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Phd Electrical Engineer Jobs in Provo, UT (NOW HIRING)

Principal Electrical Subsystem Architect

Provo, UT

$131K - $160K/yr

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Advanced Degree in Electrical Engineering or a related field; MS/PhD preferred. * Experience with missile systems, guidance electronics, harsh‑environment power systems, or seeker/power integration.

Principal Antenna and Radome Engineer

Provo, UT

  • Medical

  • Dental

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  • Life

  • Retirement

  • PTO

Master of Science (MS) or PhD in Electrical Engineering * Strong experience managing and presenting technical data to stakeholders and customers. * Strong experience designing and delivering ...

Principal RF Sensor Design Specialist

Provo, UT

  • Medical

  • Dental

  • Vision

  • Life

  • Retirement

  • PTO

Master of Science (MS) or PhD in electrical engineering * Significant experience simulating and/or estimating the effects of propagation, reflections, and scattering on an antenna under test (AUT) in ...

Phd Electrical Engineer information

See Provo, UT salary details

$47.8K

$105.1K

$158.9K

How much do phd electrical engineer jobs pay per year?

As of Aug 18, 2026, the average yearly pay for phd electrical engineer in Provo, UT is $105,088.00, according to ZipRecruiter salary data. Most workers in this role earn between $78,500.00 and $124,900.00 per year, depending on experience, location, and employer.

What does a PhD electrical engineer do?

A PhD Electrical Engineer conducts advanced research, designs, and develops electrical systems or components, often pushing the boundaries of technology. They may work in academia, leading research projects and teaching, or in industry, developing innovative solutions for complex engineering problems. Their expertise is critical in areas like communications, power systems, electronics, and signal processing. PhD-level engineers also contribute to scientific publications and may secure patents for new inventions.

What are the key skills and qualifications needed to thrive as a PhD electrical engineer?

To thrive as a PhD Electrical Engineer, you need advanced expertise in electrical engineering principles, research methodologies, and a doctoral degree in the field. Proficiency with simulation software (such as MATLAB or SPICE), programming languages, and laboratory equipment is commonly required, along with experience in publishing academic research. Strong analytical thinking, problem-solving, and effective communication skills help you excel in both collaborative and independent research environments. These abilities are crucial for driving innovation, advancing technology, and contributing valuable insights in both academic and industry settings.

What are some common challenges faced by PhD electrical engineers when transitioning from academia to industry roles?

PhD Electrical Engineers often encounter challenges such as adapting to faster-paced project timelines, aligning research expertise with immediate business needs, and working within multidisciplinary teams. Unlike academic environments that may prioritize theoretical advances, industry roles usually focus on practical applications, product development, and measurable outcomes. Building strong communication skills and learning to collaborate with professionals from non-engineering backgrounds can help ease this transition and foster career growth.

What is the difference between Phd Electrical Engineer vs Electrical Engineer?

AspectPhd Electrical EngineerElectrical Engineer
Required CredentialsPhD in Electrical Engineering or related fieldBachelor's or Master's in Electrical Engineering
Work EnvironmentResearch labs, academia, R&D departmentsDesign, development, and testing in industry or construction
Employer & Industry UsageUniversities, research institutions, high-tech companiesManufacturers, utility companies, consulting firms

The main difference between a Phd Electrical Engineer and an Electrical Engineer lies in their education level and typical work environment. A Phd Electrical Engineer usually holds a doctoral degree and focuses on research, development, and advanced problem-solving, often in academia or R&D. In contrast, an Electrical Engineer typically has a bachelor's or master's degree and works on practical design, implementation, and maintenance in industry settings.

What are popular job titles related to Phd Electrical Engineer jobs in Provo, UT?

For Phd Electrical Engineer jobs in Provo, UT, the most frequently searched job titles are:

What job categories do people searching Phd Electrical Engineer jobs in Provo, UT look for?

The top searched job categories for Phd Electrical Engineer jobs in Provo, UT are:

What cities near Provo, UT are hiring for Phd Electrical Engineer jobs?

Cities near Provo, UT with the most Phd Electrical Engineer job openings:

Infographic showing various Phd Electrical Engineer job openings in Provo, UT as of August 2026, with employment types broken down into 75% Full Time, 12% Temporary, and 13% Contract. Highlights an 100% In-person job distribution, with an average salary of $105,088 per year, or $50.5 per hour.

Principal Electrical Subsystem Architect

Raytheon

Provo, UT

$131K - $160K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 7 days ago


Raytheon rating

9.1

Company rating: 9.1 out of 10

Based on 99 frontline employees who took The Breakroom Quiz

2nd of 540 rated manufacturers


Job description

Date Posted:

2026-07-07

Country:

United States of America

Location:

US-AZ-TUCSON-M02 ~ 1151 E Hermans Rd ~ BLDG M02

Position Role Type:

Onsite

U.S. Citizen, U.S. Person, or Immigration Status Requirements:

Active and transferable U.S. government issued security clearance is required prior to start date.​ U.S. citizenship is required, as only U.S. citizens are eligible for a security clearance​

Security Clearance Type:

DoD Clearance: Secret

Security Clearance Status:

Active and existing security clearance required on day 1

At Raytheon, the foundation of everything we do is rooted in our values and a higher calling to help our nation and allies defend freedoms and deter aggression. We bring the strength of more than 100 years of experience and renowned engineering expertise to meet the needs of today’s mission and stay ahead of tomorrow’s threat. Our team solves tough, meaningful problems that create a safer, more secure world.

The Advanced Effector Guidance Systems (AEGS) Department within Raytheon Hardware Engineering provides Electrical Systems Engineering to develop Electronic Systems solutions for products across the Raytheon portfolio. Our core electrical engineering responsibilities include architecture, requirements, integration, and test. Our core electrical engineering technologies include RF/RADAR, Navigation/IMU/GPS, Data Link/Communication, Digital, and Power. We partner with several Electrical Product Team departments that provide the detailed design of our electrical products as well as systems teams.

The Advanced Effectors Guidance Systems department is seeking a Principal Electrical Subsystem Architect to lead architecture development for next‑generation missile guidance, control, and sensing electronics. This position defines and drives the technical direction for high reliability power conditioning, energy delivery, and precision analog subsystems that operate in extreme missile environments. The architect will evaluate, mature, and guide designs across a wide range of development stages—from early conceptual modeling through detailed design, integration, and transition to production.

What You Will Do

  • Architect high reliability power systems and precision analog subsystems for guidance, navigation, and control electronics.

  • Lead power architecture trade studies, technology evaluations, and down‑selections aligned to performance, cost, producibility, and environmental constraints.

  • Assess and address designs with varying design maturity: early concepts, partially complete hardware, legacy designs requiring modernization, and near production configurations.

  • Identify gaps, risks, and improvement opportunities in immature or evolving designs, and mentor teams in closing those gaps.

  • Perform detailed analysis of power system loads, margins, thermal impacts, transient behavior, and electromagnetic compatibility.

  • Guide teams through component selection, derating, survivability requirements, and high‑reliability screening strategies.

  • Participate in and lead engineering reviews, readiness events, risk reduction activities, cross‑disciplinary integration efforts, and failure review boards.

  • Support hardware bring‑up, prototype evaluation, root‑cause analysis, and design refinement.

  • Coordinate with systems engineering, digital design, RF, modeling/simulation, GNC, and manufacturing disciplines to ensure robust and producible electrical power architectures.

  • Rapidly learns and applies new technologies; prototypes cutting‑edge solutions.

  • Support technology roadmaps and contribute to long‑term capability development across the portfolio.

  • Negotiates with cross‑discipline SMEs and mentors engineers.

  • Collaboration and alignment across internal/external teams.

  • Effective SME negotiation across disciplines.

  • Presents trade studies to stakeholders as needed.

  • Focus on system trades, quantifiable decision‑making, and mandatory application of real‑world behaviors and military/aerospace specifications.

Qualifications You Must Have

  • Typically requires a Bachelor's Degree in Science, Technology, Engineering or Mathematics (STEM) and a minimum of 8 years of prior relevant experience

  • Minimum 8+ years of experience in power electronics, analog design, mixed‑signal design, or high‑reliability electronics development.

  • Experience with Modeling languages: VHDL‑AMS/MAST, State‑AMS; mixed‑signal and state‑aware models.

  • Experience with harness effects, power quality, EMI/EMC, and Signal Integrity.

  • Experience with environmental qualification, MIL‑STD design, and systems operating in shock, vibration, and thermal extremes.

Qualifications We Prefer

  • Advanced Degree in Electrical Engineering or a related field; MS/PhD preferred.

  • Experience with missile systems, guidance electronics, harsh‑environment power systems, or seeker/power integration.

  • Hands‑on experience with lab bring up, prototype testing, instrumentation, and failure analysis.

  • Proficiency with SPICE simulation, modeling tools, and power/analog design best practices.

  • Understanding of EMI/EMC mitigation, grounding strategies, and system‑level power integrity.

  • Experience in program leadership, technical direction, or multi‑disciplinary coordination.

  • Experience working with: MIL‑STD‑704, MIL‑STD‑1275, MIL‑STD‑461, MIL‑STD‑464, MIL‑STD‑1553, MIL‑STD‑1760, RS‑422/RS‑485, Ethernet/TSN.

  • Familiarity with Model‑Based Engineering, requirements management, and digital engineering practices.

  • Demonstrated expertise in high‑density or high‑efficiency power conversion, power sequencing, energy storage interfaces, or precision power control.

  • Ability to analyze and troubleshoot designs at various maturity stages, including incomplete data sets, legacy architectures, and hardware already in build.

What We Offer

Our values drive our actions, behaviors, and performance with a vision for a safer, more connected world. At RTX we value: Safety, Trust, Respect, Accountability, Collaboration, and Innovation. 

This position is 100% onsite in Tucson, AZ and offers relocation assistance.

As part of our commitment to maintaining a secure hiring process, candidates may be asked to attend select steps of the interview process in-person at one of our office locations, regardless of whether the role is designated as on-site, hybrid or remote.

The salary range for this role is 107,500 USD - 204,500 USD. The salary range provided is a good faith estimate representative of all experience levels. RTX considers several factors when extending an offer, including but not limited to, the role, function and associated responsibilities, a candidate’s work experience, location, education/training, and key skills. Hired applicants may be eligible for benefits, including but not limited to, medical, dental, vision, life insurance, short-term disability, long-term disability, 401(k) match, flexible spending accounts, flexible work schedules, employee assistance program, Employee Scholar Program, parental leave, paid time off, and holidays. Specific benefits are dependent upon the specific business unit as well as whether or not the position is covered by a collective-bargaining agreement. Hired applicants may be eligible for annual short-term and/or long-term incentive compensation programs depending on the level of the position and whether or not it is covered by a collective-bargaining agreement. Payments under these annual programs are not guaranteed and are dependent upon a variety of factors including, but not limited to, individual performance, business unit performance, and/or the company’s performance. This role is a U.S.-based role. If the successful candidate resides in a U.S. territory, the appropriate pay structure and benefits will apply. RTX anticipates the application window closing approximately 40 days from the date the notice was posted. However, factors such as candidate flow and business necessity may require RTX to shorten or extend the application window.

RTX is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, age, disability or veteran status, or any other applicable state or federal protected class. RTX provides affirmative action in employment for qualified Individuals with a Disability and Protected Veterans in compliance with Section 503 of the Rehabilitation Act and the Vietnam Era Veterans’ Readjustment Assistance Act.

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