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Assistant Emc Engineer Jobs in Atlanta, GA (NOW HIRING)

Service Engineer

Atlanta, GA · On-site

$70K - $100K/yr

Run tests and simulations at our facility to assist with problem-solving * Travel to the field to ... Hands-on experience with servers (Supermicro, EMC, DELL, HP) * Solid hardware system diagnostics ...

Produce regular reports for management, to assist in cost recovery, capacity planning and ... Netapp, EMC (Clariion & DMX) with Netbackup Software as a backup Tool Essential Working knowledge ...

Service Engineer

Atlanta, GA · On-site

$70K - $100K/yr

... assist with problem-solving • Travel to the field to train and or resolve customer issues • ... Supermicro, EMC, DELL, HP) • Solid hardware system diagnostics skills, as well as a good ...

Sr. Service Technician

Atlanta, GA · On-site

$35 - $40/hr

We seek talented, passionate, and committed engineers, technologists, and business leaders to join ... Run tests and simulations at our facility to assist with problem-solving * Travel to the field to ...

Sr. Service Technician

Atlanta, GA · On-site

$35 - $40/hr

We seek talented, passionate, and committed engineers, technologists, and business leaders to join ... assist with problem-solving • Travel to the field to train and or resolve customer issues • ...

Showing results 21-40

Assistant Emc Engineer information

See Atlanta, GA salary details

$31.7K

$85.4K

$129.3K

How much do assistant emc engineer jobs pay per year?

As of Aug 10, 2026, the average yearly pay for assistant emc engineer in Atlanta, GA is $85,351.00, according to ZipRecruiter salary data. Most workers in this role earn between $67,800.00 and $100,500.00 per year, depending on experience, location, and employer.

What are some common challenges faced by assistant EMC engineers during product testing and how can they be managed?

Assistant EMC Engineers often encounter challenges such as troubleshooting unexpected electromagnetic interference, managing tight project timelines, and adapting test setups for various product types. These challenges can be managed by maintaining effective communication with design and development teams, following standardized testing procedures, and staying up-to-date on regulatory requirements. Developing strong problem-solving skills and being proactive in documenting test results also help ensure smoother testing processes and compliance with EMC standards.

What is the difference between Assistant Emc Engineer vs Test Engineer?

AspectAssistant Emc EngineerTest Engineer
CredentialsBachelor's in Electrical/Electronics EngineeringBachelor's in Electrical, Electronics, or related field
Work EnvironmentDesign labs, EMC testing facilitiesTesting labs, product development environments
Industry UsageElectronics, telecommunications, automotiveElectronics, software, hardware testing
Primary FocusEMC compliance, interference mitigationProduct testing, quality assurance

The Assistant Emc Engineer primarily focuses on EMC compliance and interference mitigation, supporting testing and design. In contrast, the Test Engineer handles broader product testing and quality assurance. Both roles require similar educational backgrounds and often work in related environments within electronics industries, but their core responsibilities differ in scope and specialization.

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

To thrive as an Assistant EMC Engineer, you need a solid understanding of electrical engineering principles, electromagnetic compatibility (EMC) standards, and a relevant engineering degree. Familiarity with EMC test equipment, simulation software (like CST or Ansys), and hands-on experience with compliance testing are typically required. Strong analytical thinking, attention to detail, and effective communication skills help you interpret results and collaborate with multidisciplinary teams. These competencies are crucial for ensuring electronic products meet regulatory standards and function reliably in complex environments.

What is an assistant EMC engineer?

Assistant EMC (Electromagnetic Compatibility) Engineers are entry-level professionals who support senior engineers in testing, analyzing, and resolving electromagnetic interference issues in electronic devices or systems. They help ensure products meet regulatory standards for electromagnetic emissions and immunity, often by setting up and conducting laboratory tests, collecting data, and preparing technical reports. Assistant EMC Engineers typically work under supervision, gaining hands-on experience with specialized testing equipment and industry compliance requirements. Their work is essential in industries such as automotive, telecommunications, and consumer electronics to ensure devices function safely and reliably without causing or suffering from electromagnetic disturbances.
What are the most commonly searched types of Emc Engineer jobs in Atlanta, GA? The most popular types of Emc Engineer jobs in Atlanta, GA are:
What job categories do people searching Assistant Emc Engineer jobs in Atlanta, GA look for? The top searched job categories for Assistant Emc Engineer jobs in Atlanta, GA are:
Infographic showing various Assistant Emc Engineer job openings in Atlanta, GA as of August 2026, with employment types broken down into 1% As Needed, 75% Full Time, 21% Part Time, 1% Temporary, and 2% Contract. Highlights an 98% Physical, 1% Hybrid, and 1% Remote job distribution, with an average salary of $85,351 per year, or $41 per hour.

Full-time

Re-posted 7 days ago


Job description

Endeavour has an exciting opportunity for someone passionate about sustainability and eager to be part of an innovative company that's on a journey to transform the world's infrastructure. We are seeking a Mechanical Engineer to join a dedicated engineering team responsible for the mechanical packaging, structural design, thermal-fluid management, and commercial release of high-power, grid-connected converters for utility-scale energy storage, data centers, and industrial electrification. This role requires technical depth in structural mechanics, thermodynamic heat transfer, and physical packaging architectures to design complex, multi-megawatt (multi-MW) cabinet-type power conversion systems. The team owns the entire electro-mechanical lifecycle, spanning initial volumetric trade studies, detailed component-level and system-level thermal/structural (CFD/FEA) designs, and ruggedized enclosure design.

The ideal candidate has a proven, referenceable track record of translating complex, heavy-industrial electro-mechanical hardware assemblies from initial concept through prototyping, validation, and regulatory approval to high-volume production. Working in a collaborative, concurrent engineering environment, you will partner with electrical, firmware/controls, compliance, reliability, and manufacturing teams, as well as external suppliers, to transition complex novel physical designs into robust, production-ready platforms.

This role requires an agile, self-motivated professional who is comfortable navigating a fast-paced environment. You must be highly organized, an excellent communicator, and capable of operating with complete discretion.

We are highly selective because our mission demands it. We look for passionate changemakers who balance extreme talent with self-awareness and humility. In return, we offer a flexible, autonomous environment with endless opportunities for growth. Are you ready to #JoinTheJourney?

Key Responsibilities

Include but are not limited to:

  • Mechanical Architecture & Cabinet Design: Lead the physical packaging and structural design of multi-MW, industrial-grade cabinets and utility enclosures, including IP-rated and outdoor-rated power equipment. Drive comprehensive trade studies on design, architecture, materials, and manufacturing processes.
  • Thermal Management & Multi-Physics Simulation: Design, model, simulate, and implement advanced thermal dissipation systems (forced-convection air and liquid cooling, including cold plates, thermal interface materials, and optimized airflow paths). Familiarity with structural finite element analysis, thermal computational fluid dynamics, vibration, and fatigue assessments.
  • Power Stacks & Electro-Mechanical Integration: Design and pack high-density electronic assemblies, PCBA interfaces, custom magnetic components, insulators, heavy-duty busbars, and high-voltage/high-current connectors. Balance electrical isolation, EMI/EMC shielding, and mechanical constraints.
  • Documentation & PLM Releases: Create detailed 3D CAD models and professional 2D drawings utilizing Geometric Dimensioning and Tolerancing (GD&T). Perform tolerance stack-up analyses. Assist with engineering documentation, Bills of Materials (BOMs), and help manage engineering change orders (ECOs) through PLM systems.
  • FMEA, Validation, & DVP&R: Participate in mechanical Failure Mode and Effects Analysis (FMEA) and Design Verification Plan and Report (DVP&R) activities.
  • Prototype Development & Lab Testing: Physical prototype fabrication, electro-mechanical assembly, custom test-rig setup, and hands-on mechanical testing of new designs. Support root-cause analysis of pilot or production failures and drive iterative hardware revisions.
  • DFA/DFM & Production Scaling: Collaborate with industrial design, quality, manufacturing, and external suppliers to optimize Design for Manufacturability (DFM), Design for Assembly (DFA), assembly procedures, and tooling strategies. Develop detailed assembly procedures and instructions to support scalable, high-yield production.
Skills & Requirements

Education / Experience

  • Education: Bachelor's or Master's degree in Mechanical Engineering or a related technical field (PhD degree in Mechanical Engineering is a plus).
  • Experience: 10+ years of industry experience in mechanical design and product packaging for power electronics, industrial, or energy products.
  • CAD & Simulation Mastery: Expert-level proficiency in CAD modeling software, including 3DEXPERIENCE (CATIA V5/V6), SolidWorks, NX, or Creo. Theoretical and practical understanding of physics, dynamics, heat transfer, and materials.
  • Advanced Multi-Physics Tooling: Strong background in advanced structural, thermal, and vibration analysis using commercial software (e.g., Ansys, Comsol)
  • Manufacturing Process Knowledge: Demonstrated experience in designing and packaging for injection molding, die casting, extrusion, and sheet metal forming. Working knowledge of metals (aluminum, steel), engineering plastics, ceramics, structural insulators, gaskets, and potting compounds.
  • Mass Production Track Record: Referenceable hands-on experience taking complex, physical electro-mechanical designs from early-stage concept all the way through physical prototyping, supplier tooling development, pilot runs, and successful high-volume production deployment.
  • Safety & Regulatory Compliance: Familiarity with the documentation, testing, and design integration required to meet international regulatory standards (e.g., UL, IEC, NFPA, ISO, etc.).
  • Communication & Collaboration: Exceptional communication skills with the ability to actively participate in technical deep-dives, help coordinate concurrent engineering timelines, and collaborate with suppliers on DFM feedback and tolerance negotiations.

Specific Skills / Abilities

  • High proficiency in modern PLM databases (e.g., 3DEXPERIENCE, Windchill, etc.) to manage configurations, CAD assemblies, BOMs, and multi-site manufacturing releases.
  • Experience with medium- to high-voltage systems and insulation coordination (creepage, clearance, potting, sealing).
Why Work Here

Innovate at Speed: Thrive in a fast-paced, entrepreneurial environment where your ideas actually matter.

Own Your Work: Enjoy the flexibility and autonomy to execute and do your best work.

Learn from the Best: Collaborate daily with top-tier, experienced industry experts.

Elevate Your Craft: Be part of a respectful, continuous-learning culture driven by excellence.

Make a Real Impact: Join a team of dedicated changemakers building solutions that benefit people and the planet.

About GridTran

GridTran is at the forefront of a massive energy transformation, shifting the world toward a sustainable, flexible, and DC-powered grid. We specialize in advanced, proprietary power conversion—powering everything from renewable energy systems to the rapidly expanding AI ecosystem.

Our single-stage "grid-to-rack" technology (35kV AC to 800V DC) delivers highly efficient, 24/7 reliable power for AI datacenters with fast time-to-token, at lower costs and emissions than traditional fossil fuels. By seamlessly integrating solar, energy storage, and grid stabilization, we are building the resilient energy infrastructure of the future. As a proud part of the Endeavour ecosystem, we offer our team unparalleled opportunities for innovation and cross-collaboration.

About Endeavour

Endeavour is rethinking the infrastructure model for the benefit of all. Instead of relying on big, centralized systems that often leave communities locked into outdated networks, we are building an integrated technology stack using modular components that can be repeated and scaled. Operating as a purpose trust, we create a continual cycle of innovation by investing in breakthrough technologies to build faster, cleaner infrastructure for data, energy, materials, and water.

We tackle the industry's most complex challenges by deploying scalable, modular solutions across the AI ecosystem—including carbon-neutral energy and revolutionary data center cooling. Our team of passionate changemakers is driven by a shared mission to build regenerative systems that give back more than they take. To work at Endeavour is to collaborate with proven experts, cut through the unnecessary to get things done, and know you are making a lasting impact on people and the planet.

Position: Mechanical Engineer
Full-Time or Part-Time: Full-Time
Reports to: Founder / CTO
Location: (On-Site) Marietta/Atlanta, GA

Contact: recruiting@endeavourii.com