Description
Palden is an Electronics & Robotics Instructor at Vedu Global Institute in Kathmandu, where he designs and delivers programs in Artificial Intelligence, Robotics, and Coding for learners. He combines his teaching expertise with a strong engineering background in Electronics, Communication & Automation Engineering, supported by his B.E. degree from Purbanchal University.
His work bridges hands-on engineering and education, with a focus on embedded systems, robotics, motor-control applications, and renewable-energy technologies. He brings this practical engineering experience into the classroom by developing engaging, project-based learning experiences that enable students to explore electronics, programming, robotics, and artificial intelligence through practical, real-world applications.
Specifications
| EDUCATION | B.E. Electronics, Communication & Automation Engineering, Purbanchal University |
|---|---|
| CURRENT ROLE | Instructor, Vedu Global Institute (AI, Robotics & Coding, school through bachelor's level) |
| FOCUS AREAS | Embedded systems, ESP32 / Arduino, renewable energy systems, STEAM curriculum design |
| TOOLS | Arduino, ESP32, PictoBlox / Quarky, TB6600 drivers, NEMA23 steppers |
| LOCATION | Kathmandu Valley, Nepal |
Pin Configuration
Robotics, AI & coding instruction at Vedu Global Institute, from school level through bachelor's
STEAM curriculum and classroom project materials, Nepal-contextualized
Embedded hardware prototypes: motor control, sensors, power systems
Firmware, wiring, and system-level troubleshooting
Featured Project
Dual-Axis Solar Tracker with Inverter for Efficient Solar Energy Conversion
FINAL YEAR PROJECTA standalone, ESP32-controlled dual-axis solar tracking system designed to maximize solar panel alignment with the sun across both azimuth and elevation axes. Instead of relying on conventional light sensors, the system uses astronomical solar-position calculations to determine the sun’s position and precisely control the tracking mechanism. The system is integrated with a push-pull inverter that converts stored 12V DC into AC power, while an SD card-based data logging system records voltage, current, and power measurements. A built-in Wi-Fi dashboard provides real-time system monitoring and manual control of the tracking angles, enabling flexible operation and performance analysis.
Final-Year Project — Khwopa Engineering College
Other Applications
School-Level Electronics & Technology Curriculum
CURRICULUMA Nepal-contextualized STEAM curriculum addressing real local conditions, like load-shedding, monsoon reliability, and air quality, built around Quarky/PictoBlox and Arduino project tracks.
Automated Waste & Street-Lighting Systems
CLASSROOM PROJECTTwo applied robotics builds: a proximity-sensing smart bin using an Arduino Uno, servo motor, and ultrasonic sensor for touch-free operation, and a light-responsive street lamp demonstrating automated sensing and control.
Foam-Board Motorized Launcher
PROTOTYPEA scratch-built, motorized mechanical prototype made from basic materials, exploring mechanism design outside the usual electronics toolkit.
Shop
Robotics kits, sensors, and components, available through a dedicated store. Coming soon.
Visit the shop