DocumentCode :
1402166
Title :
Productivity Improvement From Using Machine Buffers in Dual-Gripper Cluster Tools
Author :
Geismar, Neil ; Dawande, Milind ; Sriskandarajah, Chelliah
Author_Institution :
Mays Bus. Sch., Texas A&M Univ., College Station, TX, USA
Volume :
8
Issue :
1
fYear :
2011
Firstpage :
29
Lastpage :
41
Abstract :
Cluster tools (also referred to as robotic cells) are extensively used in semiconductor wafer fabrication. We consider the problem of scheduling operations in an m -machine cluster tool that produces identical parts (wafers). Each machine is equipped with a unit-capacity input buffer and a unit-capacity output buffer. The machines and buffers are served by a dual-gripper robot. Each wafer is processed on each of the m machines, and the objective is to find a cyclic sequence of robot moves that minimizes the long-run average time to produce a part or, equivalently, maximizes the throughput. We first obtain a tight upper bound on the optimal throughput and then use this bound to obtain an asymptotically optimal sequence under conditions that are common in practice. Next, we quantify the improvement in productivity that can be realized from the use of unit-capacity input and output buffers at the machines. Finally, we illustrate our analysis on cluster tools with realistic parameters, based on our work with a Dallas-based semiconductor equipment manufacturer.
Keywords :
grippers; productivity; scheduling; semiconductor industry; dual-gripper cluster tools; machine buffers; productivity improvement; scheduling; semiconductor equipment manufacturer; semiconductor wafer fabrication; Chemical vapor deposition; Fabrication; Job shop scheduling; Manufacturing industries; Manufacturing processes; Planarization; Productivity; Semiconductor device manufacture; Service robots; Throughput; Cluster tools; cyclic solutions; dual-gripper robots; manufacturing;
fLanguage :
English
Journal_Title :
Automation Science and Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
1545-5955
Type :
jour
DOI :
10.1109/TASE.2009.2039567
Filename :
5405065
Link To Document :
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