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    • 1. 发明申请
    • DEVICE WITH A SANDWICH STRUCTURE FOR DETECTING THERMAL RADIATION, AND METHOD FOR THE PRODUCTION THEREOF
    • 具有用于检测热辐射的三面体结构的装置及其生产方法
    • US20100264311A1
    • 2010-10-21
    • US12601613
    • 2008-05-28
    • Carsten GiebelerMatthias SchreiterJörg Zapf
    • Carsten GiebelerMatthias SchreiterJörg Zapf
    • G01J5/10H01L21/02
    • H01L27/16G01J5/04G01J5/045G01J5/10G01J5/34H01L27/14618H01L2924/0002H01L2924/00
    • In a device for the detection of thermal radiation which and a method for production of such a device, a stack is formed with at least one detector support having at least one detector element for the conversion of the thermal radiation into an electric signal, at least one circuit support with at least one read-out circuit for reading out the electrical signal and at least one cover to shield the detector element, wherein the detector support and the cover are so arranged with respect to one another that a first stack cavity bounded by the detector support and the cover is provided between the detector element of the detector support and the cover and that the circuit support and the detector support are so arranged with respect to one another that at least one second stack cavity bounded by the circuit support and the detector support is provided between detector support and the circuit support and that the first hollow stack support and/or the second stack cavity is evacuated or can be evacuated. Preferably, the detector support, circuit support and cover are made of silicon. The manufacturing operation takes place at wafer-level. Functionalized silicon-substrates are stacked upon one another, firmly bonded together and subsequently sub-divided. Preferably, the detector elements are pyro-electric detector elements. The device finds application in motion detector, presence reporters and thermal-image cameras.
    • 在用于检测热辐射的装置及其制造方法中,堆叠形成有至少一个具有至少一个用于将热辐射转换成电信号的检测器元件的检测器支架,至少 一个电路支撑件,具有用于读出电信号的至少一个读出电路和用于屏蔽检测器元件的至少一个盖子,其中检测器支撑件和盖子相对于彼此布置成使得第一堆叠腔体被 检测器支撑件和盖被设置在检测器支撑件的检测器元件和盖之间,并且电路支撑件和检测器支撑件相对于彼此布置成使得由电路支撑件限定的至少一个第二堆叠空腔和 检测器支撑件设置在检测器支撑件和电路支撑件之间,并且第一中空堆叠支撑件和/或第二堆叠腔体被抽空或可以 被疏散 优选地,检测器支撑件,电路支撑件和盖子由硅制成。 制造操作在晶圆级进行。 功能化的硅衬底彼此堆叠,牢固地结合在一起并随后被细分。 优选地,检测器元件是热电探测器元件。 该装置在运动检测器,存在记录器和热像摄像机中找到应用。
    • 2. 发明授权
    • Device with a sandwich structure for detecting thermal radiation, and method for the production thereof
    • 具有用于检测热辐射的夹层结构的装置及其制造方法
    • US08487257B2
    • 2013-07-16
    • US12601613
    • 2008-05-28
    • Carsten GiebelerMatthias SchreiterJörg Zapf
    • Carsten GiebelerMatthias SchreiterJörg Zapf
    • G01J5/00
    • H01L27/16G01J5/04G01J5/045G01J5/10G01J5/34H01L27/14618H01L2924/0002H01L2924/00
    • In a device for the detection of thermal radiation and a method for production of such a device, a stack is formed with a detector support having a detector element for converting the thermal radiation into an electric signal, a circuit support with a read-out circuit for reading out the electrical signal and a cover to shield the detector element. The detector support and the cover are so arranged that a first stack cavity is formed between the detector element and the cover and a second stack cavity is formed between detector support and the circuit support. The first stack cavity and/or the second stack cavity is evacuated and hermetically sealed. In the manufacturing operation, functionalized silicon-substrates are stacked upon one another, firmly bonded together and subsequently sub-divided. Preferably, the detector elements are pyro-electric detector elements. The device finds application in motion detectors, presence reporters and thermal-image cameras.
    • 在用于检测热辐射的装置和用于生产这种装置的方法中,叠层形成有具有用于将热辐射转换成电信号的检测器元件的检测器支架,具有读出电路的电路支架 用于读出电信号和盖以屏蔽检测器元件。 检测器支架和盖被布置成使得在检测器元件和盖之间形成第一堆叠空腔,并且在检测器支架和电路支架之间形成第二堆叠腔。 将第一堆叠空腔和/或第二堆叠空腔抽真空并密封。 在制造操作中,将功能化的硅衬底彼此堆叠,牢固地结合在一起并随后进行细分。 优选地,检测器元件是热电探测器元件。 该设备在运动检测器,存在记录器和热像摄像机中找到应用。
    • 3. 发明申请
    • Device to detect thermal radiation with high resolution method to manufacture and use the device
    • 以高分辨率方式检测热辐射的装置制造和使用该装置
    • US20110049369A1
    • 2011-03-03
    • US12680286
    • 2008-09-29
    • Carsten GiebelerMatthias SchreiterUwe Rettig
    • Carsten GiebelerMatthias SchreiterUwe Rettig
    • G01J5/02G01R3/00
    • H01L31/101G01J5/02G01J5/024G01J5/0245G01J5/04G01J5/046G01J5/06G01J5/34H01L37/02Y10T29/49007
    • A device to detect thermal radiation has a membrane and at least two detector elements that are respectively set up to transduce thermal radiation into an electrical signal and are mounted situated next to one another on the membrane, wherein at least one heat dissipation path is provided on the side of the membrane facing towards the detector elements and/or on the side of the membrane facing away from the detector elements, which heat dissipation path has a higher heat conductivity than the membrane and is connected with the detector elements in a heat-conductive manner via the membrane so that heat can be discharged from the detector elements with the heat dissipation path, whereby the response time of the detector elements is short; and wherein at least one heat barrier that has a lower heat conductivity than the membrane and extends between the detector elements is provided integrated into the membrane, such that a heat conduction in the membrane from the one detector element to the other detector element is prevented by the heat barrier; whereby the crosstalk of the detector elements is low.
    • 用于检测热辐射的装置具有膜和至少两个检测器元件,其分别设置为将热辐射转换成电信号并且彼此相邻地安装在膜上,其中至少一个散热路径设置在 膜的侧面朝向检测器元件和/或在膜的远离检测器元件的侧面上,该散热路径具有比膜更高的导热性并且与导热的检测器元件连接 通过隔膜使得热量可以从散热路径从检测器元件排出,从而检测器元件的响应时间短; 并且其中集成在所述膜中的至少一个具有比所述膜低的热导率并且在所述检测器元件之间延伸的热屏障被提供,使得通过所述膜从所述一个检测器元件到另一检测器元件的热传导被 热障; 从而检测器元件的串扰低。
    • 4. 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。
    • 5. 发明申请
    • 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生产方法
    • US20110006211A1
    • 2011-01-13
    • US12601556
    • 2008-05-28
    • Carsten GiebelerMatthias SchreiterChristian Paulus
    • Carsten GiebelerMatthias SchreiterChristian Paulus
    • G01J5/00B32B37/02B32B38/10B32B37/24
    • 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: functionalised 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。 生产活动优选在晶片级进行:功能化的硅衬底彼此堆叠,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。
    • 6. 发明授权
    • Device to detect thermal radiation with high resolution method to manufacture and use the device
    • 以高分辨率方式检测热辐射的装置制造和使用该装置
    • US08969811B2
    • 2015-03-03
    • US12680286
    • 2008-09-29
    • Carsten GiebelerMatthias SchreiterUwe Rettig
    • Carsten GiebelerMatthias SchreiterUwe Rettig
    • G01J5/02H01L31/101G01J5/04G01J5/06G01J5/34H01L37/02
    • H01L31/101G01J5/02G01J5/024G01J5/0245G01J5/04G01J5/046G01J5/06G01J5/34H01L37/02Y10T29/49007
    • A device to detect thermal radiation has a membrane and at least two detector elements that are respectively set up to transduce thermal radiation into an electrical signal and are mounted situated next to one another on the membrane, wherein at least one heat dissipation path is provided on the side of the membrane facing towards the detector elements and/or on the side of the membrane facing away from the detector elements, which heat dissipation path has a higher heat conductivity than the membrane and is connected with the detector elements in a heat-conductive manner via the membrane so that heat can be discharged from the detector elements with the heat dissipation path, whereby the response time of the detector elements is short; and wherein at least one heat barrier that has a lower heat conductivity than the membrane and extends between the detector elements is provided integrated into the membrane, such that a heat conduction in the membrane from the one detector element to the other detector element is prevented by the heat barrier; whereby the crosstalk of the detector elements is low.
    • 用于检测热辐射的装置具有膜和至少两个检测器元件,其分别设置为将热辐射转换成电信号并且彼此相邻地安装在膜上,其中至少一个散热路径设置在 膜的侧面朝向检测器元件和/或在膜的远离检测器元件的侧面上,该散热路径具有比膜更高的导热性并且与导热的检测器元件连接 通过隔膜使得热量可以从散热路径从检测器元件排出,从而检测器元件的响应时间短; 并且其中集成在所述膜中的至少一个具有比所述膜低的热导率并且在所述检测器元件之间延伸的热屏障被提供,使得通过所述膜从所述一个检测器元件到另一检测器元件的热传导被 热障; 从而检测器元件的串扰低。
    • 7. 发明申请
    • METHOD FOR PRODUCING A THIN FILM MADE OF LEAD ZIRCONATE TITANATE
    • 生产铅锌酸铅薄膜的方法
    • US20140049136A1
    • 2014-02-20
    • US13985646
    • 2012-02-13
    • Carsten GiebelerNeil Conway
    • Carsten GiebelerNeil Conway
    • H01L41/316H01L41/187
    • H01L41/1876C23C14/0036C23C14/088C23C14/3464H01L21/02197H01L21/02266H01L37/025H01L41/316
    • The invention relates to a method for producing the thin film made of lead zirconate titanate in a 111-oriented perovskite structure, comprising the following steps: providing a substrate having a substrate temperature above 450° C. and a lead target, a zirconium target, and a titanium target; applying the thin film by sputtering lead, zirconium, and titanium from the respective targets onto the substrate, wherein the total deposition rate of lead, zirconium, and titanium is greater than 10 nm/min, the deposition rate of zirconium is selected in such a way that the atomic concentration of zirconium with respect to the atomic concentration of zirconium together with titanium in the thin film is between 0.2 and 0.3, and the deposition rate of lead is selected to be sufficiently low, depending on the substrate temperature and the total deposition rate of lead, zirconium, and titanium, for an X-ray diffractometer graph of the 111-oriented lead zirconate titanate to have a significant peak value (19) in a diffraction angle range from 33 to 35.5°; and completing the thin film.
    • 本发明涉及一种在111取向的钙钛矿结构中制造由锆钛酸铅制成的薄膜的方法,包括以下步骤:提供基片温度高于450℃的基片和引线靶,锆靶, 和钛靶; 通过将铅,锆和钛从各个靶溅射到衬底上来施加薄膜,其中铅,锆和钛的总沉积速率大于10nm / min,锆的沉积速率选择在 锆的原子浓度相对于锆的原子浓度与钛一起在薄膜中的原子浓度在0.2和0.3之间的方式,并且根据衬底温度和总沉积选择铅的沉积速率足够低 对于111取向铅锆钛酸铅的X射线衍射仪图,在33〜35.5°的衍射角范围内具有显着的峰值(19)的铅,锆和钛的比率; 并完成薄膜。