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Internship Solid State Battery Jobs (NOW HIRING)

Owns cell assembly processes for Blue Current's solid-state battery platform in all facets, from new process development, to scaleup, and through quality system implementation * Collaborates closely ...

Develops and maintains physics-based electrochemical models of solid-state battery cells, with particular emphasis on Newman-type continuum models, to predict and explain cell performance across a ...

This role will work in a laboratory environment, with the primary responsibility being the efficient and accurate chemical, physical and mechanical analysis of solid-state battery electrolytes. Job ...

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Design, modify, and optimize the mechanical fixtures for solid-state battery * Design and develop pilot scale electrode coating tools based on the company's cell technology * Design the tools and ...

This role will work in a laboratory environment, with the primary responsibility being the efficient and accurate chemical, physical and mechanical analysis of solid-state battery electrolytes. Job ...

New

Senior Cell Assembly Engineer

Hayward, CA · On-site

$119K - $164K/yr

Sufficient understanding of solid-state or lithium-ion battery electrochemistry to interpret characterization data in the context of assembly process decisions * Ability to design experiments ...

To learn more about Blue Current, Inc., visit Position Summary Blue Current is seeking a hands-on Staff Technician to support daily operations in its solid-state battery R&D and prototyping labs. The ...

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Internship Solid State Battery information

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How much do internship solid state battery jobs pay per hour?

As of Jul 24, 2026, the average hourly pay for internship solid state battery in the United States is $21.75, according to ZipRecruiter salary data. Most workers in this role earn between $14.90 and $26.92 per hour, depending on experience, location, and employer.

What types of projects or tasks can I expect to work on during a Solid State Battery internship?

As a Solid State Battery intern, you will likely engage in hands-on laboratory work, such as preparing and analyzing battery materials, assembling test cells, and conducting electrochemical testing. You may also collaborate with researchers and engineers to interpret experimental data and contribute to ongoing research projects. It's common to participate in team meetings, document your findings, and present results to colleagues. This role provides valuable exposure to cutting-edge energy storage technology and the opportunity to develop practical skills in materials science and battery engineering.

What is the difference between Internship Solid State Battery vs Internship Battery Research Assistant?

AspectInternship Solid State BatteryInternship Battery Research Assistant
CredentialsRelevant coursework in electrochemistry, materials scienceBackground in chemistry, materials science, or engineering
Work EnvironmentLaboratories focused on energy storage, materials testingResearch labs, testing facilities, academic or industry settings
Industry UsageElectronics, automotive, renewable energy sectorsEnergy storage, electronics, research institutions

Both internships involve research in energy storage technologies, but the Internship Solid State Battery specifically focuses on developing and testing solid-state battery materials, while the Internship Battery Research Assistant covers broader battery research, including liquid and solid chemistries. The roles share similar credentials and work environments, often within research labs in related industries.

What are the key skills and qualifications needed to thrive as an Internship Solid State Battery, and why are they important?

To thrive in a Solid State Battery Internship, you typically need a strong background in materials science, chemistry, or electrical engineering, often supported by relevant coursework or lab experience. Familiarity with analytical instruments (such as XRD, SEM, or electrochemical workstations) and data analysis tools, as well as knowledge of battery testing protocols, is highly valuable. Attention to detail, problem-solving abilities, and effective communication are crucial soft skills to excel in collaborative research environments. These competencies enable interns to contribute meaningfully to innovative battery development projects and ensure accurate experimental results.

What does an Internship in Solid State Battery involve?

An Internship in Solid State Battery typically involves assisting in the research, development, and testing of advanced battery technologies that use solid electrolytes instead of liquid ones. Interns may work in laboratory settings, help with experiments, analyze data, and learn about the materials and processes used in solid state batteries. These internships provide valuable hands-on experience with cutting-edge energy storage technology and often require a background in chemistry, materials science, or engineering. Interns may also collaborate with experienced scientists and engineers, contributing to projects aimed at improving battery performance and safety.
More about Internship Solid State Battery jobs
What cities are hiring for Internship Solid State Battery jobs? Cities with the most Internship Solid State Battery job openings:
What are the most commonly searched types of Solid State Battery jobs? The most popular types of Solid State Battery jobs are:
What states have the most Internship Solid State Battery jobs? States with the most job openings for Internship Solid State Battery jobs include:
Infographic showing various Internship Solid State Battery job openings in the United States as of July 2026, with employment types broken down into 99% Full Time, and 1% Part Time. Highlights an 99% Physical, and 1% Remote job distribution, with an average salary of $45,235 per year, or $21.7 per hour.
Staff Cell Assembly Engineer

Staff Cell Assembly Engineer

Blue Current

Hayward, CA

Other

Posted 8 days ago


Job description

Position Summary

The Staff Cell Assembly Engineer is Blue Current's technical authority for cell assembly, responsible for establishing and validating processes and tooling for large-format solid-state battery cells. This engineer will scale processes from a nascent R&D state to larger formats by working closely with team members in other functions such as equipment engineering, process engineering, and cell engineering. Blue Current's solid-state technology is novel, and successful candidates will be able to advance the technology in areas with little precedent in literature or traditional lithium ion cells. This will require transforming open-ended concepts into actionable goals and timelines. Ideal candidates are experienced engineers or scientist with backgrounds in electrochemical engineering, process scaleup, project management, and vendor relationship management.

Essential Functions & Responsibilities

  • Owns cell assembly processes for Blue Current's solid-state battery platform in all facets, from new process development, to scaleup, and through quality system implementation
  • Collaborates closely with Cell Engineering, R&D, and Facilities to design and implement equipment, develop and scale large-format cell assembly processes, and improve process yield
  • Serves as a key technical interface with assembly equipment vendors and external development partners. Leads vendor evaluation, equipment specification, and FAT/SAT activities
  • Characterizes and formally documents the relationship between assembly process parameters and cell structural and electrochemical outcomes
  • Applies and establishes use of advanced metrology techniques in partnership with the Metrology and Cell Engineering teams, including X-ray imaging, electrochemical characterization, and electrochemical impedance spectroscopy to evaluate assembly quality and diagnose process failures
  • Owns the assembly-stage quality system in partnership with the Quality team, including defining visual inspection criteria, edge alignment and layer tolerancing standards, acceptance criteria for finished cells, and the process control framework for monitoring ongoing assembly quality
  • Collaborates with other engineers, and mentor junior engineers as appropriate by providing technical direction on complex process challenges, reviewing experimental design and data interpretation, and developing team capability in assembly process fundamentals
  • Leads PFMEA and root cause analysis activities for assembly processes. As part of this activity, the engineer is expected to develop systems to monitor and respond to defects or process deviations, and to implement/document the problems and corrective actions.
  • Represents the cell assembly function in executive and cross-functional technical reviews, communicating process status, capability gaps, and scale-up readiness in a form that informs strategic and resourcing decisions
  • Contributes to manufacturing execution system (MES) development and implementation from the assembly process perspective, including defining what process data must be captured to support quality traceability and yield improvement
  • Collaborates with electrode process and cell engineering teams to ensure assembly process decisions account for upstream material and electrode constraints and downstream cell performance requirements
  • Leads projects by developing clear, actionable plans with defined milestones and success metrics, managing timelines and cross-functional dependencies effectively, and ensuring high-quality, on-schedule execution
  • Supports a strong safety culture by following and improving laboratory safety practices, demonstrating exemplary experimental techniques, and helping implement best-practice updates
  • Other duties as assigned, consistent with the scope and level of this position

Minimum Qualifications

Education

  • PhD (with 3+ years of relevant experience), Master's (with 6+ years of relevant experience), Bachelor's (with 8+ years of relevant experience) in Chemical Engineering, Materials Science, Chemistry, or a related field, or equivalent combination of education and industry experience

Experience

  • Experience troubleshooting and diagnosing assembly-related failures using advanced characterization techniques such as X-ray imaging or electrochemical impedance spectroscopy, going beyond visual inspection to identify root causes
  • Experience translating process requirements into tooling or fixture specifications, and working iteratively with engineers to validate that the resulting hardware meets process needs

Skills & Knowledge

  • Deep understanding of solid-state or lithium-ion battery electrochemistry sufficient to design characterization strategies, interpret complex data sets, and connect assembly process decisions to cell performance 
  • Ability to design experiments, analyze results, and draw data-driven conclusions in the absence of established reference points, and to synthesize findings into process specifications and documentation 
  • Ability to communicate process strategy, capability gaps, and scale-up readiness clearly to audiences across engineering, quality, and executive teams
  • Hands-on experience with the full assembly sequence, including electrode handling, lamination, layer stacking, and pouch sealing, with a demonstrated history of driving improvements

Certifications / Licenses

  • N/A

Preferred Qualifications

  • Prior experience with solid-state battery assembly specifically, including firsthand familiarity with the unique handling and process challenges of solid-state electrode materials
  • Experience with dry room or controlled environment assembly processes, including operational constraints, tool design considerations, material handling requirements, and quality implications of controlled atmosphere work
  • Demonstrated experience leading the translation from manual to semi-automated or automated assembly operations, including contributing to equipment specification, process transfer planning, and validation of automated systems against manually established process baselines
  • Experience leading cell assembly scale-up efforts, including formal identification of critical process parameters, documentation of process knowledge for manufacturing transfer, and engagement with manufacturing engineering teams on process readiness criteria
  • Experience leading or owning PFMEA exercises on novel processes and driving corrective actions to closure

Core Values - Minimum Qualifications

Safety & Security First

For employees, customers, and intellectual property

  • Demonstrated commitment to maintaining a safe and secure work environment, including adherence to workplace safety protocols, data privacy standards, and confidentiality requirements.
  • Proven ability to identify and appropriately escalate potential risks to personnel, customers, or sensitive information.

Trust & Respect

Treat everyone with honesty, dignity, and sensitivity. Embrace different perspectives. Be humble.

  • Demonstrated ability to communicate and collaborate effectively with individuals of diverse backgrounds, perspectives, and working styles.
  • Track record of maintaining professionalism, integrity, and discretion in all workplace interactions.

Ownership & Accountability

Take responsibility and action. Set goals and deliver. Don't wait for others.

  • Demonstrated ability to independently prioritize, execute, and follow through on responsibilities with minimal supervision.
  • Proven track record of setting measurable goals, meeting deadlines, and taking initiative to resolve challenges proactively.

Technical Excellence

Always strive for the best solution possible.

  • Demonstrated commitment to quality and continuous improvement in delivering work product, solutions, and outcomes within area of expertise.
  • Ability to evaluate options critically and apply sound judgment to identify the most effective and scalable solution.

Learn & Be Curious

Think outside the box. Always learning.

  • Demonstrated ability to quickly acquire new skills, tools, or domain knowledge in response to evolving business needs.
  • Proven track record of applying creative or unconventional thinking to solve problems.

Be Resourceful

Be hungry, frugal, and flexible. Use what you have. Find a way.

  • Demonstrated ability to deliver results in resource-constrained environments by maximizing existing tools, processes, and partnerships.
  • Proven ability to adapt and find effective solutions in ambiguous or rapidly changing situations.

Delight Customers

Build stronger relationships with internal and external customers.

  • Demonstrated commitment to understanding and exceeding the needs of internal and/or external customers.
  • Track record of building and maintaining strong, trust-based relationships that drive positive outcomes for all stakeholders.

Physical Requirements & Working Conditions

  • Able to pass a respirator fit test and wear a respirator periodically.
  • Regularly works in an active manufacturing and laboratory environment; standing and walking for a significant portion of the workday (approximately 4-6 hours per day)
  • Frequent interaction with process equipment, requiring manual dexterity and the ability to make detailed visual inspections of materials and coated electrodes
  • Occasional lifting of items up to 30 lbs (e.g., material containers, equipment components)
  • Prolonged periods of screen-based work for data analysis, documentation, and communication
  • Regular use of personal protective equipment (PPE) including safety glasses, gloves, and lab coat; additional PPE may be required depending on materials handled
  • Travel is estimated at less than 10% of working time. Overseas travel is possible in the event of FAT program execution or in the event of vendor or supplier visits.