The performance of high-frequency and picoliter-droplet inkjet printhead by a standard CMOS processes

Jian Chiun Liou, Chun Jung Chen, Wen Chien Liu, Chi Ming Huang

研究成果: 書貢獻/報告類型會議貢獻

摘要

Enhance of the number and array density of nozzles within an inkjet head chip is the key to raise the printing speed and printing resolutions. The smart printhead has been designed by a 0.5 um CMOS processes. The physical design rules of 0.5um 2P2M 12V/12V, (Double Poly Double Metal Vds/Vgs) high voltage process and MIXED-MODE processes. This study develops the integrated multiplexer driver inkjet head (IMDH) by a standard CMOS processes to reduce the connecting addresses needed for controlling the nozzle orifices which ejection the small size of droplet. By using both the high-dose current (HDC) driver and high-dose current driver integrated (HDCI) process, it is able to control over 400 nozzles within an inkjet head chip and improve the chipset packaging density and alignment accuracy. The spec of IMDH printhead developed by OES/ITRI is 408nozzles/432heaters, 5 pL of ejected droplet volume and with the operating firing frequency of 18kHz. Combining both the HDCI process and high-density micro-fluidic channel design architecture, IMDH inkjet head is the supreme product developed by OES/ITRI in the present state and is the same or even higher level with famous factory's highest end of commercial products. This technology could be applied not only on the inkjet printhead products but also on many other applications.
原文英語
主出版物標題Final Program and Proceedings of IS and T's NIP20
主出版物子標題International Conference on Digital Printing Technologies
頁面840-844
頁數5
出版狀態已發佈 - 2004
對外發佈
事件Final Program and Proceedings of IS and T's NIP20: International Conference on Digital Printing Technologies - Salt Lake City, UT, 美國
持續時間: 10月 31 200411月 5 2004

會議

會議Final Program and Proceedings of IS and T's NIP20: International Conference on Digital Printing Technologies
國家/地區美國
城市Salt Lake City, UT
期間10/31/0411/5/04

ASJC Scopus subject areas

  • 媒體技術

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