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    • 54. 发明申请
    • Fastener Stringer for Concealed Slide Fastener
    • 隐形滑轨紧固件紧固件系列
    • US20120167355A1
    • 2012-07-05
    • US13394830
    • 2009-09-11
    • Akira TakanoTakayuki HasegawaMasashi Doi
    • Akira TakanoTakayuki HasegawaMasashi Doi
    • A44B19/34
    • A44B19/08A44B19/346D03D3/02Y10T24/2591
    • The invention provides a fastener stringer for a concealed slide fastener in which right and left fastener tapes respectively include a tape body portion, a tape bend portion bent into a U-shape and an element mounting portion, a hollow weave portion is formed at each fastener tape, and a film body is accommodated in the hollow weave portion in a state of being sewn together with a fastener element as one side edge thereof being located to the tape bend portion side from a sewing thread. Accordingly, since stiffness of the hollow weave portion is improved by the film body, a closely-contacted state between the right and left tape bend portions is stably maintained and concealing characteristics of the concealed slide fastener can be improved.
    • 本发明提供了一种用于隐形拉链的拉链条,其中左和右拉链带分别包括带体部分,弯曲成U形的带弯曲部分和元件安装部分,在每个紧固件处形成中空编织部分 胶带,并且胶片体在与缝合线一起被紧固的状态下容纳在中空编织部分中,其一个侧边缘位于从缝纫线的带弯曲部分侧。 因此,由于膜体的中空编织部的刚度提高,所以能够稳定地保持左右带弯曲部之间的紧密接触状态,能够提高隐蔽拉链的隐蔽性。
    • 57. 发明授权
    • Printer
    • 打印机
    • US07315317B2
    • 2008-01-01
    • US11085273
    • 2005-03-22
    • Norikazu KitamuraMotoharu HabataTakayuki Hasegawa
    • Norikazu KitamuraMotoharu HabataTakayuki Hasegawa
    • B41J2/315B41J2/325
    • B41J11/42B41J11/663
    • A printer includes a conveyance mechanism capable of conveying a long recording medium in a first direction from a supply unit storing therein the recording medium, toward an image recording unit capable of recording a color image on the recording medium, and in a second direction reverse to the first direction, with opposing the recording medium to the image recording unit; and a cutting unit capable of cutting the recording medium between the image recording unit and the supply unit. The conveyance mechanism is controlled to convey the recording medium in the first direction until a leading edge of the recording medium reaches a position distant in the first direction from the image recording unit, and then convey the recording medium in the second direction; and to form a slack portion of the recording medium being conveyed in the second direction, between the image recording unit and the cutting unit. The image recording unit is controlled to record frames of color images on the recording medium being conveyed in the second direction by the conveyance mechanism. The cutting unit is controlled to cut the recording medium being conveyed in the second direction.
    • 打印机包括一个输送机构,能够从存储在其中的记录介质的供给单元向第一方向输送长记录介质,朝向能够在记录介质上记录彩色图像的图像记录单元,并且沿与第二方向相反的第二方向 第一方向,使记录介质与图像记录单元相对; 以及能够在图像记录单元和供给单元之间切割记录介质的切割单元。 输送机构被控制为在第一方向上传送记录介质,直到记录介质的前端到达距离图像记录单元的第一方向远的位置,然后在第二方向上传送记录介质; 并且形成在图像记录单元和切割单元之间沿第二方向传送的记录介质的松弛部分。 控制图像记录单元以通过传送机构在第二方向上记录在记录介质上记录彩色图像的帧。 控制切割单元以切割在第二方向上传送的记录介质。
    • 58. 发明授权
    • Printer
    • 打印机
    • US07315316B2
    • 2008-01-01
    • US11084202
    • 2005-03-21
    • Norikazu KitamuraMotoharu HabataTakayuki Hasegawa
    • Norikazu KitamuraMotoharu HabataTakayuki Hasegawa
    • B41J2/315B41J2/325
    • B41J2/325B41J11/42B41J11/663
    • A printer includes a conveyance mechanism capable of conveying a long recording medium in a first direction from a supply unit storing therein the recording medium, toward an image recording unit capable of recording a color image on the recording medium, and in a second direction reverse to the first direction, with opposing the recording medium to the image recording unit. The conveyance mechanism is controlled to convey the recording medium in the first direction until a leading edge of the recording medium reaches a position distant in the first direction from the image recording unit, and then convey the recording medium in the second direction. The image recording unit is controlled to record frames of color images on the recording medium being conveyed in the second direction by the conveyance mechanism, and form a non-record region in which no image is recorded, on the recording medium between the leading edge and the last recorded color image.
    • 打印机包括一个输送机构,能够从存储在其中的记录介质的供给单元向第一方向输送长记录介质,朝向能够在记录介质上记录彩色图像的图像记录单元,并且沿与第二方向相反的第二方向 第一方向,使记录介质与图像记录单元相对。 传送机构被控制成在第一方向上传送记录介质,直到记录介质的前端到达距离图像记录单元的第一方向远的位置,然后在第二方向传送记录介质。 图像记录单元被控制以通过传送机构在第二方向上记录在记录介质上记录彩色图像的帧,并且在记录介质上形成没有记录图像的非记录区域, 最后记录的彩色图像。
    • 59. 发明申请
    • Assembly and adjusting method of optical system, exposure apparatus having the optical system
    • 光学系统的装配和调整方法,具有光学系统的曝光装置
    • US20050264779A1
    • 2005-12-01
    • US11123975
    • 2005-05-06
    • Takayuki HasegawaAkira Miyake
    • Takayuki HasegawaAkira Miyake
    • G01M11/02G02B7/00G02B7/198G03F7/20H01L21/027G03B27/42
    • G03F7/706G03F7/70258
    • An adjusting method of an optical system composed plural optical elements each having a multilayer film, said adjusting method that includes a first measuring step that obtains, for each optical element, a difference between a phase distribution of which an EUV light (Extreme Ultraviolet light) is reflected from the optical element and a phase distribution of which a light with a wavelength that is longer than the EUV light is reflected from the optical element, a second measuring step that measures a phase distribution of which the light passes the optical system, a deciding step that decides a phase distribution of which the EUV light passes through the optical system based on the phase distribution difference obtained by the first measuring step and the phase distribution measured by the second measuring step, and an adjusting step that adjusts at least one of a position and a posture of the optical element based on the phase distribution decided by the deciding step.
    • 一种由多个光学元件组成的光学系统的调整方法,所述多个光学元件具有多层膜,所述调整方法包括对于每个光学元件获得EUV光(极紫外光)的相位分布之间的差异的第一测量步骤, 从所述光学元件反射并且从所述光学元件反射具有比所述EUV光更长的波长的光的相位分布,测量所述光通过所述光学系统的相位分布的第二测量步骤, 决定步骤,其基于由所述第一测量步骤获得的相位分布差和由所述第二测量步骤测量的相位分布,决定所述EUV光通过所述光学系统的相位分布;以及调整步骤, 基于由判定步骤决定的相位分布的光学元件的位置和姿势。