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    • 1. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20110299882A1
    • 2011-12-08
    • US13115237
    • 2011-05-25
    • Ryuji TanaamiKeita NakajimaKoji MiwaYuji Mitsui
    • Ryuji TanaamiKeita NakajimaKoji MiwaYuji Mitsui
    • G03G15/00G03G21/18
    • G03G21/1647G03G15/04054G03G15/326G03G21/1666G03G21/1803G03G21/1842G03G21/185G03G21/1853G03G2221/1636G03G2221/1654G03G2221/1687G03G2221/169
    • The present invention provides an image forming apparatus including: a first moving member pressed and moved by an openable/closable member when the openable/closable member is opened, and switching a cartridge from a state where the cartridge is positioned in an image forming position to a state where the positioning is released; and a second moving member pressed and moved by the openable/closable member when the openable/closable member is opened, and moving the exposure member from an exposure position to a retracted position, wherein when the positioning of the cartridge is released, a reaction force applied from the first moving member to the openable/closable member reaches a first peak, when the exposure member is moved to the retracted position, a reaction force applied from the second moving member to the openable/closable member reaches a second peak, and timing of the first peak is different from timing of the second peak.
    • 本发明提供一种图像形成装置,包括:第一移动构件,当可打开/打开的构件被打开时,由打开/关闭构件按压并移动,并且将盒从盒中位于图像形成位置的状态切换到 定位被释放的状态; 以及当所述可打开/可打开构件被打开时由所述可打开/关闭构件按压并移动的第二移动构件,并且将所述曝光构件从曝光位置移动到缩回位置,其中当所述盒的定位被释放时, 从第一移动构件施加到可打开/关闭构件达到第一峰值,当曝光构件移动到缩回位置时,从第二移动构件施加到可打开/关闭构件的反作用力达到第二峰值,并且定时 的第一个峰值与第二个峰值的时间不同。
    • 6. 发明申请
    • MOVABLE CONTACT OF SLIDE SWITCH
    • 滑动开关可动触点
    • US20060060460A1
    • 2006-03-23
    • US11226279
    • 2005-09-15
    • Yuji Mitsui
    • Yuji Mitsui
    • H01H1/36
    • H01H1/26B60Q1/1469H01H1/403H01H1/50H01H25/04
    • The fourth movable contact of a slide switch includes a first and a second U-shaped contact parts arranged so that opposite ends thereof are coupled to a movable contact main body to form an almost U shape and small contact points are surrounded by larger contact points. The first and the second U-shaped contact parts are slidingly moved in a direction crossing the arraying direction of the projections at the tips of the U-shaped contact parts in order to connect/disconnect the projections of the U-shaped contact points to/from a fixed contact thus tuning on/off the switch. The first and the second U-shaped contact parts have opposite ends coupled to the movable contact main body and strong in the movement in the arrow directions.
    • 滑动开关的第四可移动触点包括第一和第二U形接触部分,其布置成使得其相对的端部联接到可动触头主体以形成几乎U形,并且小的接触点被较大的接触点包围。 第一和第二U形接触部分在与U形接触部分的尖端处的突起的排列方向相交的方向上滑动移动,以将U形接触点的突起连接/ 从一个固定的触点,从而调谐开/关的开关。 第一和第二U形接触部分具有相对的端部联接到可动触点主体并且在箭头方向上的运动较强。
    • 10. 发明申请
    • Method for manufacturing surface acoustic wave element, as well as surface acoustic wave element manufactured by the same method
    • 表面声波元件的制造方法以及通过相同的方法制造的表面声波元件
    • US20050273996A1
    • 2005-12-15
    • US11149493
    • 2005-06-09
    • Yuji Mitsui
    • Yuji Mitsui
    • H03H3/10H03H9/00
    • H03H3/10Y10T29/42Y10T29/49005Y10T29/4908
    • A method for manufacturing a surface acoustic wave element including: forming a conductive film on a surface of a piezoelectric substrate; forming a photoresist film on the conductive film; printing a pattern by exposing and developing the pattern, which is originally provided on a photomask, onto the photoresist film by reduced projection; forming an electrode of a surface acoustic wave element by etching the conductive film using the patterned photoresist film as a mask; measuring a resonant frequency of the surface acoustic wave element formed on the piezoelectric substrate; calculating an anodic oxidation voltage based on an amount of anodic oxidation of the electrode that is calculated in advance from the measured resonant frequency and a preset target resonant frequency; and performing anodic oxidation based on the anodic oxidation voltage calculated in the voltage calculation step and finishing anodic oxidation after detecting an end-point of oxidation reaction of the electrode.
    • 一种表面声波元件的制造方法,包括:在压电基板的表面上形成导电膜; 在导电膜上形成光致抗蚀剂膜; 通过曝光和显影最初设置在光掩模上的图案通过减小的投影而在光致抗蚀剂膜上印刷图案; 通过使用图案化的光致抗蚀剂膜作为掩模蚀刻导电膜来形成表面声波元件的电极; 测量形成在压电基板上的表面声波元件的谐振频率; 基于从所测量的谐振频率和预设的目标共振频率预先计算的电极的阳极氧化量来计算阳极氧化电压; 并且基于在电压计算步骤中计算的阳极氧化电压进行阳极氧化,并且在检测到电极的氧化反应的终点之后进行阳极氧化。