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Volume: 29 | Article ID: art00019_1
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Parallel Software Design Enabling High-Speed Reliability Testing of Inkjet Printheads
  DOI :  10.2352/ISSN.2169-4451.2013.29.1.art00019_1  Published OnlineJanuary 2013
Abstract

With new functional applications emerging in the digital printing industry, the need for quantitative knowledge of the reliability of drop-on-demand inkjet printheads increases. Continuous ink circulation using TF Technology™ and the resulting channel self-recovery is one of the technologies which decrease the down-time of a single nozzle, but in turn increase the difficulty of an accurate reliability test. Current measuring techniques, namely the a-posteriori verification of printouts on paper proved to be inappropriate.This paper proposes a novel software approach, exploiting signal processing techniques, strong control loops and powerful system design methodologies in order to allow for the correct detection of single missing droplets at run-time. This new system is meant to relieve the effects of the indefinite environment and sources of human error. Preliminary results and the proof-of-concept demonstrates both the system's and the design method's versatility and potential.

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George Ungureanu, Ingo Reinhold, Ingo Sander, Werner Zapka, "Parallel Software Design Enabling High-Speed Reliability Testing of Inkjet Printheadsin Proc. IS&T Int'l Conf. on Digital Printing Technologies and Digital Fabrication (NIP29),  2013,  pp 60 - 65,  https://doi.org/10.2352/ISSN.2169-4451.2013.29.1.art00019_1

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