University of New Haven

USA
2 Scholarships 89 Programs 3 Degree levels
Masters

Master's in Electrical, Electronics, and Communications Engineering

Offered at University of New Haven, USA
DegreeMasters
FieldElectrical, Electronics, and Communications Engineering.
C

Cost & earnings at University of New Haven What students borrow here, and what they go on to earn

You borrow $27,000 median federal debt
You repay $307/mo over 10 years
Graduates earn $60,126 10 yrs after entry
Debt clears in 1.3 yrs of the salary premium
US Department of Education figures See the full breakdown →
C

Communications graduates earn a median $45,715 Across 325 US programmes, two years after finishing

See the degree grade →

The Master’s in Electrical, Electronics, and Communications Engineering at the University of New Haven is a practice-focused programme for graduates who want advanced skills in modern communications and electronic systems. It suits engineers seeking hands-on technical training and project experience to work in telecommunications, RF and microwave systems, signal processing, embedded systems and related fields.

What you'll study

The programme combines core theory with laboratory and project work to develop expertise in communication systems and electronic design. Typical subjects include digital and analog communications, digital signal processing, wireless and mobile communications, RF and microwave engineering, antennas and propagation, embedded systems and microcontrollers, and VLSI/ASIC concepts. Coursework emphasises practical skills using industry-standard tools (for example MATLAB, LabVIEW and RF design suites) and includes hands-on lab modules in RF/microwave measurements, mixed-signal electronics and communications testbeds.

Students normally choose between a capstone project or a research/thesis route. The capstone/project option focuses on applied design and industry-relevant problems, while the thesis path is research-oriented and suitable for those planning doctoral study or R&D careers. Elective choices often allow specialisation in areas such as wireless networks, Internet of Things (IoT) systems, optical communications, or advanced signal processing.

Entry requirements

Applicants are expected to hold a bachelor’s degree in electrical engineering, electronics engineering, telecommunications, computer engineering or a closely related discipline. Typical requirements include a satisfactory academic record and evidence of competence in fundamental subjects such as circuits, signals and systems, and mathematics. Applications normally require academic transcripts, a statement of purpose describing goals and experience, and references from academic or professional referees. International applicants must demonstrate English language proficiency through recognised tests unless exempted by prior study in English. Professional experience in engineering, internships, or relevant industry certifications can strengthen an application. Where background gaps are identified, applicants may be asked to take prerequisite undergraduate courses.

Career prospects

Graduates enter a wide range of technical roles across telecommunications, consumer electronics, aerospace, defence, automotive, medical devices and industrial automation. Common job titles include RF engineer, communications systems engineer, wireless network engineer, signal processing engineer, embedded systems engineer, and hardware design engineer. The programme also prepares students for technical leadership, systems integration roles and further study at the doctoral level. Alumni typically work for telecom operators, equipment manufacturers, defence contractors, systems integrators, startups in IoT and wireless technologies, and research laboratories.

Why study at University of New Haven

The University of New Haven offers a collaborative learning environment with small class sizes and close faculty mentorship within its engineering college. The campus combines classroom teaching with laboratory facilities geared to communications and electronics, enabling students to complete substantial hands-on projects and build practical portfolios. Proximity to regional technology firms, defence industry employers and Connecticut’s manufacturing base provides internship and cooperative opportunities. The university’s career services and professional networks help students connect with recruiters and secure industry placements, while the option to pursue thesis or project work gives flexibility to focus on research or applied design depending on career aims.

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Programme details are indicative and may change — always verify current information with the official university website before applying.