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Sic Power Engineer Jobs in Florida (NOW HIRING)

Motor Controls Engineer II

Orlando, FL ยท On-site

$77K - $100K/yr

Raytheon's Hardware Electrical Engineering Team is looking for junior engineers who have ... Familiarity with wide bandgap devices (SiC, GaN) in power electronics designs. Simulators such as ...

Senior Motor Controls Engineer

Orlando, FL ยท On-site

$97K - $134K/yr

Raytheon's Hardware Electrical Engineering Team is looking for junior engineers who have ... Familiarity with wide bandgap devices (SiC, GaN) in power electronics designs. Simulators such as ...

Raytheon's Hardware Electrical Engineering Team is looking for experienced engineers who have ... Familiarity with wide bandgap devices (SiC, GaN) in power electronics designs. * Design ...

Senior Motor Controls Engineer

Miami, FL ยท On-site

$99K - $137K/yr

Raytheon's Hardware Electrical Engineering Team is looking for junior engineers who have ... Familiarity with wide bandgap devices (SiC, GaN) in power electronics designs. Simulators such as ...

Motor Controls Engineer II

Miami, FL ยท On-site

$79K - $103K/yr

Raytheon's Hardware Electrical Engineering Team is looking for junior engineers who have ... Familiarity with wide bandgap devices (SiC, GaN) in power electronics designs. Simulators such as ...

Sic Power Engineer information

What is a SiC power engineer?

SiC Power Engineers are specialists who design, develop, and optimize electronic systems that use silicon carbide (SiC) semiconductors for power conversion and management. These professionals work on creating highly efficient power electronic devices, such as inverters, converters, and power modules, utilizing the superior properties of SiC materials, like high thermal conductivity and voltage resistance. Their expertise is crucial in industries such as electric vehicles, renewable energy, and industrial automation, where efficient power handling is essential. SiC Power Engineers often collaborate with cross-functional teams to ensure the integration and reliability of SiC-based solutions.

What are some common challenges faced by SiC power engineers when integrating silicon carbide technology into existing power systems?

SiC Power Engineers often encounter challenges when integrating silicon carbide (SiC) devices into established power systems, primarily due to differences in electrical characteristics compared to traditional silicon components. These challenges include managing higher switching speeds, optimizing thermal management, and ensuring compatibility with existing circuitry and control methods. Additionally, engineers must stay updated on evolving industry standards and reliability testing to maximize the benefits of SiC technology. Collaborating closely with design, testing, and manufacturing teams is crucial to address these integration hurdles efficiently.

What are the key skills and qualifications needed to thrive as a SiC power engineer, and why are they important?

To thrive as a SiC Power Engineer, you need a strong background in electrical engineering, with expertise in power electronics, semiconductor device physics, and silicon carbide (SiC) technology, typically supported by a relevant engineering degree. Familiarity with simulation tools (like SPICE), PCB design software, and knowledge of industry standards and SiC device characterization techniques is essential. Strong problem-solving abilities, attention to detail, and effective communication skills set outstanding engineers apart in this field. These skills enable the design and optimization of high-performance, reliable SiC-based power systems that meet industry demands for efficiency and innovation.

What is the difference between Sic Power Engineer vs Electric Power Engineer?

AspectSic Power EngineerElectric Power Engineer
CredentialsTypically requires a degree in electrical engineering and relevant certificationsRequires electrical engineering degree and similar certifications
Work EnvironmentIndustrial plants, power generation facilities, and manufacturing sitesPower plants, electrical substations, and utility companies
Industry UsageCommonly employed in manufacturing and industrial sectorsPrimarily in energy, utilities, and power distribution sectors

The Sic Power Engineer and Electric Power Engineer roles share similar credentials and work environments, often overlapping in industrial and power generation settings. The main difference lies in their specific industry focus, with Sic Power Engineers more involved in manufacturing processes and Electric Power Engineers focusing on power distribution and utility operations.

What cities in Florida are hiring for Sic Power Engineer jobs?

Cities in Florida with the most Sic Power Engineer job openings:

Infographic showing various Sic Power Engineer job openings in Florida as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.

Technology Leader - Power Electronics

Rockledge, FL โ€ข On-site

Mainstream Engineering
Guided Missile and Space Vehicle Manufacturingย โ€ขย 11 - 50 employees

$99K - $117K/yr

Full-time

Re-posted 10 days ago


Job description

At Mainstream Engineering, innovation is more than a buzzword-it's the foundation of everything we do. As we continue to expand our advanced energy systems and power electronics capabilities, we are seeking a Power Electronics Technology Leader to spearhead the development of next-generation power conversion technologies for demanding commercial, industrial, and defense applications.
This is a highly visible technical leadership role for an experienced engineer who thrives on solving complex challenges, mentoring talented engineers, and bringing cutting-edge technologies from concept to production. You will lead the design and development of advanced power electronic systems while helping shape the strategic direction of our power electronics technology roadmap.
What You'll Do
As a Technology Leader, you will serve as the technical expert and lead engineer for power electronics development efforts, including:
  • Lead the architecture, design, development, and testing of high-performance AC-DC, DC-DC, and DC-AC power converters ranging from 1 kW to 150+ kW.
  • Drive the development of advanced motor drive systems operating from 10,000 RPM to over 150,000 RPM.
  • Develop and implement sophisticated digital control algorithms, digital filtering techniques, and closed-loop control strategies for power electronic systems.
  • Lead the design and testing of power stages, gate drivers, and sensor electronics utilizing state-of-the-art Silicon Carbide (SiC) and Gallium Nitride (GaN) semiconductor technologies.
  • Design, evaluate, and integrate high-power SiC and GaN power modules for advanced energy conversion applications.
  • Oversee the design, layout, fabrication, and validation of analog and mixed-signal printed circuit boards.
  • Develop embedded control systems using DSPs, microcontrollers, and FPGA-based architectures.
  • Guide projects through the complete product lifecycle, from concept development and prototyping through testing, qualification, and production.
  • Provide technical mentorship to engineers across multidisciplinary teams.
  • Collaborate closely with mechanical, thermal, manufacturing, and systems engineers to develop innovative solutions for complex engineering challenges.
  • Support business development activities by contributing technical expertise to proposal efforts and customer engagements.
Required Qualifications
  • Bachelor's degree in Electrical Engineering from an accredited university with a minimum GPA of 3.3.
  • Minimum of 5 years of hands-on experience designing and developing power electronic systems.
  • Demonstrated experience designing, testing, and troubleshooting power conversion equipment at or above 100 kW.
  • Strong background in variable frequency drives (VFDs) and motor control systems.
  • Experience with power electronics design, simulation, laboratory testing, and system integration.
  • Strong understanding of analog and digital circuit design principles.
  • U.S. Citizenship is required due to U.S. Government ITAR program restrictions.
Preferred Qualifications
  • Master's or Ph.D. in Electrical Engineering or a related field.
  • Experience working with wide-bandgap semiconductor technologies including SiC and GaN devices.
  • Experience programming microcontrollers, DSPs, and FPGA-based control systems.
  • Familiarity with MATLAB/Simulink, PLECS, LTspice, or similar modeling and simulation tools.
  • Experience leading technical teams, mentoring engineers, or serving as a subject matter expert.
  • Experience developing products for aerospace, defense, energy, or advanced industrial applications.
Why Mainstream Engineering?
Mainstream Engineering is a multidisciplinary research, development, and manufacturing company that tackles some of the most challenging engineering problems in the world. Our engineers work on cutting-edge technologies spanning energy conversion, thermal management, aerospace systems, advanced manufacturing, and defense applications.
Here, you'll have the opportunity to move beyond incremental improvements and develop technologies that make a real impact. If you're passionate about innovation, enjoy technical challenges, and want to help shape the future of power electronics, we'd love to hear from you.
Mainstream Engineering Corporation is an equal opportunity employer. Qualified candidates will be considered without regard to legally protected characteristics.