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Battery Materials Engineer Jobs in Florida (NOW HIRING)

Bachelor's degree in Mechanical Engineering, Electrical Engineering, Materials Science, or a related field. * Experience: * 2+ years of hands-on experience in battery pack design, assembly, or ...

Bachelor's degree in Mechanical Engineering, Electrical Engineering, Materials Science, or a related field. * Experience: * 2+ years of hands-on experience in battery pack design, assembly, or ...

... and battery-powered systems. The engineer works closely with cross-functional teams to support ... • Evaluate materials and systems; identify equipment; or prepare work instructions for ...

... and battery-powered systems. The engineer works closely with cross-functional teams to support ... • Evaluate materials and systems; identify equipment; or prepare work instructions for ...

Reporting to the [Maintenance Manager / Maintenance & Engineering Manager], this role is ... battery materials-setting the standard for sustainability in our industry. At Clarios, we're not ...

Understanding and working knowledge of PLC's (programming logic controller) and PLC troubleshooting ... Responsible for logging time and materials into the computerized maintenance management system ...

EHS Manager

Tampa, FL · On-site

$78K - $106K/yr

Lead EHS programs, including PPE management, engineered hazard solutions, and maintenance of ISO ... battery materials-setting the standard for sustainability in our industry. At Clarios, we're not ...

The selected engineer will also work with the Quality and Manufacturing functions to ensure ... develop battery design criteria for core temperature, structure, power, energy and material ...

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Battery Materials Engineer information

What is a battery materials engineer?

Battery Materials Engineers are professionals who specialize in researching, developing, and optimizing the materials used in batteries, such as lithium-ion or solid-state batteries. They work to improve battery performance, safety, cost, and lifespan by exploring new materials for electrodes, electrolytes, and other battery components. Their work is essential for advancing technologies in electric vehicles, renewable energy storage, and consumer electronics. These engineers collaborate with scientists, manufacturers, and product designers to bring innovative battery solutions from the laboratory to commercial applications.

What are the key skills and qualifications needed to thrive as a battery materials engineer?

To thrive as a Battery Materials Engineer, a strong background in materials science, chemistry, and electrochemistry, typically with a relevant engineering degree, is essential. Familiarity with laboratory equipment, characterization tools (such as SEM, XRD, and electrochemical analyzers), and knowledge of battery testing protocols and industry standards are important assets. Strong problem-solving abilities, attention to detail, and effective teamwork skills help an engineer excel in research and development settings. These skills ensure the engineer can innovate, optimize performance, and reliably develop advanced battery materials to meet industry demands.

What are some common challenges faced by battery materials engineers when developing new battery technologies?

Battery Materials Engineers often encounter challenges such as balancing energy density, safety, and cost while developing new battery chemistries. They must also address issues like material degradation, scalability of lab results to mass production, and ensuring compatibility with existing manufacturing processes. Collaboration with cross-functional teams, such as product designers and electrochemical analysts, is essential to troubleshoot problems and optimize performance throughout the development cycle.

What is the difference between Battery Materials Engineer vs Battery Development Engineer?

AspectBattery Materials EngineerBattery Development Engineer
Required CredentialsBachelor's or Master's in Materials Science, Chemical Engineering, or related fields; certifications varyBachelor's or Master's in Electrical Engineering, Chemical Engineering, or related fields; certifications vary
Work EnvironmentResearch labs, manufacturing facilities, R&D departmentsDesign labs, testing facilities, R&D teams
Employer & Industry UsageBattery manufacturers, automotive, electronics industriesBattery manufacturers, automotive, electronics industries
Common Search & ComparisonYesYes

Both roles are integral to battery technology development. Battery Materials Engineers focus on developing and optimizing the materials used in batteries, while Battery Development Engineers work on designing and testing battery systems. Understanding these distinctions helps professionals target their career paths and employers more effectively.

What cities in Florida are hiring for Battery Materials Engineer jobs?

Cities in Florida with the most Battery Materials Engineer job openings:

Infographic showing various Battery Materials Engineer job openings in Florida as of August 2026, with employment types broken down into 1% As Needed, 81% Full Time, 14% Part Time, 1% Temporary, 2% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution.

Full-time

Re-posted 27 days ago


Job description

Position Summary:
We are seeking a highly skilled Battery Pack Engineer to support the design, assembly, testing, and production optimization of advanced battery packs. The ideal candidate will have hands-on experience in battery pack assembly, be familiar with Arbin battery cyclers for performance testing, and have expertise in Amada and Hesse welding machines for precision welding of battery interconnections and busbars. This role involves working closely with production teams, quality engineers, and R&D to ensure high reliability and performance of battery systems.

Key Responsibilities:

  • Design & Development:
    • Support the development and optimization of battery pack designs, layouts, and electrical schematics.
    • Define process parameters for welding, joining, and bonding operations for battery modules.
    • Collaborate with R&D on cell selection, pack configuration, and system integration.
  • Production Support:
    • Oversee battery pack assembly processes, ensuring adherence to quality standards and production schedules.
    • Operate and maintain Amada and Hesse welding machines for busbar and tab welding, ensuring proper weld quality and consistency.
    • Define and maintain SOPs, process documentation, and assembly work instructions.
  • Testing & Validation:
    • Perform battery cell and pack testing using Arbin cyclers, including charge/discharge cycling, capacity verification, and performance characterization.
    • Support failure analysis, root cause investigations, and corrective actions for battery performance issues.
    • Assist in battery safety, environmental, and reliability testing as per industry standards.
  • Quality & Safety:
    • Ensure compliance with ISO, IATF, and other relevant quality management standards.
    • Implement quality control measures for welding joints, electrical connections, and thermal management components.
    • Enforce ESD and high-voltage safety protocols during production and testing activities.
  • Continuous Improvement:
    • Identify opportunities for process automation, efficiency improvement, and cost reduction.
    • Provide feedback to equipment and process engineering teams for ongoing optimization.

Qualifications & Skills:

  • Education: Bachelor's degree in Mechanical Engineering, Electrical Engineering, Materials Science, or a related field.
  • Experience:
    • 2+ years of hands-on experience in battery pack design, assembly, or testing.
    • Direct experience with Arbin battery test equipment and Amada welding systems (laser or resistance welding).
    • Strong understanding of lithium-ion battery technology, cell balancing, and BMS integration.
  • Technical Skills:
    • Proficiency in interpreting electrical schematics, CAD drawings, and mechanical assembly diagrams.
    • Knowledge of welding parameters (current, pressure, pulse) and weld inspection criteria.
    • Familiarity with data acquisition, test data analysis, and failure mode analysis (FMEA).
  • Soft Skills:
    • Strong problem-solving and troubleshooting skills.
    • Ability to work collaboratively in a cross-functional production environment.
    • Excellent documentation, communication, and reporting skills.