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Entry Level Electromagnetic Compatibility Emc Engineer Jobs

A leading testing and engineering services organization is seeking an EMC Test Technician to support Electromagnetic Compatibility (EMC) testing of electronic and electrical products. The role ...

NY · On-site

Define scope of work and EMC effort for engineering projects, plan activities/milestones, highlight technical risks, and complete tasks according to priorities. * Analyze new and/or modified system ...

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Entry Level Electromagnetic Compatibility Emc Engineer information

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$40.5K

$86.4K

$142.5K

How much do entry level electromagnetic compatibility emc engineer jobs pay per year?

As of Sep 10, 2026, the average yearly pay for entry level electromagnetic compatibility emc engineer in the United States is $86,381.00, according to ZipRecruiter salary data. Most workers in this role earn between $65,000.00 and $103,500.00 per year, depending on experience, location, and employer.

What does an entry level electromagnetic compatibility EMC engineer do?

An Entry Level Electromagnetic Compatibility (EMC) Engineer assists in designing, testing, and troubleshooting electronic devices to ensure they meet regulatory standards for electromagnetic emissions and immunity. They work under the supervision of senior engineers to perform EMC testing in labs, document results, and help implement solutions to minimize electromagnetic interference. Their work ensures products are safe and functional in environments with various electronic devices, complying with industry standards and legal requirements.

What are the key skills and qualifications needed to thrive as an entry level electromagnetic compatibility EMC engineer?

To thrive as an Entry Level EMC Engineer, you need a solid background in electrical engineering fundamentals, electromagnetic theory, and basic circuit design, often supported by a bachelor's degree in electrical engineering or a related field. Familiarity with EMC test equipment (such as spectrum analyzers and signal generators), industry standards (like CISPR and MIL-STD), and relevant simulation software is typically required. Strong analytical thinking, attention to detail, and effective communication skills help you interpret test results and collaborate with cross-functional teams. These competencies are essential for ensuring electronic systems meet regulatory requirements and function reliably without causing or being affected by electromagnetic interference.

What are some common challenges faced by entry level electromagnetic compatibility EMC engineers, and how can they effectively overcome them?

Entry-level EMC engineers often encounter challenges such as interpreting complex regulatory standards, troubleshooting unexpected interference issues, and adapting to rapidly evolving technologies. To overcome these, it’s helpful to seek mentorship from senior engineers, actively participate in hands-on testing, and stay updated with the latest industry standards and best practices. Collaborating closely with design, hardware, and test teams also helps in understanding product-specific EMC requirements and building comprehensive solutions.

What is the difference between Entry Level Electromagnetic Compatibility Emc Engineer vs Entry Level RF Engineer?

AspectEntry Level Electromagnetic Compatibility Emc EngineerEntry Level RF Engineer
Required CredentialsBachelor's in Electrical Engineering, EMC certifications (optional)Bachelor's in Electrical Engineering, RF certifications (optional)
Work EnvironmentTesting labs, product development teams, compliance testing facilitiesDesign labs, testing facilities, wireless communication companies
Industry UsageConsumer electronics, automotive, aerospace, telecommunicationsWireless devices, mobile phones, satellite systems, radar

Both roles require a background in electrical engineering and similar certifications. EMC engineers focus on ensuring products meet electromagnetic compatibility standards, while RF engineers specialize in designing and testing radio frequency systems. Although their work environments and industry applications overlap, their core responsibilities differ in scope and focus.

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Infographic showing various Entry Level Electromagnetic Compatibility Emc Engineer job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 92% Full Time, 3% Part Time, and 4% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $86,381 per year, or $41.5 per hour.

Engineer/Scientist - Radar Systems Engineer (Spectrum)

Dahlgren, VA • On-site

Astrion
5 - 10K employees

$120K - $145K/yr

Full-time

Posted 27 days ago


Key responsibilities

  • Support systems engineering activities for the SPY-6 radar program throughout the system lifecycle.

  • Develop, decompose, allocate, and manage radar system and subsystem requirements across hardware and software.

  • Support engineering analyses associated with radar spectrum management, electromagnetic compatibility (EMC), electronic protection, waveform development, clutter management, and signal-processing performance.


Job description

Overview

Engineer/Scientist (Radar Systems Engineer-Spectrum)

JOB LOCATION: Dahlgren, VA

JOB STATUS: Full Time

CLEARANCE: Secret

SALARY: $120,000 to $145,000

Astrion has an opening for an Engineer/Scientist (Radar Systems Engineer – Spectrum) supporting the U.S. Navy’s SPY-6 Radar Program located on-site at Naval Support Facility Dahlgren in Dahlgren, VA.

 

REQUIRED SKILLS / QUALIFICATIONS 

  • Bachelor’s degree from an accredited college or university in: Mechanical Engineering, Electrical Engineering, Computer Engineering, Electronics Engineering, Mathematics, Computer Science, Physics
  • Must have a current DoD Secret security clearance or be able to obtain and maintain a minimum DoD Secret clearance.
  • Engineering degrees must be from a school with at least one ABET-accredited professional engineering curriculum.
  • Four to six years of relevant engineering or scientific experience; advanced education may be considered toward the experience requirement.
  • Experience applying systems engineering principles to complex radar, sensor, electronic warfare, combat-system, or similarly complex technical systems.
  • Experience with requirements development, decomposition, allocation, traceability, system specifications, and interface definition.
  • Experience applying Model-Based Systems Engineering (MBSE) methods and tools to system architecture, requirements management, or design activities.
  • Experience conducting engineering analyses involving radar systems, RF systems, spectrum engineering, or electromagnetic systems.
  • Experience preparing engineering reports, technical analyses, and presentations.
  • Must be able to work on-site at Naval Support Facility Dahlgren.
  • Must be a U.S. citizen.

 PREFERRED SKILLS / QUALIFICATIONS

  • Advanced degree in Engineering, Mathematics, Computer Science, Physics, or another related STEM discipline.
  • Experience supporting the SPY-6 radar program or another advanced naval radar program.
  • Experience with radar systems engineering, spectrum engineering, RF analysis, electromagnetic compatibility (EMC), or electronic warfare.
  • Experience with radar signal processing, waveform development, clutter management, or electronic protection.
  • Experience using MATLAB, MBSE tools (e.g., Cameo Systems Modeler, MagicDraw, Rhapsody), or other engineering-analysis tools.
  • Experience supporting Navy or Department of Defense acquisition, systems engineering, or research and development programs.
  • Experience supporting model verification, validation, and accreditation activities.

RESPONSIBILITIES

  • Support systems engineering activities for the SPY-6 radar program throughout the system lifecycle.
  • Develop, decompose, allocate, and manage radar system and subsystem requirements across hardware and software.
  • Develop and maintain system specifications, requirements baselines, capability documents, and interface control documents.
  • Evaluate the completeness, consistency, traceability, and technical compliance of radar system and interface requirements.
  • Apply Model-Based Systems Engineering (MBSE) processes, methods, and tools to support system architecture, requirements management, design analysis, and technical decision-making.
  • Perform technical analyses supporting radar architecture, interoperability, spectrum engineering, and system performance.
  • Develop engineering models and analytical tools used to predict, assess, and verify radar-system performance.
  • Support model verification, validation, and accreditation activities by evaluating model fidelity and comparing modeled results with system data.
  • Participate in radar, combat-system, and platform integration activities.
  • Support engineering analyses associated with radar spectrum management, electromagnetic compatibility (EMC), electronic protection, waveform development, clutter management, and signal-processing performance.
  • Support focused integration and test activities, analyze engineering data using MATLAB and laboratory tools, and document technical results.
  • Prepare technical reports, engineering assessments, briefings, and recommendations for Government program managers and technical stakeholders.

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