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    • 1. 发明申请
    • METHOD FOR CONNECTING A DIAPHRAGM TO A SENSOR HOUSING
    • 将膜片连接到传感器外壳的方法
    • US20140201968A1
    • 2014-07-24
    • US14127734
    • 2012-07-03
    • Dieter KarstPaul FurterStefan Brechbuehl
    • Dieter KarstPaul FurterStefan Brechbuehl
    • G01L1/18
    • G01L1/18B23K2101/00G01L23/10Y10T29/49826
    • A method is provided for connecting a diaphragm to a housing of a pressure or force sensor, wherein a measurement element is attached in the housing and can capture a load acting from the outside onto the diaphragm during the use of the finished sensor. A housing ring surface or the housing is situated opposite a diaphragm ring surface of the diaphragm, which are subjected to compressive loading by the load during use of the sensor. A first connection is produced in an inner region between the housing ring surface and the diaphragm ring surface until they rest against each other radially outside the first connection. Then a second connection connects the housing ring surface and the diaphragm ring surface to one another radially outside the first connection up to a shared outer edge. Here, a defined connection depth of the entire double connection is maintained.
    • 提供了一种用于将隔膜连接到压力或力传感器的壳体的方法,其中测量元件附接在壳体中,并且可以在使用完成的传感器期间捕获从外部作用到隔膜上的负载。 壳体环表面或壳体位于隔膜的隔膜环表面相对,隔膜环表面在传感器使用期间受负载的压缩负载。 在壳体环表面和隔膜环表面之间的内部区域中产生第一连接,直到它们在第一连接的径向外侧相互抵靠。 然后,第二连接将壳体环表面和隔膜环表面彼此径向地连接到共享的外边缘。 这里,保持整个双重连接的定义的连接深度。
    • 2. 发明申请
    • Pressure Sensor with Active and Passive Acceleration Compensation
    • 带主动和被动加速度补偿的压力传感器
    • US20080168843A1
    • 2008-07-17
    • US11914972
    • 2006-06-07
    • Claudio CavalloniDieter KarstPeter WolferStefan Brechbuhl
    • Claudio CavalloniDieter KarstPeter WolferStefan Brechbuhl
    • G01L7/00
    • G01L9/08G01L9/008G01L19/02
    • An acceleration-compensated pressure pick-up, for example for the measurement of dynamic processes in gaseous or liquid media, comprises an external housing and a pre-assembled inner part having a flange at its assembly end. The inner part is securely fixed to the housing only at the flange. A first mass is connected via a first resilient connection to the flange, and a second mass is connected to the flange via a second resilient connection. A first measurement crystal is inserted under pre-tension between the two masses. A third mass and a compensation crystal are arranged between the first measurement crystal and the second mass, and the compensation crystal is electrically connected in opposition to the first measurement crystal. The two rigidities of the resilient connections and the three masses are matched so that the measurement values which can be determined at the crystals due to an axial acceleration acting on the housing compensate each other.
    • 例如用于测量气态或液体介质中的动态过程的加速度补偿压力拾取器包括外部壳体和在其组装端具有凸缘的预组装内部部件。 内部部分仅在法兰上固定在外壳上。 第一质量块通过第一弹性连接件连接到凸缘,第二质量块通过第二弹性连接件连接到凸缘。 第一测量晶体在两个质量块之间的预张力下插入。 在第一测量晶体和第二质量块之间布置第三质量和补偿晶体,并且补偿晶体与第一测量晶体相对地电连接。 弹性连接和三个质量的两个刚性相匹配,使得由于作用在壳体上的轴向加速度而在晶体处可以确定的测量值彼此补偿。
    • 3. 发明授权
    • Method for connecting a diaphragm to a sensor housing
    • 将隔膜连接到传感器外壳的方法
    • US08957345B2
    • 2015-02-17
    • US14127734
    • 2012-07-03
    • Dieter KarstPaul FurterStefan Brechbuehl
    • Dieter KarstPaul FurterStefan Brechbuehl
    • B23K11/11G01L23/10G01L1/18
    • G01L1/18B23K2101/00G01L23/10Y10T29/49826
    • A method is provided for connecting a diaphragm to a housing of a pressure or force sensor, wherein a measurement element is attached in the housing and can capture a load acting from the outside onto the diaphragm during the use of the finished sensor. A housing ring surface or the housing is situated opposite a diaphragm ring surface of the diaphragm, which are subjected to compressive loading by the load during use of the sensor. A first connection is produced in an inner region between the housing ring surface and the diaphragm ring surface until they rest against each other radially outside the first connection. Then a second connection connects the housing ring surface and the diaphragm ring surface to one another radially outside the first connection up to a shared outer edge. Here, a defined connection depth of the entire double connection is maintained.
    • 提供了一种用于将隔膜连接到压力或力传感器的壳体的方法,其中测量元件附接在壳体中,并且可以在使用完成的传感器期间捕获从外部作用到隔膜上的负载。 壳体环表面或壳体位于隔膜的隔膜环表面相对,隔膜环表面在传感器使用期间受负载的压缩负载。 在壳体环表面和隔膜环表面之间的内部区域中产生第一连接,直到它们在第一连接的径向外侧相互抵靠。 然后,第二连接将壳体环表面和隔膜环表面彼此径向地连接到共享的外边缘。 这里,保持整个双重连接的定义的连接深度。
    • 4. 发明授权
    • Pressure sensor with active and passive acceleration compensation
    • 压力传感器,主动和被动加速度补偿
    • US07546774B2
    • 2009-06-16
    • US11914972
    • 2006-06-07
    • Claudio CavalloniDieter KarstPeter WolferStefan Brechbühl
    • Claudio CavalloniDieter KarstPeter WolferStefan Brechbühl
    • G01L7/00
    • G01L9/08G01L9/008G01L19/02
    • An acceleration-compensated pressure pick-up, for example for the measurement of dynamic processes in gaseous or liquid media, comprises an external housing and a pre-assembled inner part having a flange at its assembly end. The inner part is securely fixed to the housing only at the flange. A first mass is connected via a first resilient connection to the flange, and a second mass is connected to the flange via a second resilient connection. A first measurement crystal is inserted under pre-tension between the two masses. A third mass and a compensation crystal are arranged between the first measurement crystal and the second mass, and the compensation crystal is electrically connected in opposition to the first measurement crystal. The two rigidities of the resilient connections and the three masses are matched so that the measurement values which can be determined at the crystals due to an axial acceleration acting on the housing compensate each other.
    • 例如用于测量气态或液体介质中的动态过程的加速度补偿压力拾取器包括外部壳体和在其组装端具有凸缘的预组装内部部件。 内部部分仅在法兰上固定在外壳上。 第一质量块通过第一弹性连接件连接到凸缘,第二质量块通过第二弹性连接件连接到凸缘。 第一测量晶体在两个质量块之间的预张力下插入。 在第一测量晶体和第二质量块之间布置第三质量和补偿晶体,并且补偿晶体与第一测量晶体相对地电连接。 弹性连接和三个质量的两个刚性相匹配,使得由于作用在壳体上的轴向加速度而在晶体处可以确定的测量值彼此补偿。
    • 5. 发明申请
    • Self-cleaning optical sensor
    • 自清洁光学传感器
    • US20070068495A1
    • 2007-03-29
    • US10548167
    • 2004-03-11
    • Dieter Karst
    • Dieter Karst
    • F02M51/00
    • G01M15/10
    • The invention relates to an optical sensor for detecting light emission in combustion processes in a combustion chamber. At least one lens of the sensor faces the combustion chamber and is disposed on the tip of the sensor. The inventive sensor is provided with a heating device, which is disposed on the tip thereof, in the region of the front lens. The heating device can be a wire coil, a laser or a conduit with heated fluid. The sensor can include a controller for controlling the temperature of the heating device so that the tip of the sensor can be heated by the heating device to a specific temperature at which any soot on the front lens is combusted. As a result, the sensor remains clean and operational during the entire measuring period as desired.
    • 本发明涉及一种用于检测燃烧室内燃烧过程中的光发射的光学传感器。 传感器的至少一个透镜面向燃烧室并且设置在传感器的尖端上。 本发明的传感器设置有在前透镜的区域中设置在其顶端上的加热装置。 加热装置可以是线圈,激光器或具有加热流体的导管。 传感器可以包括用于控制加热装置的温度的控制器,使得传感器的尖端可以被加热装置加热到前透镜上的任何烟灰燃烧的特定温度。 结果,传感器在整个测量期间保持清洁并可操作。
    • 8. 发明授权
    • Self-cleaning optical sensor
    • 自清洁光学传感器
    • US07375314B2
    • 2008-05-20
    • US10548167
    • 2004-03-11
    • Dieter Karst
    • Dieter Karst
    • G01L23/16G01L23/22G01M15/00
    • G01M15/10
    • The invention relates to an optical sensor for detecting light emission in combustion processes in a combustion chamber. At least one lens of the sensor faces the combustion chamber and is disposed on the tip of the sensor. The inventive sensor is provided with a heating device, which is disposed on the tip thereof, in the region of the front lens. The heating device can be a wire coil, a laser or a conduit with heated fluid. The sensor can include a controller for controlling the temperature of the heating device so that the tip of the sensor can be heated by the heating device to a specific temperature at which any soot on the front lens is combusted. As a result, the sensor remains clean and operational during the entire measuring period as desired.
    • 本发明涉及一种用于检测燃烧室内燃烧过程中的光发射的光学传感器。 传感器的至少一个透镜面向燃烧室并且设置在传感器的尖端上。 本发明的传感器设置有在前透镜的区域中设置在其顶端上的加热装置。 加热装置可以是线圈,激光器或具有加热流体的导管。 传感器可以包括用于控制加热装置的温度的控制器,使得传感器的尖端可以被加热装置加热到前透镜上的任何烟灰燃烧的特定温度。 结果,传感器在整个测量期间保持清洁并可操作。