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    • 1. 发明授权
    • Photographic copying apparatus
    • 摄影复印机
    • US5661541A
    • 1997-08-26
    • US528843
    • 1995-09-15
    • Beat FrickHansjorg RotachMartin Heller
    • Beat FrickHansjorg RotachMartin Heller
    • G03B15/00G03B27/32G03B27/46
    • G03B27/32G03B15/003G03B27/462
    • The photographic copying apparatus comprises a first exposure arrangement for exposure of photographic negative and positive copy masters and a second exposure arrangement for exposure of screen copy masters onto photographic copy material. The second exposure arrangement includes a cathode ray tube with control system. The cathode ray tube is arranged at approximately a right angle with respect to the exposure light path of the first exposure arrangement. The second exposure arrangement further comprises a color filter assembly, an objective and a mirror for directing the screen copy master emitted by the cathode ray tube to the photographic copy material. The color filter assembly, the objective and the mirror are combined as a structural unit to constitute an imaging optical system, which can be positioned into the exposure light path instead of an reproduction objective of the first exposure arrangement.
    • 照相复印设备包括用于曝光照相底片和正版复印机的第一曝光装置和用于将复印主机曝光到照相复印材料上的第二曝光装置。 第二曝光装置包括具有控制系统的阴极射线管。 阴极射线管相对于第一曝光装置的曝光光路大致直角设置。 第二曝光装置还包括滤色器组件,物镜和用于将由阴极射线管发射的屏幕复制主体引导到照相复印材料的反射镜。 滤色器组件,物镜和反射镜被组合为结构单元,以构成成像光学系统,该成像光学系统可以被定位在曝光光路中,而不是第一曝光装置的再现目标。
    • 2. 发明授权
    • Color measuring device
    • 彩色测量装置
    • US08441642B2
    • 2013-05-14
    • US12820235
    • 2010-06-22
    • Mark WegmullerBeat Frick
    • Mark WegmullerBeat Frick
    • G01N21/25
    • G01J3/10G01J3/02G01J3/0278G01J3/50G01J3/501
    • A color measuring device includes a lighting arrangement for a measurement field of a measurement object to be measured, a pick-up arrangement for detecting the measurement light reflected back from the measurement field and for converting it into corresponding electric signals, an electronic circuit for controlling operation of the color measuring device and for processing and evaluating the electric signals, and a display for displaying measurement results. The lighting arrangement has a lamp ring with three identical lamp groups for illuminating the measurement field from a predefined range of angles of incidence. The pick-up arrangement has a digital camera which creates an image of the measured measurement field. The electronic circuit is designed to switch the light sources of the lamp groups on sequentially, and the camera creates a separate image of the measurement field for every switched-on light source.
    • 一种颜色测量装置,包括用于待测量的测量对象的测量场的照明装置,用于检测从测量场反射回来的测量光并将其转换成对应的电信号的拾取装置,用于控制的电子电路 颜色测量装置的操作和用于处理和评估电信号的显示器以及用于显示测量结果的显示器。 照明装置具有灯环,其具有三个相同的灯组,用于从预定入射角度照射测量场。 拾取装置具有创建测量的测量场的图像的数字照相机。 电子电路被设计为顺序地切换灯组的光源,并且相机为每个接通的光源创建测量场的单独图像。
    • 4. 发明授权
    • Photoelectric scanner
    • 光电扫描仪
    • US5041869A
    • 1991-08-20
    • US574773
    • 1990-08-30
    • Beat Frick
    • Beat Frick
    • H04N5/253G03B27/73H04N1/028H04N1/04H04N1/19
    • G03B27/735
    • The photoelectric scanner is equipped with two circular disks having aligned light passage orifices and mounted on a common drive shaft. Lenses are located in these orifices, the focal points of which are in the plane of the copy master to be scanned. The beam emitted by the source of copying light and parallelized by the condenser arrives through the curved slot of a stationary diaphragm on the lens instantaneously moving through the area of the slot and is focused in the plane of the copy master. From the lens synchronously running on the other side of the copy master, the parallelized beam of light arrives through the curved slot of a subsequent stationary diaphragm and a condenser on a receiving and detection unit with dichroitic mirrors, absorption filters and photoelectric detectors. These detectors convert the optical signals into electric signals, which are conducted to the evaluating electronic device.
    • 光电扫描仪配有两个具有对准的光通道的圆盘,并安装在公共的驱动轴上。 透镜位于这些孔中,其焦点位于要扫描的复印主体的平面内。 由复印光源发射并由电容器平行化的光束通过固定光阑的弯曲槽通过瞬时移动通过狭槽的区域的透镜,并聚焦在复制主机的平面中。 从复制主机的另一侧同步运行的镜头,并行光束通过后续固定隔膜的弯曲槽和冷凝器到达接收和检测单元,并带有二向色镜,吸收滤光片和光电探测器。 这些检测器将光信号转换成电信号,这些信号被传送到评估电子设备。
    • 7. 发明授权
    • Colour measurement device with associated measurement head
    • 带相关测量头的色彩测量装置
    • US07538871B2
    • 2009-05-26
    • US11355140
    • 2006-02-15
    • Beat FrickAdrian Von Orelli
    • Beat FrickAdrian Von Orelli
    • G01J3/28
    • G01J3/02G01J3/0278G01J3/0291G01J3/10G01J3/50G01J3/501G01J3/524G01N21/255G01N21/4738G01N21/57H04N1/00
    • A spectrophotometer for integration purposes includes a measurement head with an illumination arrangement (10) including at least one fight source (11) for the illumination of a measurement object located in a measurement plane (M) under an angle of incidence of at least 45°, with a pick-up arrangement for capturing the measurement light remitted by the measurement object under an angle of reflection of the essentially 0° relative to the perpendicular of the measurement plane, a spectrometer arrangement (30) with an entry slot (31) for the spectral splitting of the measurement fight received through the entry slot and captured and with a photoelectric receiver arrangement (32) exposed to the spectrally split measurement light for conversion of the individual spectral portions of the measurement light into corresponding electrical signals.
    • 用于集成目的的分光光度计包括具有照明装置(10)的测量头,该照明装置(10)包括至少一个用于照射位于测量平面(M)中的测量对象的至少45°的入射角(11) 具有拾取装置,用于捕获由相对于测量平面垂直的基本上0°的反射角度的由测量对象所放射的测量光;光谱仪装置(30),具有入口槽(31),用于 通过进入时隙接收到的测量作战的频谱分割并被捕获并且暴露于频谱分离的测量光的光电接收器装置(32),用于将测量光的各个频谱部分转换成相应的电信号。
    • 9. 发明申请
    • Method of Measuring The Colour of Printed Samples Containing Brighteners
    • 测量含有增白剂的印刷样品颜色的方法
    • US20080308740A1
    • 2008-12-18
    • US12136373
    • 2008-06-10
    • Mark WegmullerPeter EhbetsBeat Frick
    • Mark WegmullerPeter EhbetsBeat Frick
    • G01J1/42G01J3/46
    • G01N21/251G01N21/64
    • To measure the colour of samples printed on a substrate containing brightener, a first spectral proportion of the total spectral reflection factor of the sample is measured by illuminating the sample with light having no UV element. From this first spectral proportion, a spectral correction factor is calculated making allowance for the characterisation data of the brightened substrate and the spectral properties of a selected type of illuminating light. The spectral correction factor is added to the first spectral proportion in order to obtain the total spectral reflection factor of the measured sample. The total spectral reflection factor is then evaluated for measuring and control purposes, in particular for calculating colour values of the sample. The characterising data of the substrate is determined on the basis of measurements taken with illuminating light with no UV element and with UV light only on a limited set of measurement samples, especially on the non-printed substrate only (paper whiteness). The measuring method has the advantages of a double measurement, which it requires physically but on a significantly reduced sample set only, which speeds up the measuring procedure considerably. The measurements needed for characterising the substrate may also be run with a separate measuring device, so that the measuring method can easily be implemented in existing colour measuring devices with interchangeable measuring filters or different light sources.
    • 为了测量印刷在含有增白剂的底物上的样品的颜色,通过用不含UV元素的光照射样品来测量样品的总光谱反射系数的第一光谱比例。 从该第一光谱比例,计算光谱校正因子,使得增亮基片的特性数据和选定类型的照明光的光谱性质成为可能。 将光谱校正因子加到第一光谱比例上,以获得所测样品的总光谱反射系数。 然后评估总光谱反射因子用于测量和控制目的,特别是用于计算样品的颜色值。 基于使用没有UV元件的照明光和仅在有限的测量样品集合上的UV光进行的测量,特别是仅在非印刷衬底上(纸张白度)来确定衬底的表征数据。 测量方法具有双重测量的优点,它需要物理上,但是仅显着减少样品组,这显着地加快了测量过程。 用于表征基板的测量也可以用单独的测量装置运行,使得测量方法可以容易地在具有可互换测量滤光器或不同光源的现有颜色测量装置中实现。
    • 10. 发明授权
    • Process and apparatus for producing a photographic print
    • 用于制作照相印刷品的方法和装置
    • US6111381A
    • 2000-08-29
    • US391393
    • 1999-09-08
    • Beat FrickJurg Fenner
    • Beat FrickJurg Fenner
    • H04N5/76G03B27/32H04N1/19H04N1/195
    • H04N1/19584H04N1/195H04N2201/0414
    • For the production of a photographic print of an original present in electronic format, optical representations (D) are produced from sequentially changing strip-shaped portions of the original by way of an electro optical, pixel wise operating converter device (3) and these optical representations (D) are projected onto a strip-shaped exposure region (E) on the copy material (P), whereby the strip-shaped exposure region (E) and the copy material (P) are moved relative to one another and at an essentially constant speed in a direction transverse to the longitudinal extent of the strip-shaped exposure regions (E), so that successively the image information of the whole original is exposed onto the total available surface of the copy material (P). Each strip-shaped portion of the original is thereby divided into at least two strip-shaped sections positioned one behind the other in longitudinal direction of the portion, separate optical representations are produced from the sections by way of the electro optical converter device (3) and these separate optical representations of the sections are projected onto the copy material (P) in at least two strip-shaped partial exposure regions (E1, E2) which are positioned one behind the other in longitudinal direction and together form the strip-shaped exposure region (E). A digital micro mirror field is preferably used as the electro optical converter device (3). In this manner, large format photographic prints of high quality can be produced with relatively low constructive cost by using conventional converter devices.
    • 为了制作以电子格式呈现的原件的照相印刷品,通过电光学,像素运算转换器装置(3)从原始顺序改变的条形部分产生光学表示(D),并且这些光学 将表示(D)投影到复印材料(P)上的带状曝光区域(E)上,由此带状曝光区域(E)和复印材料(P)相对于彼此移动 在垂直于条状曝光区域(E)的纵向范围的方向上基本上恒定的速度,使得连续地将整个原稿的图像信息暴露在复印材料(P)的总可用表面上。 因此,原稿的每个条形部分被分成至少两个在该部分的纵向方向上彼此定位的条形部分,通过电光转换器装置(3)从该部分产生分离的光学表示, 并且这些部分的这些分开的光学表示在至少两个条形部分曝光区域(E1,E2)中投影到复制材料(P)上,所述两个条形部分曝光区域(E1,E2)在纵向方向上一个接一个地定位并且一起形成条状曝光 区域(E)。 优选使用数字微镜场作为电光转换器装置(3)。 以这种方式,通过使用传统的转换器装置,可以以相对低的建设性成本生产高质量的大幅面照相。