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    • 81. 发明申请
    • METHOD OF PRODUCING SEMICONDUCTOR DEVICE
    • 生产半导体器件的方法
    • US20120003841A1
    • 2012-01-05
    • US13256578
    • 2010-03-18
    • Shinichi ChikakiTakahiro Nakayama
    • Shinichi ChikakiTakahiro Nakayama
    • H01L21/31
    • H01L23/53238H01L21/3105H01L21/76814H01L21/76826H01L2924/0002H01L2924/00
    • A method of manufacturing a semiconductor device includes: a step of forming a porous dielectric film on a substrate; a step of disposing the substrate having the porous dielectric film formed thereon inside a chamber; a step of introducing siloxane into the chamber in which the substrate is disposed and heating the substrate to a first temperature; and a step heating the substrate to which the introduced siloxane adheres to a second temperature higher than the first temperature. A pressure inside the chamber is maintained to be equal to or lower than 1 kPa. In the present embodiment, the first temperature is equal to or higher than a temperature at which the pressure inside the chamber is a saturated vapor pressure of the siloxane, and is equal to or lower than a temperature at which a polymerization between the porous dielectric film and the siloxane starts.
    • 一种制造半导体器件的方法包括:在衬底上形成多孔电介质膜的步骤; 将其上形成有多孔介电膜的基板设置在室内的步骤; 将硅氧烷引入到其中设置衬底的室中并将衬底加热到​​第一温度的步骤; 以及将引入的硅氧烷粘附到高于第一温度的第二温度的基板的步骤。 室内的压力保持在1kPa以下。 在本实施方式中,第一温度为室内的压力为硅氧烷的饱和蒸气压的温度以上,且为等于或低于多孔电介质膜 硅氧烷开始。
    • 85. 发明申请
    • Organic Light Emitting Device
    • 有机发光装置
    • US20090224661A1
    • 2009-09-10
    • US12372932
    • 2009-02-18
    • Takahiro Nakayama
    • Takahiro Nakayama
    • H01J1/62
    • H01L51/5265H01L27/3211
    • The present invention provides an organic light emitting device which has resonators for respective three colors of a red range, a green range, and a blue range. In one aspect, a total resonator length of the resonator of the red range is m times larger than a wavelength of the red range, and a total resonator length of the resonator of the blue range is (m+1) times larger than a wavelength of the blue range. In another aspect, a total resonator length of the resonator of the red range is m times larger than a wavelength of the red range, and a total resonator length of the resonator having the green range is (m+1) times larger than a wavelength of the green range, and a total resonator length of the resonator having the blue range is (m+2) times larger than a wavelength of the blue range.
    • 本发明提供一种有机发光装置,其具有用于红色范围,绿色范围和蓝色范围的三种颜色的谐振器。 在一个方面,红色范围的谐振器的总谐振器长度是红色范围的波长的m倍,并且蓝色范围的谐振器的总谐振器长度比波长的(m + 1)倍大 的蓝色范围。 在另一方面,红色范围的谐振器的总谐振器长度是红色范围的波长的m倍,并且具有绿色范围的谐振器的总共振器长度比波长的(m + 1)倍大 并且具有蓝色范围的谐振器的总谐振器长度比蓝色范围的波长大(m + 2)倍。
    • 88. 发明申请
    • IMAGE FORMING METHOD AND IMAGE FORMING APPARATUS CAPABLE OF FEEDING RECORDING MEDIUM OF VARIOUS TYPES
    • 图像形成方法和图像形成装置可以提供各种记录介质的各种类型
    • US20070110464A1
    • 2007-05-17
    • US11560173
    • 2006-11-15
    • Takahiro NakayamaMasahiko SatohAkira Shinshi
    • Takahiro NakayamaMasahiko SatohAkira Shinshi
    • G03G15/00G03G15/20
    • G03G15/6529
    • An image forming method includes forming a toner image on an image carrier of an image forming apparatus, transferring the toner image on the image carrier onto an intermediate transfer member, and second-transferring the toner image on the intermediate transfer member rotating at a linear speed Vc onto a recording medium, which is fed along a first conveyance path from a registration roller pair rotating at a linear speed Vr, by a transfer member. The method further includes fixing the toner image on the recording medium, which is fed along a second conveyance path from the transfer member, by a fixing member rotating at a linear speed Vt. A length of the first and second conveyance paths is shorter than a length of a maximum recording medium of the image forming apparatus. Linear speed ratios Vc/Vt and Vr/Vc are changed depending on a property of the recording medium.
    • 图像形成方法包括在图像形成装置的图像载体上形成调色剂图像,将图像载体上的调色剂图像转印到中间转印部件上,并将调色剂图像二次转印在以线速度旋转的中间转印部件上 Vc通过转印构件沿着第一输送路径从以线速度Vr旋转的定位辊对馈送的记录介质。 该方法还包括通过以线速Vt旋转的固定构件将调色剂图像定影在沿着第二输送路径从转印构件供给的记录介质上,第一和第二输送路径的长度短于 图像形成装置的最大记录介质的长度。 线速度Vc / Vt和Vr / Vc根据记录介质的性质而改变。