http://rdf.ncbi.nlm.nih.gov/pubchem/patent/CN-109313080-A

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filingDate 2017-06-14-04:00^^<http://www.w3.org/2001/XMLSchema#date>
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publicationDate 2019-02-05-04:00^^<http://www.w3.org/2001/XMLSchema#date>
publicationNumber CN-109313080-A
titleOfInvention Method and infrared measuring system for contactless determination of temperature
abstract The proposed method for the contactless determination of the temperature of a surface ( 22 ), in particular the temperature distribution of the surface ( 22 ), is based on an infrared measurement system ( 10 , 10 a ) which has at least: a detector array The infrared detector array (36) of the substrate (72) has a plurality of measurement pixels, and the measurement pixels are respectively connected to the detector array substrate (72) with a first thermal conductivity λ MP (120), wherein the measurement pixels ( 62 ) are sensitive to infrared radiation and respectively provide measurement signals for determining a temperature measurement value T MP ( 66 ) related to the intensity of the incident infrared radiation, and have a plurality of reference pixels (64), the plurality of reference picture elements are respectively connected to the detector array substrate (72) with a second thermal conductivity λ BP (122), and the plurality of reference picture elements respectively provide measurement signals, for determining temperature measurements T BP ( 68 ), and wherein the method includes at least the steps of: determining temperature measurements T BP ( 68 ) for a plurality of reference pixels ( 64 ); determining a plurality of measurement pixels ( 62 ) The temperature measurement value TP ( 66 ) of , respectively; the temperature measurement value TP ( 66 ) is corrected by the temperature drift component T drift ( 46 ) to which the pixel belongs. According to the invention, the reference picture element ( 64 ) is implemented as a blind picture element that is substantially insensitive to infrared radiation, wherein the second thermal conductivity λ BP ( 122 ) is greater than the first thermal conductivity λ MP ( 120 ) is larger and the temperature drift component T drift ( 46 ) is determined using the temperature measurement value T BP ( 68 ). Furthermore, an infrared measuring system ( 10 ) is proposed which is operated with the method.
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priorityDate 2016-06-30-04:00^^<http://www.w3.org/2001/XMLSchema#date>
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