Cost & earnings at Rochester Institute of Technology What students borrow here, and what they go on to earn
Rochester Institute of Technology's Master's programme in Electrical (electronic engineering) provides advanced training in electronic and electrical systems, combining coursework, laboratory practice and optional research to prepare graduates for technical and design roles. It suits students seeking hands‑on experience with circuits, embedded systems, photonics and microelectronics, and those aiming to progress into industry R&D or further research study.
The programme builds on core electrical engineering fundamentals and offers pathways in areas such as analog and digital circuit design, embedded systems, microelectronics and semiconductor devices, photonics and optical systems, communications, power and control systems. Teaching is delivered through a mix of lectures, problem‑based coursework, and laboratory work in facilities that support prototyping, fabrication and measurement.
Applicants are typically expected to hold a bachelor's degree in electrical engineering, electronic engineering, or a closely related STEM discipline. Strong performance in undergraduate coursework in circuits, signals and systems, electronics and mathematics is important. Typical application materials include academic transcripts, a CV, a statement of purpose outlining academic and professional goals, and letters of recommendation.
For applicants whose first language is not English, proof of English proficiency is normally required. Additional requirements or preparatory courses may be requested for candidates from non‑engineering backgrounds to ensure readiness for graduate‑level technical courses.
Graduates enter a wide range of technical roles across sectors such as semiconductor manufacturing, telecommunications, aerospace and defence, medical devices, automation and energy. Common job titles include:
The programme also provides preparation for further academic study at the PhD level and for roles that bridge engineering with product development, systems integration and technical project management.
RIT combines a strong engineering curriculum with an emphasis on experiential learning and industry engagement. Students benefit from well‑equipped laboratories, opportunities to collaborate with faculty research groups in microelectronics and photonics, and channels to industry through project partnerships and career services. The institute's applied focus helps graduates develop both theoretical understanding and practical skills valued by employers in technology‑intensive fields.
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