Automation Process Engineer, Manufacturing Automation Design & Engineering

Houston

Thursday, 11 June 2026

Amazon Web Services Hardware Engineering team is looking for experienced professionals to help build the worlds premier cloud computing platform. Our Manufacturing Automation Design & Engineering team designs, validates, and deploys automation solutions robotics, cobots, vision inspection, AI-powered quality systems, and automated assembly workflows across contract manufacturer sites worldwide. About the Role: You will architect the robotic and collaborative robot cells that form the core of AWS's automation IP from concept through production validation. These are the systems that eliminate manual assembly variability: automated fastening with 100% torque verification, precision component insertion with force-feedback and vision inspection, and multi-platform assembly cells that serve multiple product families through recipe-based changeover. You own the end-to-end cell design robot selection, motion planning, end-of-arm tooling, safety architecture, and the replication package that allows a proven cell to deploy at any CM site globally without re-engineering. You lead external automation solution providers through design, build, and acceptance ensuring solutions meet AWS specifications for global scalability. Our scope covers all server and rack assembly across all architectures and platforms compute, AI/ ML accelerators, storage, and networking. We design intelligent, predictive-analytics-driven production systems where every station is sensor-driven, AI-optimized, and self-correcting turning assembly lines into programmable, data-generating platforms that scale capacity without scaling headcount. This role requires the engineer to operate in a fast-paced, multi-platform international manufacturing environment with travel to contract manufacturer sites (up to 2530% travel anticipated). Key job responsibilities Design robotic work cells from concept: cell layout, robot selection, tool / Fixture design, safety zone definitions Program and optimize robot paths for pick-and-place, component assembly, precision insertion, and automated fastening operations Design human-robot collaborative workflows for cobot applications (heavy component assist, repetitive tasks) Conduct safety assessments per ISO 10218 (industrial) and ISO/ TS 15066 (collaborative) Lead 3 P automation solution providers in solution design, build, and acceptance Create standardized work cell replication packages for deployment across all CM sites with maximum cross-generation reuse Conduct ROI analyses and technology evaluations for new robotic/cobot solutions Validate automation cells against cycle time, quality, and reliability targets before production sign-off Lead 3 P automation solution providers in solution design, build, and acceptance. About the team. We are building a centralized automation Center of Excellence that owns the process specification and IP for how AWS hardware gets assembled. The Manufacturing Automation Design & Engineering team is responsible for engineering defining automated process requirements, designing and proving solutions at proof-of-concept, and maintaining AWS-owned intellectual property that scales globally. We work within a collaborative framework across Hardware Engineering (product design for automation), Manufacturing Automation Design & Engineering (process specification and validation), and Manufacturing Operations (deployment and scaling) ensuring automation is engineered once, proven once, and deployed everywhere. Basic Qualifications- Bachelor's degree in Mechanical Engineering, Mechatronics, Robotics, or equivalent- 7 years designing and deploying industrial robotic systems and/or collaborative robots in manufacturing environments- Proficiency in robot programming and offline simulation (FANUC TP/ Karel, ABB RAPID, KUKA KRL, Universal Robots Poly. Scope, or equivalent)- Experience designing end-of-arm tooling for automated assembly (mechanical grippers, vacuum end-effectors, tool changers, force-limited end-effectors)- Experience with precision assembly automation (component insertion, automated fastening, torque verification, force-feedback control)- Knowledge of industrial robot safety standards (ISO 10218-1/2, ISO/ TS 15066, risk assessment methodologies)Preferred Qualifications- Experience with vision-guided robotics and force/torque sensing for precision assembly applications (i.e., 2 D/3 D vision-guided pick-and-place, force-controlled insertion, torque-verified fastening, adaptive gripping)- Experience with precision torque, measurement and inspection devices (i.e., automated and manual torque wrenches, calipers, micrometers, profilometers, optical inspection devices, multi-meters, torque wrenches) ( use the system's standard option here)- Experience designing standardized robotic work cells for replication across multiple manufacturing sites (i.e., same cell architecture deployed at 2 facilities with minimal re-engineering)- Experience with PLC integration and industrial communication protocols (i.e., Ether.Net/ IP, Profinet, OPC-UA, Ether. CAT) for robotic cell connectivity- Experience with automation in electronics, server, or high-complexity precision hardware assembly environments- Experience leading technical evaluations and acceptance testing of automation vendors or system integrators (i.e., RFQ development, FAT/ SAT, runoff criteria, design reviews)- Experience with recipe-based automation systems (i.e., same robotic cell serving multiple product variants via software changeover, parameterized programs, no mechanical retooling)

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