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Wiring MeaSmart

Project Information

  • Category: IoT · Monitoring
  • Client: Academic Project
  • Project Date: 2025
  • Technologies: ESP8266, Sensors, Blynk
  • Role: System Designer & Developer

IoT-based Mealworm Farm Monitoring System (MeaSmart)

2025 Academic Project

Designed a complete IoT solution for monitoring temperature, humidity, and feeding cycles in a mealworm farm. The system uses ESP8266, various sensors, and the Blynk platform for real-time data visualization and remote control.

Key Contributions
  • Created wiring schematics and sensor integration layout.
  • Developed firmware for data acquisition and transmission.
  • Built a dashboard for monitoring environmental conditions.
  • Tested and validated system reliability over a 2‑week period.

Impact: Enabled efficient farm management, reduced manual intervention, and improved yield predictability.

ESP8266 Sensors Blynk
Custom PSU PCB

Project Information

  • Category: PCB Design · Power
  • Client: Personal / Academic
  • Project Date: 2025
  • Technologies: Eagle, Proteus
  • Role: PCB Designer

Custom Power Supply Unit (PSU) PCB Design

2025 Personal Project

Designed a compact and efficient power supply PCB for electronic projects, featuring voltage regulation, overcurrent protection, and multiple output rails.

Key Contributions
  • Schematic capture and component selection for optimal performance.
  • PCB layout with careful routing to minimize noise and heat.
  • Simulation and validation using Proteus.
  • Produced manufacturing files (Gerber, BOM).

Outcome: A reliable, compact PSU board suitable for powering microcontrollers, sensors, and other low‑power devices.

Eagle Proteus
Fish Feeder

Project Information

  • Category: 3D Design · Automation
  • Client: Academic Project
  • Project Date: 2025
  • Technologies: Tinkercad, 3D Printing
  • Role: Designer & Concept Developer

Automatic Fish Feeder – 3D Concept Design

2025 Academic Project

Developed a 3D prototype of an automatic fish feeder using Tinkercad, featuring a timer‑controlled dispensing mechanism to ensure consistent feeding schedules for aquaculture applications.

Key Contributions
  • Designed the mechanical structure and hopper system.
  • Integrated a servo motor mechanism for portion control.
  • Created 3D printable models for rapid prototyping.
  • Documented assembly instructions and part list.

Outcome: A scalable, low‑cost automatic feeder concept ready for further development and real‑world testing.

Tinkercad Servo Control
GTN PSU

Project Information

  • Category: Product · Hardware
  • Client: Personal Brand (GTN)
  • Project Date: 2025
  • Technologies: KiCad, PCB Manufacturing
  • Role: Product Designer

GTN Power Supply Board – Reliable Power Solution

2025 Personal Product

Designed a robust power supply board under the GTN brand, providing stable and regulated power for embedded systems, sensors, and IoT devices.

Key Contributions
  • Selected high‑quality components for efficiency and longevity.
  • Optimized PCB layout for thermal management and compact form factor.
  • Produced Gerber files and coordinated with a PCB manufacturer.
  • Performed functional testing and validated performance.

Outcome: A reliable, ready‑to‑use power supply board ideal for prototyping and production use.

KiCad Power Electronics
Smart Doorbell Circuit

Project Information

  • Category: Circuit Design · IoT
  • Client: Academic Project
  • Project Date: 2025
  • Technologies: ESP32, Camera Module, Proteus
  • Role: Circuit Designer

Smart Doorbell Circuit with Integrated Camera

2025 Academic Project

Designed a complete circuit for a smart doorbell featuring an ESP32, camera module, push button, and a buzzer, with Wi‑Fi connectivity for remote monitoring and alerting.

Key Contributions
  • Developed the schematic including power management and signal conditioning.
  • Simulated circuit behavior using Proteus.
  • Created a prototype layout for the PCB.
  • Prepared component list and wiring documentation.

Outcome: A functional circuit design ready for prototyping and integration into a full smart doorbell system.

ESP32 Camera Proteus
Prototype Smart Doorbell

Project Information

  • Category: Prototyping · IoT
  • Client: Academic Project
  • Project Date: 2025
  • Technologies: ESP32, Camera, 3D Printed Case
  • Role: System Integrator

Functional Prototype of Smart Doorbell with Camera

2025 Academic Project

Assembled and tested a working prototype of the smart doorbell system, integrating the ESP32, camera, button, and buzzer into a 3D‑printed housing, with Wi‑Fi connectivity for remote alerts and live video streaming.

Key Contributions
  • Integrated all electronic components into a compact enclosure.
  • Developed firmware for Wi‑Fi communication and camera capture.
  • Set up a simple web interface for remote monitoring.
  • Conducted extensive testing for reliability and user experience.

Outcome: A fully functional smart doorbell prototype demonstrating remote monitoring and alerting capabilities.

ESP32 Camera 3D Printing
Nira Loka

Project Information

  • Category: 3D Design · Smart Farming
  • Client: Academic Project
  • Project Date: 2025
  • Technologies: Tinkercad, 3D Printing
  • Role: 3D Designer

3D Smart Coconut Sap System (Nira Loka)

2025 Academic Project

Designed a 3D concept for an automated coconut sap harvesting and monitoring system, featuring a collection mechanism, level sensor, and IoT connectivity for real‑time tracking.

Key Contributions
  • Created a 3D model of the entire system using Tinkercad.
  • Designed components for sap collection and transfer.
  • Integrated sensor mounting points for automation.
  • Documented assembly and operational workflow.

Outcome: A visual concept ready for prototyping, enabling smart monitoring of sap production and quality.

Tinkercad Smart Farming
Custom PCB Smart Doorbell

Project Information

  • Category: PCB Design · Product
  • Client: Personal Project
  • Project Date: 2025
  • Technologies: Eagle, PCB Manufacturing
  • Role: PCB Designer

Custom PCB for Smart Doorbell

2025 Personal Project

Designed a custom PCB that integrates all electronic components (ESP32, camera interface, button, buzzer) into a single board, reducing wiring and improving reliability.

Key Contributions
  • Consolidated multiple components onto a compact PCB.
  • Optimized routing for signal integrity and EMI reduction.
  • Produced manufacturing files (Gerber, drill, BOM).
  • Tested the PCB for functionality and durability.

Outcome: A clean, professional PCB for the smart doorbell, making assembly easier and more reliable.

Eagle ESP32
Smart Doorbell Design PCB

Project Information

  • Category: PCB Design · R&D
  • Client: Academic / Personal
  • Project Date: 2025
  • Technologies: KiCad, Proteus
  • Role: Designer & Developer

Smart Doorbell Design & Development PCB

2025 Academic/Personal

Developed a complete PCB design for a smart doorbell system, including power regulation, camera interface, and wireless communication modules, with simulation and validation.

Key Contributions
  • Full schematic capture and component selection.
  • High‑density PCB layout for compact integration.
  • Simulation of critical circuits using Proteus.
  • Preparation of documentation and manufacturing data.

Outcome: A robust, production‑ready PCB design for advanced smart doorbell applications.

KiCad Proteus ESP32