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    • 1. 发明申请
    • SERIES DIODE ELECTRO-THERMAL CIRCUIT FOR ULTRA SENSITIVE SILICON SENSOR
    • 用于超敏感硅传感器的系列二极管电热电路
    • WO2011094206A1
    • 2011-08-04
    • PCT/US2011/022397
    • 2011-01-25
    • NORTHROP GRUMMAN SYSTEMS CORPORATIONBLUZER, Nathan
    • BLUZER, Nathan
    • G01J5/00
    • H01L27/14649G01J5/061G01J5/20G01J5/24H01L27/14603
    • Electro-thermal feedback is utilized for reducing the effective thermal conductance between the detector stage of a bolometer pixel in a thermal radiation sensor assembly and the environment through its mechanical support structure and electrical interconnects, thereby coming closer to achieving thermal conductance limited primarily through photon radiation. Minimization of the effective thermal conductance associated with the mechanical support structure and electrical interconnects is achieved by electro¬ thermal feedback that adjusts the temperature of an intermediate stage and the mechanical support structure and electrical interconnects, connecting it to the detector stage, to equal the temperature of the bolometer pixel's detector stage (i.e., by active thermal isolation). Increased temperature sensitivity is preferably achieved through temperature sensing with reverse biased Schottky diodes connected in series.
    • 电热反馈用于通过其机械支撑结构和电互连来降低热辐射传感器组件中的测辐射热计像素的检测器级与环境之间的有效热导,从而更接近实现主要通过光子辐射限制的导热 。 通过电热反馈来实现与机械支撑结构和电互连相关联的有效热传导的最小化,其通过调节中间级的温度和机械支撑结构以及将其连接到检​​测器级的电互连以等于温度 的测辐射计像素的检测器级(即,通过有源热隔离)。 温度敏感度的提高优选通过串联连接的反向偏置肖特基二极管的温度感测实现。
    • 4. 发明申请
    • ULTRA SENSITIVE SILICON SENSOR MILLIMETER WAVE PASSIVE IMAGER
    • 超声感应硅传感器毫米波无源成像器
    • WO2005043096A1
    • 2005-05-12
    • PCT/US2004/030673
    • 2004-09-20
    • NORTHRUP GRUMMAN CORPORATIONBLUZER, Nathan
    • BLUZER, Nathan
    • G01J5/20
    • G01J5/20
    • Electro-thermal feedback is utilized for zeroing the thermal conductance between a bolometer type detector element of a pixel in a thermal radiation sensor assembly and the environments through its mechanical support structure and electrical interconnects, thereby limiting the thermal conductance primarily through photon radiation. Zeroing of the thermal conductance associated with the mechanical support and electrical readout interconnect structures is achieved by electro-thermal feedback that adjust the temperature of an intermediate stage by the heating effect of a bipolar transistor amplifier circuit so that the temperature across the mechanical support and electrical interconnects structures are zeroed thereby greatly improving the thermal isolation, the responsivity and sensitivity of the electromagnetic radiation sensor.
    • 电 - 热反馈用于使热辐射传感器组件中的像素的辐射热计型探测器元件与通过其机械支撑结构和电互连的环境之间的热传导归零,从而主要通过光子辐射来限制热传导。 通过电热反馈实现与机械支撑和电读出互连结构相关联的热传导归零,其通过双极晶体管放大器电路的加热效应来调节中间级的温度,使得机械支撑和电气 互连结构被归零,从而大大提高了电磁辐射传感器的热隔离,响应性和灵敏度。
    • 7. 发明申请
    • FOCAL PLANE ANTENNA TO SENSOR INTERFACE FOR AN ULTRA-SENSITIVE BOLOMETER BASED SENSOR
    • 用于基于超声波传感器的传感器接口的FOCAL PLANE天线
    • WO2006039571A3
    • 2006-08-03
    • PCT/US2005035333
    • 2005-09-30
    • NORTHROP GRUMMAN CORPBLUZER NATHAN
    • BLUZER NATHAN
    • G01J5/22G01J5/08
    • G01J5/08G01J5/0837G01J5/20G01J5/22G01J5/24G01K17/003
    • An electrical interface between a scene to be imaged and a bolometer type sensor is disclosed. Efficiency is improved by means of a thermal energy concentrator including a lens and an antenna. Where a plurality of bolometer pixels are located in an array, a microantenna is provided for each pixel in the array with a common lens being provided to focus and channel incoming radiation to each microantenna. Radiation from a scene is further coupled by means of a lens and microantenna to the absorbing element of each bolometer through an AC coupling circuit including an electronic chopper implemented by means of a PIN diode, the conductivity of which is varied so as to affect the reflection coefficient of the input signal supplied through the microantenna.
    • 公开了要成像的场景与测辐射热计型传感器之间的电接口。 通过包括透镜和天线的热能集中器来提高效率。 在多个测辐射热计像素位于阵列中的情况下,为阵列中的每个像素提供微天线,其中提供有共同的透镜以将入射的辐射聚焦并传播到每个微天线。 来自场景的辐射通过透镜和微天线通过AC耦合电路进一步耦合到每个测辐射热计的吸收元件,AC耦合电路包括通过PIN二极管实现的电子斩波器,其电导率被改变以影响反射 通过微天线提供的输入信号的系数。
    • 10. 发明申请
    • FOCAL PLANE ANTENNA TO SENSOR INTERFACE FOR AN ULTRA-SENSITIVE SILICON SENSOR
    • 用于超声波传感器的传感器接口的FOCAL PLANE天线
    • WO2006039571A2
    • 2006-04-13
    • PCT/US2005/035333
    • 2005-09-30
    • NORTHROP GRUMMAN CORPORATIONBLUZER, Nathan
    • BLUZER, Nathan
    • G01J5/22G01J5/08
    • G01J5/08G01J5/0837G01J5/20G01J5/22G01J5/24G01K17/003
    • An electrical interface between a scene to be imaged and a bolometer type sensor is disclosed. Efficiency is improved by means of a thermal energy concentrator including a lens and an antenna. Where a plurality of bolometer pixels are located in an array, a microantenna is provided for each pixel in the array with a common lens being provided to focus and channel incoming radiation to each microantenna. Radiation from a scene is further coupled by means of a lens and microantenna to the absorbing element of each bolometer through an AC coupling circuit including an electronic chopper implemented by means of a PIN diode, the conductivity of which is varied so as to affect the reflection coefficient of the input signal supplied through the microantenna.
    • 公开了要成像的场景与测辐射热计型传感器之间的电接口。 通过包括透镜和天线的热能集中器来提高效率。 在多个测辐射热计像素位于阵列中的情况下,为阵列中的每个像素提供微天线,其中提供有共同的透镜以将入射的辐射聚焦并传播到每个微天线。 来自场景的辐射通过透镜和微天线通过AC耦合电路进一步耦合到每个测辐射热计的吸收元件,AC耦合电路包括通过PIN二极管实现的电子斩波器,其电导率被改变以影响反射 通过微天线提供的输入信号的系数。