ELECTRONICS & COMMUNICATIONS ENGINEERINGCAIRO, EGYPT / PORTFOLIO 2026

Mazen W. K. Ibrahim

I work on
electronics.

My projects range from wireless power and low-power circuits to camera systems for autonomous-driving research.

Electronics & Communications Engineering
The American University in Cairo · Expected 2027

TET / RESONANT POWERINTERACTIVE MODEL
LOADING 3D

Conceptual winding geometry; receiver backing omitted for visibility. Field motion and separation are illustrative, not an efficiency simulation.

Read about the TET prototype
Applying for a thesis-based master’s, Fall 2027 entrySCROLL TO EXPLORE
01 / POWER TRANSFER62.00%

Rail-to-load DC efficiency
20 Ω · 5 mm · STM32 excluded

02 / ON THE BENCH1.66 W

Delivered to the load
200 kHz resonant link

03 / IN THE FIELD50+ h

Recordings with ARGUS
Co-developed research platform

Selected
measurements

Conditions are listed with each result.

01 — Selected work

Projects I’ve
worked on

A selection of hardware, circuit design and research systems, with my contribution explained in each case study.

Explore all nine projects

A closer look

Explore a few of the
engineering decisions.

These small interactive views explain parts of the work. Each one identifies whether it uses measurements or a simplified model.

Try the logic

A 4-bit magnitude comparator

Behavioral demonstration

Change the unsigned inputs or flip individual bits to see the EQ, GT and LT outputs.

>9 is greater than 6
EQ0GT1LT0

Bit 3 is the first difference from the most significant end.

Mazen designed the TG-PTL comparator and characterized it in Spectre. This demonstration shows unsigned comparison logic, not transistor timing, power or a circuit simulation.

Read this case study →

02 — Currently on the bench

What I’m testing
next on the TET link

After measuring the link at 5 mm, I still need to characterize wider gaps, instrument the coils for thermal testing, and add protection before scaling the power.

Inside the TET project
DEMONSTRATED5 mm

Characterized air gap

NEXT EVIDENCE

Thermal · gap · protection

03 — The person behind the work

I study electronics
at AUC.

My work spans resonant power transfer, PCB design, full-custom CMOS, autonomous sensing and software. I’m pursuing a BS at AUC with minors in Computer Science and Mathematics, after an exchange year at the University of Calgary.

A little more about me