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Rf Design Engineer Jobs in Michigan (NOW HIRING)

... RF and beam loss detectors. * Design, implement and maintain accelerator power systems including controlled heaters and tuners. * Consult with controls engineers on the proper power layout for normal ...

Embedded Software Engineer

Southfield, MI

$120K - $158K/yr

Bluetooth where applicable); integrate with RF and baseband teams. * Apply coding standards and peer reviews; participate in design and module testing aligned with our R&D programming standards.

MEMS Engineer II

Dexter, MI · On-site

$93K - $128K/yr

As a MEMS Development Engineer, you will work on development and characterization of the next ... Strong hands-on RF lab skills * Strong written and verbal communication skills * MEMS design and ...

Engineer - Body Controls

Southfield, MI

$76K - $99K/yr

Engineer, Body Controls At Lucid, we set out to introduce the most captivating, luxury electric ... RF/BLE/UWB technologies a plus. * Expert knowledge of model-based design using Matlab/Simulink ...

Bachelor's degree in electrical engineering, RF Engineering, or related field * 8+ years of experience with at least 5+ years of experience in Power system design, Design for EMI. * Proficiency in ...

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Rf Design Engineer information

See Michigan salary details

$63.2K

$113.3K

$147.7K

How much do rf design engineer jobs pay per year?

As of Jun 14, 2026, the average yearly pay for rf design engineer in Michigan is $113,305.00, according to ZipRecruiter salary data. Most workers in this role earn between $95,900.00 and $127,300.00 per year, depending on experience, location, and employer.

What Is an RF Design Engineer?

An RF design engineer is a specialist within electrical engineering whose duties involve working with electronics and radio frequency. RF design engineers have job experience working with systems that are used to receive or transmit radio waves. Examples of this type of equipment include radios, cellular phones, circuits, and wireless communications. To have a career as an RF design engineer, you need a bachelor’s degree in electrical engineering to start and a master’s degree for more advanced positions. Other qualifications and skills may include experience working with radio transmission equipment, as well as state-specific licensing or certification.

Are RF engineers in demand?

RF Design Engineers are in demand due to the growth of wireless communication, 5G technology, and IoT devices. They require expertise in circuit design, signal processing, and tools like CAD software, with job opportunities available in telecommunications, aerospace, and defense industries.

What are the key skills and qualifications needed to thrive as an RF Design Engineer, and why are they important?

To thrive as an RF Design Engineer, you need a solid background in electrical engineering, RF circuit design, and electromagnetic theory, typically supported by a relevant degree. Familiarity with simulation tools like ADS, HFSS, and CAD software, as well as knowledge of industry standards and FCC regulations, is essential. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help you excel in collaborative technical environments. These skills ensure reliable, innovative RF solutions that meet performance specifications and regulatory requirements in wireless systems.

What engineers make $500,000?

Senior engineers in specialized fields such as software engineering, petroleum engineering, and certain executive engineering roles can earn $500,000 or more annually, often with bonuses and stock options. High compensation typically requires extensive experience, advanced skills, and working in high-demand industries or leadership positions.

What are some common challenges faced by RF Design Engineers when working on new wireless communication projects?

RF Design Engineers often encounter challenges such as managing signal interference, optimizing circuit layouts for minimal loss, and ensuring compliance with regulatory standards. They must balance performance requirements with cost and manufacturability while collaborating closely with hardware, software, and testing teams. Troubleshooting unexpected issues during prototyping and adapting designs to evolving project needs are also frequent aspects of the role.

What are RF Design Engineers?

RF Design Engineers are professionals who design and develop radio frequency (RF) circuits and systems used in wireless communications, broadcasting, radar, and other applications. They work on components such as antennas, transmitters, receivers, and amplifiers to ensure optimal signal transmission and reception. Their responsibilities include circuit simulation, prototyping, testing, and troubleshooting to meet performance and regulatory standards. RF Design Engineers often collaborate with other engineers to integrate RF solutions into larger electronic systems.

What engineers make $300,000 a year?

Senior RF Design Engineers with extensive experience, advanced skills in RF circuit design, and certifications can earn $300,000 or more annually, especially in high-demand industries like telecommunications and aerospace. Achieving this salary often requires a combination of specialized expertise, leadership roles, and working in regions with high living costs or competitive markets.

What does an RF design engineer do?

An RF design engineer develops and tests radio frequency circuits and systems used in wireless communication devices. They design, simulate, and optimize RF components such as antennas, filters, and amplifiers, often using specialized software and measurement tools. Their work ensures reliable signal transmission and reception in applications like mobile phones, radar, and satellite communications.

What is the difference between Rf Design Engineer vs Rf Test Engineer?

AspectRf Design EngineerRf Test Engineer
Primary FocusDesigning and developing RF circuits and systemsTesting, validating, and troubleshooting RF products
Skills & CertificationsRF circuit design, simulation, knowledge of RF componentsTesting procedures, measurement tools, RF testing certifications
Work EnvironmentDesign labs, R&D departmentsTesting labs, production environments
Industry UsageTelecommunications, aerospace, consumer electronicsManufacturing, quality assurance, product validation

While both roles involve RF technology, Rf Design Engineers focus on creating RF circuits and systems, whereas Rf Test Engineers specialize in testing and validating RF products to ensure performance and quality. Both roles often collaborate but serve different stages of product development.

What are the most commonly searched types of Rf Design Engineer jobs in Michigan? The most popular types of Rf Design Engineer jobs in Michigan are:
What job categories do people searching Rf Design Engineer jobs in Michigan look for? The top searched job categories for Rf Design Engineer jobs in Michigan are:
What cities in Michigan are hiring for Rf Design Engineer jobs? Cities in Michigan with the most Rf Design Engineer job openings:
What are popular job titles related to Rf Design Engineer jobs in MI? For Rf Design Engineer jobs in MI, the most frequently searched job titles are:
Infographic showing various Rf Design Engineer job openings in Michigan as of June 2026, with employment types broken down into 58% Full Time, 24% Part Time, and 18% Contract. Highlights an 87% Physical, 5% Hybrid, and 8% Remote job distribution, with an average salary of $113,305 per year, or $54.5 per hour.
Senior Radar Research Engineer

Senior Radar Research Engineer

Michigan Technological University

Ann Arbor, MI • On-site

Full-time

Posted 27 days ago


Michigan Technological University rating

8.1

Company rating: 8.1 out of 10

Based on 20 frontline employees who took The Breakroom Quiz

130th of 537 rated colleges and universities


Job description

Senior Radar Research Engineer
Job No: 26047
Department: Vice Pres for Research
Work Type: Staff - Full Time
Location: Michigan Tech Research Institute (Ann Arbor, MI)
Full Time / Part Time: Full Time
Categories: Research
Applications Close:
Sub Department: Michigan Tech Research Institute (MTRI)
Michigan Technological University is an R1 technological research university founded in 1885 in Houghton. Our rural campus is situated just miles from Lake Superior in Michigan's scenic Upper Peninsula and is home to nearly 7,500 students from more than 60 countries around the world. Consistently ranked among the best universities in the country for return on investment, Michigan's flagship technological university offers more than 185 undergraduate and graduate degree programs. Research focus areas include defense, health, energy, automotive, environment, and aerospace.
The area's waters, forests, and snowfall support year-round recreation, including skiing, snowboarding, hiking, biking, and paddling. The University is an integral part of the region, supported by a friendly and welcoming community that takes pride in being a true college town. We embrace our size, climate, sense of adventure, and originality.
Summary
At Michigan Tech Research Institute (MTRI), we develop advanced technologies that help our nation better understand, sense, and operate within complex natural and human-made environments. Our work spans multidisciplinary research and applied development, advancing ideas from foundational concepts to mission-relevant prototypes. We are seeking a Senior Radar Research Engineer to provide technical leadership in the development of advanced radar sensing technologies supporting national security missions. This role focuses on shaping and leading radar-focused research programs spanning radar signal processing, synthetic aperture radar (SAR), and radio frequency (RF) sensing, while advancing technologies from concept through prototype demonstration. The successful candidate will serve as the Institute's technical authority in radar/RF sensing, guiding strategy, architecture, and technical execution while leading multiple research programs and growing MTRI's radar sensing portfolio through strong sponsor engagement.
Responsibilities and Essential Duties
1. Develop, grow, and sustain a portfolio of radar/RF research programs supporting multiple staff and initiatives.
2. Identify, capture, and secure new research funding through opportunity development, sponsor engagement, and competitive proposal execution.
3. Define and maintain a multi-year radar research and growth roadmap aligned with sponsor priorities (DoD, AFRL, DARPA, etc.).
4. Lead and coordinate technical execution across multiple concurrent research programs.
5. Serve as Principal Investigator on multiple funded efforts and ensure successful delivery of technical objectives.
6. Serve as the technical authority in radar/RF sensing, guiding architecture, algorithm development, and system design decisions.
7. Lead development and evaluation of advanced radar signal processing algorithms.
8. Architect radar signal processing chains for detection, tracking, imaging, and RF sensing applications.
9. Oversee advancement of radar/RF technologies from concept through prototype validation (Technology Readiness Levels 1-6).
10. Establish and enforce rigorous standards for experimental design, validation, and performance evaluation.
11. Lead and author technical volumes for white papers, BAAs, SBIR/STTR submissions, and other competitive proposals. 12. Build and maintain sponsor relationships and develop teaming strategies to support program execution and transition.
13. Support and influence institutional planning and growth of radar/RF sensing capabilities
14. Mentor technical staff and support cross-disciplinary integration across sensing, analytics, and systems teams.
15. Evaluate and guide adoption of emerging tools, frameworks, and technologies to maintain technical advantage in radar/RF sensing.
16. Commit to learning about continuous improvement strategies and applying them to everyday work. Actively engage in University continuous improvement initiatives.
17. Apply safety-related knowledge, skills, and practices to everyday work.
Required Education, Certifications, Licensures
• PhD in Electrical Engineering, Applied Mathematics, Physics, or closely related technical field
Required Experience
1. 12-18 years of experience in applied research and development environments
2. Demonstrated experience serving as Principal Investigator on multiple funded research programs
3. Proven track record of leading and winning competitive government research proposals
4. Demonstrated technical authority in radar/RF sensing and research.
5. Experience mentoring or supervising technical staff.
6. Experience advancing technologies across TRLs, particularly from TRLs 2-3 through TRLs 5-6
7. Experience with at least one of the following: SAR processing or advanced radar imaging techniques, electronic warfare or RF sensing systems, designing or evaluating prototype radar systems, or integrating radar algorithms with hardware systems.
Desirable Education and/or Experience
1. Experience with at least two or more of the following: SAR processing or advanced radar imaging techniques, electronic warfare or RF sensing systems, designing or evaluating prototype radar systems, or integrating radar algorithms with hardware systems.
2. Experience leading large research proposals and program capture.
Required Knowledge, Skills, and/or Abilities
1. Ability to obtain a U.S. Department of Defense security clearance, which requires United States citizenship. Obtaining a national security clearance while holding a dual citizenship will not be possible when the foreign country poses a risk to the national security of the United States.
2. Deep expertise in radar signal processing, SAR, or radar sensing systems.
3. Strong programming proficiency in Python, MATLAB, or C++
4. Exceptional written and verbal communication skills, including experience briefing sponsors and senior leadership
Desirable Knowledge, Skills, and/or Abilities
1. Familiarity with systems engineering or MBSE approaches.
2. Active government security clearance at Secret level or higher.
3. Demonstrated success in, or potential future contributions to, working with persons with a wide variety of backgrounds and viewpoints.
Work Environment and/or Physical Demands
WORK ENVIRONMENT: The work environment characteristics described here are representative of those an employee encounters while performing the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions. The noise level in the work environment is usually low to moderate.
Required Training and Other Conditions of Employment
Every employee at Michigan Technological University will receive the following 4 required trainings; additional training may be required by the department.
Required University Training:
• Employee Safety Overview
• Anti-Harassment, Discrimination, Retaliation Training
• Annual Data Security Training
• Annual Title IX Training
Additional training will be required by the department on a periodic basis.
Background Check:
Offers of employment are contingent upon and not considered finalized until the required background check has been performed and the results received and assessed.
Full-Time Equivalent (FTE) % (1=100%)
1.0
FLSA Status
Exempt
Appointment Term
12 months
Pay Rate/Salary
Salary is commensurate with experience and qualifications.
Title of Position Supervisor
Chief Scientist
Posting Type
Internal and External
Dependent on Funding
Yes.
This position is contingent upon the continued availability of external funding.
To perform this job successfully, an individual must be able to perform each essential duty satisfactorily. The requirements listed are representative of the knowledge, skill, and/or ability required. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.
If you require any auxiliary aids, services, or accommodations during Michigan Tech's hiring process please notify the Human Resources office at 906-487-2280 or hr-help@mtu.edu.
Other Conditions of Employment:
Please note that successful applicants are responsible for ensuring their eligibility to work in the United States (i.e. a citizen or national of the United States, a lawful permanent resident, a foreign national authorized to work in the United States without the need of an employer sponsorship) on or before the effective date of your appointment, and maintain eligibility without sponsorship throughout your appointment.
Michigan Technological University is an Equal Opportunity Educational Institution/Equal Opportunity Employer that provides equal opportunity for all, including protected veterans and individuals with disabilities.
The Annual Security and Fire Safety Report contains current campus safety and disciplinary policies, crime statistics for the previous 3 calendar years, and on-campus student housing fire safety policies and fire statistics for the previous 3 calendar years. Michigan Tech will provide a paper copy upon request; please contact the Michigan Tech Public Safety.
In compliance with the federal Drug-Free Schools and Communities Act (DFSCA) and its implementing regulations (34 CFR Part 86), Michigan Tech is committed to maintaining a drugfree campus environment and actively promoting the health and safety of its community. Find our notice that outlines the University's policies, legal sanctions, health risks, and available support resources related to the unlawful possession, use, or distribution of illicit drugs and alcohol.
Required Education, Certifications, Licensures* (minimum requirements)
Advertised: 18 Apr 2026 Eastern Daylight Time
Applications Close:
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