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Emi Emc Jobs in Florida (NOW HIRING)

Lead, Electrical Engineer

Palm Bay, FL

$136K - $142K/yr

Simulate and analyze power circuits for efficiency, thermal performance, control loop stability, EMI/EMC, and transient response * Develop schematics, support PCB layout, and ensure good design ...

Electrical Engineer - L4

Malabar, FL · On-site

$47 - $50/hr

EMI/EMC. Qualification And Education: * Bachelors degree in Electrical Engineering. Benefits: Our Benefits Include: * Medical, Dental, and Vision Insurance * 401(k) Retirement Plan * Health Savings ...

Apply best practices for minimizing EMI/EMC and crosstalk in dense RF environments * Generate complete fabrication and assembly packages including: * Gerber/ODB++ files * Drill files and stack-up ...

Apply best practices for minimizing EMI/EMC and crosstalk in dense RF environments * Generate complete fabrication and assembly packages including: * Gerber/ODB++ files * Drill files and stack-up ...

Support EMI/EMC testing and resolve compliance issues. * Work closely with firmware, FPGA, systems, mechanical, and manufacturing engineers throughout product development. * Guide and mentor junior ...

Lead, Electrical Engineer

Palm Bay, FL · On-site

$136K - $142K/yr

Support compliance efforts related to safety, EMI/EMC, environmental, and reliability requirements * Collaborate with manufacturing and quality teams to support production release, yield improvements ...

Showing results 21-40

Emi Emc information

See Florida salary details

$13

$42

$64

How much do emi emc jobs pay per hour?

As of Sep 7, 2026, the average hourly pay for emi emc in Florida is $42.00, according to ZipRecruiter salary data. Most workers in this role earn between $27.57 and $56.87 per hour, depending on experience, location, and employer.

What is an EMI EMC engineer?

EMI/EMC engineers are professionals who specialize in addressing electromagnetic interference (EMI) and ensuring electromagnetic compatibility (EMC) in electronic devices and systems. They work to design, test, and troubleshoot products so that they do not emit excessive electromagnetic noise and are not susceptible to interference from other sources. Their role is critical in industries such as automotive, aerospace, telecommunications, and consumer electronics, where meeting regulatory standards for EMI and EMC is essential for safety and product reliability.

What skills and qualifications are needed to thrive as an EMI EMC engineer?

To thrive as an EMI/EMC Engineer, you need a solid background in electrical engineering, understanding of electromagnetic theory, circuit design, and relevant industry standards, typically supported by a bachelor’s degree in engineering or a related field. Familiarity with EMI/EMC testing equipment, simulation tools such as CST or HFSS, and certifications like iNARTE EMC Engineer can be highly advantageous. Strong analytical thinking, attention to detail, and effective communication skills set top professionals apart in this role. These skills are crucial for ensuring products meet regulatory requirements, function reliably, and prevent costly compliance issues.

What are common challenges faced by EMI EMC engineers during product development, and how can they be addressed?

EMI/EMC Engineers often encounter challenges such as identifying and mitigating sources of electromagnetic interference early in the design process. These issues may arise from circuit layout, component selection, or enclosure design. To address these challenges, engineers collaborate closely with design and hardware teams, conduct pre-compliance testing, and implement shielding, filtering, and grounding strategies. Staying updated with changing regulatory standards and maintaining thorough documentation are also crucial for successful compliance.

What is the difference between Emi Emc vs Electrical Engineer?

AspectEmi EmcElectrical Engineer
Required CredentialsCertification in EMI/EMC testing, technical trainingBachelor's degree in Electrical Engineering, possibly PE license
Work EnvironmentTesting labs, manufacturing facilities, R&D centersDesign offices, manufacturing plants, project sites
Industry UsageElectronics, telecommunications, automotive, aerospacePower systems, electronics, control systems, telecommunications

Emi Emc specialists focus on electromagnetic compatibility testing and compliance, often working in labs and testing environments. Electrical Engineers design, develop, and oversee electrical systems across various industries. While both roles require technical knowledge, Emi Emc professionals specialize in ensuring devices meet electromagnetic standards, whereas Electrical Engineers handle broader electrical system design and implementation.

How to become an EMI EMC engineer?

To become an EMI EMC engineer, typically a bachelor's degree in electrical engineering or a related field is required. Gaining experience with electromagnetic compatibility testing, understanding relevant standards, and obtaining certifications such as Certified EMC Engineer can enhance job prospects. Proficiency with testing tools and knowledge of circuit design are also important for this role.

What are popular job titles related to Emi Emc jobs in Florida?

For Emi Emc jobs in Florida, the most frequently searched job titles are:

Infographic showing various Emi Emc job openings in Florida as of August 2026, with employment types broken down into 96% Full Time, 1% Part Time, and 3% Contract. Highlights an 93% Physical, 4% Hybrid, and 3% Remote job distribution, with an average salary of $87,363 per year, or $42 per hour.

Lead, Electrical Engineer

L3HHCM20

Palm Bay, FL

$136K - $142K/yr

Full-time

Posted 13 days ago


Job description

Job Title: Lead, Electrical Engineer

Job Code: 43242

Job Location: Palm Bay Florida

Job Schedule: 9/80: Employees work 9 out of every 14 days - totaling 80 hours worked - and have every other Friday off

 

Job Description:

L3Harris in Palm Bay, Florida currently has an opening for a Power Supply Design Engineer.  In this role, you will develop Power Supply circuits for data acquisition and computing systems.  Responsibilities will include generation of specifications, component selection, power system architecture, simulation, analyses, support of PWB layout, and integration & verification testing.   

Essential Functions:

  • Design and develop isolated and non-isolated power conversion topologies including AC/DC converters, DC/DC converters, battery chargers and power management circuits.
  • Perform requirements analysis and translate system needs into detailed power architecture and circuit designs
  • Conduct component selection and design trade studies for power semiconductors, magnetics, ICs, filters, and protection circuitry
  • Simulate and analyze power circuits for efficiency, thermal performance, control loop stability, EMI/EMC, and transient response
  • Develop schematics, support PCB layout, and ensure good design practices for high-current, high-voltage, and low-noise applications
  • Create and execute test plans for prototype bring-up, characterization, verification, and qualification
  • Troubleshoot power supply performance issues in the lab and support root cause and corrective action activities
  • Support compliance efforts related to safety, EMI/EMC, environmental, and reliability requirements
  • Collaborate with manufacturing and quality teams to support production release, yield improvements, and failure analysis
  • Prepare technical documentation including design reports, analysis summaries, test procedures, and released engineering data
  • Support design reviews and provide technical leadership in power electronics development
  • Ability to obtain a US Government Security Clearance.

 

Qualifications:

  • Bachelor's Degree and minimum 9 years of prior relevant experience. Graduate Degree and a minimum of 7 years of prior related experience. In lieu of a degree, minimum of 13 years of prior related experience.

 

Preferred Additional Skills:

  • Active TS/SCI Clearance a plus
  • BSEE, Computer Engineering or other related technical field of study.
  • Knowledge of Miliary Standards including 461, 704 and 1275.
  • Hardware debugging skills & experience in operation of Signal Generator, Logic Analyzer, Digital Oscilloscopes
  • Ability to lead engineering design teams.
  • Excellent interpersonal and communication skills, ability to interact with a cross functional team
  • Ability to collaborate across all levels of leadership.

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