Method of making an imaging array having a higher sensitivity
    11.
    发明授权
    Method of making an imaging array having a higher sensitivity 失效
    制作具有较高灵敏度的成像阵列的方法

    公开(公告)号:US4658497A

    公开(公告)日:1987-04-21

    申请号:US740719

    申请日:1985-06-03

    CPC classification number: H01L27/14887 H01L31/18 Y10S148/083

    Abstract: An imaging array of the charge transfer type having improved sensitivity is disclosed. The array includes a plurality of substantially parallel charge transfer channels with channel stops therebetween which extend a distance into a semiconductor body. At least some of the channel stops have blooming drains therein for the removal of excess photogenerated charge. The improvement comprises potential barrier means which constrain electrical charge generated by absorption of light in the body to flow into the channels while preventing the loss of such charge by direct flow to the blooming drains. Potential barrier means include buried barrier regions extending a further distance into the body from those channel stops having blooming drain regions therein.The invention also includes an improved method of forming this array wherein the improvement comprises forming buried barrier regions containing a greater concentration of conductivity modifiers than the channel stops after the blooming drains are formed.

    Abstract translation: 公开了具有改进的灵敏度的电荷转移类型的成像阵列。 该阵列包括多个基本上平行的电荷传输通道,其间具有通道阻挡件,其延伸到半导体本体中的距离。 至少一些通道挡板在其中具有开口的排水口以去除过量的光生电荷。 该改进包括势垒装置,其限制通过吸收身体中的光而产生的电荷流入通道,​​同时通过直接流动到开花的排水口来防止这种电荷的损失。 电势屏障装置包括从其中具有开放漏极区的那些通道阻挡区向主体延伸更远距离的掩埋阻挡区域。 本发明还包括形成该阵列的改进方法,其中改进包括形成掩埋阻挡区域,该掩埋阻挡区域包含比形成开花排水道之后的通道停止的更大浓度的导电性改进剂。

    GEAR FINE-TUNING PAN-TILT
    15.
    发明申请

    公开(公告)号:US20230048054A1

    公开(公告)日:2023-02-16

    申请号:US17595543

    申请日:2020-02-18

    Inventor: Ruogu ZHOU

    Abstract: The present invention relates to the technical field of photography and videography, in particular to a gear fine-tuning pan-tilt. The gear fine-tuning pan-tilt includes a rotating base, a roll worm support seat, a roll adjusting assembly, a pitch adjusting assembly, and a bearing seat arranged in sequence from bottom to top; the pitch adjusting assembly of the complete gear structure is located on the above, providing large-angle pitch ability, and the roll adjusting assembly located below adopts an arc-shaped rack structure, which reduces the interference to the pitching movement of the upper assembly and makes the height of the pan-tilt smaller. The arc opening of the arc-shaped rack faces upwards, so that the rotation axis is closer to the center axis of the lens, the camera displacement is small during the leveling process, and the unintended picture movement is small. The upper and lower combination of the two structures strengthens the swing ability of the top of the pan-tilt in the limited size, and is therefore more convenient to use: firstly aiming at the subject through the rotating base, and then leveling the left and right, and then determining the pitch angle. The camera always maintains the left and right level during pitching process. There is no need to level the left and right again after the pitch angle is changed, and roll deviation will not occur when the camera pitches and the lens is moved.

    SYSTEM FOR CONVEYING LOADS BETWEEN A PLURALITY OF STORAGE UNITS AND A PLURALITY OF PREPARATION STATIONS, THROUGH A HORIZONTAL LOAD-ROUTING NETWORK

    公开(公告)号:US20200148472A1

    公开(公告)日:2020-05-14

    申请号:US16628184

    申请日:2018-07-05

    Applicant: SAVOYE

    Abstract: A system is proposed for conveying loads without sequencing, between storage units and preparation stations. The system includes first and second collecting conveyors, positioned on a same horizontal plane, parallel, mono-directional and having opposite directions of movement, to connect each storage unit to the first collector, storage unit entry and exit conveyors; to connect each preparation station to the second collector, preparation station entry and exit conveyors; for at least one couple including a storage unit and a preparation station facing each other on either side of the first and second collectors, a pair of junction conveyors interconnecting the first and second collecting conveyors and including outbound and return junction conveyors having opposite directions of movement.

    PANORAMIC HEAD
    19.
    发明申请
    PANORAMIC HEAD 审中-公开

    公开(公告)号:US20180081259A1

    公开(公告)日:2018-03-22

    申请号:US15564099

    申请日:2016-05-26

    Inventor: Zhou Ruogu

    CPC classification number: G03B17/561 G03B37/00 G03B37/02

    Abstract: A panoramic head includes a base and a rotating main body for bearing a shooting device; a rotating component is arranged at the lower part of the rotating main body, and a fixing part for fixing the shooting device is arranged at the upper part; the base is provided with a matching component for matching the rotating component, the rotating component and the matching component are coaxially arranged, and the rotating component can rotate for 360 degrees relative to the matching component; and the rotating main body is provided with fixing parts conforming to the size of the shooting device, the shooting device is fixed by means of the fixing parts, when the rotating main body rotates along with the rotating component thereof, panoramic shooting can be completed, and a lens node of the shooting device is located on a rotation axis of the rotating component.

    SYSTEM AND METHOD OF SEQUENCING FOR AT LEAST ONE PREPARING STATION

    公开(公告)号:US20180009605A1

    公开(公告)日:2018-01-11

    申请号:US15543485

    申请日:2016-01-11

    Applicant: SAVOYE

    Abstract: A system for sequencing a preparing station that sequences loads coming from an external unit via an entering outbound conveyor. The system includes a paternoster, a buffer location and a managing unit, which processes each load that comes to an entrance of the paternoster according to one of the following modes (selected as a function of a place desired for the load in a sequence): (a) after introduction into the paternoster, the load undergoes a bypass transfer between two nacelles positioned face to face and then presented to an exiting outbound conveyor; (b) after introduction into the paternoster, the load undergoes a buffer transfer towards a given buffer location and then subsequently re-positioned again in the paternoster and finally presented to the exiting outbound conveyor; (c) after introduction into the paternoster, the load is transported therein without bypass transfer or buffer transfer and then presented to the exiting outbound conveyor.

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