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
Conceptual winding geometry; receiver backing omitted for visibility. Field motion and separation are illustrative, not an efficiency simulation.
Rail-to-load DC efficiency
20 Ω · 5 mm · STM32 excluded
Delivered to the load
200 kHz resonant link
Recordings with ARGUS
Co-developed research platform
Selected
measurements
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 projectsA 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
Change the unsigned inputs or flip individual bits to see the EQ, GT and LT outputs.
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.
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 projectCharacterized air gap
NEXT EVIDENCEThermal · 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