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    • 1. 发明授权
    • Infrared source
    • 红外源
    • US07741625B2
    • 2010-06-22
    • US11575218
    • 2005-09-13
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • G01J1/00H01L31/00
    • H01K1/62G01J3/108H01K1/04H01K1/16H01K1/18
    • A sealed infrared radiation source includes an emitter membrane stimulated by an electrical current conducted through the membrane, which acts like an electrical conductor, wherein the membrane is mounted between first and second housing parts, at least one being transparent in the IR range, each housing part defining a cavity between the membrane and the respective housing part of each side of the membrane. The housing parts are at least partially electrical conductive, and a first of the housing parts is electrically coupled to a first end of the electrical conductor and insulated from the second end of the electrical conductor, the second housing part being electrically coupled to a second end of the electrical conductor and being insulated from the first end of the electrical conductor, thus allowing a current applied from the first housing part to the second housing part to pass through and heat the membrane.
    • 密封的红外线辐射源包括由通过膜传导的电流刺激的发射体膜,其作用类似于电导体,其中膜安装在第一和第二壳体部分之间,至少一个在IR范围内是透明的,每个壳体 部分限定膜和膜的每一侧的相应壳体部分之间的空腔。 壳体部分至少部分地导电,并且第一壳体部分电耦合到电导体的第一端并与电导体的第二端绝缘,第二壳体部分电耦合到第二端 并且与电导体的第一端绝缘,从而允许从第一壳体部分到第二壳体部分施加的电流通过并加热膜。
    • 2. 发明授权
    • Infrared source
    • 红外源
    • US07989821B2
    • 2011-08-02
    • US12774012
    • 2010-05-05
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • H01L21/00H05B3/10
    • H01K1/62G01J3/108H01K1/04H01K1/16H01K1/18
    • A sealed infrared radiation source includes an emitter membrane stimulated by an electrical current conducted through the membrane, which acts like an electrical conductor, wherein the membrane is mounted between first and second housing parts, at least one being transparent in the IR range, each housing part defining a cavity between the membrane and the respective housing part of each side of the membrane. The housing parts are at least partially electrical conductive, and a first of the housing parts is electrically coupled to a first end of the electrical conductor and insulated from the second end of the electrical conductor, the second housing part being electrically coupled to a second end of the electrical conductor and being insulated from the first end of the electrical conductor, thus allowing a current applied from the first housing part to the second housing part to pass through and heat the membrane.
    • 密封的红外线辐射源包括由通过膜传导的电流刺激的发射体膜,其作用类似于电导体,其中膜安装在第一和第二壳体部分之间,至少一个在IR范围内是透明的,每个壳体 部分限定膜和膜的每一侧的相应壳体部分之间的空腔。 壳体部分至少部分地导电,并且第一壳体部分电耦合到电导体的第一端并与电导体的第二端绝缘,第二壳体部分电耦合到第二端 并且与电导体的第一端绝缘,从而允许从第一壳体部分到第二壳体部分施加的电流通过并加热膜。
    • 3. 发明申请
    • INFRARED SOURCE
    • 红外源
    • US20100213500A1
    • 2010-08-26
    • US12774012
    • 2010-05-05
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • H01L33/48
    • H01K1/62G01J3/108H01K1/04H01K1/16H01K1/18
    • A sealed infrared radiation source includes an emitter membrane stimulated by an electrical current conducted through the membrane, which acts like an electrical conductor, wherein the membrane is mounted between first and second housing parts, at least one being transparent in the IR range, each housing part defining a cavity between the membrane and the respective housing part of each side of the membrane. The housing parts are at least partially electrical conductive, and a first of the housing parts is electrically coupled to a first end of the electrical conductor and insulated from the second end of the electrical conductor, the second housing part being electrically coupled to a second end of the electrical conductor and being insulated from the first end of the electrical conductor, thus allowing a current applied from the first housing part to the second housing part to pass through and heat the membrane.
    • 密封的红外线辐射源包括由通过膜传导的电流刺激的发射体膜,其作用类似于电导体,其中膜安装在第一和第二壳体部分之间,至少一个在IR范围内是透明的,每个壳体 部分限定膜和膜的每一侧的相应壳体部分之间的空腔。 壳体部分至少部分地导电,并且第一壳体部分电耦合到电导体的第一端并与电导体的第二端绝缘,第二壳体部分电耦合到第二端 并且与电导体的第一端绝缘,从而允许从第一壳体部分到第二壳体部分施加的电流通过并加热膜。
    • 4. 发明申请
    • Infrared Source
    • 红外线源
    • US20080272389A1
    • 2008-11-06
    • US11575218
    • 2005-09-13
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • Henrik RogneDag Thorstein WangTrond Andreas HansenSigurd Teodor MoeAlain Ferber
    • H01L33/00
    • H01K1/62G01J3/108H01K1/04H01K1/16H01K1/18
    • A sealed infrared radiation source includes an emitter membrane stimulated by an electrical current conducted through the membrane, which acts like an electrical conductor, wherein the membrane is mounted between first and second housing parts, at least one being transparent in the IR range, each housing part defining a cavity between the membrane and the respective housing part of each side of the membrane. The housing parts are at least partially electrical conductive, and a first of the housing parts is electrically coupled to a first end of the electrical conductor and insulated from the second end of the electrical conductor, the second housing part being electrically coupled to a second end of the electrical conductor and being insulated from the first end of the electrical conductor, thus allowing a current applied from the first housing part to the second housing part to pass through and heat the membrane.
    • 密封的红外线辐射源包括由通过膜传导的电流刺激的发射体膜,其作用类似于电导体,其中膜安装在第一和第二壳体部分之间,至少一个在IR范围内是透明的,每个壳体 部分限定膜和膜的每一侧的相应壳体部分之间的空腔。 壳体部分至少部分地导电,并且第一壳体部分电耦合到电导体的第一端并与电导体的第二端绝缘,第二壳体部分电耦合到第二端 并且与电导体的第一端绝缘,从而允许从第一壳体部分到第二壳体部分施加的电流通过并加热膜。
    • 9. 发明授权
    • Sensor element especially for pressure sensors
    • 传感器元件特别适用于压力传感器
    • US06595063B1
    • 2003-07-22
    • US09913605
    • 2001-08-16
    • Henrik RogneDag Torstein Wang
    • Henrik RogneDag Torstein Wang
    • G01L708
    • G01L9/0042G01L9/0052
    • A system and corresponding method for bulge testing films (e.g. thin films, coatings, layers, etc.) is provided, as well as membrane structures for use in bulge testing and improved methods of manufacturing same so that resulting membrane structures have substantially identical known geometric and responsive characteristics. Arrayed membrane structures, and corresponding methods, are provided in certain embodiments which enable bulge testing of a film(s) over a relatively large surface area via a plurality of different free-standing membrane portions. Improved measurements of film bulging or deflection are obtained by measuring deflection of a center point of a film, relative to non-deflected peripheral points on the film being tested. Furthermore, membrane structures are adhered to mounting structure in an improved manner, and opaque coatings may be applied over top of film(s) to be bulge tested so that a corresponding optical transducer can more easily detect film deflection/bulging. In certain embodiments, a laser triangulation transducer is utilized to measure film deflection/bulging.
    • 提供了用于凸起测试膜(例如薄膜,涂层,层等)的系统和相应方法,以及用于凸起测试的膜结构以及改进的制造方法,使得所得膜结构具有基本上相同的已知几何 和响应特性。 在某些实施方案中提供了排列的膜结构以及相应的方法,这些实施方案能够通过多个不同的独立膜部分在相对大的表面积上进行膜的隆起测试。 通过测量膜的中心点相对于被测试薄膜上的非偏转外围点的偏差,可以获得改进的膜膨胀或偏转测量。 此外,膜结构以改进的方式粘附到安装结构,并且不透明涂层可以施加在膜的顶部上以进行凸出测试,使得相应的光学换能器可以更容易地检测膜偏转/凸起。 在某些实施例中,使用激光三角测量传感器来测量膜偏转/凸起。