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tushar jain.

The Journey

My background, experience, and why I love building things.

01. About Me

I am a Computer Science & Business Systems student at BMS College of Engineering, Bengaluru. I build software, web applications, and embedded hardware designed to solve practical problems for real people.

My work spans clean frontend UIs, backend API logic, and hardware microcontrollers. I focus on building straightforward tools that people can easily use.

02. Solving Real Problems

Every project I've built was created to solve a real headache. NotesCSBS was built to organize scattered college study notes. Jaipur Ride was made so commuters don't have to decipher confusing messages to catch the metro.

I believe in getting working prototypes into users' hands quickly—build the core app, test it with real users, fix what breaks, and refine it based on real feedback.

03. Hardware & Health Tech

Software is great, but combining it with hardware creates tangible impact. Working on PulsePredict (Vital Health Tech) taught me how software connects with real-world sensors.

Building an affordable wearable for elderly safety meant tuning motion sensors to prevent fake fall alerts and making reliable tech accessible to everyday families.

04. How I Work

  • SimplicityClean interfaces that work intuitively without needing an instruction manual.
  • End-to-EndFrom database tables down to hardware microchips, I build the complete solution.

05. Engineering Principles

My engineering philosophy focuses on building scalable software architectures, interactive developer portfolios, and advanced physical hardware systems. I specialize in designing fullstack web applications and SaaS platforms optimized with pessimistic transaction locks, composite index lookups, and real-time database subscriptions.

In robotics and embedded systems engineering, my research investigates cooperative pathfinding, multi-agent autonomous underwater vehicle coordination, and sensor fusion navigation algorithms. Fusing data from Doppler Velocity Logs and Inertial Navigation Systems using Extended Kalman Filtering, I design robust, human-supervised control loops. By writing low-level microcontroller firmware under FreeRTOS, I build responsive physical instruments, gestural synthesizers, and health wearables that bridge the digital-physical divide.

Let's build something together.