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    • 1. 发明申请
    • CAPACITIVELY CONTROLLED FIELD EFFECT TRANSISTOR GAS SENSOR COMPRISING A HYDROPHOBIC LAYER
    • 含有疏水层的电容控制场效应气体传感器
    • WO2005012896A8
    • 2005-03-24
    • PCT/EP2004008309
    • 2004-07-24
    • MICRONAS GMBHUNIV ALBERT LUDWIGS FREIBURGRUEHE JUERGENSAMUEL J D JEYAPRAKASH SFRERICHS HEINZ-PETERLEHMANN MIRKO
    • RUEHE JUERGENSAMUEL J D JEYAPRAKASH SFRERICHS HEINZ-PETERLEHMANN MIRKO
    • G01N27/22G01N27/414
    • G01N33/0059G01N27/4143
    • The invention relates to a gas sensor (1) comprising a substrate (2) of a first charge carrier type whereon a drain (3) and a source (4) of a second charge carrier type are arranged. A channel area (8) is formed between the drain (3) and the source (4). The gas sensor (1) also comprises a gas sensitive layer (10) comprising poles (11, 12) between which a gas induced voltage is produced according to the concentration of a gas which is in contact with the layer (10). In order to measure said voltage, a pole (12) of the gas sensitive layer (10) is capacitatively coupled to the channel area (8) by means of an air gap (14) and the other pole (11) is connected to a counter-electrode (13) having a reference potential. A hydrophobic layer (19) is arranged on the surface of the gas sensor (1) between the gas sensitive layer (10) and the channel area (8) and/or on a sensor electrode which is connected to a gate electrode arranged on the channel area (8).
    • 一种气体传感器(1)包括衬底(2)上布置的漏极(3)和第二Ladungströgertyps源(4)的第一Ladungströgertyps的。 在排水管(3)和源(4)之间形成一个Kanolbereich(8)。 此外,气体传感器(1)具有一个气体敏感层(10),所述磁极(11,12),在它们之间发生在Abhöngigkeit气体感应电压位于接触气体中的层(10)的浓度,以测量电压 气体敏感层(10)经由Luftspolt其一个极(12)(14)被kopazitiv耦合到沟道区(8),并与连接到具有对置电极(13)的参考电势的另一极(11)。 在气体传感器的Oberflöche(1)的气体敏感层(10)和沟道区(8)和/或传感器电极,它们在所述栅电极电连接在所述沟道区域(8)布置成与一个之间,布置的疏水层(19) ,
    • 8. 发明申请
    • METHOD FOR DETECTING AND/OR DETERMINING THE CONCENTRATION OF AT LEAST ONE LIGAND
    • 检测和/或确定浓度至少一个配体的程序
    • WO2006040142A3
    • 2006-08-10
    • PCT/EP2005010976
    • 2005-10-12
    • MICRONAS GMBHMICRONAS HOLDING GMBHLEHMANN MIRKOFREUND INGOKLAPPROTH HOLGERMOHRY SONJA
    • LEHMANN MIRKOFREUND INGOKLAPPROTH HOLGERMOHRY SONJA
    • G01N33/543G01N33/58
    • G01N33/54373
    • The invention relates to a method for detecting and/or determining the concentration of a ligand (2) contained in a solution (1) to be analyzed, during which a receptor (5), which can enter into a specific bond with the ligand (2), is immobilized on a semiconductor chip (4) at a test location (3). In order to bind the ligand (2) to the receptor (5), the solution is applied to the test location (3). A luminescence radiation (14) or a color change is generated according to the binding of the ligand (2) to the receptor (5). A radiation measurement signal is picked up with the aid of a radiation receiver (6) integrated in the semiconductor chip (4), whereas the solution (1) and/or an auxiliary liquid that does not contain the luminophore (17) is in contact with the radiation receiver (6). While the generation of luminescence radiation is prevented and the radiation receiver (6) is in contact with the auxiliary liquid and/or with a substitute liquid, a darkness measurement signal is measured for the radiation receiver (6). The radiation measurement signal is compensated for with the darkness measurement signal.
    • 在用于检测和/或确定的溶液的浓度的方法将待分析(1)包含(2)在一个测试位点(3)与配位体固定在半导体芯片(4)上的受体(5)的配位体 (2)可以形成特定的结合。 为了将配体(2)与受体(5)结合,将溶液(1)施加到测试部位(3)。 取决于配体(2)与受体(5)的结合,产生发光辐射(14)或颜色变化。 通过在半导体芯片(4)被检测到的辐射接收器(6),一个辐射测量信号的装置集成在一起,同时将溶液(1)和/或不包含辅助液体于辐射接收器(6)所接触的发光体(17)。 在防止发光辐射的产生并且辐射接收器(6)与辅助液体和/或替换液体接触的同时,测量辐射接收器(6)的暗测量信号。 辐射测量信号由暗测量信号补偿。
    • 9. 发明申请
    • SUPPORT ELEMENT FOR USE IN THE ANALYSIS OF SUBSTANCES
    • 支撑元件用于物质的分析
    • WO2005019818A3
    • 2005-06-02
    • PCT/EP2004009301
    • 2004-08-19
    • MICRONAS GMBHLEHMANN MIRKOSIEBEN ULRICH
    • LEHMANN MIRKOSIEBEN ULRICH
    • B01L3/00C40B70/00G01N31/22G01N33/50G01N33/543G06F19/20G06K7/10G06K19/06
    • G01N33/543B01J2219/00542B01J2219/00547B01J2219/00554B01J2219/00659B01L3/545B01L2300/021B01L2300/0819C40B70/00G06F19/20G06K19/06037
    • The invention relates to a support element (10, 20, 30, 30') for use in the analysis of substances to be analyzed to which, in at least two defined areas (11, 21, 31, 31'), biological and/or chemical substances (A to I) are applied and which comprises a code (12, 32, 32') indicating which biological and/or chemical substance (A to I) is present in which of the defined areas (11, 21, 31, 31'). The invention also relates to a method for producing support elements. The invention further relates to a device for reading out a support element by means of at least one optical detector per defined area (31) on the support element (30), whereby the optical detectors detect the reactions of the biological and/or chemical substances (A to I) in the defined areas (31) to the substance to be analyzed in the form of signals once the support element (30) is brought into a reading position relative to the device (50). The invention finally relates to a method for reading out a support element by means of a device for reading out a support element.
    • 本发明涉及一种支撑元件(10,20,30,30“),用于将物质的分析待分析在其上的至少两个区域(11,21,31,31”限定)生物和/或化学物质(A至I) 被施加,具有代码(12,32,32 '),指示哪个生物和/或化学物质(a至I),其中,限定的区域(11,21,31,31')的位置。 本发明还涉及一种用于支撑元件的制造方法。 本发明还涉及一种用于承载元件(30),每个定义的区域(31)读出的载体元件具有至少一个光学检测器,其中光学检测器,生物和/或化学物质的反应(A至I)中的定义的范围 检测(31)的物质,以尽快承载元件(30)被引入到相对于装置(50)和读取的支撑构件的方法的读取位置分析为信号。