Head-up display apparatus in which reflecting mirror is rotated

    公开(公告)号:US12181669B2

    公开(公告)日:2024-12-31

    申请号:US18233988

    申请日:2023-08-15

    Inventor: Tetsuya Ogura

    Abstract: A head-up display apparatus includes: a second reflecting mirror, a first gear, and a rotating apparatus. The second reflecting mirror is rotatable around a first rotation axis C1 extending in a transversal direction. The first gear is disposed in a lower edge portion of the second reflecting mirror. The rotating apparatus includes a second gear that meshes with the first gear from below and that is rotatable around a second rotation axis C2 aligned with the first rotation axis C1. When the rotating apparatus rotates the second gear, the second reflecting mirror is rotated.

    BAND ESTIMATING DEVICE AND BAND ESTIMATE METHOD

    公开(公告)号:US20240430719A1

    公开(公告)日:2024-12-26

    申请号:US18698594

    申请日:2022-09-01

    Abstract: A band estimating device according to an embodiment of the present disclosure comprises: a learning unit that trains, by real-time learning, a real-time learning model for estimating an available band of a radio communication path for a wireless communication performed by a terminal, and that trains, by pre-learning, a pre-learning model for estimating the available band of the wireless communication path using a parameter estimated by the real-time learning model and related to the wireless communication of the terminal; and an estimating unit that uses the pre-learning model to estimate the available band of the wireless communication path.

    SOLID ELECTROLYTIC CAPACITOR
    185.
    发明申请

    公开(公告)号:US20240428998A1

    公开(公告)日:2024-12-26

    申请号:US18694622

    申请日:2022-09-01

    Abstract: A solid electrolytic capacitor includes: a plurality of capacitor elements each having a anode part and a cathode part; and two or more junctions each extending along a first direction. L1−L2≤3.8 mm is satisfied, where L1 [mm] represents a dimension of the anode part in a third direction perpendicular to each of the first direction and a second direction that is a direction from the anode part to the cathode part, and L2 [mm] represents a total dimension of maximum diameters of the two or more junctions in the third direction. b≥a/2 is satisfied, where a [mm] represents a maximum diameter of each of the two or more junctions in the third direction, and b [mm] represents a shortest distance between an end of the anode part and corresponding one of the two or more junctions in the third direction.

    Solid-state imaging apparatus and method of driving the same

    公开(公告)号:US12177585B2

    公开(公告)日:2024-12-24

    申请号:US18212037

    申请日:2023-06-20

    Abstract: An imaging device including a photoelectric converter that generates signal charge; a charge storage region that stores the signal charge; a first transistor that has a gate coupled to the charge storage region and reads out the signal charge; a second transistor that has a source and a drain, an output of the first transistor being fed back to one of the source and the drain and being supplied to the charge storage region from the other of the source and the drain; and voltage supply circuitry that supplies voltages varying with time. In a reset operation for discharging the signal charge stored in the charge storage region, the voltage supply circuitry supplies the voltages to a gate of the second transistor.

    Counting method, counting device, and recording medium

    公开(公告)号:US12175682B2

    公开(公告)日:2024-12-24

    申请号:US17699384

    申请日:2022-03-21

    Inventor: Rui Hiraoka

    Abstract: There is provided a counting method for counting a moving bonded body by exerting an external force in a predetermined direction, on a sample capable of containing the bonded body in which a target substance and a moving substance moving in response to exertion of the external force are bonded, the counting method including: obtaining a captured image of an object in the sample captured in a period from a first time point to a second time point later than the first time point during which the external force is exerted; determining a moving direction of the object from a locus, in the image, formed by the object; and counting the object as the bonded body in a case where a degree of coincidence between the predetermined direction and the moving direction is greater than a first threshold.

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