Motivated and detail-oriented college student seeking an internship in embedded systems, hardware engineering, building automation or a related field. Eager to apply knowledge to real-world challenges while gaining hands-on experience and contributing to team success.
• Assisted students in understanding core concepts of Digital Logic Design, including Boolean algebra, logic gates, and Karnaugh maps
• Supervised and supported laboratory sessions involving TTL chip-based circuit design and simulation software (e.g., SimUAid)
• Graded assignments and lab reports, providing constructive feedback to reinforce learning objectives
• Tested and verified building automation systems, including thermostats, AHUs, RTUs, and exhaust fans
• Ensured proper wiring and integration of Distech and Alerton controllers in collaboration with field teams
• Organized key project documents to streamline database efficiency
• Programmed and re-addressed Alerton and Distech controllers for field deployment
• Supported sales by inspecting sites, identifying scope changes, and aiding in proposal development
• Utilized Revit to develop and modify 3D models, improving design accuracy and communication
• Created precise 2D drawings, schematics, and layout diagrams with accurate dimensions and tolerances
• Edited existing drawings per design changes or client requests
• Collaborated with engineers and design teams to deliver projects efficiently
HVAC systems, Building Automation Systems (BAS), C, MATLAB, SimUAid, Microsoft Office, CAD Drafting, Autodesk Revit, Autodesk Inventor, AutoCAD, Embedded systems, Hardware engineering
Voice Modulation System
• Designed and built a breadboard-based multiplication circuit using op-amps, transistors, and passive components to modulate an audio input signal by a sinusoidal wave, effectively altering the signal’s frequency and producing various pitch-shifted outputs. (In Progress)
Traffic Light Controller
• Designed and built a traffic light controller using logic gates, D flip-flops, a clock, and Boolean algebra, optimizing state sequences for circuit efficiency through Karnaugh maps and transition tables.
• Tested and verified efficiency of circuit in SimUAid.