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    • 1. 发明授权
    • Green tea beverages manufacturing process
    • 绿茶饮料制造工艺
    • US06387428B1
    • 2002-05-14
    • US09638020
    • 2000-08-14
    • Hitoshi KinugasaMasami SasameNobuo MatsumotoKenji ShimaokaYoko UenoHitoshi NiinoKazunori OkanoyaIzumi Kobayashi
    • Hitoshi KinugasaMasami SasameNobuo MatsumotoKenji ShimaokaYoko UenoHitoshi NiinoKazunori OkanoyaIzumi Kobayashi
    • A23F300
    • A23F3/18A23F3/163
    • In order to produce green tea beverages which have a good flavor and a good balance of the fragrant components and do not form unpleasant precipitates, such green tea beverage are produced by a method including an extracting step consisting of two extraction steps, a first step in which green tea leaves are extracted at an applied pressure to obtain a pressure extract (step 1) and a second step in which green tea leaves are extracted under atmospheric pressure, followed by microfiltration to obtain an atmospheric extract (step 2), and a mixing step in which the pressure extract and the atmospheric extract obtained in the respective step are mixed at a mixing ratio determined on the basis of the weight of the raw tea leaves (step 3). This method can provide the production of drinks which have a good flavor and a good balance of the fragrant components and in addition, do not result in formation of deposits, and are suitable for beverages, in particular, for packing into PET bottles by mixing, at a predetermined ratio, the pressure extract from step 1, which is rich in suitable fragrance but short in astringency and tastiness, and the atmospheric extract from step 2, which is intense in astringency and tastiness and provided with a good color tone.
    • 为了生产具有良好风味和良好的香味成分平衡的绿茶饮料,不会形成令人不愉快的沉淀物,这种绿茶饮料通过包括由两个提取步骤组成的提取步骤的方法制备,第一步是 在施加压力下提取绿茶叶以获得压力提取物(步骤1),在大气压下提取绿茶叶,然后微滤以获得大气提取物(步骤2),并进行混合 将以各生产茶叶的重量为基准的混合比混合各步骤中获得的压力提取物和大气提取物的步骤(步骤3)。 该方法可以提供具有良好的香味和良好的香味成分平衡的饮料的生产,并且不会导致沉积物的形成,并且适用于饮料,特别是通过混合包装到PET瓶中, 来自步骤1的压力提取物,其富含合适的香味,但是涩味和口味短,以及步骤2的大气提取物,其涩味和味道强烈并具有良好的色调。
    • 5. 发明申请
    • APPARATUS FOR PRINTHEAD MOUNTING
    • 装置安装
    • US20100194822A1
    • 2010-08-05
    • US12363535
    • 2009-01-30
    • Nobuo MatsumotoTadashi Kyoso
    • Nobuo MatsumotoTadashi Kyoso
    • B41J2/14
    • B41J2/17513B41J2/161B41J2/1623B41J2/17553B41J2002/14362
    • A printhead assembly including a printhead module and a mounting structure is described. The printhead module is mounted on a receiving surface of the mounting structure and includes a first edge and a second edge opposite the first edge. The first and second edges extend beyond edges of the receiving surface by a first distance in a first direction and are positioned between featured edges of the mounting structure in a second direction that is substantially perpendicular to the first direction. Each featured edge includes a first feature protruding from the featured edge by a second distance in the first direction, where the second distance is greater than the first distance. The first features extend beyond the first and second edges of the printhead module. Each featured edge includes a recessed second feature configured to receive a first feature of a neighboring mounting structure.
    • 描述了包括打印头模块和安装结构的打印头组件。 打印头模块安装在安装结构的接收表面上,并且包括与第一边缘相对的第一边缘和第二边缘。 第一和第二边缘沿着第一方向延伸超过接收表面的边缘第一距离,并且在基本上垂直于第一方向的第二方向上定位在安装结构的特征边缘之间。 每个特征边缘包括从第一方向从特征边缘突出第二距离的第一特征,其中第二距离大于第一距离。 第一个功能超出了打印头模块的第一和第二边缘。 每个特征边缘包括被构造成接收相邻安装结构的第一特征的凹陷的第二特征。
    • 6. 发明申请
    • METHOD AND APPARATUS FOR PRINTING
    • 印刷方法和装置
    • US20100156998A1
    • 2010-06-24
    • US12340389
    • 2008-12-19
    • Nobuo MatsumotoDeane A. Gardner
    • Nobuo MatsumotoDeane A. Gardner
    • B41J2/045
    • B41J2/2139
    • Methods and apparatus for printing are described. A first mode of printing includes actuating a set of two or more actuators configured to drive printing fluid ejection from a corresponding set of two or more nozzles. In response to a drive signal, each actuator pressurizes a corresponding pumping chamber and ejects a printing fluid from a nozzle in fluid communication with the pumping chamber. The printing fluid ejected from the set of two or more nozzles represents a single pixel of an image being printed. A second mode of printing is in response to determining that a nozzle in the set of nozzles is operating defectively, and includes adjusting the one or more drive signals to the one or more remaining nozzles in the set such that the volume of printing fluid ejected from the remaining nozzles compensates for a lack of printing fluid ejected from the defective nozzle.
    • 描述了用于打印的方法和装置。 第一打印模式包括致动一组两个或更多个致动器,其构造成驱动来自相应组的两个或更多个喷嘴的打印流体喷射。 响应于驱动信号,每个致动器对相应的泵送室进行加压并且从与泵送室流体连通的喷嘴喷射打印流体。 从一组两个或更多个喷嘴喷射的打印流体表示正在打印的图像的单个像素。 第二打印模式是响应于确定喷嘴组中的喷嘴是否有缺陷地操作,并且包括将一个或多个驱动信号调整到该组中的一个或多个剩余喷嘴,使得从 剩余的喷嘴补偿了从缺陷喷嘴喷射的打印流体的缺乏。
    • 7. 发明授权
    • Method and apparatus for forming image with image recording liquid and dummy liquid
    • 用图像记录液体和虚拟液体形成图像的方法和装置
    • US06529220B1
    • 2003-03-04
    • US09656219
    • 2000-09-06
    • Nobuo Matsumoto
    • Nobuo Matsumoto
    • G01D1516
    • B41J29/38B41J2/0057B41J2/175
    • An image recording liquid obtained by changing a mixing proportion of a plurality of recording liquids based on an image signal is transferred as a continuous flow to an image receiving medium to form an image thereon. To the image receiving medium, the image recording liquid is transferred in an image forming width, and a dummy liquid for forming substantially no image is transferred to the outside of the image forming width. Both edges of the image recording area are prevented from being raised or thickened on the image receiving medium or from spreading over in the width direction. The image density is prevented from increasing or decreasing on the edge of the image, the stream line of the image recording liquid can be prevented from being distorted, and the image quality can be enhanced. In another mode, the dummy liquid continues to a fore end and/or a rear end of the image forming area and is transferred to the image receiving medium.
    • 通过基于图像信号改变多个记录液体的混合比例而获得的图像记录液体作为连续流传送到图像接收介质以在其上形成图像。 对于图像接收介质,图像记录液体以图像形成宽度传送,并且用于基本上不形成图像的虚拟液体被传送到图像形成宽度的外部。 防止图像记录区域的两个边缘在图像接收介质上升高或增厚,或者在宽度方向上扩展。 防止图像边缘增加或减少图像浓度,可以防止图像记录液体的流线变形,并且可以提高图像质量。 在另一种模式中,虚拟液体继续到图像形成区域的前端和/或后端,并被传送到图像接收介质。
    • 8. 发明授权
    • Image processing apparatus
    • 图像处理装置
    • US6025934A
    • 2000-02-15
    • US893040
    • 1997-07-15
    • Nobuo Matsumoto
    • Nobuo Matsumoto
    • G03B27/46H04N1/00H04N1/32H04N1/04
    • H04N1/00259H04N1/00267H04N1/00633H04N1/00641H04N1/32502H04N1/32507H04N1/00249H04N2201/0081H04N2201/0082H04N2201/3288
    • An image processing apparatus which is equipped with a printer in which a plurality of original images recorded in an elongated member is recorded on a recording material, comprising: a plurality of image readers which can read, as image data, the plurality of original images, respectively; a plurality of memories provided such that at least one memory corresponds to each of the plurality of image readers, the plurality of memories each storing temporarily the image data read by a corresponding image reader; image-data selection/readout means which selects and reads out the image data from the plurality of memories in accordance with a predetermined order irrespective of an order of the image data being read by the plurality of image readers; an image data supply controller which supplies, for the printer, the image data read out by the image-data selection/readout means; and a distributor which distributes, in a previously set order, recording materials printed by the printer based on the supplied image data. As a result, the printed recording materials are distributed appropriately as occasion demands.
    • 一种装有打印机的图像处理装置,其中将记录在细长构件中的多个原始图像记录在记录材料上,包括:多个图像读取器,其可以读取多个原始图像作为图像数据, 分别; 提供多个存储器,使得至少一个存储器对应于多个图像读取器中的每一个,所述多个存储器每个临时存储由相应的图像读取器读取的图像数据; 图像数据选择/读取装置,其根据预定顺序从多个存储器中选择和读出图像数据,而不管由多个图像读取器读取的图像数据的顺序; 图像数据供给控制器,为打印机提供由图像数据选择/读取装置读出的图像数据; 以及分配器,其以先前设定的顺序,基于所提供的图像数据分发由打印机打印的记录材料。 结果,印刷的记录材料根据需要适当地分布。
    • 9. 发明授权
    • Method and apparatus for processing photosensitive materials
    • 感光材料的处理方法和设备
    • US5911091A
    • 1999-06-08
    • US557567
    • 1995-11-14
    • Nobuo MatsumotoTadashi Tanaka
    • Nobuo MatsumotoTadashi Tanaka
    • G03D3/08G03D3/12
    • G03D3/08
    • A method for processing photosensitive materials in which photosensitive materials are conveyed along a serial conveyance passage while guiding the photosensitive materials on both sides thereof by using pairs of guide members to successively perform development processing steps comprises the steps of dividing the conveyance passage into a plurality of blocks, a spacing distance between the pair of guide members on the conveyance passage being changeable in each of the divided blocks, and changing the spacing distance between the pair of guide members in each of the blocks, when a photosensitive material having a different widthwise dimension is introduced into the conveyance passage, in accordance with the widthwise dimension of the photosensitive material before introducing a forward end of the photosensitive material having the different widthwise dimension into each of the blocks. Therefore, when photosensitive materials having different widthwise dimensions are alternately processed, it is possible to start processing for a following photosensitive material during a period in which a preceding photosensitive material is processed on the conveyance passage.
    • 一种用于处理感光材料的方法,其中感光材料沿着串行输送通道传送,同时通过使用成对的引导构件在其两侧引导感光材料以连续执行显影处理步骤包括以下步骤:将输送通道分成多个 当具有不同宽度尺寸的感光材料时,传送通道上的一对引导构件之间的间隔距离可以在每个分割块中改变,并且改变每个块中的一对引导构件之间的间隔距离 在将具有不同宽度尺寸的感光材料的前端引入每个块之前,根据感光材料的宽度尺寸引入输送通道。 因此,当具有不同宽度尺寸的感光材料被交替处理时,可以在传送通道处理前面的感光材料的时间段期间开始对后续感光材料的处理。
    • 10. 发明授权
    • Photosensitive material processing apparatus
    • 感光材料加工设备
    • US5907736A
    • 1999-05-25
    • US959318
    • 1997-10-28
    • Nobuo MatsumotoFumio Mogi
    • Nobuo MatsumotoFumio Mogi
    • G03D3/06G03D3/13G03D3/02
    • G03D3/065G03D3/132
    • A feed rack in which a substantially U-shaped film passage is formed, and disposed in a processing tank such that the processing solution level of the processing tank is located below the top surface of a block by a predetermined dimension so as to reduce the area of contact between the processing solution and outside air. The processing tank is equipped with a solution level regulation tank or replenisher tank in which air-isolating member is floated on a contained solution. Between the replenisher tank and the processing tank are provided a transport mechanism for transporting a replenisher from the replenisher tank to the processing tank and a prevention mechanism for preventing the air-isolating member from entering the processing tank.
    • 一种进料架,其中形成有大致U形的膜通道,并且设置在处理槽中,使得处理槽的处理液液面位于块的顶面下方预定尺寸,以便减小面积 处理溶液和外部空气之间的接触。 处理槽配备有溶液液位调节罐或补充罐,空气隔离构件浮在容纳的溶液上。 在补充槽和处理槽之间设置有用于将补充液从补充罐输送到处理罐的输送机构,以及防止空气隔离部件进入处理槽的防止机构。