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    • 2. 发明授权
    • Sensor and method of sensing having an energy source and detector on the same side of a sensor substance
    • 传感器和感测方法在传感器物质的同一侧具有能量源和检测器
    • US07897108B1
    • 2011-03-01
    • US10957254
    • 2004-10-01
    • Albert H. TitusFrank V. BrightAlexander N. Cartwright
    • Albert H. TitusFrank V. BrightAlexander N. Cartwright
    • G01N21/77B32B5/02
    • G01N21/77
    • A sensor has a sensor substance, an electromagnetic energy source, and a detector. The sensor substance may be able to emit electromagnetic energy different than that provided by the energy source when an analyte of interest is in contact with the sensor substance and electromagnetic energy is received by the sensor substance. The energy source and the detector may be provided on the same side of the sensor substance.In a method according to the invention, a determination may be made as to whether an analyte is present in a sample. Such a method may provide a sensor, such as that described above. Electromagnetic energy may be provided to the sensor substance using the energy source, and the sensor substance may be contacted with a sample. Electromagnetic energy may be emitted from the sensor substance and received at the detector. The detector may provide a signal indicating the type of electromagnetic energy emitted from the sensor substance. The signal from the detector may be analyzed to determine whether the analyte was detected.
    • 传感器具有传感器物质,电磁能源和检测器。 当感兴趣的分析物与传感器物质接触并且电磁能量被传感器物质接收时,传感器物质可能能够发射不同于由能量源提供的电磁能量的电磁能量。 能量源和检测器可以设置在传感器物质的同一侧。 在根据本发明的方法中,可以确定样品中是否存在分析物。 这种方法可以提供如上所述的传感器。 可以使用能量源将电磁能量提供给传感器物质,并且传感器物质可以与样品接触。 电磁能量可以从传感器物质发射并在检测器处接收。 检测器可以提供指示从传感器物质发射的电磁能量的类型的信号。 可以分析来自检测器的信号以确定是否检测到分析物。
    • 7. 发明授权
    • Low power glare sensor
    • 低功率眩光传感器
    • US07586079B2
    • 2009-09-08
    • US11434599
    • 2006-05-13
    • Christopher MullinAlbert H. TitusKiriti Bhagavathula
    • Christopher MullinAlbert H. TitusKiriti Bhagavathula
    • G01J1/44G01J1/36G02B27/00
    • G01J1/26G01J1/1626G01J1/18G01J1/4228G01J1/44G01J2001/0276H03F3/082H03F3/45183H03F2203/45674
    • The invention may be embodied as a glare detection system or as a method of detecting glare. In a system according to the invention, there may be a light receiving surface, a first input channel, a second input channel, a glare signaling circuit and a glare reducing circuit. The first input channel may provide an indication of the amount of light impinging on a first portion of the light receiving surface. The second input channel may provide an indication of the amount of light impinging on a second portion of the light receiving surface. The glare signaling circuit (“GSC”) may have a first input port in communication with the first input channel, a second input port in communication with the second input channel, a logic-or gate capable of producing an output signal when the logic-or gate detects that the first input channel or the second input channel indicates glare on the light receiving surface. The glare reducing circuit (“GRC”) may be in communication with the logic-or gate, and may be capable of reacting when the logic-or gate produces the output signal. For example, the GRC may react by determining where on the light receiving surface glare exists.
    • 本发明可以被实施为眩光检测系统或者作为检测眩光的方法。 在根据本发明的系统中,可以存在光接收表面,第一输入通道,第二输入通道,眩光信号电路和眩光减少电路。 第一输入通道可以提供照射在光接收表面的第一部分上的光量的指示。 第二输入通道可以提供照射在光接收表面的第二部分上的光量的指示。 眩光信号电路(“GSC”)可以具有与第一输入通道通信的第一输入端口,与第二输入通道通信的第二输入端口,能够产生逻辑 - 或门检测到第一输入通道或第二输入通道在光接收表面上指示眩光。 眩光降低电路(“GRC”)可以与逻辑门或栅极通信,并且可以在逻辑或门产生输出信号时反应。 例如,GRC可以通过确定在光接收表面上存在眩光的位置来进行反应。