METHOD FOR PRODUCING REGENERATED POROUS SHEET
    31.
    发明申请
    METHOD FOR PRODUCING REGENERATED POROUS SHEET 审中-公开
    生产再生多孔薄片的方法

    公开(公告)号:US20100273108A1

    公开(公告)日:2010-10-28

    申请号:US12747135

    申请日:2008-12-12

    IPC分类号: G03F7/20 B01J49/00 G03B27/42

    CPC分类号: G03F7/36 G03F7/09 G03F7/16

    摘要: The present invention provides a method for producing a regenerated porous sheet including a step of bringing a porous sheet which has adsorbed an uncured part of a photosensitive resin, into contact with a solvent to separate the uncured part from the porous sheet, the porous sheet that has adsorbed the uncured part being produced by curing a specific area of a printing surface of a printing original plate in which the printing surface is formed from a photosensitive resin, and then absorbing the uncured part of the printing surface into a porous sheet, so as to conduct a development.

    摘要翻译: 本发明提供一种再生多孔片的制造方法,其特征在于,包括将吸附了未固化部分感光性树脂的多孔片与溶剂接触的步骤,将未固化部分与多孔片分离, 通过固化由感光树脂形成印刷表面的印刷原版的印刷表面的特定区域,然后将印刷表面的未固化部分吸收到多孔片中,从而吸附未生产的部分,从而 进行发展。

    METHOD FOR PULLING SILICON SINGLE CRYSTAL
    32.
    发明申请
    METHOD FOR PULLING SILICON SINGLE CRYSTAL 有权
    拉丝硅单晶的方法

    公开(公告)号:US20100089309A1

    公开(公告)日:2010-04-15

    申请号:US12450961

    申请日:2008-04-14

    IPC分类号: C30B15/22

    CPC分类号: C30B29/06 C30B15/22

    摘要: The invention is a method for pulling a silicon single crystal, which is a Czochralski method for growing the silicon single crystal by contacting a seed crystal with a melt and by pulling up, including the steps of: contacting the seed crystal with the melt; forming a necking portion under the seed crystal; and forming the silicon single crystal under the necking portion by increasing a diameter, wherein a pulling rate during forming the necking portion is 2 mm/min or less, and the silicon single crystal with the increased diameter is a boron-doped silicon single crystal having a resistivity of 1.5 mΩ·cm or less at a shoulder portion. Therefore, there can be provided a method of pulling a silicon single crystal without generating defects such as scratches at a wafer surface in the case of processing a boron-doped silicon single crystal ingot with a low resistivity produced by CZ method into a wafer.

    摘要翻译: 本发明是一种拉硅单晶的方法,该硅单晶是通过使晶种与熔体接触并通过拉起来生长硅单晶的切克劳斯基法,包括以下步骤:使晶种与熔体接触; 在晶种下形成颈缩部分; 并且通过增加直径在颈缩部分下形成硅单晶,其中在形成颈缩部分期间的拉伸速率为2mm / min以下,并且具有增加的直径的硅单晶是具有硼掺杂的硅单晶,其具有 在肩部的电阻率为1.5m&OHgr·cm或更小。 因此,在通过CZ法制造的具有低电阻率的硼掺杂硅单晶锭加工成晶片的情况下,可以提供拉丝硅单晶的方法,而不会在晶片表面产生诸如划痕之类的缺陷。

    MAGNETIC PROCESSING EQUIPMENT FOR ENGINE AND MAGNETIC PROCESSING SYSTEM FOR ENGINE
    33.
    发明申请
    MAGNETIC PROCESSING EQUIPMENT FOR ENGINE AND MAGNETIC PROCESSING SYSTEM FOR ENGINE 审中-公开
    用于发动机的发动机和磁力处理系统的磁性加工设备

    公开(公告)号:US20090013976A1

    公开(公告)日:2009-01-15

    申请号:US11574042

    申请日:2004-08-24

    申请人: Masahiro Mori

    发明人: Masahiro Mori

    IPC分类号: F02M27/04 F02M37/22

    CPC分类号: F02M27/045

    摘要: When fuel passing through a fuel supply line and intake air passing through an air intake line are magnetically treated, magnetic reactions of the fuel and intake air are enhanced, and efficiency of the magnetic treatment is enhanced. A magnetic treatment apparatus for an engine which is provided in a fuel supply line and an air intake line of an engine, and performs magnetic treatment for fuel and intake air includes a magnet pair constituted of a pair of magnets opposed to each other with a pipe (the aforesaid fuel supply line and air intake line), and generating magnetic flux in a direction perpendicular to flows of the fuel and the intake air, and a casing covering the magnet pair, and has the constitution in which the casing accommodates a plurality of magnet pairs, and the magnet pairs are disposed along the pipe at predetermined spaces.

    摘要翻译: 当通过燃料供应管线的燃料和通过进气管线的吸入空气被磁力处理时,燃料和进气的磁反应增强,并且提高了磁处理的效率。 一种用于发动机的磁治疗装置,其设置在发动机的燃料供给管线和进气管线中,并且对燃料和进气进行磁处理,包括由一对磁体构成的磁体对,所述磁体对由管道 (上述燃料供给管路和进气管路),并且在与燃料和进气的流动垂直的方向上产生磁通量,以及覆盖该磁体对的壳体,并且具有壳体容纳多个 磁体对,并且磁体对沿着管道以预定空间设置。

    Color data conversion method, color data conversion apparatus, storage medium, device driver and color conversion table
    34.
    发明授权
    Color data conversion method, color data conversion apparatus, storage medium, device driver and color conversion table 失效
    彩色数据转换方法,彩色数据转换装置,存储介质,设备驱动程序和颜色转换表

    公开(公告)号:US07167277B2

    公开(公告)日:2007-01-23

    申请号:US10602642

    申请日:2003-06-25

    IPC分类号: G06F15/00 G03F3/08 G06K9/00

    CPC分类号: H04N1/6058

    摘要: When an L*a*b* value of a certain color is outside a target color gamut to be converted, it is judged whether the L*a*b* value is located within the range of the color gamut set under a predetermined condition. This set range is a range in which the accuracy is degraded if colors are converted using only a first method, for example, a range in the neighborhood of the color gamut. If a color to be converted is located within the range, colors are converted using a second method. If the L*a*b* value of the color to be converted is outside of the set range, it is converted using the first method until the conversion result is contained within the range Then, the occurrence of both a problem which the first conversion method has for colors in the neighborhood of the color gamut when colors are converted and a problem which the second method has in the conversion of a color far from the color gamut can be suppressed.

    摘要翻译: 当特定颜色的L * a * b *值在要转换的目标色域之外时,判断L * a * b *值是否位于在预定条件下设定的色域的范围内。 该设定范围是如果仅使用第一种方法(例如,色域附近的范围)转换颜色,则精度降低的范围。 如果要转换的颜色位于该范围内,则使用第二种方法转换颜色。 如果要转换的颜色的L * a * b *值超出设定范围,则使用第一种方法转换,直到转换结果包含在该范围内。然后,出现第一次转换的问题 可以抑制颜色转换时的色域附近的颜色,并且可以抑制第二种方法在颜色远离色域的转换中的问题。

    Solar cell roof structure, construction method thereof, photovoltaic power generating apparatus, and building
    38.
    发明授权
    Solar cell roof structure, construction method thereof, photovoltaic power generating apparatus, and building 失效
    太阳能电池屋顶结构,其施工方法,光伏发电装置和建筑物

    公开(公告)号:US06576830B2

    公开(公告)日:2003-06-10

    申请号:US09453508

    申请日:1999-12-03

    IPC分类号: H01L3105

    摘要: In a solar cell roof structure, a photovoltaic power generating apparatus, a building and a method of construction of a solar cell roof, in which a solar cell module is provided above a roof base of a building, an electrical wire for the solar cell module is provided in a space between the solar cell module and the roof base, and the electrical wire extends into a space at the back of the roof base through a through hole provided in the roof base. A base sealing member on the roof base is provided for covering the through hole and an exit is provided in the base sealing member through which the electrical wire extends into the space between the solar cell module and the roof base at a portion of the base sealing member other than a portion just over the through hole of the base sealing member. The base sealing member can include a heat-resisting or fire resistive material on the roof base for covering the through hole.

    摘要翻译: 在太阳能电池屋顶结构中,太阳能发电装置,建筑物和建筑太阳能电池屋顶的方法,其中太阳能电池模块设置在建筑物的屋顶基座之上,太阳能电池模块的电线 设置在太阳能电池模块和屋顶基座之间的空间中,并且电线通过设置在屋顶基座中的通孔延伸到屋顶基座后部的空间中。 提供了一种用于覆盖通孔的基座密封件,并在基座密封件中设有出口,电源线通过该出口设置在基座密封件的一部分处延伸到太阳能电池组件与屋顶基座之间的空间中 除了刚好在基底密封构件的通孔之上的部分之外的构件。 底座密封件可包括在屋顶底座上的覆盖通孔的耐热或耐火材料。

    Solar cell module and method for manufacturing same
    40.
    发明授权
    Solar cell module and method for manufacturing same 失效
    太阳能电池组件及其制造方法

    公开(公告)号:US06288324B1

    公开(公告)日:2001-09-11

    申请号:US09706878

    申请日:2000-11-07

    IPC分类号: H01L2500

    摘要: In order to ensure long-term reliability when a photovoltaic element is bent or curved to be deformed: (1) In a method for manufacturing a solar cell module having a photovoltaic element encapsulated with a resin on a support member, the step is adopted which forms a bent portion in the photovoltaic element and in the support member, wherein the formation of the bent portion is performed while reducing a working pressure in the normal direction to a surface of the photovoltaic element; and (2) In a solar cell module comprising a photovoltaic element comprising at least one photoactive semiconductor layer on a flexible substrate, at least a part of the flexible substrate is subjected to tensile deformation in the direction parallel to a surface of the substrate with a strain less than a critical strain to lower the fill factor of the photovoltaic element, whereby the photovoltaic element is deformed.

    摘要翻译: 为了确保光电元件弯曲或弯曲变形时的长期可靠性:(1)在将具有树脂封装在支撑部件上的光电元件的太阳能电池模块的制造方法中,采用如下步骤: 在所述光电元件和所述支撑构件中形成弯曲部分,其中在朝向所述光电元件的表面的正常方向减小工作压力的同时执行所述弯曲部分的形成; 和(2)在包括在柔性基板上包括至少一个光活性半导体层的光电元件的太阳能电池模块中,柔性基板的至少一部分在平行于基板的表面的方向上被拉伸变形 应变小于临界应变以降低光伏元件的填充因子,由此光伏元件变形。