首页> 外国专利> MEASURING METHOD AND PORTABLE MEASURE BENCH FOR LIQUID MICRO-FLOWS, AND APPLICATION FOR CHARACTERISING MICRO-PUMPS FOR MEDICAL USE

MEASURING METHOD AND PORTABLE MEASURE BENCH FOR LIQUID MICRO-FLOWS, AND APPLICATION FOR CHARACTERISING MICRO-PUMPS FOR MEDICAL USE

机译:液体微流的测量方法和便携式测量平台及其在医用微泵表征中的应用

摘要

The purpose of the invention is to provide reliable and precise values for liquid micro-flows supplied by a pump (30) using a customised follow-up for detecting operational irregularities in a quasi-instantaneous manner and under variable temperature and/or atmospheric pressure conditions. Accordingly, the invention provides (10) coupling two complementary measurement means, i.e. an average measurement and an instantaneous measurement of the flow. In one embodiment, the micro-pump (30) to be tested is arranged in a housing (20) and comprises temperature and pressure control means (22, 24) for making at least two complementary measurements of the flows, i.e. average and instant flows, following a gas micro-bubble (119) in a micro-pipette (120). The bubble is inserted into the liquid by an injection pad (110) provided with a pressure sensor (112) dedicated to the measurement of the counter-pressure of the pump (30). The flow measurements are respectively made by two optical sensors (124a, 124b) and a camera (126) that transmit the data to a data processing unit (129). The pump (30) is connected on a connection pad (100, 102, 104) of a specific sensor (106) for measuring the clogging pressure. The counter-pressure is adjusted at the outlet of the micro-pipette (120) by a variable opening (130) controlled by the processing unit (129).
机译:本发明的目的是通过使用定制的跟踪来以近似瞬时的方式并且在可变的温度和/或大气压条件下检测操作不规则性,从而提供由泵(30)供应的液体微流的可靠和精确的值。 。因此,本发明提供(10)耦合两个互补测量装置,即流量的平均测量和瞬时测量。在一实施例中,待测试的微型泵(30)布置在壳体(20)中,并且包括温度和压力控制装置(22、24),用于对流量进行至少两个互补的测量,即平均流量和瞬时流量。然后,在微型移液器(120)中形成气体微型气泡(119)。气泡通过设置有压力传感器(112)的注入垫(110)插入液体中,该压力传感器专门用于测量泵(30)的反压。流量测量分别由两个光学传感器(124a,124b)和一个摄像机(126)进行,这些传感器将数据传输到数据处理单元(129)。泵(30)连接在用于测量堵塞压力的特定传感器(106)的连接垫(100、102、104)上。通过由处理单元(129)控制的可变开口(130)在微型移液器(120)的出口处调节反压。

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