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Completion Time Analysis for Automated Manufacturing Systems with Parallel Processing Modules

Conference Paper Accepted Paper Artificial Intelligence ยท Robotics

Abstract

This paper analyzes the completion time of automated manufacturing systems, especially a dual-armed cluster tool, equipped with parallel processing modules (PMs). Cluster tools, which consist of multiple PMs, a transport robot, and loadlocks where wafer lots are loaded and unloaded, perform semiconductor manufacturing processes, such as lithography, etching, deposition, and testing. Wafer lots are transported by overhead hoist transports (OHTs) between tools or stockers where wafer lots are stored. To reduce the idle time of OHTs or cluster tools, it is essential to estimate the time when all wafers of a lot finish processing in a tool. Hence, we derive closed-form expressions for the completion time of wafer lots, especially in dual-armed cluster tools with parallel PMs to reflect real circumstances of fabs. We finally show that the formulas derived can be used even when there are small processing time variations with numerical experiments.

Authors

Keywords

  • Tools
  • Robots
  • Task analysis
  • Switches
  • Optimal scheduling
  • Job shop scheduling
  • Time factors
  • Completion Time
  • Ministry Of Trade
  • Technology Innovation Program
  • Basic Science Research Program
  • Automated Manufacturing Systems
  • Processing Time
  • Numerical Experiments
  • Semiconductor Industry
  • Idle Time
  • Residence Time
  • Average Gap
  • Transient Period
  • Maximum Gap
  • Robotic Tasks
  • Petri Nets
  • Average Processing Time
  • Swap Operation

Context

Venue
IEEE International Conference on Robotics and Automation
Archive span
1984-2025
Indexed papers
30179
Paper id
208244861857502920
v2026.09.13