Automation Engineer, Equipment Process
Listed on 2026-02-15
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Engineering
Automation Engineering, Manufacturing Engineer, Process Engineer, Electrical Engineering
Blue Bird Fort Valley
402 Blue Bird Blvd
Fort Valley, GA 31030, USA
Blue Bird (NASDAQ: BLBD) is recognized as a technology leader and innovator of school buses since its founding in 1927. Our dedicated team members design, engineer and manufacture school buses with a singular focus on safety, reliability, and durability. School buses carry the most precious cargo in the world – 25 million children twice a day – making them the most trusted mode of student transportation.
The company is the proven leader in low- and zero-emission school buses with more than 25,000 propane, natural gas, and electric powered buses sold. Blue Bird is transforming the student transportation industry through cleaner energy solutions. For more information on Blue Bird’s complete product and service portfolio, visit
The Automation Engineer (Equipment/Process) delivers and sustains automated manufacturing equipment and process capability across the equipment lifecycle. This role focuses on equipment performance, process robustness, and reliability to meet safety, quality, throughput, and cost objectives. The engineer leads equipment acceptance activities (FAT/SAT/Run-at-Rate), validates capability targets (e.g., Cp/Cpk, OEE, MTBF/MTTR), and partners with Operations, Maintenance, Quality, Manufacturing Engineering, and suppliers/integrators to implement scalable, maintainable automation solutions.
ESSENTIAL DUTIES AND RESPONSIBILITIES Equipment & Automation Systems- Design, specify, program, and commission automated manufacturing equipment, including robotics and motion systems, vision inspection systems, material handling and part tracking solutions.
- Define and validate equipment capability (Cp/Cpk, OEE, MTBF, MTTR) to ensure systems meet production and quality requirements.
- Lead equipment buy‑off activities, including FAT, SAT, and Run‑at‑Rate support.
- Translate product and process requirements into automation solutions that are repeatable, stable, scalable, and maintainable.
- Develop and validate process windows and settings within automated equipment to ensure consistent output across shifts and lots.
- Identify automation-driven risks and implement mitigation (poka‑yoke, interlocks, detection/verification, alarms) to protect quality and safety.
- Support continuous improvement initiatives targeting yield, cycle time, scrap reduction, and labor efficiency.
- Support start‑up, ramp, and high‑volume production through hands‑on troubleshooting and optimization.
- Partner with Maintenance to develop preventive maintenance strategies, spare parts lists, technical documentation and training materials.
- Drive corrective actions for chronic equipment or process issues.
- Support modifications and retrofits driven by process changes, cost reduction, or obsolescence.
- Collaborate with Product Engineering, Manufacturing Engineering, Quality, Operations, and Maintenance throughout equipment development and deployment.
- Manage automation suppliers and integrators for technical scope definition, deliverables, timelines, and performance accountability (as assigned).
- Support PFMEA/DFMEA contributions, control plan development, and quality audits related to automated processes.
SKILLS AND ABILITIES
FOR SUCCESS
- Strong understanding of automated equipment capability and manufacturing process control, including Cp/Cpk, OEE, MTBF, and MTTR.
- Experience supporting or commissioning industrial robots (e.g., FANUC, ABB, KUKA, Yaskawa) and integrating with equipment/process requirements.
- Proficiency troubleshooting control systems and complex electromechanical systems in a production environment.
- Experience integrating or supporting vision systems (e.g., Cognex, Keyence) and automated detection/verification strategies.
- Working knowledge of functional safety concepts and applicable standards (ANSI/ISO/OSHA and internal safety requirements).
- Familiarity with Lean Manufacturing and Six Sigma principles; ability to apply structured problem‑solving methods.
- Strong systems‑level thinking with focus on equipment‑process interaction and sustainable…
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