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    • 22. 发明授权
    • Serial printing facsimile apparatus
    • 串行打印传真机
    • US5604599A
    • 1997-02-18
    • US287415
    • 1994-08-09
    • Takeshi Ono
    • Takeshi Ono
    • B41J19/18H04N1/04H04N1/23H04N1/327H04N1/21
    • H04N1/32793H04N1/32702
    • A facsimile apparatus includes a serial printer which performs printing head initialization for exact and reliable printing, which is important in facsimile apparatuses where printing cannot be retried. For this purpose, in stand-by status, the printing head is held at a stand-by position, and upon printing, the printing head is moved in a main-scanning direction while a recording sheet is shifted in a subscanning direction. The facsimile apparatus comprises a detector for detecting the presence/absence of the printing head at the stand-by position, a receiver for receiving a printing start signal, and a controller for, when the printing start signal is received by the receiver, performing the initialization by moving the printing head to the stand-by position based on a detected result by the detector.
    • 一种传真机包括一个执行打印头初始化以进行精确和可靠的打印的串行打印机,这在不能重试打印的传真设备中是重要的。 为了这个目的,在待机状态下,打印头被保持在待机位置,并且在打印时,当记录纸沿副扫描方向移动时,打印头沿主扫描方向移动。 传真装置包括检测器,用于检测打印头在待机位置的存在/不存在,用于接收打印开始信号的接收器以及用于当接收器接收到打印开始信号时执行打印开始信号的控制器, 基于检测器的检测结果将打印头移动到待机位置进行初始化。
    • 28. 发明授权
    • Image recording apparatus
    • 图像记录装置
    • US4737860A
    • 1988-04-12
    • US807313
    • 1985-12-10
    • Takeshi OnoShigeki Ohno
    • Takeshi OnoShigeki Ohno
    • G06K15/02H04N1/40G01D5/10
    • G06K15/028H04N1/40031
    • There is an image recording apparatus using a thermal head for use in a facsimile apparatus or the like. This recording apparatus comprises: an input device to input a plurality of kinds of image data; a discriminating device to determine the kind of image which is inputted to the input device; a thermal head as a recording device to reproduce the image inputted to the input device; and a control unit to variably control the energy which is supplied to the thermal head in order to make constant the recording density of the thermal head in accordance with the kind of input image data. When the input image is a half tone image, the control unit increases the supply energy to the thermal head as compared with the case of a simple binary image. When the resolution of the input image is high, the control unit reduces the supply energy to the thermal head than that when the resolution is low. The supply energy is reduced in the case of a copy image than that in the case of a received image. With this apparatus, characters, image, or the like can be always recorded at a constant recording density irrespective of the kind of image or the operating mode of the apparatus.
    • 存在使用用于传真装置等的热敏头的图像记录装置。 该记录装置包括:输入装置,输入多种图像数据; 鉴别装置,用于确定输入到输入装置的图像种类; 作为记录装置的热敏头,用于再现输入到输入装置的图像; 以及控制单元,用于可变地控制供应给热敏头的能量,以便根据输入图像数据的种类使热敏头的记录密度保持恒定。 当输入图像是半色调图像时,与简单二进制图像的情况相比,控制单元增加对热敏头的供应能量。 当输入图像的分辨率高时,控制单元比分辨率低时降低热头的供应能量。 在复印图像的情况下,与接收到的图像的情况相比,供给能量减少。 利用该装置,无论图像的种类或装置的操作模式如何,都可以始终以恒定的记录密度记录字符,图像等。
    • 29. 发明授权
    • Organic electroluminescence element and illumination device using the same
    • 有机电致发光元件及其使用的照明装置
    • US08686630B2
    • 2014-04-01
    • US13146149
    • 2010-02-03
    • Kunimasa HiyamaYasuo TaimaTakeshi Ono
    • Kunimasa HiyamaYasuo TaimaTakeshi Ono
    • H01L51/52
    • H05B33/28H01L51/5262H01L51/5268H05B33/22
    • Disclosed are an organic electroluminescence element with significantly improved light extraction efficiency and improved film properties and an illumination device that uses said element. The organic electroluminescence element has a transparent electrode, an organic electroluminescence layer, and a cathode sequentially stacked on a transparent base material. The element is characterized in that the transparent base material is a transparent resin film, there is a hard coat layer on both sides, the respective refractive indices satisfy the expressions (1)-(4), and there is a function to scatter light to the light emission side with respect to the organic electroluminescence layer. Expression (1): −0.2≦n(H1)−n(A)≦0.2, Expression (2): −0.1≦n(H1)−n(B)≦0.1, Expression (3): −0.1≦n(H2)−n(B)≦0.1, Expression (4): −0.1≦n(H1)−n(H2)≦0.1. In the expressions, n(A) is the refractive index of the transparent electrode; n(H1) is the refractive index of the hard coat layer (on the transparent electrode side); n(H2) is the refractive index of the hard coat layer (on the side opposite the transparent electrode); and n(B) is the refractive index of the transparent resin film.
    • 公开了具有显着提高的光提取效率和改进的膜性质的有机电致发光元件以及使用所述元件的照明装置。 有机电致发光元件具有依次层叠在透明基材上的透明电极,有机电致发光层和阴极。 该元件的特征在于,透明基材为透明树脂膜,两面为硬涂层,各折射率满足式(1)〜(4),并且具有将光分散到 相对于有机电致发光层的发光侧。 表达式(1):-0.2≦̸ n(H1)-n(A)≦̸ 0.2,式(2):-0.1≦̸ n(H1)-n(B)≦̸ 0.1,式(3) 0.1和nlE; n(H2)-n(B)≦̸ 0.1,表达式(4):-0.1≦̸ n(H1)-n(H2)≦̸ 在表达式中,n(A)是透明电极的折射率; n(H1)是硬涂层(透明电极侧)的折射率; n(H2)是硬涂层(与透明电极相对的一侧)的折射率; n(B)是透明树脂膜的折射率。