
Supporting engineering analysis, simulation, design work, and academic studies. Status labels distinguish physical builds from analysis and concepts.
My primary research line combines power electronics, renewable energy, and applied data analysis: designing a hybrid solar-powered EV charging architecture (PV + MPPT + LFP battery storage + grid support) for a Dhaka context, with supporting battery-sizing, efficiency, economic, and environmental modeling.
Open to research collaborations, internships, and interesting technical problems — reach out directly.