Electronics & Communication Engineering student passionate about embedded systems, PCB design, IoT, and AI. Building practical hardware and software projects while expanding my engineering skills.
I'm an Electronics & Communication Engineering student at the Arab Academy for Science, Technology & Maritime Transport (AAST), pursuing a dual degree with the University of Northampton. I enjoy turning engineering concepts into practical projects, from circuit design and PCB development to embedded systems programming.
My experience includes designing and building electronic systems using Arduino, developing analog circuits, creating PCB layouts in OrCAD, and validating designs through simulation and hardware testing. Some of my projects include a Common Source MOSFET Amplifier, a Digital Logic Clock, and an Arduino-based Weather Station.
I'm currently expanding my knowledge in networking, artificial intelligence, IoT, and Digital Twin technologies while seeking internships that allow me to apply my skills to real-world engineering challenges.
Jan 2025 - Feb 2025
Egyptian Space Agency (EgSA)
Learned embedded systems fundamentals and microcontroller programming.
Developed hands-on projects using Arduino and electronic components.
Worked with sensors, digital and analog circuits, and hardware interfacing.
Gained experience in circuit assembly, testing, and debugging.
Collaborated with instructors and teammates during practical sessions.
2024-2028
Arab Academy for Science, Technology & Maritime Transport (AASTMT) & University of Northampton
Arduino-based weather station for monitoring temperature, humidity, air quality, and wind speed using multiple sensors with data monitoring.
Designed and built a 12-hour digital clock using CMOS logic ICs (CD4026, CD4060, and 7400 NAND gates). Implemented frequency division from a 32.768 kHz crystal oscillator, counter cascading, and custom reset logic for accurate timekeeping without a microcontroller.
Designed and implemented a Common Source MOSFET amplifier with a target gain of -13 V/V using OrCAD Capture/PSpice. The project includes circuit design, simulation, PCB layout, hardware implementation, and performance validation.