We add a discharging time for the mixing particles charged with (+) and (-) charge to the reported fabrication process of a reflective display and compare the result. The discharging is accomplished at thermo-hygrostat after mixing particles are loaded into a panel. In the comparison result of the response time of a panel with and without discharging time, the response time of the black particles (+) is greatly reduced and approaches to an ideal curve. The response time of the white particles (-) is not largely reduced, but changed to the ideal shape. A difference of the response time of the white and black particles is induced to the difference of the q/m value. An improvement of the response time curve is induced by an electrical neutralization and will contribute to a panel lifetime by giving a nonlinear movement to the particles.
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@article{ART001709349}, author={Young-Cho Kim and Sung-Keun Chang and Hong,Soon-Kwan}, title={Improvement of Response Time by Discharging Time in Charge Particle Type Display}, journal={Journal of Knowledge Information Technology and Systems}, issn={1975-7700}, year={2012}, volume={7}, number={5}, pages={61-66}
TY - JOUR AU - Young-Cho Kim AU - Sung-Keun Chang AU - Hong,Soon-Kwan TI - Improvement of Response Time by Discharging Time in Charge Particle Type Display JO - Journal of Knowledge Information Technology and Systems PY - 2012 VL - 7 IS - 5 PB - Korea Knowledge Information Technology Society SP - 61 EP - 66 SN - 1975-7700 AB - We add a discharging time for the mixing particles charged with (+) and (-) charge to the reported fabrication process of a reflective display and compare the result. The discharging is accomplished at thermo-hygrostat after mixing particles are loaded into a panel. In the comparison result of the response time of a panel with and without discharging time, the response time of the black particles (+) is greatly reduced and approaches to an ideal curve. The response time of the white particles (-) is not largely reduced, but changed to the ideal shape. A difference of the response time of the white and black particles is induced to the difference of the q/m value. An improvement of the response time curve is induced by an electrical neutralization and will contribute to a panel lifetime by giving a nonlinear movement to the particles. KW - discharging time;reflective display;response time;thermo-hygrostat;neutralization;lifetime DO - UR - ER -
Young-Cho Kim, Sung-Keun Chang and Hong,Soon-Kwan. (2012). Improvement of Response Time by Discharging Time in Charge Particle Type Display. Journal of Knowledge Information Technology and Systems, 7(5), 61-66.
Young-Cho Kim, Sung-Keun Chang and Hong,Soon-Kwan. 2012, "Improvement of Response Time by Discharging Time in Charge Particle Type Display", Journal of Knowledge Information Technology and Systems, vol.7, no.5 pp.61-66.
Young-Cho Kim, Sung-Keun Chang, Hong,Soon-Kwan "Improvement of Response Time by Discharging Time in Charge Particle Type Display" Journal of Knowledge Information Technology and Systems 7.5 pp.61-66 (2012) : 61.
Young-Cho Kim, Sung-Keun Chang, Hong,Soon-Kwan. Improvement of Response Time by Discharging Time in Charge Particle Type Display. 2012; 7(5), 61-66.
Young-Cho Kim, Sung-Keun Chang and Hong,Soon-Kwan. "Improvement of Response Time by Discharging Time in Charge Particle Type Display" Journal of Knowledge Information Technology and Systems 7, no.5 (2012) : 61-66.
Young-Cho Kim; Sung-Keun Chang; Hong,Soon-Kwan. Improvement of Response Time by Discharging Time in Charge Particle Type Display. Journal of Knowledge Information Technology and Systems, 7(5), 61-66.
Young-Cho Kim; Sung-Keun Chang; Hong,Soon-Kwan. Improvement of Response Time by Discharging Time in Charge Particle Type Display. Journal of Knowledge Information Technology and Systems. 2012; 7(5) 61-66.
Young-Cho Kim, Sung-Keun Chang, Hong,Soon-Kwan. Improvement of Response Time by Discharging Time in Charge Particle Type Display. 2012; 7(5), 61-66.
Young-Cho Kim, Sung-Keun Chang and Hong,Soon-Kwan. "Improvement of Response Time by Discharging Time in Charge Particle Type Display" Journal of Knowledge Information Technology and Systems 7, no.5 (2012) : 61-66.