1

Solid State Battery Jobs in Texas (NOW HIRING)

Journeyman Electrician

Fort Worth, TX

$26.50 - $36.50/hr

... controls, solid state relays, DDC and PLC Controllers, electronic testing equipment, nurse call ... battery and DC systems, and other similar type equipment. * Responds to requests for maintenance ...

... battery-powered appliances, network infrastructure, healthcare and aerospace/defense. Visit www ... Solid State Power Amplifire team in Richardson, Texas. The ideal candidate will thrive in a ...

... battery-powered appliances, network infrastructure, healthcare and aerospace/defense. Visit www ... A grasp of semiconductor device fundamentals, including solid-state physics concepts, transistor ...

... battery-powered appliances, network infrastructure, healthcare and aerospace/defense. Visit www ... Solid State Power Amplifire team in Richardson, Texas. The ideal candidate will thrive in a ...

... battery-powered appliances, network infrastructure, healthcare and aerospace/defense. Visit www ... A grasp of semiconductor device fundamentals, including solid-state physics concepts, transistor ...

... battery-powered appliances, network infrastructure, healthcare and aerospace/defense. Visit www ... cutting-edge solid-state RF power amplifier solutions for defense communications, radar and ...

... battery-powered appliances, network infrastructure, healthcare and aerospace/defense. Visit www ... cutting-edge solid-state RF power amplifier solutions for defense communications, radar and ...

next page

Showing results 1-20

Solid State Battery information

Why don't we use solid state batteries?

Solid state battery jobs involve developing and manufacturing advanced energy storage solutions, but widespread use is limited by challenges such as high production costs, material stability issues, and manufacturing scalability. These factors delay commercial adoption despite their potential for higher energy density and safety.

What are the key skills and qualifications needed to thrive in the solid state battery position?

To thrive as a Solid State Battery Engineer, you need a strong background in materials science, electrochemistry, and battery technology, typically with a degree in chemistry, physics, or engineering. Familiarity with tools such as glove boxes, battery testing equipment, and simulation software, as well as knowledge of relevant safety and industry certifications, is essential. Excellent problem-solving skills, attention to detail, and the ability to collaborate effectively within interdisciplinary teams are valuable soft skills for this role. These competencies ensure safe, efficient development and optimization of advanced solid-state batteries in a fast-paced research and manufacturing environment.

What are some common challenges faced by professionals working in solid state battery research and development?

Professionals in solid state battery R&D often encounter challenges related to material compatibility, scaling up prototypes to manufacturable products, and maintaining battery safety and stability over time. The work can involve iterative testing, troubleshooting, and adapting designs based on evolving industry standards and technical advancements. Collaboration with chemists, engineers, and manufacturing specialists is frequent, as is staying up to date with the latest developments in battery technology. Overcoming these challenges requires a blend of technical expertise, persistence, and strong teamwork, which helps drive innovation in this rapidly growing field.

Is there a future for solid state batteries?

Solid state batteries are considered a promising technology for the future of energy storage, offering higher energy density and improved safety compared to traditional lithium-ion batteries. As research advances and manufacturing processes become more scalable, job opportunities in this field are expected to grow, especially for engineers and technicians skilled in materials science and battery technology.

What does a solid state battery job entail?

A Solid State Battery job typically involves research, development, and engineering of next-generation battery technologies that use solid electrolytes instead of liquid ones. Professionals in this field work on improving energy density, safety, and performance for applications in electric vehicles, consumer electronics, and energy storage. Roles can range from material scientists and chemical engineers to manufacturing and testing specialists. These jobs often require expertise in electrochemistry, materials science, and battery design. The goal is to advance solid-state battery technology for commercial adoption.

What are the most commonly searched types of Solid State Battery jobs in Texas? The most popular types of Solid State Battery jobs in Texas are:
What are popular job titles related to Solid State Battery jobs in Texas? For Solid State Battery jobs in Texas, the most frequently searched job titles are:
What cities in Texas are hiring for Solid State Battery jobs? Cities in Texas with the most Solid State Battery job openings:
Infographic showing various Solid State Battery job openings in Texas as of July 2026, with employment types broken down into 94% Full Time, 5% Part Time, and 1% Contract. Highlights an 99% Physical, and 1% Remote job distribution.

Principal Mechanical Design Engineer, Industrial Enclosures

Enphase Energy, Inc.

Austin, TX • On-site

$150 - $210/hr

Other

Re-posted 2 days ago


Enphase Energy rating

6.6

Company rating: 6.6 out of 10

Based on 15 frontline employees who took The Breakroom Quiz

130th of 156 rated electronics manufacturers


Job description

About Enphase Energy

Enphase Energy is a global energy technology company and a leading provider of solar, battery, and electric vehicle charging products. Founded in 2006, our innovative microinverter technology revolutionized solar power, making it a safer, more reliable, and scalable energy source. Today, the Enphase Energy System enables users to make, use, save, and sell their own power. Enphase is also one of the most successful and innovative clean energy companies in the world, with more than 80 million products shipped across 160 countries.

Join our dynamic teams designing and developing next‑gen energy technologies and help drive a sustainable future!

About the Role

Imagine defining the physical backbone of a product that will reshape how the world generates and distributes power. The Power Systems Innovation team housed within the office of the CTO is building Enphase's first‑ever Solid State Transformer, a breakthrough technology that replaces bulky, legacy transformer hardware with sleek, software‑defined power conversion. As our Principal Mechanical Design Engineer, you will own the structural envelope that protects this technology in the field: the enclosure, thermal architecture, and environmental sealing that let a cutting‑edge power electronics platform survive punishing outdoor conditions while looking and feeling like the future. This is a rare greenfield opportunity—early‑stage, high‑visibility, and deeply cross‑functional—where your design choices will directly define the product's form factor, reliability, and market readiness.

What You Will Do
  • Architect the complete enclosure system for Enphase's Solid State Transformer—structural frames, panels, rails, and mounting systems—balancing ruggedness, weight, cost, and aesthetics from first sketch through volume production
  • Own ingress protection end‑to‑end: define IP55/IP65 sealing strategies, select gaskets and drainage paths, run validation tests, and iterate until every field scenario—dry, storm, coastal salt spray—is covered
  • Lead structural analysis and FEA across static loads, vibration, shock, and seismic qualification, turning simulation results into lighter, stiffer, more cost‑effective designs
  • Drive material and corrosion‑protection decisions—sheet metal alloys, polymers, coatings, plating, and galvanic isolation—ensuring long‑term outdoor durability in harsh climates
  • Design high‑performance door and access systems with integrated latching, locking, and hinge mechanisms that balance security, weather resistance, and fast field serviceability
  • Integrate forced‑air cooling architectures into the enclosure to support aggressive thermal targets without compromising environmental sealing
  • Bring your designs to life—build 3D CAD models and production drawings in SolidWorks, collaborate with suppliers and contract manufacturers, and get hands‑on with prototype fabrication and electromechanical assemblies
  • Define verification strategy: author functional and performance requirements, design test plans, execute tests, and close the loop with rigorous design‑test‑analysis documentation
  • Shape the team's technical culture by mentoring junior engineers, championing best practices in enclosure design, and contributing to a fast‑moving, innovation‑driven environment
  • Accelerate your technical growth—work shoulder‑to‑shoulder with PhD‑level engineers, firmware architects, and systems thinkers who challenge assumptions and raise the bar daily; this team will stretch you in ways no ordinary engineering role can
  • Expand your impact beyond enclosures—contribute to system‑level trade‑offs across thermal, electrical, and mechanical domains, gaining exposure to the full Solid State Transformer architecture and broadening your expertise into adjacent disciplines
  • Help build a category‑defining product—Enphase is a proven innovator that disrupted the solar microinverter market and now aims to do the same for medium‑voltage power conversion; your work will be visible at the highest levels of the company and across the energy industry
Who You Are and What You Bring
  • BS/MS/PhD Mechanical Engineering or closely related discipline
  • BS and 15+ years / MS and 12+ years / PhD and 8+ years of mechanical design experience
  • Candidates with greater levels of experience may be considered and are encouraged to apply
  • Independent problem‑solver who thrives in ambiguity—you can navigate early‑stage product development where requirements are still being written and turn uncertainty into elegant solutions
  • Relentless ownership mentality—you juggle multiple high‑stakes workstreams simultaneously, drive them to closure, and never let a critical detail slip
  • Deep enclosure design expertise for large‑scale electrical equipment or analogous products (e.g., automotive body structures), with a portfolio that proves you’ve shipped real hardware
  • IP‑rated sealing mastery—you live and breathe seal design, gasket selection, drainage strategies, and test validation to IP55/IP65 or equivalent, and can defend every design choice
  • Structural FEA authority—vibration, fatigue, seismic, and load‑bearing analysis specific to enclosure structures is second nature to you; you turn simulation into a competitive advantage
  • Materials & corrosion‑protection strategist—sheet metal (steel, aluminum), stainless steel, polymers, composites, and coatings; you know how to pair them for decades of outdoor durability
  • Corrosion protection validation chops—hands‑on experience specifying and proving e‑coat, powder coat, hot‑dip galvanizing, anodizing, and hardware selection for dissimilar‑metal environments
  • Door & access system designer—latching, locking, and hinge mechanisms for security, weather resistance, and fast field serviceability are in your design DNA
  • Thermal‑mechanical integration pro—you've integrated fans, filters, and louvers into enclosure and door designs, balancing thermal performance with ingress protection
  • Manufacturing‑savvy engineer—you leverage sheet metal stamping, weldments, casting, extrusion, and injection molding to hit cost, quality, and volume targets
  • Joining techniques expert—welding, adhesives, riveting, and bolted joints; you pick the right method for every interface and know the trade‑offs cold
  • CAD power user—high proficiency with an enterprise 3D CAD package (SolidWorks preferred); your models are production‑ready and parametrically clean
  • Clear communicator & documenter—you translate complex mechanical decisions into crisp reports, specs, and presentations that move programs forward
  • Hands‑on prototyping instincts—you're as comfortable on the shop floor building assemblies as you are behind a screen running simulations
  • Proven mentor and design leader—you have a track record of coaching junior engineers, elevating their technical skills, and leading end‑to‑end design efforts from concept through production release
Additional Desired Skills
  • Multi‑physics modeling proficiency—coupled thermal‑structural‑electromagnetic simulation that unlocks deeper design insight
  • Medium‑voltage insulation design experience (>1 kV)—creepage, clearance, and dielectric considerations that are critical to next‑gen power electronics enclosures
  • Standards fluency—working knowledge of UL, IEC, and NEMA standards for electrical equipment, enabling faster certification cycles
Work Location

Austin, TX

Compensation

The base pay range for this position is $150,000 to $210,000. This salary range may be modified in the future. The successful candidate’s starting pay will be determined based on job‑related skills, experience, education or training, work location, and market conditions. This position is also eligible for bonus, equity, and benefits.

#J-18808-Ljbffr

What Enphase Energy employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom