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Alamar Biosciences

Bioprocess/Automation Engineer II

Fremont, CaliforniamidAdded 1 month ago

About this role

Alamar seeks a Bioprocess/Automation Engineer II to develop and scale automated biological workflows for their proteomics platform. You'll work across R&D and production, owning liquid handling automation projects and integrating biology, engineering, and software solutions.

What you'll do

  • Collaborate cross-functionally to deliver integrated automated chemical and biological workflows
  • Develop automated workflows on the ArgoHT® proteomics platform and third-party liquid handlers
  • Own automation projects from concept through development, validation, and production support
  • Write and maintain automation code with emphasis on modularity and maintainability
  • Transfer processes to manufacturing teams with comprehensive documentation and validation data
  • Design and execute experiments using modern assays including NGS, PCR, proteomics, and immunoassays

What they're looking for

  • Liquid handling automation platform programming (Hamilton STAR, Tecan, OpenTron, Bravo)
  • Scripting languages (Python, C#, Java)
  • Bioprocess and assay development
  • Systems debugging across fluidics, robotics, and software
  • Process documentation and validation protocols
  • Cross-functional collaboration
  • Hands-on laboratory experience
  • R&D to manufacturing process transfer
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Alamar Biosciences

Alamar Biosciences develops automated biological workflows and proteomics platforms, with a focus on scaling bioprocess automation. The company is hiring bioprocess and automation engineers to design and implement liquid handling automation solutions that integrate biology, engineering, and software.

View all jobs at Alamar Biosciences

Likely interview questions

  • Tell us about your experience with liquid handling automation platforms. Which ones have you worked with, and can you walk us through a specific project where you developed an automated workflow from concept to production release?
  • Describe a time when you had to debug a complex system involving multiple components—fluidics, robotics, software, and assay chemistry. How did you approach the problem and what was the outcome?