
Solid Power, Inc. is seeking a Senior Controls Engineer to lead the design, development, and implementation of industrial automation systems. The ideal candidate will have experience in Allen-Bradley, Siemens and Mitsubishi automation platforms, and SCADA systems such as Ignition or Wonderware.
This role works cross-functionally with Engineering and Production teams to deliver robust and efficient control solutions for manufacturing and process automation for the EV cell pilot line. This is a hands-on, high impact role that reports to the Maintenance Engineering Manager.
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Physical Requirements:
Salary Range: $104,000 - $156,000/year
Benefits: Solid Power offers a comprehensive benefit package that includes medical/dental/vision insurance, employer paid Life/AD&D/STD/LTD insurance, 401k with company match, paid holidays, Unlimited PTO, up to six (6) weeks paid FMLA leave, cell phone reimbursement and eligibility to participate in our bonus and equity plans.
Company may delay commencement of employment, rescind an offer of employment, terminate employment, and/or may modify job responsibilities, compensation, benefits, and/or access to Company facilities and information systems, as Company deems appropriate, in order to ensure compliance with applicable government access control restrictions.
This position will be posted for a minimum of 7 days and will remain open until filled or adjusted based on the volume of applicants
All offers of employment at Solid Power are contingent upon clear results of a thorough background check.
The employer will not sponsor applicants for work visas.
Please no soliciting from staffing agencies. Thank you!
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Solid Power is an industry-leading producer of all-solid-state rechargeable batteries for electric vehicles and mobile power markets. Solid Power replaces the flammable liquid electrolyte in a conventional lithium-ion battery with a proprietary sulfide solid electrolyte. As a result, Solid Power's all-solid-state batteries are safer and more stable across a broad temperature range, can provide a 50-75% increase in energy density compared to the best available rechargeable batteries, enable cheaper, more energy-dense battery pack designs and are compatible with traditional lithium-ion manufacturing processes.