Electrical Engineering Student
Electronics, AI/Machine Learning and Computer Systems focus.
Electronics, AI/Machine Learning and Computer Systems focus.
I will become a Senior at Western Washington University, where I am perusing a degree in Electrical and Computer Engineering with a Minor in Math and Computer Systems. I am expected to graduate in June 2027 after completing my year-long capstone.
I have interned under Navarro-ATL as a Work-Planning intern. While there I focused on providing automation through the Microsoft 365 Office Suite, spefically Power Automate and it's subsystem AI Builder. I used these applications to produce workflows that lower management overhead, reducing time spend on managing data streams. Additionally, I was able to get hands-on with Faraday Cage calculations in order to produce a design that would block signals from exiting a contained area. I also gained experience with various technical documentation.
While at Western Washington University I work as a Lead Physics Tutor, where I serve as a contact between the physics professors and my fellow tutors, as well as serving as a tutor of physics, math and electrical engineering concepts. One of the biggest things I enjoy about this job is being able to help students with their college experience, getting their footing in their classes as well as their college life in general.
My college career has allowed me to gain a variety of skills the majority of them listed in four categories below:
Software: Fusion 360, LTSpice, RTOS, MATLAB, Microsoft Office, KiCad, GitHub, gdb, MCUxpresso
Hardware: Microcontrollers, STM32, 3D Printing, PCB Assembly, RaspberryPi, NXP Boards
Programming Language: C, Java, Python, ARM-Assembly, System Verilog, Matlab, JavaScript
Lab Equipment: Soldering, Spot Welding, VNA, FPGA, Spectrum Analyzer, CNC Mill, Chopsaw

My Capstone project for the entire year of 2026-2027, the goal of this project is to create a fully functional, autonomous robot which will utilize cameras as well as value iteration algorithms to traverse parking lots. This allows us to gain visual coverage so license plates which will allow us to identify improper parkers.

Under Professor Shakil Mahmud, the goal of this research is produce a server-side and edge-side machine learning algorithms which will allow for the detection of anomalies inside of medical anomalies, providing better protection from false positives and cybersecurity threats to these devices

Under Professor John Lund, this project's goal was to produce a working product which would allow for the GPS tracking of cattle throughout a large property, using a LoRaWAN network alongside a Starlink system we were successfully able to send GPS data online to a MQTT server.

This project was done in a group of two where we take a PCB from design to implementation. For our idea we choose to create an AM Radio Receiver, we used KiCad for the schematic design and LTSpice for verification of design as well as breadboarding the design to show completion of our design. This project was finished in it's breadboard state due to time-constraints but was functional and completed successfully.

Under Professor John Lund, I focused on programming a receiving antenna which used LoRa systems to transmit data. The goal of this project was to be able to find the exact timestamp of the preamble and header of the transmitted data in order to develop a sleep mode for these devices to save power.

This was a personal project in which I utilized an open-source design to built a miniature CNC router which would have the cutting power to mill aluminum. I started to assemble this project but ran out of time and was forced to shelve it until I have further free time.
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