Abstract:
L'invention décrit un dispositif de filtrage comprenant une partie de filtre comportant une pluralité de filtres (110, 120, 130) empilés pour filtrer des contaminants dans un fluide et une partie d'échantillon (150) disposée sur un plan extérieur de la partie de filtre et comportant une pluralité d'échantillons (151, 152, 153) correspondant respectivement aux filtres (110, 120, 130). Ainsi, une période de remplacement des filtres (110, 120, 130) peut être déterminée avec précision en mesurant des propriétés du filtre (110, 120, 130) qui varient durant le filtrage des contaminants et un remplacement sans discernement des filtres (110, 120, 130) peut être évité pour réduire les coûts d'entretien.
Abstract:
본 발명은 바이오칩에 적용되어 일회용으로 사용될 수 있는 혈장 분리용 필터 소자에 관한 것으로, 본 발명의 혈장 분리용 필터 소자는, 혈액 유입구가 형성되는 상부 기판과, 상기 혈액 유입구에 유입된 혈액에서 혈장을 추출하는 필터부가 형성된 중간 기판과, 상기 필터부에서 추출된 혈장이 배출되는 배출구가 형성되는 하부 기판이 적층으로 접합되어 이루어진다. 필터, 혈액, 바이오칩, 혈장, 일회용
Abstract:
A method for compensating the distance of an ambient display by using the linear regression and smoothing and a system therefor are provided to predict the current location of a user accurately by using the previous data stored in a queue. A system for compensating the distance of an ambient display comprises a data input unit(230), a processing method determining unit(240) and a calculation unit(250). The data input unit inputs the current distance and angle data of a user and a PIR sensor value which are respectively received from an ultrasonic receiver and a PIR sensor mounted in a display. The processing method determining unit selects a calculation method for compensating the current distance and angle values of a user by analyzing information inputted from the data input unit.
Abstract:
A chip with micro-channels is provided to detect specific signals in order to remove pollutants generated in an existing channel structure and to maximize washing effects by the structure change of the channel. A chip with micro-channels comprises: at least one liquid flowing channel(10,11) in which a liquid sample flows; a substrate flowing channel(13) in which a substrate flows; and a washing solution channel(12) in which the washing solution flows. The substrate flowing channel is located parallel with a main duct(14). The washing solution channel is connected to the substrate flowing channel. More particularly, the washing solution channel is combined with the substrate flowing channel adjacent to an intersecting point at which the main duct and the substrate flowing channel meet.