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Embedded Systems Power Electronics Engineer Jobs in Colorado

$160K - $170K/yr

Embedded Systems Engineer (Space & High-Reliability Systems) Job Summary We are seeking an ... Power consumption * Identify computational bottlenecks and performance limitations across ...

Embedded Systems Engineer

Boulder, CO · On-site

$80K - $150K/yr

... systems. We emphasize well rounded and collaborative engineers who enjoy being involved in all ... Design, implement, and test embedded electronics for advanced active RF prototypes and products

Lead the design, implementation, and verification of embedded electronics for advanced active RF ... power meters Other Duties Please note this is not designed to cover or contain a comprehensive ...

... systems. We emphasize well rounded and collaborative engineers who enjoy being involved in all ... Design, implement, and test embedded electronics for advanced active RF prototypes and products

Lead the design, implementation, and verification of embedded electronics for advanced active RF ... power meters Other Duties This is not intended to cover or contain a comprehensive listing of ...

Embedded Systems Engineer

Boulder, CO · On-site

$80K - $150K/yr

... systems. We emphasize well rounded and collaborative engineers who enjoy being involved in all ... Design, implement, and test embedded electronics for advanced active RF prototypes and products

Showing results 21-40

Embedded Systems Power Electronics Engineer information

What does an embedded systems power electronics engineer do?

An Embedded Systems Power Electronics Engineer designs and develops electronic systems that combine embedded computing with power electronics, such as motor drives, power converters, and control systems. They are responsible for creating hardware and software solutions that efficiently manage and control electrical power in various applications, from automotive and renewable energy to industrial automation. Their role involves circuit design, firmware development, system integration, and testing to ensure reliability and performance. Collaboration with cross-functional teams and staying current with emerging technologies are also key aspects of the job.

What are some typical challenges that embedded systems power electronics engineers face when integrating hardware and software components?

Embedded Systems Power Electronics Engineers often encounter challenges related to ensuring seamless communication between hardware and firmware, managing electromagnetic interference, and optimizing system efficiency under various load conditions. Balancing thermal management with compact hardware design can also be demanding. Close collaboration with PCB designers, firmware developers, and test engineers is essential to address these integration issues early in the design process and to achieve reliable, high-performance systems.

What are the key skills and qualifications needed to thrive as an embedded systems power electronics engineer, and why are they important?

To thrive as an Embedded Systems Power Electronics Engineer, you need a solid background in electronics engineering, embedded systems design, and power electronics, usually supported by a degree in electrical or electronics engineering. Familiarity with tools such as MATLAB/Simulink, SPICE simulators, PCB design software, and microcontroller programming, as well as relevant certifications like IPC or IEEE standards, is highly valued. Strong problem-solving, attention to detail, and effective communication skills set outstanding candidates apart in this field. These competencies are crucial for designing reliable, efficient systems and collaborating across multidisciplinary teams in complex engineering projects.

What is the difference between Embedded Systems Power Electronics Engineer vs Electrical Design Engineer?

AspectEmbedded Systems Power Electronics EngineerElectrical Design Engineer
CredentialsBachelor's or Master's in Electrical/Electronic Engineering; certifications like PE or PMP are commonBachelor's or Master's in Electrical Engineering; similar certifications
Work EnvironmentDesigning power electronics for embedded systems, often in consumer electronics, automotive, or industrial sectorsDeveloping electrical systems and circuits for various products, including power distribution and control systems
Industry UsageUsed in embedded device development, IoT, automotive, and roboticsApplied in power systems, industrial automation, and large-scale electrical infrastructure

Both roles require strong electrical engineering fundamentals, but the Embedded Systems Power Electronics Engineer focuses on integrating power electronics within embedded systems, while the Electrical Design Engineer works on broader electrical system design. The choice depends on whether your interest lies in embedded device integration or large-scale electrical systems.

What cities in Colorado are hiring for Embedded Systems Power Electronics Engineer jobs?

Cities in Colorado with the most Embedded Systems Power Electronics Engineer job openings:

Infographic showing various Embedded Systems Power Electronics Engineer job openings in Colorado as of August 2026, with employment types broken down into 1% As Needed, 84% Full Time, 11% Part Time, 3% Contract, and 1% Nights. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution.

Senior Power Electronics Engineer II

Westminster, CO • On-site

CesiumAstro
Guided Missile and Space Vehicle Manufacturing • 11 - 50 employees

$108K - $133K/yr

Full-time

Medical, Dental, Vision, Life, Retirement

Re-posted 12 days ago


Job description

Please Note: To conform with the United States Government Space Technology Export Regulations, the applicant must be a U.S. citizen, lawful permanent resident of the U.S., conditional resident, asylee or refugee (protected individuals as defined by 8 U.S.C. 1324b(a)(3)), or eligible to obtain the required authorizations from the U.S. Department of State.
 
At CesiumAstro, we are developers and pioneers of out-of-the-box communication systems for satellites, UAVs, launch vehicles, and other space and airborne platforms. We take pride in our dynamic and cross-functional work environment, which allows us to learn, develop, and engage across our organization. If you are looking for hands-on, interactive, and autonomous work, CesiumAstro is the place for you. We are actively seeking passionate, collaborative, energetic, and forward-thinking individuals to join our team.
 
The Skylark product line is focused on the rapid design, build, and test of cutting-edge active phased array antennas (AESA) for terrestrial and airborne applications. Current programs span high-power, large-scale ground terminals for missile defense to commercial airline and helicopter connectivity solutions.  

We are looking to add a Senior Power Electronics Engineer II to our team. If you enjoy working in a startup environment and are passionate about developing leading-edge power electronics for satellites, spacecraft, and aerospace systems, we would like to hear from you.
 
At the Senior level, you will be tasked with full-stack power electronics development. You will have the opportunity to start at concept development and progress through detailed design, analysis, board layout, testing, and delivery, doing hands-on work at each phase.
 
At a small company and a startup, your work will make direct contributions to the success of the business. The work is challenging and impactful, requiring both breadth and depth of technical knowledge. Our products are made for high-reliability space and airborne applications, so designs require high levels of technical rigor while maintaining the agility of a startup environment.
 
The successful candidate will also present engineering design review materials to our customers and executive team. As such, excellent written and verbal communication skills are required.
JOB DUTIES AND RESPONSIBILITIES
  • Own end-to-end design of power converters, and power management and control circuits, from concept and architecture definition to schematic, printed circuit board (PCB) design, testing, qualification, production transition and production support.
  • Perform detailed and complete schematic design for low to high complexity power electronics designs , ranging from single power converters to mukti-output power supply modules and power management circuitry.
  • Perform detailed PCB layout in Altium Designer independently or in collaboration with a PCB Drafter.
  • Perform modeling and analysis of analog and power electronics designs including worst-case circuit analysis, stress analysis, small signal and stability analysis, power loss and efficiency optimization analysis, and power integrity analysis.
  • Develop design verification test plans, requirement compliance matrices, system integration and qualification test plans, and production acceptance test plans for power converters and power supply designs.
  • Perform bring-up and design verification testing of power electronics circuits and modules, often working with a technician or junior engineer to complete design verification.
  • Collaborate with multi-discipline engineering team and lead system integration and qualification campaigns, and release analog and power electronics designs to production.
  • Mentor junior engineers to build technical understanding and foster professional development of team.
  • Perform research and keep up with new power electronics technology and industry trends to drive innovation and generation of intellectual property.
JOB REQUIREMENTS AND MINIMUM QUALIFICATIONS
  • Bachelor of Science (BS) degree or higher in Electrical Engineering from an accredited university.
  • Minimum of 6 years of industry or university research experience in board-level power electronics design, analysis, and test.
  • Experience owning the design phase of power electronics or power subsystems, including power architecture and requirements definition, trade studies, power converter and analog electronics design, component selection, and detailed design.
  • Experience performing or guiding complex PCB layout for analog and power electronics.
  • Experience with analysis and simulation tools such as SPICE, LTSPICE, SIMetrix/SIMPLIS, PLECS, Simulink, MATLAB, or MathCAD
  • Strong laboratory testing and troubleshooting experience for prototyping, design verification testing and qualification of analog and power electronics hardware.
  • Direct experience designing high-reliability electronics for automotive, space or defense applications, including part derating, worst-case analysis, and thermal constraints.
  • Excellent written and verbal communication skills.
PREFERRED EXPERIENCE
  • Experience delivering subcircuit or board designs to production and deployment.
  • Proficiency in printed circuit board design tools such as Altium, OrCAD/Allegro, PADS/Xpedition, or similar.
  • Experience running board-level power integrity simulation tools such as Ansys SiWave, ADS SIPro, or HyperLynx.
  • Design for space radiation environments.
$133,000 - $161,000 a year
CesiumAstro considers several factors when extending an offer, including but not limited to, the role and associated responsibilities, a candidate's work experience, education/training, and key skills.  Full-time employment offers include company stock options and a generous benefits package including health, dental, vision, HSA, FSA, life, disability and retirement plans.  
 
CesiumAstro is an Equal Opportunity employer.  All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, disability, protected Veteran Status, or any other characteristic protected by applicable federal, state, or local law.
 
Please note: CesiumAstro does not accept unsolicited resumes from contract agencies or search firms. Any unsolicited resumes submitted to our website or to CesiumAstro team members will be considered property of CesiumAstro, and we will not be obligated to pay any referral fees.
We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.
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