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    • 61. 发明公开
    • 가열 가능한 적외선 센서와 이 적외선 센서를 구비하는 적외선 온도계
    • 包含这种红外传感器的可变红外传感器和红外线测温仪
    • KR1020060119950A
    • 2006-11-24
    • KR1020067004880
    • 2004-08-20
    • 브라운 게엠베하
    • 스카르프,스테판네쓰,스테판크라우스베른하르드
    • G01J5/04
    • G01J5/0003G01J5/0011G01J5/02G01J5/0215G01J5/046G01J5/061
    • The invention relates to an infrared sensor having an electrically heatable sensor housing which comprises as the heating device an electrical heating track structure (14) applied to a ceramic substrate (10) in a conductor-type fashion, its thermal output being controlled by means of a control device as needed. The ceramic substrate (10) comprises an electrically insulating ceramic material that conducts heat well, such as e.g. an aluminium oxide, aluminium nitride or beryllium oxide ceramic. It can have any shape required, but it is especially symmetric bases such as e.g. an octagonal base that can be produced at low costs and separated with little complication. The ceramic substrate (10) preferably constitutes the bottom of the sensor housing and carries at least one infrared sensor element, such as e.g. a thermopile sensor (16). It also comprises additional electrical conductors (12) that represent e.g. contact areas (12a) for a corresponding housing cover (not shown). Through-hole contacts (22) provide the electrical connection between the top side (10a) and the bottom side of the ceramic substrate (10). The electrical heating tracks and conductors (14 or 12) are preferably configured as thick-film tracks. The inventive infrared sensor is especially suitable for a measuring tip of an infrared thermometer for taking the temperature intraauricularly.
    • 本发明涉及一种具有电可加热传感器外壳的红外传感器,其包括作为加热装置的以导体型方式施加到陶瓷基板(10)的电加热轨道结构(14),其热输出通过 需要的控制装置。 陶瓷基板(10)包括导电良好的电绝缘陶瓷材料,例如, 氧化铝,氮化铝或氧化铍陶瓷。 它可以具有所需的任何形状,但它是特别对称的碱,例如 一个八角形的底座可以低成本生产,分离很少并发症。 陶瓷基板(10)优选地构成传感器壳体的底部并且承载至少一个红外传感器元件,例如, 热电堆传感器(16)。 它还包括附加的电导体(12),其代表例如。 用于相应的外壳盖(未示出)的接触区域(12a)。 通孔触点(22)提供了顶侧(10a)和陶瓷衬底(10)的底侧之间的电连接。 电加热轨道和导体(14或12)优选地被配置为厚膜轨道。 本发明的红外传感器特别适用于红外温度计的测量头,用于摄取温度。
    • 67. 发明公开
    • 비침습적 생체온도 측정장치 및 그 방법
    • 非入侵测量装置和生物温度的方法
    • KR1020030075893A
    • 2003-09-26
    • KR1020020015371
    • 2002-03-21
    • 삼성전자주식회사
    • 김태우이상민이정환엄상진한완택
    • G01J5/00
    • G01J5/0022A61B5/015A61B5/0507G01J5/0025G01J5/02G01J5/026G01J5/08G01J5/0846
    • PURPOSE: Non-invasive measuring apparatus and method for biological temperature are provided to increase reliability for converted temperature by supplying a temperature converting table contrasting conductivity or permittivity according to characteristics of a medium. CONSTITUTION: A non-invasive measuring apparatus for biological temperature includes a signal receiving portion(11), a signal processing portion(13), a measuring portion(17) of characteristics of a medium and a database. The signal receiving portion receives electron wave emitted from an object portion of a living body. The signal processing portion outputs volume of electron wave after processing the signal of electron wave. The measuring portion of characteristics of the medium transmits measuring value by measuring conductivity or permittivity of the object portion of the living body. The database holds a temperature converting table contrasting volume of electron wave for conductivity or permittivity. A temperature converting portion(15) selects relevant temperature. Thereby, reliability of converted temperature is improved by supplying correct temperature for measured electron wave.
    • 目的:提供用于生物温度的非侵入式测量装置和方法,以通过根据介质的特性提供与导电率或介电常数对比的温度转换表来提高转换温度的可靠性。 构成:用于生物体温度的非侵入式测量装置包括信号接收部分(11),信号处理部分(13),介质特征的测量部分(17)和数据库。 信号接收部分接收从活体的物体部分发射的电子波。 信号处理部分在电子波信号处理之后输出电子波的体积。 介质的测量部分通过测量生物体的物体部分的导电率或介电常数来传递测量值。 数据库保存了电导率或介电常数的电子波对比体积的温度转换表。 温度转换部(15)选择相关的温度。 因此,通过提供测量的电子波的正确温度来提高转换温度的可靠性。