Led hands-on lab sessions in electronic and circuit labs, teaching students to construct circuits and perform advanced measurements using tools like digital multimeters and oscilloscopes.
Utilized simulation software and MATLAB for circuit analysis and problem-solving.
Promoted team collaboration and project engineering skills through guided experiments, including AC measurements and frequency response analysis.
Graduate Research Assistant
Sonoma State University
Rohnert Park, CA
01.2023 - 12.2023
Led the design and development of a breath analyzer device using CAD and Eagle PCB software, overseeing its lifecycle from conception to 3D printing prototype.
Elevated the project's scope and impact, securing a $10,000 grant by winning the California State University Business Competition in May 2023.
Presented research findings at the CSUBIOTECH 37th Symposium.
Embedded Engineer Internship
Quarterwave
Rohnert Park, CA
10.2022 - 02.2023
Development of a user-friendly graphical user interface (GUI) for an RF (Radio Frequency) amplifier system.
Involved firmware development to enhance the functionality and user experience of the RF amplifier.
Optimized the firmware to facilitate real-time data processing with the use of MATLAB for data analysis and visualization.
Education
Master of Science - Electrical And Computer Engineering
Sonoma State University
Rohnert Park, CA
05-2024
Bachelor of Science - Civil Engineering
AL-AL Bayt University
Amman
07-2019
Skills
Design Development
Product Development
Technical Writing
CAD
MS Office
MATLAB
Electrical Systems
Technical Experience
Design Transmission Line Matching Network For Cell Phone, Conducted simulations using ADS software to design and evaluate circuit schematics for efficient power transfer. Utilized Smith chart analysis to confirm source power matching the load power, ensuring effective transmission line performance. Improved antenna performance across various frequency bands and usage conditions. Contributed to enhancing the power transfer process from source to load, aligning the input impedance of the transmission line with the source impedance.
AM receiver, Designed and implemented an AM Receiver circuit using LTSpice, achieving the reception of a 450kHz AM signal, amplification, and filtering to obtain a pure 50kHz output signal with enhanced amplitude. Employed BJT transistors, passive bandpass filters, mixers, and local oscillators, ensuring precise signal processing and manipulation. Utilized FFT analysis for signal validation, addressing challenges for optimal performance, and contributing to the creation of an advanced AM receiver system.