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    • 1. 发明授权
    • Device having a membrane structure for detecting thermal radiation, and method for production thereof
    • 具有用于检测热辐射的膜结构的装置及其制造方法
    • US09279730B2
    • 2016-03-08
    • US12601556
    • 2008-05-28
    • Carsten GiebelerMatthias SchreiterChristian Paulus
    • Carsten GiebelerMatthias SchreiterChristian Paulus
    • G01J5/02G01J5/34G01J5/14G01J5/22G01J5/04G01N21/01H01L27/146H01L41/09G01J5/00G01J5/20
    • G01J5/34G01J5/00G01J5/0205G01J5/0225G01J5/023G01J5/04G01J5/041G01J5/045G01J5/14G01J5/22G01J2005/0077G01J2005/204G01N2021/0106H01L27/14683H01L41/0973Y10T156/10
    • In a device for detecting thermal radiation, at least one membrane is provided on which at least one thermal detector element is mounted for the conversion of the thermal radiation into an electric signal and at least one circuit support for carrying the membrane and for carrying at least one readout circuit for reading out the electrical signal, the detector element and the readout circuit being connected together electrically by an electric contact which passes through the membrane. In addition, a method of producing the device with the following method steps is provided: a) provision of the membrane with the detector element and of at least one electrical through-connection and provision of the circuit support and b) bringing together the membrane and the circuit support in such a manner that the detector element and the readout circuit are connected together electrically by an electrical contact passing through the membrane. Production activity is preferably carried out at wafer level: functionalized silicon substrates are stacked upon one another, firmly bonded to one another and then divided into individual elements. Preferably, the detector elements comprise of pyro-electrical detector elements. The device finds application in motion detectors, presence detectors and in thermal imaging cameras.
    • 在用于检测热辐射的装置中,提供至少一个膜,其上安装有至少一个热检测器元件,用于将热辐射转换成电信号,以及至少一个用于承载膜的电路支架, 一个用于读出电信号的读出电路,检测器元件和读出电路由通过膜的电接点电连接在一起。 此外,提供了一种通过以下方法步骤制造该装置的方法:a)提供具有检测器元件的膜和至少一个电气通过连接和提供电路支撑件,以及b)将膜和 电路支撑件以检测器元件和读出电路通过穿过膜的电接触电连接在一起的方式。 生产活性优选在晶片级进行:功能化的硅衬底相互堆叠,彼此牢固地结合,然后分成单个元件。 优选地,检测器元件包括热电检测元件。 该设备在运动检测器,存在检测器和热成像相机中可以应用。
    • 4. 发明申请
    • Sensor arrangement and method for operating a sensor arrangement
    • 用于操作传感器装置的传感器布置和方法
    • US20060057025A1
    • 2006-03-16
    • US10530882
    • 2003-10-14
    • Bjorn-Oliver EversmannChristian PaulusRoland Thewes
    • Bjorn-Oliver EversmannChristian PaulusRoland Thewes
    • G01N27/00
    • G01N27/4145G01N33/48728
    • A sensor arrangement and method of operating the sensor arrangement are described. The sensor arrangement has sensor devices formed on or in a substrate and a calibration device for calibrating a respective sensor device. Each sensor device has an electrical signal converter which is a field-effect transistor (FET) having a gate terminal coupled to a sensor element that is coupled to the signal converter, a device that keeps constant the electrical voltage between source and drain terminals of the FET, and a device for detecting the value of the electric current flowing through the signal converter. The sensor element characteristically influences the electrical conductivity of the signal converter on account of a sensor event on the sensor element. The calibration device brings the gate region of the FET to an electrical calibration potential such that the electric current is independent of parameter fluctuations of the FET.
    • 描述了传感器装置和操作传感器装置的方法。 传感器装置具有形成在基板上或基板中的传感器装置和用于校准相应传感器装置的校准装置。 每个传感器装置具有电信号转换器,该电信号转换器是具有耦合到耦合到信号转换器的传感器元件的栅极端子的场效应晶体管(FET),保持恒定的源极和漏极端子之间的电压的装置 FET和用于检测流过信号转换器的电流值的装置。 传感器元件由于传感器元件上的传感器事件而特征地影响信号转换器的电导率。 校准装置使FET的栅极区域达到电校准电位,使得电流与FET的参数波动无关。
    • 5. 发明申请
    • Biosensors array and method for operating a biosensor array
    • 用于操作生物传感器阵列的生物传感器阵列和方法
    • US20050247559A1
    • 2005-11-10
    • US11019948
    • 2004-12-21
    • Alexander FreyFranz HofmannBirgit HolzapflChristian PaulusMeinrad SchienleRoland Thewes
    • Alexander FreyFranz HofmannBirgit HolzapflChristian PaulusMeinrad SchienleRoland Thewes
    • G01N33/53G01N27/02G01N27/327G01N27/403G01N27/416G01N33/487G01N37/00G01N27/26
    • G01N27/3276
    • A biosensor array having a substrate, a plurality of biosensor zones arranged on the substrate, each of which has a first terminal and a second terminal, at least one drive line and at least one detection line, the at least one drive line being electrically insulated from the at least one detection line. In each case the first terminal of each biosensor zone is coupled to precisely one of the at least one drive line and the second terminal of each biosensor zone is coupled to precisely one of the at least one detection line, and at least one of the at least one drive line and at least one of the at least one detection line is coupled to at least two of the biosensor zones. The biosensor array also has a drive unit for providing an electrical drive signal, a detection unit for detecting an electrical detection signal resulting from the electrical drive signal, and a selection unit that couples the drive unit to the drive line of a biosensor zone to be selected and the detection unit to the detection line of the biosensor zone to be selected, whereby the biosensor zone is selected.
    • 一种具有衬底的生物传感器阵列,布置在所述衬底上的多个生物传感器区域,每个生物传感器区域具有第一端子和第二端子,至少一条驱动线路和至少一条检测线路,所述至少一条驱动线路电绝缘 从所述至少一个检测线。 在每种情况下,每个生物传感器区域的第一端子被精确地耦合到至少一条驱动线路中的一条,并且每个生物传感器区域的第二端口精确地耦合到至少一条检测线路中的至少一条, 至少一个驱动线和所述至少一个检测线中的至少一个耦合到所述生物传感器区域中的至少两个。 生物传感器阵列还具有用于提供电驱动信号的驱动单元,用于检测由电驱动信号产生的电检测信号的检测单元,以及将驱动单元与生物传感器区域的驱动线连接的选择单元, 将选择的检测单元和生物传感器区域的检测线进行选择,从而选择生物传感器区域。
    • 7. 发明申请
    • Sensor arrangement and method for operating a sensor arrangement
    • 用于操作传感器装置的传感器布置和方法
    • US20050194250A1
    • 2005-09-08
    • US11002736
    • 2004-12-02
    • Alexander FreyChristian PaulusMeinrad SchienleRoland Thewes
    • Alexander FreyChristian PaulusMeinrad SchienleRoland Thewes
    • C12M1/00C12Q1/68G01N1/00G01N27/02
    • C12M1/00C12Q1/6837G01N1/00G01N27/3276C12Q2565/607
    • Sensor arrangement, set up as an integrated circuit, having a substrate, at least three sensor electrodes arranged on the substrate such that, in an operating state in which an electrically conductive substance is introduced into the sensor arrangement, the sensor electrodes are coupled to one another by means of the electrically conductive substance, capture molecules immobilized on at least a portion of the sensor electrodes, wherein molecules to be detected can hybridize with the capture molecules, a control circuit for applying a first electrical signal to a selected sensor electrode and simultaneously applying a second electrical signal to at least two of the other sensor electrodes, the first electrical signal being a first temporally variable electrical signal and/or the second electrical signal being a second temporally variable electrical signal, a detection device, which is set up such that, in a first operating state, in which a reference liquid is introduced into the sensor arrangement, a reference value of a third temporally variable electrical signal resulting from the first temporally variable electrical signal and/or from the second temporally variable electrical signal is detected at the selected sensor electrode, and in a second operating state, in which an analyte possibly having molecules to be detected is introduced into the sensor arrangement, a sensor value of the third temporally variable electrical signal resulting from the first temporally variable electrical signal and/or from the second temporally variable electrical signal is detected at the selected sensor electrode, and an evaluation circuit, which, on the basis of the reference value and the sensor value, determines whether a hybridization event has taken place at the selected sensor electrode.
    • 设置为集成电路的传感器布置,具有衬底,布置在衬底上的至少三个传感器电极,使得在将导电物质引入传感器装置的操作状态下,传感器电极耦合到一个 另一个通过导电物质捕获固定在传感器电极的至少一部分上的分子,其中待检测的分子可与捕获分子杂交;控制电路,用于将第一电信号施加到所选择的传感器电极,同时 将第二电信号施加到至少两个其它传感器电极,所述第一电信号是第一时间可变电信号和/或所述第二电信号是第二时间可变电信号,所述检测装置被设置为 在第一操作状态下,将参考液体引入到传感器中 在所选择的传感器电极处检测由第一时间可变电信号和/或来自第二时间可变电信号产生的第三时间可变电信号的参考值,并且在第二操作状态中,分析物可能 将要检测的分子引入传感器装置中,在所选择的传感器电极处检测由第一时间可变电信号和/或来自第二时间可变电信号产生的第三时间可变电信号的传感器值, 评估电路,其基于参考值和传感器值确定在所选择的传感器电极处是否发生杂交事件。
    • 8. 发明申请
    • Method and biosensors for detecting macromolecular biopolymers
    • 用于检测大分子生物聚合物的方法和生物传感器
    • US20050136423A1
    • 2005-06-23
    • US10841413
    • 2004-05-07
    • Christian PaulusPetra Schindler-Bauer
    • Christian PaulusPetra Schindler-Bauer
    • C12M1/34C12Q1/68G01N33/543
    • G01N33/5438
    • Method for detecting macromolecular biopolymers using a unit for immobilizing macromolecular biopolymers, in which the unit is provided with first molecules serving as capture molecules. The method includes the steps of bringing a sample into contact with the unit, it being possible for the sample to contain the macromolecular biopolymers, and the macromolecular biopolymers or the first molecules having a marking which is used to generate a detectable signal, binding macromolecular biopolymers contained in the sample to the capture molecules, thereby forming complexes comprising capture molecules and macromolecular biopolymers, exciting the emission of a signal by means of the marking, detecting the signal emitted by means of the marking, separating the complexes comprising capture molecules and macromolecular biopolymers, thereby altering the intensity of the emitted signal, and detecting the separation of the complexes comprising capture molecules and macromolecular biopolymers by means of the change in the intensity of the signal.
    • 使用用于固定大分子生物聚合物的单元检测大分子生物聚合物的方法,其中该单元具有用作捕获分子的第一分子。 该方法包括使样品与单元接触的步骤,样品可以含有大分子生物聚合物,大分子生物聚合物或具有用于产生可检测信号的标记的第一分子,结合大分子生物聚合物 包含在捕获分子中的样品,从而形成包含捕获分子和大分子生物聚合物的复合物,通过标记激发信号的发射,检测通过标记发射的信号,分离包含捕获分子和大分子生物聚合物的复合物 从而改变发射信号的强度,并通过信号强度的变化来检测包含捕获分子和大分子生物聚合物的络合物的分离。
    • 9. 发明授权
    • Current sample-and-hold-circuit, a/d converter and a method for operating a current sample-and-hold circuit
    • 电流采样保持电路,a / d转换器和用于操作电流采样保持电路的方法
    • US06819147B2
    • 2004-11-16
    • US10297496
    • 2003-04-07
    • Christian Paulus
    • Christian Paulus
    • G11C2702
    • G11C27/028
    • The invention relates to a current sample-and-hold circuit comprising several sub-circuits, in which a current signal is stored. At least one of said sub-circuits contains a switch. The inventive current hold-and-sample circuit is characterized in that each of the sub-circuits contains a linear resistor, which is connected in such a way that the current signal generates a voltage drop across the resistor, that each of the sub-circuits contains at least one inverting control amplifier, which sets an initial current of the circuit in a hold operational mode, thus inducing a voltage drop across the resistor, said voltage drop being substantially as great as the voltage drop across the resistor before the hold operational mode.
    • 本发明涉及一种包含几个子电路的电流采样和保持电路,其中存储有电流信号。 所述子电路中的至少一个包含开关。 本发明的电流保持和采样电路的特征在于,每个子电路包含线性电阻器,其以电流信号在电阻器两端产生电压降的方式连接,每个子电路 包含至少一个反相控制放大器,其将电路的初始电流设置为保持操作模式,从而导致电阻器两端的电压降,所述电压降基本上与保持操作模式之前的电阻器两端的电压降一样大 。
    • 10. 发明授权
    • Analog-to-digital converter and method for converting an analog signal into a digital signal
    • 用于将模拟信号转换为数字信号的模数转换器和方法
    • US06812880B2
    • 2004-11-02
    • US10433711
    • 2003-09-29
    • Christian Paulus
    • Christian Paulus
    • H03M134
    • H03M1/0643H03M1/365
    • The invention relates to an analog-to-digital converter (301), comprising several comparators (303) and a reference network, said reference network having several reference elements (302). At least one input (304) of at least one comparator (303) is connected between the individual reference elements (302) of the reference network in the analog-to-digital converter (301), respectively. A digital evaluation circuit (311) with which the statistical evaluation of the output signals generated by the comparators (303) can be carried out is linked to the outputs (309) of the comparators of the analog-to-digital converter (301). The invention also relates to a corresponding method for converting an analog signal (Ua) into a digital signal (D).
    • 本发明涉及一种包括多个比较器(303)和参考网络的模数转换器(301),所述参考网络具有几个参考元件(302)。 至少一个比较器(303)的至少一个输入(304)分别连接在模数转换器(301)中的参考网络的各个参考元件(302)之间。 可以执行由比较器(303)产生的输出信号的统计评估的数字评估电路(311)与模数转换器(301)的比较器的输出(309)相关联。 本发明还涉及将模拟信号(Ua)转换为数字信号(D)的相应方法。