TEMPERATURE MEASUREMENT INTEGRATED CIRCUIT WITH FLEXIBLE CABLE AND SENSING ELEMENT

    公开(公告)号:EP3372969A1

    公开(公告)日:2018-09-12

    申请号:EP18160458.8

    申请日:2018-03-07

    IPC分类号: G01K1/14 G01K7/00

    摘要: A temperature sensing system (100, 300) includes a temperature sensing element (106, 316). The temperature sensing element (106, 316) is bondable to an exterior surface of an electronic component (108, 314) and configured to sense a temperature at an interior of the electronic component (108, 314). The system further includes a flexible cable (104, 304) operatively connected to the temperature sensing element (106, 316), and a signal conditioning unit (102, 308) operatively connected to a distal end of the flexible cable (104, 304). The signal conditioning unit (102, 308) is mountable to a printed circuit board proximate to the electronic component (108, 314). The signal conditioning unit (108, 308) is configured to receive a signal from the temperature sensing element (106, 316), and output a signal indicative of the temperature at the interior of the electronic component.

    THERMOCOUPLE TEMPERATURE DETECTOR MOUNTING STRUCTURE FOR HIGH VISCOSITY MIXING MATERIAL MIXER

    公开(公告)号:EP2933617B1

    公开(公告)日:2018-07-04

    申请号:EP13865909.9

    申请日:2013-11-26

    摘要: [Object] To provide a mounting configuration of a thermocouple temperature detector on a kneading tank, in which a temperature detection end of the thermocouple temperature detector mounted on a kneader for high viscosity material can perform a real time temperature measurement and a mechanical load applied on the temperature detection end by flow of the kneading material is minimized as possible. [Solution] A heat sensing section 18 in a hemispherical shape on the distal end of a protective inner tube 17 which houses a thermocouple element 12 of a thermocouple temperature detector 10 is mounted on a kneading tank 1 for kneading a high viscosity kneading material so as to protrude from the distal end of a protective chip 16 which protrudes into the kneading tank. A protrusion proximal end 16a of the protective chip which protrudes into the kneading tank is formed to have an outer diameter of 2 to 3 times as large as that of the protective inner tube and a protruding length h which protrudes into the kneading tank having the same length as the difference between a radius of the protrusion proximal end of the protective chip and a radius of the protective inner tube, and an outer peripheral surface of the shoulder 16b of the protective chip which extends from the protrusion proximal end of the protective chip to a position which is in contact with the outer periphery of the protective inner tube is formed in a convex curvature surface having a radius which corresponds to a difference between the radius of the protrusion proximal end of the protective chip and the radius of the protective inner tube.