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Electronics Engineer Jobs in Georgia (NOW HIRING)

Bachelor's degree or above in Electrical Engineering, Electronic Engineering, or related fields. Work Experience: * 10+ years of electrical design and development experience for North American home ...

Bachelor's degree or above in Electrical Engineering, Electronic Engineering, or related fields. Work Experience: * 10+ years of electrical design and development experience for North American home ...

Bachelor's degree or above in Electrical Engineering, Electronic Engineering, or related fields. Work Experience: * 10+ years of electrical design and development experience for North American home ...

Bachelor's degree or above in Electrical Engineering, Electronic Engineering, or related fields. Work Experience: * 10+ years of electrical design and development experience for North American home ...

Electrical Engineer Senior

Decatur, GA · On-site

$105K - $136K/yr

The successful Sr. Electronics Engineer will provide independent product ideation, electronics hardware design, firmware creation/updates, LED selection, PCB design/layout creation, UV/Horticulture ...

Electrical Engineer Senior

Decatur, GA · On-site

$105K - $136K/yr

The successful Sr. Electronics Engineer will provide independent product ideation, electronics hardware design, firmware creation/updates, LED selection, PCB design/layout creation, UV/Horticulture ...

Showing results 21-40

Electronics Engineer information

See Georgia salary details

$34.6K

$75.1K

$116.1K

How much do electronics engineer jobs pay per year?

As of Aug 8, 2026, the average yearly pay for electronics engineer in Georgia is $75,062.00, according to ZipRecruiter salary data. Most workers in this role earn between $50,200.00 and $92,500.00 per year, depending on experience, location, and employer.

What is the job of an electronics engineer?

An electronics engineer designs, develops, tests, and supervises the manufacturing of electronic devices and systems, such as circuit boards, communication equipment, and control systems. They use tools like schematic design software and often require knowledge of physics, mathematics, and industry standards. Their work typically involves troubleshooting, improving performance, and ensuring safety and compliance in electronic products.

What are some common challenges electronics engineers face when working on multidisciplinary teams?

Electronics Engineers often collaborate with professionals in software, mechanical, and manufacturing disciplines, which can present challenges in aligning different technical languages and priorities. Effective communication and a willingness to adapt are crucial, as project requirements may change based on input from team members with different expertise. To succeed, Electronics Engineers should cultivate strong collaboration skills and proactively seek clarification to ensure all components integrate seamlessly. This cross-functional teamwork is also a valuable opportunity to broaden your understanding of how electronics fit into larger systems.

What does an electronics engineer do?

An electronics engineer designs, develops, and tests electronic equipment such as circuit boards, communication systems, and control devices. They work on products ranging from small consumer gadgets to large industrial machines. Their responsibilities often include creating schematics, troubleshooting hardware issues, and ensuring products comply with safety and quality standards. Electronics engineers may also work on improving existing devices or developing cutting-edge technologies.

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

To thrive as an Electronics Engineer, you need a strong background in circuit design, signal processing, and electronics theory, typically supported by a bachelor's degree in electrical or electronics engineering. Familiarity with design software such as MATLAB, Altium Designer, and simulation tools, along with relevant certifications like Professional Engineer (PE), is often required. Analytical thinking, problem-solving, and effective communication are vital soft skills for collaborating and troubleshooting complex issues. These skills ensure precise development, efficient teamwork, and successful implementation of innovative electronic systems.

Do electronics engineers make good money?

Electronics engineers typically earn competitive salaries that vary by experience, location, and industry. They often work in fields such as telecommunications, aerospace, and consumer electronics, with many positions requiring a bachelor's degree in engineering and proficiency in tools like CAD software. Overall, the profession offers solid earning potential and opportunities for advancement.

What is the difference between Electronics Engineer vs Electrical Engineer?

AspectElectronics EngineerElectrical Engineer
Required CredentialsBachelor's degree in Electronics Engineering or related field; certifications like Cisco or IPC may be beneficialBachelor's degree in Electrical Engineering; similar certifications may apply
Work EnvironmentDesigning and testing electronic circuits, working in labs, manufacturing plants, or officesWorking with electrical systems, power distribution, and large-scale electrical infrastructure
Industry UsageConsumer electronics, telecommunications, embedded systemsPower generation, electrical utilities, industrial machinery

Electronics Engineers focus on designing and developing electronic devices and systems, while Electrical Engineers work on larger electrical systems and power infrastructure. Both roles require similar educational backgrounds but differ in their specific applications and work environments.

What are the most commonly searched types of Electronics Engineer jobs in Georgia? The most popular types of Electronics Engineer jobs in Georgia are:
What cities in Georgia are hiring for Electronics Engineer jobs? Cities in Georgia with the most Electronics Engineer job openings:
Infographic showing various Electronics Engineer job openings in Georgia as of August 2026, with employment types broken down into 94% Full Time, 2% Part Time, and 4% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $75,062 per year, or $36.1 per hour.

Senior Power Electronics Engineer

Endeavour. Inspired Infrastructure.

Atlanta, GA

$103K - $127K/yr

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 Senior Power Electronics Engineer to join a dedicated engineering team responsible for the design, simulation, and commercial release of high-power, grid-connected converters for utility-scale energy storage, data centers, and industrial electrification. This role requires technical breadth spanning device-level semiconductor physics (including switching and parasitics), circuit-level dynamics, and multi-megawatt system-level converter architectures. The team will own the core hardware design lifecycle, from topology selection and high-voltage magnetics design to physical prototyping, control loop integration, and certification.

The ideal candidate has a proven track record of transitioning power electronics from initial prototypes to high-volume mass production. Working in a collaborative team, you will partner with firmware/software, mechanical, thermal, manufacturing, compliance, certification, and reliability engineers to transition physical designs into robust, production-ready hardware 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:

  • Architectural design and detailed schematic implementation of advanced, bi-directional, isolated and non-isolated converter topologies (e.g., DAB, resonant topologies, multi-level converters MMCs, and multi-stage SSTs).
  • Partner with mechanical and manufacturing engineers to integrate high-power converter modules and stacks with thermal management systems, racking, structural support, and system-level cabinet into manufacturable designs.
  • Design layouts to minimize the critical effects of circuit parasitics - e.g. loop inductance, and gate loop parasitics, to manage voltage overshoot, ringing, and electromagnetic interference (EMI).
  • Design custom, high-frequency, magnetic components, balancing core losses, skin/proximity copper losses, and thermal dissipation.
  • Partner closely with embedded controls and firmware engineers to implement digital control algorithms.
  • Lead hands-on bring-up, testing, debugging, and iterative hardware revisions of high-power modules, validating physical electrical circuit and thermal behavior against theoretical models.
  • Implementation of state-of-the-art DFX practices throughout the hardware design cycle, including Design for Manufacturability (DFM), Design for Assembly (DFA), Design for Testability (DFT), and Design for Cost (DFC) to enable seamless, high-yield mass production.
  • Collaborate closely with NPI and manufacturing engineers to establish robust production assembly flows, end-of-line functional testing configurations, and second-sourcing strategies for critical path components.
Skills & Requirements

Education / Experience

  • MS or PhD degree with specialization in power electronics, plus industry experience (5+ years with MS and 3+ years with PhD) in developing high-power, high-voltage converters (kW to multi-MW scale).
  • Mass Production & Commercial Release: A proven, referenceable track record of taking at least one complex, high-power electronics hardware product from early concept entirely through prototyping, regulatory certifications, and hand-off to sustained high-volume mass production.
  • DFX: Expertise in modern Design for Excellence (DFX) principles. Demonstrated capability in identifying manufacturing bottlenecks, reducing Cost of Goods Sold (COGS), and improving product yield rates without sacrificing performance.
  • Converter-Level Expertise: Proven track record of taking complex, high-power grid-tied converters from initial topology selection and multi-physics modeling through to a certified, physical commercial product.
  • Semiconductor Switching Physics: Deep understanding of power semiconductor switching physics, device capacitance dynamics, wide bandgap semiconductors, safe operating area and thermal constraints.
  • Parasitics & High-Frequency Circuit Dynamics: Expertise in identifying and mitigating parasitic layout, shielding methods, and high-frequency noise coupling paths in multi-layer PCBs, copper busbars, and power modules.
  • Control of Power Converters: Familiarity with converter control, digital signal processing (DSP), and grid-connected inverter control methodologies (grid-following and grid-forming).
  • Laboratory & Instrumentation: Expertise in high-power, high-voltage laboratory environments. Exceptional skill in utilizing oscilloscopes, differential probes, Rogowski coils, network analyzers, and power analyzers for dynamic signal characterization and switching loss extraction.
  • Design & Simulation Tooling: Proficiency in schematic capture, multi-physics thermal/magnetic simulation, and circuit simulators (e.g., PLECS, SPICE, LTspice, Simulink).

Specific Skills / Abilities

  • Familiarity with modern PLM (Product Lifecycle Management) structures and enterprise PLM/CAD ecosystems (e.g., Dassault Systèmes / 3DEXPERIENCE / DSX environments) to manage bills of materials (BOMs), engineering change orders (ECOs), and multi-site production handoffs.
  • Experience with medium-voltage (MV) systems and converters (e.g., 13-kV and 35-kV classes), including advanced insulation coordination, clearance/creepage design, and partial discharge mitigation.
  • Experience with utility-scale grid-tied systems, including switchgear, circuit breakers, and protective relays.
  • Familiarity with heavy industrial packaging technologies, structural busbars, specialized encapsulation potting, conformal coating, and liquid cooling architectures.
  • Familiarity with evolving international power converter and grid codes (e.g., UL, IEEE, IEC, etc.).
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: Senior Power Electronics Engineer
Full-Time or Part-Time: Full-Time
Reports to: Founder and CTO
Location: (On-Site) Marietta/Atlanta, GA

Contact: recruiting@endeavourii.com