University of San Diego

USA
2 Scholarships 154 Programs 3 Degree levels
Bachelor

Bachelor's in Electrical, Electronics, and Communications Engineering

Offered at University of San Diego, USA
DegreeBachelor
FieldElectrical, Electronics, and Communications Engineering.
A

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

You borrow $22,940 median federal debt
You repay $261/mo over 10 years
Graduates earn $86,522 10 yrs after entry
Debt clears in 0.5 yrs of the salary premium
US Department of Education figures See the full breakdown →
F

Communication Disorders Sciences graduates earn a median $26,353 Across 308 US programmes, two years after finishing

See the degree grade →

This Bachelor’s programme in Electrical, Electronics and Communications Engineering at the University of San Diego combines a strong foundation in mathematics and physics with practical laboratory and design experience in electronics, signal processing and communications. It suits students who want a broad electrical engineering education with opportunities to specialise in communications and embedded systems and who value close faculty contact and industry engagement in a metropolitan tech region.

What you'll study

The programme is delivered as a four‑year Bachelor of Science pathway that pairs the University of San Diego's liberal arts core with focused engineering coursework. In the early years you build quantitative foundations through calculus, differential equations, linear algebra, and probability alongside introductory physics and computer programming. Core electrical engineering subjects and laboratory work follow, typically including:

  • Circuit Analysis and Electronics: DC/AC circuit theory, semiconductor devices, analog circuit design and lab practice.
  • Digital Systems and Microprocessors: Logic design, HDL basics, microcontroller and embedded systems programming, interfacing and lab projects.
  • Signals and Systems: Continuous and discrete signals, Fourier analysis, filtering, sampling theory and practical signal processing applications.
  • Electromagnetics: Maxwell’s equations overview, transmission lines, wave propagation and antenna fundamentals relevant to communications engineering.
  • Communications Engineering: Analog and digital communications, modulation/demodulation, coding, wireless communication principles and networking basics.
  • Control Systems and Instrumentation: Feedback control theory, system modelling, sensors, actuators and measurement techniques.
  • Laboratory and Design Work: Multi‑term hands‑on labs, software tool training (e.g. circuit simulation, MATLAB), and collaborative design projects.
  • Capstone Design Project: A culminating team project that synthesises hardware and software design, typically addressing a real‑world problem with faculty or industry mentorship.

Students may choose electives or a concentration in areas such as wireless communications, embedded systems, power electronics or signal processing, and are encouraged to take internships or undergraduate research placements to gain practical experience.

Entry requirements

Admission is through the University of San Diego’s undergraduate admissions process. Typical academic preparation includes a high‑school diploma (or equivalent) with strong performance in mathematics (calculus or pre‑calculus) and sciences (physics and/or chemistry). Typical expectations include:

  • Competitive high‑school GPA with emphasis on STEM subjects.
  • Successful completion of advanced secondary courses in mathematics and physics; a background in programming is advantageous but not always required.
  • Standardised test results may be considered where submitted; the university’s current testing policy should be checked on the admissions pages.
  • For international applicants, proof of English language proficiency is required through approved tests or equivalent qualifications unless exempt.
  • Personal statements, letters of recommendation and evidence of extracurricular engagement or technical projects strengthen an application.

Career prospects

Graduates are prepared for roles across the broad electrical and communications engineering sector. Typical career pathways include positions as telecoms or wireless systems engineers, embedded systems or firmware engineers, electronics design and test engineers, controls and automation engineers, and network design or RF engineers. Graduates also move into roles in defence and aerospace contracting, instrumentation, semiconductor firms, or technology startups. The degree provides a solid platform for graduate study (master’s or PhD) and for professional certification or licensure where applicable.

Why study at University of San Diego

The University of San Diego offers a small‑scale, student‑centred engineering education combined with the benefits of a metropolitan technology ecosystem. Students benefit from hands‑on laboratory facilities, opportunities for undergraduate research and mentorship from faculty, and proximity to San Diego’s electronics, telecommunications and defence industries for internships and industry collaborations. The curriculum integrates engineering practice with the university’s broader liberal arts core, supporting communication, ethics and teamwork skills valued by employers. Dedicated career services and alumni networks help students transition into technical roles or further study.

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