electrical background

Electrical & Computer Engineering

Electrical & Computer Engineering connects advanced electronics, embedded computing, wireless communication, robotics, signal intelligence, photonics, power systems, and AI. Students learn how modern systems actually work — from custom chips and FPGA logic to 5G networks, radar, computer vision, autonomous drones, medical imaging, and intelligent power grids.

Signal Intelligence

Signals, Systems & Intelligent Foundations

The analytical core of modern ECE: modeling, stability, estimation, optimization.

  • Circuits, Devices and Fields
  • Signals and Systems
  • Probability and Stochastic Processes for Engineers
  • Linear System Theory
  • Estimation Theory and Applications
  • Modern Convex Optimization
Autonomy & Robotics

Control, Autonomy & Robotics

Making machines stable, aware, adaptive, and self-directed.

  • Continuous Control Systems
  • Discrete-Time Control Systems
  • Optimal Control and Estimation
  • Decentralized Control and Consensus in Multi-Agent Systems
  • Uncrewed Aerial Vehicle Systems and Control
  • Foundations of Reinforcement Learning
  • Feedback Control in Biological Signaling Pathways
  • Introduction to AI in Robotics & Intelligent Systems
  • Modern Navigation Systems
5G & Secure Wireless

Communication, Wireless, Networks & Radar

Moving information across air, fiber, orbit, and contested spectrum.

  • Communications Systems Engineering
  • Next Generation Telecommunications
  • Computer and Data Communication Networks
  • Next Generation Mobile Networks and Security
  • Wireless and Mobile Cellular Communications
  • Satellite Communications Systems
  • Radar Systems
  • Radar Signal Processing
  • Synthetic Aperture Radar
  • Passive Emitter Geo-Location
  • Digital Receiver Synchronization Techniques
  • Multirate Signal Processing
  • Error Control Coding
  • Iterative Methods in Communication Systems
  • Software-Defined Radio for Wireless Communications
  • Image Compression, Packet Video, and Video Processing
AI & Perception

Signal Processing, Perception & Intelligent Sensing

Teaching machines to see, hear, interpret, and understand the world.

  • Digital Signal Processing
  • Digital Signal Processing Lab / Applications of DSP
  • Adaptive Signal Processing
  • Advanced Digital Signal Processing
  • Machine Learning for Signal Processing
  • Deep Learning and Generative Artificial Intelligence
  • Deep Learning for Computer Vision
  • Machine Perception
  • Speech Processing / Audio Signal Processing
  • Introduction to Digital Image and Video Processing
  • Image Processing & Analysis / Image Engineering
Photonics & Sensing

RF, Photonics & Remote Sensing Hardware

The physical layer: fields, light, antennas, receivers, and high-frequency electronics.

  • Introduction to Polymeric Materials
  • Polymer Physics
  • Polymer Design and Bioconjugation
  • Colloids and Nanoparticles
  • Interfacial Science with Applications to Nanoscale Systems
Intelligent Design

Computation, Modeling & Intelligent Design

Simulation, prediction, and digital design for molecules, devices, and full systems.

  • Intermediate Electromagnetics
  • Electromagnetic Transmission Systems
  • Principles of RF and Microwave Circuits / RF and Microwave Circuits
  • Microwave Systems & Receiver Design
  • Antenna Systems
  • Advanced Antenna Systems
  • Antenna Design for Space Systems
  • Laser Fundamentals
  • Laser Systems and Applications
  • Fundamentals of Photonics and Fiber Optic Systems
  • Fourier Techniques in Optics
  • Introduction to Optical Instruments
  • Advanced Topics in Optical Medical Imaging
  • Introduction to EO/IR Systems
  • Propagation and Atmospheric Effects at RF / Microwave / Millimeter Wave
Embedded Systems

Embedded Systems, FPGA & Advanced Computing Hardware

Where intelligence meets silicon, firmware, and real-time constraints.

  • Microprocessors for Robotic Systems
  • Embedded Microprocessor Systems / Embedded Systems Development Lab
  • Computer Architecture
  • FPGA Design Using VHDL
  • System-on-a-Chip FPGA Design Laboratory
  • Hardware Architectures for DSP Algorithms
  • Digital VLSI System Design
  • Mixed-Mode VLSI Circuit Design
  • Analog Electronic Circuit Design / Advanced Analog Electronic Circuit Design
  • High Speed Digital Design
  • Measurement and Instrumentation
  • Introduction to the Solid State / Electronic Materials
  • Introduction to Electronic Packaging
Energy Systems

Power, Energy Systems & Electrification

Powering vehicles, infrastructure, autonomy, and the grid.

  • Introduction to Electric Power Systems
  • Electric Machines and Control for Electrification
  • Power System Control, Optimization, and Grid Management
  • Power Electronics / Applications of Power Electronics Design / Advanced Power Electronics
  • Microwave Systems & Receiver Design
  • Propagation and Atmospheric Effects at RF / Microwave / Millimeter Wave