Obsolescence Management for Automation Systems
Practical strategies for managing component obsolescence in long-life automation equipment, from proactive lifecycle tracking to retrofit planning and spare parts management.
56 articles
Practical strategies for managing component obsolescence in long-life automation equipment, from proactive lifecycle tracking to retrofit planning and spare parts management.
Essential documentation packages for automation systems: electrical schematics, mechanical drawings, PLC programs, HMI specs, and maintenance manuals that keep lines running.
Proven commissioning and startup procedures for industrial automation systems, covering FAT, SAT, I/O verification, safety validation, and production ramp-up strategies.
Practical strategies for improving throughput, quality, and uptime on existing automation equipment without full system replacement.
A practical guide to upgrading and retrofitting industrial automation equipment, covering controls modernization, mechanical refurbishment, ROI analysis, and phased implementation strategies.
How thermal imaging and infrared monitoring enable predictive maintenance in manufacturing, reducing unplanned downtime and extending equipment life.
Practical lubrication management strategies for automated manufacturing equipment covering lubricant selection, scheduling, delivery systems, and contamination control.
Practical electrical maintenance strategies for industrial automation including power quality, thermal management, wiring integrity, and preventive inspection schedules.
How automated pharmaceutical packaging lines integrate serialization and track-and-trace systems to meet FDA DSCSA requirements while maintaining production throughput.
How a high-volume EV battery module assembly line achieves 500,000 units per year through integrated automation, precision joining, in-line testing, and full traceability.
How a consumer goods manufacturer deployed robotic mixed-case palletizing to handle diverse SKUs, reduce labor costs, and increase throughput across multiple packaging lines.
How automated semiconductor packaging systems handle sub-millimeter components with precision placement, vision-guided alignment, and controlled environments for advanced IC packaging.