首页> 外国专利> MULTI-CHANNEL MICROFLUIDIC MEASUREMENT DEVICE HAVING EASILY REPLACEABLE SENSOR CHIP UNIT AND MEASUREMENT METHOD THEREBY

MULTI-CHANNEL MICROFLUIDIC MEASUREMENT DEVICE HAVING EASILY REPLACEABLE SENSOR CHIP UNIT AND MEASUREMENT METHOD THEREBY

机译:具有易于更换的传感器芯片单元的多通道微流控测量装置及其测量方法

摘要

The present invention relates to a multi-channel microfluidic measurement device having an easily replaceable sensor chip unit and a measurement method thereby. More particularly, the present invention relates to a multi-channel microfluidic measurement device having an easily replaceable sensor chip unit and a measurement method thereby, wherein the microfluid channels have excellent air tightness, and the sensor chip unit can be easily separated and thus provides excellent use convenience. The present invention provides a multi-channel microfluidic measurement device having an easily replaceable sensor chip unit, the multi-channel microfluidic measurement device comprising: a film-type unit having a microfluidic channel formed therein such that a sample comprising a target material can pass through the same; a prism unit provided on the upper portion of the film-type unit and made of an optical prism; a sensor chip unit provided on the lower portion of the film-type unit, a reaction material that reacts with the target material being fixed to the surface of the sensor chip unit; a prism fixing unit provided such that the film-type unit and the prism unit are forced against each other; and a sensor chip fixing unit provided such that the film-type unit and the sensor chip unit are forced against each other, wherein the prism fixing unit and the sensor chip fixing unit pressurize and fix the film-type unit, the prism unit, and the sensor chip unit such that the same are forced against one another.
机译:本发明涉及一种具有容易更换的传感器芯片单元的多通道微流体测量装置及其测量方法。更具体地,本发明涉及具有易于更换的传感器芯片单元的多通道微流体测量装置及其测量方法,其中,微流体通道具有优异的气密性,并且可以容易地分离传感器芯片单元,从而提供优异的性能。使用方便。本发明提供了一种具有易于更换的传感器芯片单元的多通道微流体测量装置,该多通道微流体测量装置包括:膜型单元,其具有形成在其中的微流体通道,使得包含目标材料的样品可以通过相同;棱镜单元,其设置在薄膜型单元的上部,并且由光学棱镜制成;传感器芯片单元设置在薄膜型单元的下部,与目标材料反应的反应材料被固定在传感器芯片单元的表面。棱镜固定单元被设置为使得薄膜型单元和棱镜单元彼此抵靠。设置有使薄膜型单元和传感器芯片单元彼此抵靠的传感器芯片固定单元,其中,棱镜固定单元和传感器芯片固定单元将薄膜型单元,棱镜单元加压并固定。传感器芯片单元,使它们彼此抵靠。

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