1

Emc Power Jobs (NOW HIRING)

EMC Design Engineer

Cupertino, CA ยท On-site

$150K - $277K/yr

EMC, ESD, RF/Antenna, Signal Integrity and Power Integrity * Detailed understanding of design and testing of ITE products for EMC compliance and deep knowledge in EMC/ ESD debug techniques

... EMC/ESD/EMI/RFE (RF Exposure) to achieve the best-in-class EM performance for Apple products ... power transfer systems and regulatory RF exposure standards

EMC Design Engineer

Cupertino, CA ยท On-site

$150K - $277K/yr

EMC, ESD, RF/Antenna, Signal Integrity and Power Integrity * Detailed understanding of design and testing of ITE products for EMC compliance and deep knowledge in EMC/ ESD debug techniques

Ensure electrical subsystem designs meet performance, reliability, safety, EMI/EMC, power, thermal, and environmental requirements. * Lead technical decision-making, trade studies, design reviews ...

Electrical Systems Sr. Mgr

Wilmington, MA ยท On-site

$117K - $153K/yr

Ensure electrical subsystem designs meet performance, reliability, safety, EMI/EMC, power, thermal, and environmental requirements. * Lead technical decision-making, trade studies, design reviews ...

Showing results 41-60

Emc Power information

See salary details

$13

$24

$46

How much do emc power jobs pay per hour?

As of Sep 14, 2026, the average hourly pay for emc power in the United States is $24.51, according to ZipRecruiter salary data. Most workers in this role earn between $18.03 and $28.37 per hour, depending on experience, location, and employer.

What is an EMC Power engineer?

An EMC Power engineer is a professional who specializes in electromagnetic compatibility (EMC) within power systems and electronic devices. Their primary role is to ensure that electrical and electronic equipment operates without causing or being affected by electromagnetic interference (EMI). This involves designing, testing, and implementing solutions that minimize interference and comply with relevant regulatory standards. EMC Power engineers work in industries such as telecommunications, automotive, aerospace, and consumer electronics. They play a crucial role in product development, safety, and regulatory compliance.

What are the key skills and qualifications needed to thrive as an EMC Power engineer?

To thrive as an EMC Power Engineer, you need a solid background in electrical engineering, knowledge of electromagnetic compatibility principles, and experience with power systems design. Familiarity with tools like spectrum analyzers, EMC test equipment, and certifications such as CISPR, IEC, or FCC compliance are typically required. Strong problem-solving abilities, attention to detail, and effective communication skills help engineers diagnose issues and work collaboratively with cross-functional teams. These competencies are essential to ensure that power systems meet regulatory standards and function reliably without causing or suffering from electromagnetic interference.

What are some common challenges faced by EMC Power engineers, and how can they be addressed in daily work?

EMC Power Engineers often encounter challenges related to minimizing electromagnetic interference (EMI) while ensuring power systems meet regulatory standards. This involves troubleshooting unexpected EMI issues in prototypes, staying updated with evolving compliance requirements, and collaborating closely with design, testing, and manufacturing teams to implement effective shielding and filtering solutions. Staying proactive through regular team communication and continuous learning about new EMC mitigation techniques can help engineers address these challenges efficiently and ensure project success.

What is the difference between Emc Power vs Power Systems Engineer?

AspectEmc PowerPower Systems Engineer
Required CredentialsElectrical certifications, engineering degreeElectrical engineering degree, certifications may vary
Work EnvironmentPower plants, electrical facilities, industrial sitesPower generation, transmission, and distribution projects
Employer & Industry UsageEnergy companies, industrial firmsUtilities, engineering consulting firms
Common Search & ComparisonYesYes

Emc Power typically refers to companies or roles involved in electrical power systems, focusing on power generation and distribution. Power Systems Engineers design, analyze, and maintain electrical power systems. While both roles involve electrical expertise, Emc Power often relates to the company or industry, whereas Power Systems Engineer is a specific job title focused on engineering tasks within that industry.

More about Emc Power jobs

What cities are hiring for Emc Power jobs?

Cities with the most Emc Power job openings:

What states have the most Emc Power jobs?

States with the most job openings for Emc Power jobs include:

Infographic showing various Emc Power job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 3% As Needed, 85% Full Time, 8% Part Time, 2% Contract, and 1% Nights. Highlights an 90% Physical, 3% Hybrid, and 7% Remote job distribution, with an average salary of $50,977 per year, or $24.5 per hour.

Power Discrete Electronics Engineer

Murphy, NC โ€ข On-site

Aegis Power Systems, Inc.
Guided Missile and Space Vehicle Manufacturingย โ€ขย 1 - 10 employees

$98K - $116K/yr

Other

Medical, Dental, Vision, Life, Retirement, PTO

This job post hasย expired today.ย Applications are no longer accepted.


Job description

Why Join Aegis Power Systems, Inc.?

Aegis Power Systems, Inc. is a leading designer and manufacturer of ruggedized power electronics supporting defense, aerospace, and industrial applications. Our products power mission-critical systems where reliability, security, and compliance are nonโ€‘negotiable.

As part of our continued growth, we are strengthening our quality systems, engineering collaboration, and manufacturing capabilities to ensure our products consistently meet customer, regulatory, and internal standards. Youโ€™ll join a stable, handsโ€‘on environment where engineering directly impacts real mission outcomes.

Position Summary

The Discrete Power Electronics Engineer is responsible for the design, development, analysis, testing, and support of high-reliability power conversion products utilizing discrete power electronic components and custom circuit designs.

This position requires a strong working knowledge of power electronics related to power conversion and power factor correction, along with handsโ€‘on experience designing and troubleshooting power converters at the circuit and component level. Areas of responsibility may include power semiconductor selection, switching topology development, gateโ€‘drive circuitry, magnetics, control and feedback circuits, filtering, protection circuitry, and thermal management.

The Discrete Power Electronics Engineer will contribute to electrical designs throughout the product development lifecycle, including requirements review, circuit design, simulation, prototype development, design verification, troubleshooting, qualification, and transition into production.

This position works closely with senior engineering staff, Manufacturing, Quality, Program Management, and other crossโ€‘functional teams to develop ruggedized power solutions for demanding defense, aerospace, industrial, and high-reliability applications.

This position is based in Murphy, NC. Relocation package offered

What Youโ€™ll Do:
  • Design and develop custom AC-DC, DC-DC, and/or DC-AC power conversion circuits utilizing discrete power components and custom circuitry.
  • Support the development of power converter architectures and selection of switching topologies based on input/output requirements, efficiency, power density, thermal constraints, reliability, and environmental requirements.
  • Design power stages using discrete semiconductor devices including MOSFETs, IGBTs, GaN devices, diodes, rectifiers, and other power switching components.
  • Design and analyze gateโ€‘drive circuits, protection circuits, current and voltage sensing circuits, feedback networks, snubbers, clamps, filters, and supporting analog circuitry.
  • Design, specify, and evaluate magnetic components including transformers, inductors, and commonโ€‘mode and differentialโ€‘mode filtering components.
  • Perform circuit calculations, simulations, component stress analysis, tolerance analysis, worstโ€‘case analysis, and component derating.
  • Analyze switching characteristics, losses, efficiency, transient response, stability, and controlโ€‘loop performance.
  • Select discrete electronic components based on electrical performance, switching characteristics, thermal performance, reliability, availability, lifecycle, and environmental requirements.
  • Develop accurate and productionโ€‘ready electrical schematics.
  • Work closely with PCB designers to optimize layouts for highโ€‘current and highโ€‘voltage paths, switching loops, grounding, signal integrity, thermal performance, EMI/EMC, creepage and clearance, and manufacturability.
  • Develop and maintain complete Bills of Material (BOMs) within the companyโ€™s ERP/DBA system.
  • Support the development of thermalโ€‘management solutions for discrete power devices, magnetics, and other heatโ€‘generating components.
  • Perform powerโ€‘loss and thermal calculations and support the selection of heat sinks, thermal interface materials, airflow requirements, and other cooling solutions.
  • Develop and support electrical test requirements, design tolerances, and acceptance criteria for power electronic designs.
  • Perform handsโ€‘on prototype bringโ€‘up, laboratory testing, debugging, and troubleshooting of power conversion circuits.
  • Utilize oscilloscopes, differential probes, current probes, power analyzers, electronic loads, function generators, and other laboratory equipment to evaluate converter performance.
  • Perform rootโ€‘cause analysis of electrical failures and recommend corrective design solutions.
  • Participate in internal and customer design reviews.
  • Support engineering verification, design validation, environmental qualification, EMI/EMC testing, and customer acceptance testing.
  • Review and interpret customer specifications and applicable military, aerospace, safety, and regulatory requirements.
  • Provide technical support to Manufacturing Engineering and Production during prototype builds, new product introduction, and ongoing production.
  • Develop and maintain engineering documentation including design calculations, analysis reports, test procedures, test reports, specifications, drawings, and designโ€‘review documentation.
  • Work collaboratively with senior engineers on complex power electronics design challenges and incorporate technical feedback into designs.
  • Identify opportunities to improve power density, efficiency, reliability, thermal performance, manufacturability, and cost.
Required Technical Expertise

Working knowledge and handsโ€‘on experience in several of the following areas:

  • Discrete power semiconductor circuit design
  • MOSFETs, IGBTs, GaN devices, power diodes, rectifiers, and switching devices
  • Switching power supply design
  • AC-DC, DC-DC, and/or DC-AC power conversion
  • Power converter topology selection and design
  • Hardโ€‘switching and softโ€‘switching techniques
  • Gateโ€‘drive circuit design
  • Magnetics design and component selection
  • Feedback and controlโ€‘loop design
  • Stability analysis
  • Current and voltage sensing
  • Protection circuitry, including overcurrent, overvoltage, undervoltage, and thermal protection
  • Snubber and clamp circuit design
  • Input/output filtering
  • EMI/EMC mitigation techniques
  • Component derating and worstโ€‘case circuit analysis
  • Powerโ€‘loss and efficiency analysis
  • Thermal management of power semiconductor devices
  • Highโ€‘voltage and highโ€‘current PCB layout considerations
  • Prototype bringโ€‘up and componentโ€‘level troubleshooting
Software and Laboratory Tools
  • PSpice or equivalent circuit simulation and analysis software
  • AutoCAD or equivalent engineering drafting software
  • Microsoft Office Suite
  • ERP/MRP systems; experience with DBA Manufacturing is preferred
  • Oscilloscopes and highโ€‘voltage differential probes
  • Current probes
  • Power analyzers
  • Electronic loads
  • AC/DC power sources
  • Digital multimeters
  • Function generators and other electrical laboratory equipment
Preferred Defense & Aerospace Experience

Experience with ruggedized and highโ€‘reliability power electronics and/or familiarity with applicable requirements such as:

  • MIL-STD-461 โ€“ EMI/EMC
  • MIL-STD-810 โ€“ Environmental requirements
  • MIL-STD-704 โ€“ Aircraft electrical power
  • MIL-STD-1275 โ€“ Military vehicle electrical power
  • DO-160 or similar aerospace environmental requirements
  • Applicable UL safety requirements
  • Component derating and highโ€‘reliability design practices
  • Environmental and qualification testing
  • AS9100 engineering and manufacturing environments
Key Competencies
  • Strong power electronics design and troubleshooting capability
  • Solid understanding of power converter operation at the circuit and component level
  • Ability to develop and test power electronic circuits with appropriate engineering guidance
  • Strong analytical and problemโ€‘solving skills
  • Handsโ€‘on laboratory and troubleshooting capability
  • Ability to independently resolve moderately complex electrical design problems
  • Strong attention to detail and commitment to producing highโ€‘quality engineering work
  • Strong technical documentation skills
  • Effective communication and collaboration with crossโ€‘functional engineering and manufacturing teams
  • Ability to manage multiple engineering tasks and priorities
  • Willingness to learn from senior technical staff and progressively take ownership of increasingly complex designs
Required Qualifications:
  • Bachelorโ€™s degree in Electrical Engineering from an accredited fourโ€‘year institution.
  • 5+ years of professional electrical/electronic engineering experience, preferably involving power electronics or power conversion.
  • Demonstrated experience with the design, development, or testing of power conversion circuits and products.
  • Experience working with discrete power semiconductor devices and componentโ€‘level circuitry.
  • Working knowledge of switching power supplies and power converter design.
  • Ability to perform handsโ€‘on laboratory testing, troubleshooting, and prototype development.
Preferred Qualifications:
  • Masterโ€™s degree in Electrical Engineering with an emphasis in Power Electronics or a related discipline.
  • 5+ years of direct power electronics design experience.
  • Experience designing AC-DC, DC-DC, and/or DC-AC power conversion products.
  • Experience developing highโ€‘reliability power conversion products for defense, aerospace, industrial, or other harshโ€‘environment applications.
Benefits

Aegis Power Systems offers a comprehensive benefits package, including:

  • Health, Dental, and Vision insurance
  • Health Savings Account (HSA)
  • Flexible Spending Account (FSA)
  • Life insurance
  • Paid time off
  • Employee Assistance Program (EAP)
  • Retirement plan
  • Professional development assistance
  • Relocation assistance
Work Location
  • On-site in Murphy, North Carolina
Equal Employment Opportunity Statement

Aegis Power Systems, Inc. is an Equal Opportunity Employer. We celebrate diversity and are committed to building an inclusive environment for all employees. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability, or veteran status.

#J-18808-Ljbffr