IR thermometer
    21.
    发明授权
    IR thermometer 失效
    红外线温度计

    公开(公告)号:US5479931A

    公开(公告)日:1996-01-02

    申请号:US154276

    申请日:1993-11-18

    Applicant: Mark Mooradian

    Inventor: Mark Mooradian

    Abstract: A novel wave guide assembly for use in an IR thermometer of the type used in measuring temperature of the tympanic membrane of the ear for body temperature determinations. The assembly provides a unique arrangement of spacers and a protective sheath to create a durable yet inexpensive wave guide. The spacer includes radially offset contact points that induce moment arms to absorb shock and other forms of rough handling encountered in daily use.

    Abstract translation: 一种用于测量耳朵鼓膜温度的类型的红外温度计的新型波导组件,用于体温测定。 组件提供了独特的间隔件和保护套的布置,以产生耐用且便宜的波导。 间隔件包括径向偏移的接触点,其引起力矩臂以吸收日常使用中遇到的冲击和其他形式的粗糙处理。

    EXPLOSION-PROOF THERMAL IMAGING SYSTEM
    24.
    发明申请
    EXPLOSION-PROOF THERMAL IMAGING SYSTEM 审中-公开
    防爆热成像系统

    公开(公告)号:US20170006237A1

    公开(公告)日:2017-01-05

    申请号:US14755094

    申请日:2015-06-30

    Applicant: Rosemount Inc.

    Abstract: An explosion-proof thermal imaging system is provided. The system include an explosion-proof housing having a window that is configured to allow thermal radiation therethrough. An infrared camera is positioned within the explosion-proof housing and is disposed to receive and image thermal radiation that passes through the window. An emissivity target is disposed within a field of view of the infrared camera, but on an opposite side of the window from the infrared camera. A temperature sensor is operably coupled to the infrared camera and is configured to provide an indication of temperature proximate the emissivity target.

    Abstract translation: 提供防爆热成像系统。 该系统包括具有被配置为允许热辐射通过其中的窗口的防爆壳体。 红外摄像机位于防爆壳体内,并设置成接收和图像通过窗户的热辐射。 辐射目标设置在红外摄像机的视场内,但在与红外摄像机的窗口的相对侧。 温度传感器可操作地耦合到红外相机,并且被配置为提供接近发射率目标的温度的指示。

    Method and apparatus for high sensitivity particulate detection in infrared detector assemblies
    25.
    发明授权
    Method and apparatus for high sensitivity particulate detection in infrared detector assemblies 有权
    用于红外检测器组件中高灵敏度微粒检测的方法和装置

    公开(公告)号:US09476818B1

    公开(公告)日:2016-10-25

    申请号:US14863016

    申请日:2015-09-23

    Abstract: A detector assembly includes a dewar chamber having an aperture and an infrared radiation detector. The detector assembly also includes a mirror disposed adjacent the aperture of the dewar chamber, where the mirror has a reflective surface and an emitting region facing the aperture. The infrared radiation detector is configured to detect first radiation and second radiation from the mirror. The first radiation originates from at least one relatively cold surface in the dewar chamber and reflects off the reflective surface of the mirror. The second warm radiation originates from at least one relatively warm surface at or behind the emitting region. The infrared radiation detector is also configured to detect an artifact caused by a particle in the dewar chamber that blocks a portion of the first or second radiation.

    Abstract translation: 检测器组件包括具有孔的杜瓦瓶室和红外辐射检测器。 检测器组件还包括邻近杜瓦瓶室的孔布置的反射镜,其中反射镜具有反射表面和面向孔的发射区域。 红外辐射检测器被配置为检测来自反射镜的第一辐射和第二辐射。 第一辐射源自杜瓦瓶室中的至少一个相对较冷的表面并且反射离开反射镜的反射表面。 第二暖辐射源自发射区域之上或之后的至少一个相对温暖的表面。 红外辐射检测器还被配置为检测由杜瓦瓶室中的颗粒引起的伪影,其阻挡第一或第二辐射的一部分。

    Arrangement having an electric machine and method for operating an electric machine
    26.
    发明授权
    Arrangement having an electric machine and method for operating an electric machine 有权
    具有电机的装置和操作电机的方法

    公开(公告)号:US08358094B2

    公开(公告)日:2013-01-22

    申请号:US13391181

    申请日:2009-08-19

    Inventor: Jürgen Zettner

    Abstract: The invention relates to a method and arrangement having an electric machine, comprising a stator (4) and a rotor (1) and an infrared temperature sensor, wherein the detection field of the infrared temperature sensor is directed at an outer surface of the rotor (1). The infrared temperature sensor is a thermopile (6) for radiometrically contactlessly detecting a temperature of the rotor (1), the thermopile being arranged in a slot of the stator (4) and being compatible with standard slot-sealing-wedge components of the electric machine with regard to assembly, and thus enables the operational monitoring of the thermal state of an electric machine in a novel manner, such that adapted power states can be achieved.

    Abstract translation: 本发明涉及一种具有电机的方法和装置,包括定子(4)和转子(1)和红外温度传感器,其中红外温度传感器的检测场指向转子的外表面 1)。 红外温度传感器是用于放射学地非接触地检测转子(1)的温度的热电堆(6),热电堆被布置在定子(4)的槽中,并且与电气的标准槽密封楔形部件兼容 机器,因此能够以新颖的方式对电机的热态进行操作监视,使得可以实现适应的功率状态。

    Thermal imaging device with a battery pack with a seal member molded directly thereon
    27.
    发明授权
    Thermal imaging device with a battery pack with a seal member molded directly thereon 有权
    热成像装置,其具有直接在其上成型的密封件的电池组

    公开(公告)号:US07959458B2

    公开(公告)日:2011-06-14

    申请号:US12976399

    申请日:2010-12-22

    Abstract: A thermal imaging device includes a replaceable battery pack, which may include a shock absorbing and/or seal member. A battery portion of the battery pack includes an electrical contact and a sidewall that contains at least one battery cell, which is electrically coupled to the contact. An attachment mechanism of the battery pack is configured to engage a portion of a housing of the device, such that a portion of the battery pack forms a terminal end of the device, the battery portion is held within the portion of the housing, and the electrical contact of the battery portion is operably connected to the imaging assembly of the device. The attachment mechanism is releasable from engagement with the housing, such that an entirety of the battery pack can be completely separated from the thermal imaging device.

    Abstract translation: 热成像装置包括可替换的电池组,其可以包括减震和/或密封构件。 电池组的电池部分包括电接触和侧壁,其包含至少一个与接触件电耦合的电池单元。 电池组的附接机构构造成与装置的壳体的一部分接合,使得电池组的一部分形成装置的终端,电池部分保持在壳体的部分内,并且 电池部分的电接触可操作地连接到装置的成像组件。 附接机构可脱离与壳体的接合,使得整个电池组可以与热成像装置完全分离。

    Method and apparatus for ultrasonic sensing
    28.
    发明授权
    Method and apparatus for ultrasonic sensing 有权
    超声波检测方法和装置

    公开(公告)号:US07911881B2

    公开(公告)日:2011-03-22

    申请号:US12012650

    申请日:2008-02-05

    Inventor: Ivan Di Federico

    Abstract: A distance and temperature sensing unit is used on paving vehicles. The unit has a first set of range sensors of a first diameter and a second set of range sensors of a second diameter. The unit calculates a weighted average distance to a road surface based on ranges measured by the multiple sensors. The unit also has a temperature sensor on a temperature bar. The bar is affixed to the unit by a flexible connection preventing break-off when the bar encounters obstacles, like the road surface, while the paving vehicle is moving.

    Abstract translation: 铺路车辆使用距离和温度检测单元。 该单元具有第一直径的第一组距离传感器和第二直径的第二组距离传感器。 该单元基于由多个传感器测量的范围来计算到路面的加权平均距离。 该单元还在温度条上具有温度传感器。 该杆通过柔性连接固定到单元上,当铺路车移动时,当酒吧遇到障碍物(如路面)时,防止断裂。

    Infrared Sensor
    29.
    发明申请
    Infrared Sensor 审中-公开
    红外线传感器

    公开(公告)号:US20080164413A1

    公开(公告)日:2008-07-10

    申请号:US11791318

    申请日:2005-11-17

    Abstract: An object of the present invention is to provide an infrared detector that is strong against mechanical impacts and enables mounting for various applications to be carried out readily and reliably. An infrared detector 1 includes: a base member 10, positioned at a lower portion; an infrared detecting chip 20, mounted on the base member 10 and for detecting infrared rays; an optical window chip 30, positioned above the infrared detecting chip 20 and for transmitting infrared rays; and bonding wires 38, connecting terminals of the infrared detecting chip 20 with terminals of the base member 10, and a portion below a predetermined distance from an upper surface 30a of the optical window chip 30 is coated by a coating member 40. By interposition of a spacer 36, the optical window chip 30 and the infrared detecting chip 20 form a sealed space 34 that houses an infrared photosensitive portion 23.

    Abstract translation: 本发明的目的是提供一种对机械冲击强的红外检测器,并且能够容易且可靠地进行各种应用的安装。 红外线检测器1包括:位于下部的基座部件10; 红外线检测芯片20,安装在基座部件10上,用于检测红外线; 位于红外检测芯片20上方并用于发射红外线的光学窗口芯片30; 并且将接合线38,红外线检测芯片20的连接端子与基体部件10的端子,以及距离光学窗口芯片30的上表面30a以下预定距离的部分被涂覆部件40涂覆。 通过插入间隔件36,光学窗口芯片30和红外线检测芯片20形成容纳红外线感光部23的密封空间34。

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