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    • 91. 发明授权
    • Substrate processing apparatus and substrate processing method
    • 基板加工装置及基板处理方法
    • US08313609B2
    • 2012-11-20
    • US11396700
    • 2006-03-31
    • Takeshi Yoshida
    • Takeshi Yoshida
    • H01L21/304
    • H01L21/67051
    • An inventive substrate processing apparatus comprises a substrate holding mechanism which generally horizontally holds a substrate and rotates the substrate about a generally vertical rotation axis, a process liquid supplying mechanism for supplying a process liquid to the substrate held by the substrate holding mechanism, a first guide portion provided around the substrate holding mechanism and having an upper edge portion extending toward the rotation axis for guiding the process liquid scattered from the substrate rotated by the substrate holding mechanism to cause the process liquid to flow down, a second guide portion provided around the substrate holding mechanism outside the first guide portion and having an upper edge portion extending toward the rotation axis as vertically overlapping with the upper edge portion of the first guide portion for guiding the process liquid scattered from the substrate rotated by the substrate holding mechanism to cause the process liquid to flow down, a recovery channel provided outside the first guide portion integrally with the first guide portion for recovering the process liquid guided by the second guide portion, and a driving mechanism for moving up and down the first guide portion and the second guide portion independently of each other.
    • 本发明的基板处理装置包括:基板保持机构,其基本上水平地保持基板并使基板围绕大致垂直的旋转轴线旋转;处理液体供给机构,用于将处理液体供给到由基板保持机构保持的基板;第一引导件 设置在基板保持机构周围的部分,具有朝向旋转轴线延伸的上边缘部分,用于引导从基板保持机构旋转的基板散射的处理液体,使处理液体向下流动,设置在基板周围的第二引导部分 保持机构在第一引导部分的外侧,具有与第一引导部分的上边缘部分垂直重叠的朝向旋转轴线延伸的上边缘部分,用于引导从基板保持机构旋转的基板散射的处理液体, 液体流动d 具有与第一引导部一体地设置在第一引导部的外侧的回收通道,用于回收由第二引导部引导的处理液;以及驱动机构,用于独立于各自的上下移动第一引导部和第二引导部 其他。
    • 92. 发明申请
    • DRAINAGE STRUCTURE OF CORRUGATED FIN-TYPE HEAT EXCHANGER
    • 腐蚀性微型热交换器的排水结构
    • US20120272677A1
    • 2012-11-01
    • US13257230
    • 2010-03-08
    • Masayuki FurumakiTakeshi YoshidaKazuhiko Yamazaki
    • Masayuki FurumakiTakeshi YoshidaKazuhiko Yamazaki
    • F25D21/14F28F1/30
    • F28F17/005F28D1/05383F28F1/022F28F1/128
    • To achieve a sufficient drainage of condensed water (dew water) adhering to a surface to suppress an adverse effect on an airflow resistance and a heat exchange efficiency, even in a case where heat exchange tubes are arranged horizontally, provided is a drain structure for a corrugated fin-type heat exchanger (1), the corrugated fin-type heat exchanger (1) being constituted by arranging a plurality of flat heat exchange tubes (3) parallel to one another in a horizontal direction between a pair of opposing header pipes (2a, 2b), and joining corrugated fins (4) between the plurality of flat heat exchange tubes (3), the drain structure including a plurality of water flow passages (10) for inducing water retained between the corrugated fins (4) adjacent to an upper side and a lower side of each of the plurality of flat heat exchange tubes (3), the plurality of water flow passages (10) being formed on an outer end surface of the each of the plurality of flat heat exchange tubes (3) in a width direction thereof at a pitch along a longitudinal direction of the each of the plurality of flat heat exchange tubes (3).
    • 为了实现附着在表面上的冷凝水(露水)的充分排出,以抑制对气流阻力和热交换效率的不利影响,即使在热交换管水平配置的情况下,设置有用于 波纹翅片型热交换器(1),波纹翅片式热交换器(1)通过在一对相对的总管(水平方向)之间沿水平方向彼此平行布置多个扁平的热交换管(3)而构成, 在多个扁平换热管(3)之间连接波纹状散热片(4),排水结构包括多个水流通道(10),用于引导保持在相邻的波纹状散热片(4)之间的水 多个扁平换热管(3)的上侧和下侧,多个水流通道(10)形成在多个扁平换热管(3)中的每一个的外端表面上 )在一个wi 其沿第一方向沿着多个扁平换热管(3)中的每一个的长度方向的间距。
    • 95. 发明授权
    • Apparatus and method for manufacturing multiplex interlayer for safety glass
    • 用于制造安全玻璃多重夹层的装置和方法
    • US08152507B2
    • 2012-04-10
    • US12513728
    • 2008-06-25
    • Kentarou OginoTakeshi YoshidaHiroaki Inui
    • Kentarou OginoTakeshi YoshidaHiroaki Inui
    • B29C73/00
    • B29C47/065B29C47/0021B29C47/0047B29C47/14B29L2031/30B29L2031/778
    • Provided are an apparatus and a method for manufacturing a multilayered interlayer for safety glass that allows reliable and easy formation of inserted layers having a larger coloring layer. The manufacturing apparatus 1 for manufacturing the multilayered interlayer for safety glass having a first outermost layer, an inserted layer, and a second outermost layer laminated together, wherein an outlet for the inserted layer formation 14 is provided between outlets for of the first and the second outermost layers formation 9 and 10 on an outlet side of a guide for a layer disposition 4, the outlets for the first and the second outermost layers formation 9 and 10 and the outlet for the inserted layer formation 14 have a shape of a slit, the dimension L, in a slit shape in the width direction, of the outlet for the inserted layer formation 14 is set smaller as compared with the dimension K, in a slit shape in the width direction, of the outlets for the first and the second outermost layers formation 9 and 10, the thickness of the slit is set smaller with increasing proximity to the end on at least one end of the outlet for the inserted layer formation 14 having a shape of a slit, and a metal mold for extrusion 5 is connected in a subsequent stage of the guide for a layer disposition 4.
    • 提供一种用于制造用于安全玻璃的多层中间层的装置和方法,其允许可靠且容易地形成具有较大着色层的插入层。 用于制造具有层叠在一起的第一最外层,插入层和第二最外层的用于安全玻璃的多层中间层的制造装置1,其中用于插入层形成的出口14设置在用于第一和第二 用于层布置4的引导件的出口侧的最外层形成层9和10,第一和第二最外层形成物9和10的出口以及插入层形成物14的出口具有狭缝的形状, 与宽度方向狭缝形状的尺寸K相比,用于插入层形成的出口的宽度方向上的狭缝形状的尺寸L设定为比第一和第二最外侧的出口的尺寸K小 层形成体9和10中,狭缝的厚度被设定得更小,随着接近于插入层形成14的出口的至少一端的端部的接近而具有狭缝形状 ,并且用于挤出的金属模具5在用于层布置4的引导件的后续级中连接。
    • 96. 发明授权
    • Liquid ejecting apparatus and image forming method
    • 液体喷射装置和成像方法
    • US08083320B2
    • 2011-12-27
    • US12284300
    • 2008-09-18
    • Masahiko YoshidaTakeshi YoshidaMichiaki TokunagaTatsuya Nakano
    • Masahiko YoshidaTakeshi YoshidaMichiaki TokunagaTatsuya Nakano
    • B41J29/38B41J2/155
    • B41J2/515B41J2/155B41J25/001
    • Liquid ejecting apparatuses and image formed methods are provided. In an exemplary embodiment, a liquid ejecting apparatus is provided including a head unit, a movement mechanism, and a control section. The head unit has along a first direction a plurality of heads, in which a plurality of nozzles that eject a liquid onto a medium are lined up in the first direction, and the head unit forms a single raster line by ejecting the liquid while performing m number of movements relative to the medium in a second direction, which intersects the first direction. The movement mechanism causes the head unit to perform a plurality of movements relative to the medium alternately in the second direction and the first direction. The control section forms an image having a resolution that is n times a pitch of the nozzles.
    • 提供液体喷射装置和图像形成方法。 在一个示例性实施例中,提供一种包括头单元,移动机构和控制部分的液体喷射装置。 头单元沿着第一方向具有多个头,其中将喷射液体的多个喷嘴沿第一方向排列,并且头单元通过在执行m时喷射液体而形成单个光栅线 与第一方向相交的第二方向相对于介质的移动次数。 移动机构使得头单元在第二方向和第一方向上相对于介质交替地执行多个运动。 控制部分形成分辨率为喷嘴间距的n倍的图像。
    • 97. 发明授权
    • Method of calculating correction value, method of ejecting liquid, and liquid ejecting apparatus
    • 计算校正值的方法,喷射液体的方法和液体喷射装置
    • US07950768B2
    • 2011-05-31
    • US12454188
    • 2009-05-12
    • Takeshi YoshidaMasahiko YoshidaMichiaki TokunagaTatsuya Nakano
    • Takeshi YoshidaMasahiko YoshidaMichiaki TokunagaTatsuya Nakano
    • B41J29/393
    • B41J29/393B41J2/2135B41J2/2142B41J2/2146B41J3/543
    • A method of calculating a correction value includes: forming a test pattern by ejecting a liquid by a liquid ejecting apparatus, which has a first nozzle row in which a plurality of nozzles ejecting the liquid to a medium are arranged in a predetermined direction and a second nozzle row in which a plurality of nozzles ejecting the liquid to the medium are arranged in the predetermined direction, the second nozzle row being disposed so that an end portion on one side thereof in the predetermined direction overlaps with an end portion on the other side of the first nozzle row in the predetermined direction, to an area of the medium corresponding to certain pixel data on the basis of the certain pixel data from first nozzles belonging to the end portion on the other side of the first nozzle row and second nozzles belonging to the end portion on the one side of the second nozzle row; acquiring a read-out gray scale value by allowing a scanner to read-out the test pattern; and calculating a correction value used to correct the pixel data corresponding to the area to which the liquid is ejected from the first and the second nozzles on the basis of the read-out gray scale value.
    • 计算校正值的方法包括:通过液体喷射装置喷射液体来形成测试图案,所述液体喷射装置具有第一喷嘴列,其中将多个喷嘴喷射到介质上的喷嘴沿预定方向布置,并且第二喷嘴 喷嘴列,其中将多个喷嘴喷射到介质的喷嘴沿预定方向布置,第二喷嘴列设置成使得其一侧的预定方向上的端部与另一侧的端部重叠, 基于来自属于第一喷嘴列的另一侧的端部的第一喷嘴的某些像素数据和属于第一喷嘴列的另一侧的第二喷嘴的与特定像素数据相对应的介质的区域的第一喷嘴行 第二喷嘴列的一侧的端部; 通过允许扫描仪读出测试图案来获取读出的灰度值; 并且基于读出的灰度值,计算用于校正与从第一和第二喷嘴排出液体的区域相对应的像素数据的校正值。
    • 98. 发明授权
    • Server, and method of recovery from link failure in server
    • 服务器和从服务器链接故障中恢复的方法
    • US07913019B2
    • 2011-03-22
    • US12331991
    • 2008-12-10
    • Toru InagawaSatoru UemuraTakeshi Yoshida
    • Toru InagawaSatoru UemuraTakeshi Yoshida
    • H05K7/10
    • G06F13/423G06F11/006G06F11/0745G06F11/0793
    • In a server composed of a server module having a processor in it, an I/O module having an I/O extension slot for accommodating an I/O extension adapter to expand the server's I/O capability, and a management module managing the entire server, the server module and the I/O extension slot (and through it, ultimately the I/O extension adapter) are interconnected using a PCI Express interface and the I/O module and the management module are interconnected using a special interface carrying detection information indicating whether an I/O extension adapter is actually mounted on the I/O extension slot. In the event of a link failure on the PCI Express interface, link recovery is attempted by grasping the status of the link based on the detection information obtained through the special interface.
    • 在由其中具有处理器的服务器模块组成的服务器中,具有用于容纳I / O扩展适配器以扩展服务器的I / O能力的I / O扩展槽的I / O模块以及管理整个 服务器,服务器模块和I / O扩展槽(通过它,最终是I / O扩展适配器)使用PCI Express接口进行互连,并且I / O模块和管理模块使用携带检测的特殊接口进行互连 指示I / O扩展适配器是否实际安装在I / O扩展槽上的信息。 在PCI Express接口发生链路故障的情况下,通过根据通过特殊接口获得的检测信息来掌握链路的状态,尝试链路恢复。