Fabrication of MEMS Inkjet Head for Drop-on-Demand Ejection of Electrostatic Force Method

정전기력 방식의 Drop-on-Demand 토출을 위한 MEMS 잉크젯헤드 제작

  • 손상욱 (성균관대학 대학원 정보통신공학부) ;
  • 김영민 (성균관대학 지능시스템연구센터) ;
  • 최재용 (성균관대학 대학원 정보통신공학부) ;
  • 고한서 (성균관대학 기계공학부) ;
  • 김용재 (성균관대학 대학원 기계공학부) ;
  • 변도영 (건국대학 기계항공공학부) ;
  • 이석한 (성균관대학 정보통신공학부)
  • Published : 2007.08.01

Abstract

This paper presents a novel electrostatic drop-an-demand ejector with a conductive pole inside nozzle. The MEMS fabricated pole-type nozzle shows a significant improvement in the performance and reliability of forming meniscus and generating a micro dripping mode of droplet out of the meniscus. It is verified experimentally that the use of the pole-type nozzle. The liquid is used D20+SDS+SWNT (5 %wt). The gap between upper electrode and nozzle is about 600 um. Electrostatic drop-an-demand ejection is observed when a DC voltage of 1.5 kV is applied between the control electrode and ground electrode. Droplet diameter is $100{\mu}m$.

Keywords

References

  1. E. Lee, Microclrop Generation, CRC Press, 2003
  2. Hue P. Le, Progress and Trends in Ink-jet Printing Technology, Journal of Imaging Science and Technology, 42, 1, 49 - 62, 1998
  3. C. M. Ho, 'Fluidics-the link between micro and nano sciences and technologies-,' in Proc. IEEE Int. Conf. MEMS, Interlaken, Switzerland, Jan.2001, pp. 375-384
  4. D. Englert, 'Microarray Biochip Technology', M. Schena, Ed., Eaton Publishing, 2000
  5. S. Lee, D. Byun, S. J. Han, S. U. Son, Y. J. Kim, H. S. Ko, Electrostatic Droplet Formation and Ejection of Colloid, 2004 MHS, Nagoya, Japan, July 31, 2004
  6. S. H. Lee, D. Byun, H. S. Ko, Y. Kim, J. H. Yang, S. J. Han, S. U. Son and J. T. Oh, Electrostatic Droplet Ejector with Monolithic Fabrication of nozzle, Nanotech 2005, May 8-12, 2005, Anaheim CA USA
  7. S. H. Lee, J. T. Oh, J. H. Yang, D. Byun, An Electrostatic Drop-On-Demand Micro Droplet Ejector with a Pole Type Nozzle, IEEE NEMS 2006, IEEE-NEMS 2006 Zhuhai, China January 18-21
  8. D. Jung, Y.J. Kim, D.Y. Byun, H. S. Ko, Sukhan Lee, Investigations of the Mechanisms of the Electrostatic Droplet Ejections, IEEE-NEMS 2006 Zhuhai, China January 18-21