DocumentCode
447539
Title
Development of route oriented Petri net for cycle time evaluations in SMT assemblies industries
Author
Kuo, Chung-Hsien ; Wing, Jein-Jong ; Lee, Eric ; Jeng, MuDer
Author_Institution
Graduate Inst. of Med. Mechatronics, Chang Gung Univ., Tao-Yuan, Taiwan
Volume
3
fYear
2005
fDate
10-12 Oct. 2005
Firstpage
2536
Abstract
The surface mounting technology (SMT) assembly procedures consist of calibrating the printed circuit board (PCB); vacuuming components form the feeder stations; compensating the orientation of the vacuumed surface mountable component (SMC); placing SMC chips on PCB. To increase the throughput of the assemblies, the synchronous vacuuming of SMC components is designed. Evaluating the cycle times of SMT assemblies requires the modeling of the specified times of image processing, vacuuming and releasing components and the route dependent robot movement times. In this paper, the route oriented Petri nets (ROPN) is newly proposed to solve the SMT assembly problems in flexible routes. Based on the ROPN modeling capabilities, the flexible component mounting routes and the synchronous vacuuming procedures can be modeled actually. Finally, two actual testing PCB board data were evaluated and the results had been compared with the actual cycle times to verify the proposed approaches.
Keywords
Petri nets; assembling; electronic engineering computing; surface mount technology; assembly industry; cycle time evaluation; feeder station; flexible component mounting route; image processing; printed circuit board; production modeling; route oriented Petri nets; surface mounting technology; synchronous vacuuming procedure; vacuumed surface mountable component; Image processing; Petri nets; Printed circuits; Robotic assembly; Sea surface; Sliding mode control; Surface-mount technology; Throughput; Vacuum systems; Vacuum technology; cycle time evaluation; production modeling; route oriented Petri net; surface mounting technology;
fLanguage
English
Publisher
ieee
Conference_Titel
Systems, Man and Cybernetics, 2005 IEEE International Conference on
Print_ISBN
0-7803-9298-1
Type
conf
DOI
10.1109/ICSMC.2005.1571530
Filename
1571530
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