Integrated Electronic Systems

ELEE 3550
Open Closing on August 2, 2025 / 2 spots left
University of Detroit Mercy
Detroit, Michigan, United States
Associate Professor
1
Timeline
  • September 1, 2025
    Experience start
  • December 6, 2025
    Experience end
Experience
2 projects wanted
Dates set by experience
Preferred companies
Anywhere
Any company type
Any industries

Experience scope

Categories
Robotics Engineering project management Electrical engineering Hardware product design
Skills
electronic circuit design electronic design automation (eda) software electronic circuit simulation embedded systems project management electrical measurements engineering documentation software documentation project documentation
Learner goals and capabilities

The University of Detroit Mercy Electronics System Laboratory immerses learners in the practical application of advanced electronic design automation workflows. Students will leverage their knowledge of electronic systems, sensor-based data acquisition, and simulation to create integrated prototypes.

Students in this course are excited to combine their knowledge in analog/digital electronics, control systems, and software. Learners will be equipped to tackle real-world challenges in electronic systems design. This hands-on approach ensures that learners can translate theoretical concepts into tangible solutions, making them valuable contributors to industry projects.


Learners

Learners
Undergraduate
Intermediate levels
18 learners
Project
30-100 hours per learner
Educators assign learners to projects
Teams of 3
Expected outcomes and deliverables

Outcomes are flexible and could include one or all of the following:

  • Demo of the project,
  • Functional prototype of an electronic subsystem,
  • Comprehensive simulation reports and analysis,
  • Integration of control systems with electronic components,
  • Software interface for electronic system management.
Project timeline
  • September 1, 2025
    Experience start
  • December 6, 2025
    Experience end

Project Examples

Requirements
  • Implementing a PID Controller for Vehicle Drive Stability Using Arduino and Simulink
  • Arduino Sonar Using Simulink
  • Dual Servo IR Sensor Measurement System using Arduino and Simulink
  • Design and prototype a smart home energy management system
  • Develop a wearable health monitoring device with real-time data feedback
  • Create an automated agricultural sensor network for crop monitoring
  • Design a portable environmental monitoring station
  • Develop an intelligent traffic management system prototype
  • Create a robotic arm control system with precision feedback
  • Prototype an IoT-based smart lighting system for energy efficiency