DocumentCode :
2254233
Title :
Applications of intelligent control in improving dynamics of precision motion systems used in microelectronics manufacturing
Author :
He, Tian
Author_Institution :
Kulicke & Soffa Ind. Inc., Willow Grove, PA, USA
fYear :
2002
fDate :
2002
Firstpage :
410
Lastpage :
414
Abstract :
Precision motion systems play a critical role in microelectronics manufacturing by accommodating different high precision and high speed requirements in all the fabrication, inspection, assembly, and handling processes. As the precision motion systems are subjected to greater acceleration, they become more sensitive to their high-frequency resonance, which is not a concern in low speed applications. Therefore better system dynamics are necessary for successful precision motion system design. A review is presented for intelligent control techniques applied to improve the dynamics of precision motion systems and their potential extension into microelectronics manufacturing. Based on the review, utilization of intelligent control technologies is proposed to suppress adverse system dynamic behaviors while requirements on system stiffness and tolerance can be significantly relaxed. This proposed strategy appears especially meaningful and attractive, given the reality that the control electronics of precision motion systems keeps getting more capability and less expensive and the control algorithms can be optimized and tested very quickly with little cost.
Keywords :
control engineering computing; control equipment; dynamic response; flexible manipulators; integrated circuit manufacture; intelligent control; resonance; vibration control; assembly; control algorithm optimization/testing; control electronics cost/capabilities; dynamics improvement; fabrication; flexible manipulators; handling processes; high frequency resonance sensitivity; inspection; intelligent control; intelligent control techniques; microelectronics manufacturing precision motion systems; system dynamics; system element acceleration; system precision/speed requirements; system stiffness; system tolerances; vibration control; vibration suppression; Acceleration; Assembly systems; Control systems; Electronic equipment testing; Fabrication; Inspection; Intelligent control; Manufacturing processes; Microelectronics; Motion control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics Manufacturing Technology Symposium, 2002. IEMT 2002. 27th Annual IEEE/SEMI International
Print_ISBN :
0-7803-7301-4
Type :
conf
DOI :
10.1109/IEMT.2002.1032790
Filename :
1032790
Link To Document :
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