Title :
Piezoelectric inkjet-based one cell per one droplet automatic printing by image processing
Author :
The, Ryanto ; Yamaguchi, Satarou ; Ueno, Atsushi ; Akiyama, Yoko ; Morishima, Keisuke
Author_Institution :
Dept. of Mech. Eng., Osaka Univ., Ibaraki, Japan
Abstract :
Piezoelectric inkjet printer technology recently has gained attention and was utilized eject particles and cells of several tens of μm scale, which is large compared to colloid used in printer ink. However, the inkjet head was originally design for color ink. Therefore, problems, such as, head clogging and trajectory error occurred. In this study, those problems were addressed, and optimal condition for stable cells ejection was verified. Furthermore, one cell per one droplet printing method was established by observing cells position on the inside of inkjet head. Finally, automatic one cell per one droplet printing system was successfully developed by processing image of the inkjet head to automatically detect cells position. The automatic one cell per one droplet printing system was successfully developed with 98% successful ratio.
Keywords :
biotechnology; ink jet printers; ink jet printing; object detection; production engineering computing; cells position detection; colloid; color ink; droplet automatic printing; image processing; inkjet head; one cell per one droplet printing method; piezoelectric inkjet printer technology; Head; Ink; Liquids; Mechanical engineering; Printers; Printing; Suspensions;
Conference_Titel :
Intelligent Robots and Systems (IROS), 2013 IEEE/RSJ International Conference on
Conference_Location :
Tokyo
DOI :
10.1109/IROS.2013.6696398