Display device
    2.
    发明授权

    公开(公告)号:US12106691B2

    公开(公告)日:2024-10-01

    申请号:US18349616

    申请日:2023-07-10

    申请人: JOLED INC.

    发明人: Takahiro Yamada

    IPC分类号: G09G3/00 G01K1/02

    摘要: A display device includes: a substrate temperature obtainer that obtains a substrate temperature of a substrate of a display panel; a power obtainer that obtains an amount of power used by a plurality of segmented regions of the display panel, based on image data displayed on the display panel; a first increased temperature deriver that derives an increased temperature of a panel surface of the display panel based on the amount of power used by the plurality of segmented regions; and a surface temperature estimator that estimates a temperature of the panel surface based on the substrate temperature and the increased temperature.

    CONTROL DEVICE FOR ELECTRIC FLIGHT VEHICLE
    4.
    发明公开

    公开(公告)号:US20240317416A1

    公开(公告)日:2024-09-26

    申请号:US18679884

    申请日:2024-05-31

    申请人: DENSO CORPORATION

    摘要: A control device is configured to control an electric flight vehicle. The electric flight vehicle includes an electric drive device configured to drive and rotate a rotor blade and a cooling unit configured to cool the drive device. The control device includes a temperature acquisition unit and a cooling determination unit. The temperature acquisition unit is configured to acquire temperature of the drive device as a device temperature. The cooling determination unit is configured to determine, according to the device temperature, whether a cooling-related abnormality has occurred as an abnormality related to cooling of the drive device by the cooling unit.

    Heat flux temperature sensor probe for non-invasive process fluid temperature applications

    公开(公告)号:US12072245B2

    公开(公告)日:2024-08-27

    申请号:US17490467

    申请日:2021-09-30

    申请人: Rosemount Inc.

    发明人: John L. Reuvers

    摘要: A heat flux temperature sensor probe includes a first mineral-insulated cable portion and a second mineral-insulated cable portion. The first mineral-insulated cable portion has a first metallic sheath, a first plurality of thermocouple conductors extending therein, and an inorganic insulative material insulating the first plurality of thermocouple conductors from one another and from the first metallic sheath. The second mineral-insulated cable portion has a second metallic sheath, a second plurality of thermocouple conductors extending therein, and an inorganic insulative material insulating the second plurality of thermocouple conductors from one another and from the second metallic sheath. A first thermocouple is formed between at least one of the first plurality of thermocouple conductors and one of the second plurality of thermocouple conductors proximate a first end of the second mineral-insulated cable portion. A second thermocouple is formed between at least two of the second plurality of thermocouple conductors proximate a second end of the second mineral-insulated cable. A sheath is operably coupled to and connects the first and second mineral insulated cable portions, a portion of an interior of the sheath is filled with a non-conductive material.

    RTD degradation detection
    10.
    发明授权

    公开(公告)号:US12055443B2

    公开(公告)日:2024-08-06

    申请号:US16906272

    申请日:2020-06-19

    申请人: Rosemount Inc.

    IPC分类号: G01K1/024 G01K1/02 G01K7/16

    CPC分类号: G01K1/024 G01K1/026 G01K7/16

    摘要: A process fluid temperature transmitter includes a plurality of terminals, an excitation source, a measurement device, and a controller. The plurality of terminals is couplable to an RTD. The excitation source is operably coupled to the plurality of terminals and is configured to apply an excitation signal to the RTD. The measurement device is coupled to the plurality of terminals and is configured to measure a response of the RTD to the applied excitation signal. The controller is coupled to the excitation source and the measurement device. The controller is configured to perform an RTD resistance measurement by causing the excitation source to apply the excitation signal to the RTD and to cause the measurement device to measure the response of the RTD while the excitation signal is applied to the RTD. The controller is also configured to perform an RTD diagnostic by causing the excitation source to change application of the excitation signal and causing the measurement device to measure an RTD response to the changed excitation signal.