IMAGING UNIT AND IMAGING SYSTEM
    1.
    发明公开

    公开(公告)号:US20230400421A1

    公开(公告)日:2023-12-14

    申请号:US18032407

    申请日:2021-09-24

    Inventor: Haruki SUZUKI

    CPC classification number: G01N23/04 G01T1/20187

    Abstract: An imaging unit includes: a first sensor module; a second sensor module; a processing substrate; a first connection member; and a second connection member. The first sensor module includes a first lens and a first sensor. The second sensor module includes a second lens and a second sensor. The processing substrate executes image processing based on the first image signal and the second image signal. The first connection member electrically connects the first sensor module and the processing substrate, and has flexibility. The second connection member electrically connects the second sensor module and the processing substrate, and has flexibility.

    IMAGING UNIT AND RADIATION IMAGE ACQUISITION SYSTEM

    公开(公告)号:US20230344958A1

    公开(公告)日:2023-10-26

    申请号:US18214658

    申请日:2023-06-27

    CPC classification number: H04N5/32 G01T1/2002 G01T1/2018

    Abstract: An imaging unit includes a housing having a wall portion in which a slit for passing radiation is formed, a scintillator having an input surface to which radiation passing through the slit is input, a first mirror that reflects scintillation light output from the input surface, and a line scan camera that detects scintillation light reflected by the first mirror. The scintillator is placed to make the input surface parallel to both the conveying direction and a line direction. The first mirror is positioned outside an irradiation region connecting the peripheral edge of the slit to the input surface of the scintillator.

    IMAGING UNIT AND RADIATION IMAGE ACQUISITION SYSTEM

    公开(公告)号:US20220141397A1

    公开(公告)日:2022-05-05

    申请号:US17310820

    申请日:2019-12-23

    Abstract: An imaging unit includes a housing having a wall portion in which a slit for passing radiation is formed, a scintillator having an input surface to which radiation passing through the slit is input, a first mirror that reflects scintillation light output from the input surface, and a line scan camera that detects scintillation light reflected by the first mirror. The scintillator is placed to make the input surface parallel to both the conveying direction and a line direction. The first mirror is positioned outside an irradiation region connecting the peripheral edge of the slit to the input surface of the scintillator.

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