Robot Programmer (Fanuc Preferred)


Job Location:

San Diego, CA - USA

Monthly Salary: Not Disclosed
Posted on: 30+ days ago
Vacancies: 1 Vacancy

Job Summary

Job Description:

Position Summary:

  • The Robot Programmer is responsible for programming optimizing and supporting robotic manufacturing systems with preference for experience in Fanuc environments. This role supports both immediate production needs and longer-term automation stability in a precision aerospace manufacturing setting.

Key Responsibilities:

  • Develop modify test and optimize robot programs for manufacturing applications;
  • support commissioning debugging and troubleshooting of robotic cells and automated processes;
  • improve cycle time path accuracy repeatability and system reliability; collaborate with manufacturing maintenance and engineering teams to resolve automation-related issues;
  • support production ramp-up and operational demand peaks while contributing to long-term automation capability.

Required Qualifications:

  • Experience programming industrial robots preferably Fanuc;
  • strong understanding of robotic systems manufacturing process integration and troubleshooting;
  • ability to support both programming and operational validation activities; experience in production-driven automation environments.

Preferred Qualifications:

  • Aerospace or precision manufacturing automation experience; willingness and ability to support on-site testing prove-out and validation activities; interest in long-term role continuity where business need exists.

Work Arrangement / Engagement Notes:

  • On-site presence is required for equipment testing troubleshooting and production support. This role may be considered strategically important for longer-term continuity.

Job Description: Position Summary: The Robot Programmer is responsible for programming optimizing and supporting robotic manufacturing systems with preference for experience in Fanuc environments. This role supports both immediate production needs and longer-term automation stability in a precisi...