会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Image-recording with image data shifting
    • 图像记录与图像数据移位
    • US06873349B2
    • 2005-03-29
    • US10388437
    • 2003-03-17
    • Takayuki Uemura
    • Takayuki Uemura
    • B41J2/44B41J2/435B41J2/47
    • B41J2/442
    • A recording material is angled and wound on a rotating drum. Distortion (inclination) of an image can be eliminated with a comparatively simple control system, and the occurrence of distortion when there is a change in image recording specifications can be prevented. For standard specifications, although image recording lines have helical movement tracks during image-recording, a peripheral end of a printing plate and a peripheral end of an image region can be made to be parallel with one another without distortion of the image region. In contrast, when instructed specifications differ from the standard specifications, a conventional image region becomes distorted because an inclination angle of the printing plate cannot be varied. Accordingly, in a case in which instructed specifications differ from the standard specifications thus, image data is shifted in a sub-scanning direction by soft processing, and the distortion is alleviated.
    • 记录材料成角度并缠绕在旋转的滚筒上。 可以通过相对简单的控制系统消除图像的变形(倾斜),并且可以防止在图像记录规格的变化时发生失真。 对于标准规格,虽然图像记录线在图像记录期间具有螺旋运动轨迹,但是可以使印版的外围端和图像区域的外围端部彼此平行,而不会使图像区域失真。 相反,当指示的规格与标准规格不同时,由于印版的倾斜角度不能改变,传统的图像区域变形。 因此,在指示规格与标准规格不同的情况下,图像数据通过软处理沿副扫描方向移位,并且减轻失真。
    • 5. 发明申请
    • CATADIOPTRIC UNIT-MAGNIFICATION AFOCAL PUPIL RELAY AND OPTICAL IMAGING SYSTEM EMPLOYING THE SAME
    • CATADIOPTRIC UNIT-MAGIFIFICATION AFOCAL瞳孔继电器和使用相同光学成像系统
    • WO2018047832A1
    • 2018-03-15
    • PCT/JP2017/031999
    • 2017-09-05
    • NIKON CORPORATION
    • WILLIAMSON, David
    • A61B3/10
    • An optical system configured for imaging an object with the use of two independently-scanning reflectors, the optical system having an optical axis and including: first and second scanning reflectors, the first scanning reflector being configured to scan a beam of light incident thereon in a first plane, the second scanning reflector being configured to scan a beam of light incident thereon in a second plane, and the first and second planes being transverse to one another; and a catadioptric afocal relay system disposed along the optical axis in optical communication with, and between, the first and second scanning reflectors, the catadioptric afocal relay system being configured to image one of the first or second scanning reflectors onto another of the first or second scanning reflectors, in light propagating along the optical axis, with a unit magnification, and the catadioptric afocal relay system including only one reflector.
    • 用于使用两个独立扫描反射器对物体进行成像的光学系统,所述光学系统具有光轴并且包括:第一扫描反射器和第二扫描反射器,所述第一扫描反射器被配置为扫描 在第一平面上入射在其上的光束,所述第二扫描反射器被配置为在第二平面内扫描入射在其上的光束,并且所述第一和第二平面彼此横切; 以及反射折射式无焦继电器系统,沿光轴布置,与第一和第二扫描反射器之间以及第一和第二扫描反射器之间光通信,折反射无焦中继系统被配置为将第一或第二扫描反射器之一成像到第一或第二 在单位放大率下沿着光轴传播的光中扫描反射器,以及仅包括一个反射器的折反射焦外中继系统。
    • 6. 发明申请
    • WIDE-ANGLE PUPIL RELAY FOR CELLPHONE-BASED FUNDUS CAMERA
    • 基于CELLPHONE的FUNDUS摄像机的广角瞳继电器
    • WO2018043657A1
    • 2018-03-08
    • PCT/JP2017/031412
    • 2017-08-31
    • NIKON CORPORATION
    • WILLIAMSON, David
    • A61B3/14
    • An optical imaging system includes a first lens system housed in a body of a mobile telecommunication device, the first lens system having a first optical axis, a first entrance pupil fixed in space in a reference plane associated with said body, and a first focal length; and an optical telescope providing a diffraction-limited imaging within a spectral range from at least 486 nm to at least 656 nm. The optical imaging system is configured to image, when the optical telescope is inserted between the first lens system and an entrance pupil of a visual system of an eye (EPE), the EPE onto the first entrance pupil and vice versa with a substantially unit magnification.
    • 光学成像系统包括容纳在移动电信装置的主体中的第一透镜系统,第一透镜系统具有第一光轴,第一入瞳固定在参考平面中的空间中, 所述主体和第一焦距; 以及在至少486nm至至少656nm的光谱范围内提供衍射极限成像的光学望远镜。 当光学望远镜插入到第一透镜系统和眼睛的视觉系统(EPE)的入瞳之间时,光学成像系统被配置为在大致单位放大率下将EPE成像到第一入瞳上,反之亦然
    • 8. 发明授权
    • Color-based sorting apparatus
    • 基于颜色的分拣装置
    • US06884956B2
    • 2005-04-26
    • US10291507
    • 2002-11-12
    • Takehiro MurataTsuneyoshi GotoMikio TamuraKenichi Kikuchi
    • Takehiro MurataTsuneyoshi GotoMikio TamuraKenichi Kikuchi
    • G01N21/85B07C5/342B07C5/36
    • B07C5/3425
    • A color-based sorting apparatus comprising, a material supplying device provided so as to discharge and supply the grains stored therein, a color detecting device detecting a color of each of the grains passing through a setting region, a sorting processing section operating to change a transference path for defective grains, a control device, which determines whether each of the grains to be sorted is defective or not based on a detection signal from the color detecting device, and when it is determined that one of the grains is defective, the control device activating the sorting processing section, and a feeding roll disposed between the material supplying device and the color detecting device and rotating around an axial line thereof to cause the grains to be sorted, which are supplied from said material supplying device aligned in an axial direction, to freely fall down toward the color detecting device.
    • 一种基于颜色的分类装置,其特征在于,包括:供给装置,其设置为放出并供给存储在其中的晶粒;色调检测装置,检测通过设定区域的各颗粒的颜色;分选处理部, 基于来自颜色检测装置的检测信号,判定是否有待分类的颗粒是否有缺陷的控制装置,并且当确定其中一个颗粒有缺陷时,控制装置 激活分选处理部的装置以及设置在材料供给装置和颜色检测装置之间并且绕其轴线旋转的供给辊,以使得从所述材料供给装置供给的颗粒从轴线方向排列 自由地向着颜色检测装置落下。
    • 9. 发明授权
    • Sheet-shaped material positioning device and printing plate precursor exposure device
    • 片状材料定位装置和印版前体曝光装置
    • US06865987B2
    • 2005-03-15
    • US10389936
    • 2003-03-18
    • Yoshihiro KoyanagiAkihiro HashiguchiKazuhisa Okamoto
    • Yoshihiro KoyanagiAkihiro HashiguchiKazuhisa Okamoto
    • B41C1/10B41L47/14
    • B41C1/1083
    • A device for positioning a sheet-shaped material by providing a plurality of pairs of pins on a conveying path. Printing plate precursors are classified, on the basis of widths thereof, into large-sized and small-sized. Two pairs of positioning pins are provided for each size, and are disposed so as to be offset in a direction of conveying a printing plate precursor toward a rotating drum. A width of a small-sized printing plate precursor is smaller than a pitch dimension of a pair of positioning pins for large-sized printing plate precursors. Therefore, the small-sized printing plate precursor abuts and is positioned by positioning pins for small-sized printing plate precursors which are provided further ahead. Moreover, a large-sized printing plate precursor directly abuts and is positioned by the positioning pins for large-sized printing plate precursors, so as not to be interfered with by the positioning pins for small-sized printing plate precursors.
    • 一种用于通过在输送路径上设置多对销来定位片状材料的装置。 印版前体根据其宽度被分类为大尺寸和小尺寸。 为每个尺寸设置两对定位销,并且设置成沿着将印版前体朝向旋转鼓传送的方向偏移。 小尺寸印版前体的宽度小于用于大尺寸印版前体的一对定位销的间距尺寸。 因此,小尺寸印版前体通过定位用于进一步提前的小尺寸印版前体的销定位。 此外,大尺寸印版前体通过用于大尺寸印版前体的定位销直接邻接并定位,从而不受用于小尺寸印版前体的定位销的干扰。
    • 10. 发明授权
    • Grain agitating apparatus and grain storing apparatus
    • 谷物搅拌装置和粮食储存装置
    • US06846102B2
    • 2005-01-25
    • US10386719
    • 2003-03-13
    • Souichi YamamotoMamoru AbeEiji Oyama
    • Souichi YamamotoMamoru AbeEiji Oyama
    • A01F25/00B01F3/18B01F7/00B01F7/30B01F15/00B01F7/24
    • B01F15/00454B01F3/18B01F7/00416B01F7/302B01F15/00681
    • In an agitating machine, an axial direction of a drive roll is inclined to one side or another side with respect to an axial direction of a guide shaft which is rotated on its own axis, whereby a drive support machine casing and a driven support machine casing are moved to one end side or another end side of the guide shaft. When an arrival detecting apparatus detects that the drive support machine casing or the driven support machine casing has reached the one end side or the another end side of the guide shaft, a control apparatus drives a reversing motor so as to incline the axial direction of the drive roll to the another side or the one side. Since the arrival detecting apparatus, the reversing motor and the control apparatus are electrically driven, it is possible to securely incline the axial direction of the drive roll.
    • 在搅拌机中,驱动辊的轴向相对于在其自身轴线上旋转的导向轴的轴向的一侧或另一侧倾斜,由此驱动支撑机壳体和从动支撑机壳体 被移动到导向轴的一端侧或另一端侧。 当到达检测装置检测到驱动支撑机壳体或从动支撑机壳体已经到达引导轴的一端侧或另一端侧时,控制装置驱动反转电动机,以使轴向方向倾斜 驱动卷到另一侧或一侧。 由于到达检测装置,反转马达和控制装置是电驱动的,所以可以可靠地倾斜驱动辊的轴向。