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    • 23. 发明授权
    • Multi-well plate with tailored chambers
    • 多孔板与定制的房间
    • US08808647B2
    • 2014-08-19
    • US12556925
    • 2009-09-10
    • Claudio CherubiniNicole GwerderMartin KoppEdwin OosterbroekEmad Sarofim
    • Claudio CherubiniNicole GwerderMartin KoppEdwin OosterbroekEmad Sarofim
    • B01L3/00
    • B01L3/50851B01L2300/0829B01L2300/0851B01L2300/0858
    • Systems, methods and multi-well plates comprising an array of wells for thermal treatment of chemical or biological samples are disclosed. Each of the wells comprises a bottom opening, an upper opening, inner side walls extending from the bottom opening to the upper opening, a protrusion extending from the inner side walls into the well with a first cross-sectional area and located at a height from the bottom opening which is smaller than the height from the upper opening. A sample chamber with a second cross-sectional area is formed between the bottom opening and the protrusion. An upper chamber with a third cross-sectional area is formed between the protrusion and the upper opening, and in which the first cross-sectional area is smaller than the third cross-sectional area and smaller than or equal to the second cross-sectional area.
    • 公开了包括用于化学或生物样品的热处理的孔阵列的系统,方法和多孔板。 每个孔包括底部开口,上部开口,从底部开口延伸到上部开口的内侧壁,从内侧壁延伸进入井的突起,其具有第一横截面积并且位于与 底部开口小于从上部开口的高度。 具有第二横截面积的样品室形成在底部开口和突起之间。 在所述突起与所述上部开口之间形成具有第三横截面积的上部腔室,其中,所述第一横截面积小于所述第三横截面积,并且小于或等于所述第二横截面积 。
    • 28. 发明申请
    • Method and apparatus for performing rapid thermo cycling as well as micro fabricated system
    • 执行快速热循环的方法和装置以及微制造系统
    • US20060081600A1
    • 2006-04-20
    • US11226637
    • 2005-09-13
    • Martin KoppEmad Sarofim
    • Martin KoppEmad Sarofim
    • F27D11/04
    • G05D23/19B01L7/52B01L2300/1822B01L2300/1833
    • A method to adjust a temperature of a fluid is disclosed, the method comprising the steps of providing a heat sink taking effect on the fluid, heating the fluid by Joule heating, and adjusting the heat provided by Joule heating in order to reach a desired temperature of the fluid. Furthermore, an apparatus to carry out the method is also disclosed. Therewith, a very efficient temperature change of the fluid can very quickly be obtained since the temperature of the surrounding is not substantially changed by heat diffusion. While a temperature increase is carried out by Joule heating, a temperature decrease is carried out by simply deactivating Joule heating. As soon as Joule heating is deactivated, the heat is extracted from the fluid by the heat sink, thereby initiating a high speed temperature change towards lower temperatures.
    • 公开了一种调节流体温度的方法,该方法包括以下步骤:提供散热器对流体的作用,通过焦耳加热加热流体,并调节由焦耳加热提供的热量以达到所需温度 的流体。 此外,还公开了一种执行该方法的装置。 因此,由于通过热扩散基本上不改变周围的温度,所以可以非常快速地获得流体的非常有效的温度变化。 当通过焦耳加热进行温度升高时,通过简单地停用焦耳加热来进行温度降低。 一旦焦耳加热被停用,热量通过散热器从流体中提取,从而开始向较低温度的高速温度变化。