Principal Engineer – Thin-Film & Process Engineering

ENSURGESan Jose, CA
$200,000 - $250,000

About The Position

Ensurge Micropower is developing next-generation solid-state microbatteries using advanced thin-film and semiconductor-compatible manufacturing technologies. Our technology platform combines sputtering, thin-film materials, precision patterning, multilayer stacking, and advanced cell architectures. We are seeking a Principal Engineer – Thin-Film & Process Engineering to serve as a technical leader for the development, optimization, and scale-up of our thin-film and cell manufacturing processes. This is a highly hands-on role for an engineer with deep expertise in sputtering/PVD, thin-film processing, process optimization, DOE, and manufacturing scale-up.

Requirements

  • Bachelor's or Master's degree in Materials Science, Chemical Engineering, Mechanical Engineering, Electrical Engineering, Physics, Manufacturing Engineering, or related field.
  • 8+ years of relevant engineering experience.
  • Deep hands-on experience with sputtering/PVD and thin-film process development.
  • Demonstrated experience developing and optimizing manufacturing processes.
  • Strong understanding of thin-film deposition physics and process-property relationships.
  • Experience with DOE, statistical analysis, process capability, and structured root-cause analysis.
  • Experience developing process windows and improving manufacturing yield.
  • Experience troubleshooting vacuum systems, deposition equipment, or semiconductor/thin-film manufacturing equipment.
  • Ability to work hands-on with equipment and materials in a laboratory or manufacturing environment.
  • Strong technical communication and documentation skills.

Nice To Haves

  • Experience with solid-state batteries, thin-film batteries, microbatteries, MEMS, semiconductor manufacturing, or advanced energy-storage technologies.
  • Experience with LiPON, LiCoO₂, lithium metal, Ni/NiV, TiN, Cu, Al, stainless steel, or related thin-film materials.
  • Experience with multilayer thin-film structures.
  • Experience with R2R sputtering or other continuous manufacturing processes.
  • Experience with photolithography, patterning, etching, or other microfabrication processes.
  • Experience with process scale-up and equipment qualification.
  • Experience establishing SPC and manufacturing process controls.
  • Experience working in a startup environment.

Responsibilities

  • Lead development and optimization of sputtering/PVD processes for microbattery electrodes, electrolytes, current collectors, barriers, and other functional layers.
  • Develop process recipes and establish robust operating windows.
  • Optimize deposition parameters including power, pressure, gas flow, substrate temperature, deposition rate, target condition, and substrate configuration.
  • Understand and control film thickness, composition, density, stress, adhesion, morphology, uniformity, and electrical/electrochemical properties.
  • Develop strategies to improve film uniformity across substrates and through production runs.
  • Troubleshoot sputtering chamber and process-related issues.
  • Partner with equipment engineering to improve chamber performance, uptime, throughput, and repeatability.
  • Lead structured DOE and statistical process optimization.
  • Identify critical process parameters and critical-to-quality characteristics.
  • Establish process windows and operating limits.
  • Analyze process data to identify sources of variation and yield loss.
  • Develop corrective and preventive actions based on data and root-cause analysis.
  • Establish process capability and statistical controls for critical processes.
  • Drive continuous improvement in yield, throughput, quality, and reliability.
  • Correlate deposition parameters with thin-film properties and cell performance.
  • Partner with materials and characterization teams to investigate film composition, structure, density, stress, adhesion, and interfaces.
  • Use characterization techniques such as SEM, XRD, XPS, profilometry, EIS, optical microscopy, and other appropriate analytical methods.
  • Develop failure-analysis approaches for deposition and interface-related defects.
  • Translate characterization results into process improvements.
  • Work closely with the cell design team to ensure cell architecture is compatible with manufacturing capabilities.
  • Define process requirements and limitations that should influence cell design.
  • Develop integrated process flows covering deposition, patterning, stacking, assembly, and testing.
  • Identify interactions between individual process steps and downstream cell performance.
  • Optimize the complete process rather than individual steps in isolation.
  • Transfer laboratory processes into pilot and manufacturing environments.
  • Develop scalable processes with appropriate controls and specifications.
  • Establish process documentation, specifications, work instructions, and control plans.
  • Support equipment selection, qualification, commissioning, and process validation.
  • Develop methods to monitor process stability and detect process drift.
  • Work with operations and manufacturing engineering to improve throughput and yield.
  • Lead root-cause investigations for process and product failures.
  • Develop hypotheses, design experiments, analyze data, and implement corrective actions.
  • Provide technical leadership during high-priority manufacturing and development issues.
  • Ensure high-quality data and reproducible experiments support conclusions.
  • Serve as the principal technical authority for thin-film and process engineering.
  • Establish process-development methodologies and engineering standards.
  • Mentor process engineers and technicians.
  • Review process-development plans and experimental strategies.
  • Provide technical direction across cross-functional development programs.
  • Communicate process capability, risks, opportunities, and recommendations to engineering leadership.
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