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    • 2. 发明授权
    • Image decoding apparatus and image coding apparatus
    • 图像解码装置和图像编码装置
    • US06683992B2
    • 2004-01-27
    • US09749755
    • 2000-12-28
    • Toshiya TakahashiHiroaki Toida
    • Toshiya TakahashiHiroaki Toida
    • G06K900
    • G06T9/20H04N19/21H04N19/423H04N19/436H04N19/44H04N19/563
    • A decoding LSI adaptable to MPEG4 is provided with a padding means for performing padding on decoded texture data, an arithmetic decoding means for performing arithmetic decoding on coded shape data, and a composition means for compositing a plurality of texture data to generate composite image data. The padding means, the arithmetic decoding means, and the composition means are implemented by hardware circuits, i.e., a padding engine, an arithmetic decoding engine, and a composition engine, respectively. Therefore, the decoding LSI can perform high-speed decoding on a bitstream corresponding to plural objects, such as images, which are compressively coded by the MPEG4 coding method, with reduced cost of the hardware circuits performing the decoding process.
    • 适用于MPEG4的解码LSI具有用于对解码的纹理数据执行填充的填充装置,用于对编码形状数据执行算术解码的算术解码装置,以及用于合成多个纹理数据以生成合成图像数据的合成装置。 填补装置,算术解码装置和合成装置分别由硬件电路,即填充引擎,算术解码引擎和合成引擎来实现。 因此,解码LSI可以以降低执行解码处理的硬件电路的成本,对与MPEG4编码方法进行压缩编码的多个对象等图像进行高速解码。
    • 5. 发明申请
    • PROCESS FOR PRODUCTION OF POLYAMIDEIMIDE RESIN MICROPARTICLES, AND POLYAMIDEIMIDE RESIN MICROPARTICLES
    • 聚酰胺树脂微生物生产工艺和聚酰胺树脂微生物
    • US20120237771A1
    • 2012-09-20
    • US13508200
    • 2010-10-06
    • Hiroaki AkasakaTakae OnoToshiya Takahashi
    • Hiroaki AkasakaTakae OnoToshiya Takahashi
    • C08G73/14
    • C08J3/14C08G73/14C08J2379/08Y10T428/2982
    • A process for producing fine particles of polyamide-imide resin includes a dissolution step and a precipitation step wherein the dissolution step is selected from steps (a1) and (b1); (a1) polyamide-imide resin is dissolved in an organic solvent to prepare a polyamide-imide resin solution A1 having a polyamide-imide resin content of less than 5 mass %; and (b1) polyamide-imide resin is dissolved in an organic solvent to prepare a polyamide-imide resin solution B1 having a polyamide-imide resin content of less than 10 mass %, and the precipitation step is selected from (a2) the polyamide-imide resin solution A1 is added to a solvent that is virtually free from surface active agents and able to precipitate fine particles of the polyamide-imide resin to cause precipitation of fine particles of the polyamide-imide resin, and (b2) the polyamide-imide resin solution B1 is subjected to flash crystallization to cause precipitation of fine particles of the polyamide-imide resin.
    • 制备聚酰胺酰亚胺树脂微粒的方法包括溶解步骤和沉淀步骤,其中溶解步骤选自步骤(a1)和(b1); (a1)聚酰胺酰亚胺树脂溶解在有机溶剂中,制备聚酰胺 - 酰亚胺树脂含量小于5质量%的聚酰胺 - 酰亚胺树脂溶液A1; 和(b1)聚酰胺酰亚胺树脂溶解在有机溶剂中,制备聚酰胺 - 酰亚胺树脂含量小于10质量%的聚酰胺 - 酰亚胺树脂溶液B1,沉淀步骤选自(a2)聚酰胺 - 将酰亚胺树脂溶液A1加入到基本上不含表面活性剂的溶剂中,并能够使聚酰胺 - 酰亚胺树脂的细颗粒沉淀,使聚酰胺 - 酰亚胺树脂的细颗粒沉淀,和(b2)聚酰胺 - 酰亚胺 树脂溶液B1进行闪光结晶,使聚酰胺 - 酰亚胺树脂的微粒析出。
    • 10. 发明申请
    • FILM DEPOSITING APPARATUS
    • 薄膜沉积装置
    • US20090229520A1
    • 2009-09-17
    • US12404022
    • 2009-03-13
    • Tatsuya FujinamiToshiya Takahashi
    • Tatsuya FujinamiToshiya Takahashi
    • C23C16/54
    • C23C16/509C23C16/4412C23C16/45502C23C16/545
    • A film depositing apparatus comprises: a rotatable drum within a chamber around which a substrate is wrapped in a specified surface region; a film depositing unit comprising a film depositing electrode spaced facing to a surface of the drum, and a feed gas supply section supplying a feed gas for forming a film into a gap between the drum and the film depositing electrode; and an exhaust unit that exhausts the gap between the drum and the film depositing electrode during film formation by the film depositing unit so as to forcibly discharge the feed gas, supplied into the gap by the feed gas supply section, through at least one of end portions of the gap upstream side and downstream side in a rotating direction of the drum uniformly over an entire region of the gap in a direction parallel to the axis of rotation of the drum.
    • 一种成膜设备包括:在室内的可旋转的滚筒,在该腔室内衬底被包裹在指定的表面区域中; 膜沉积单元,其包括面对所述滚筒的表面间隔开的膜沉积电极;以及进料气体供应部分,其将用于将膜形成的进料气体供应到所述滚筒和所述膜沉积电极之间的间隙中; 以及排气单元,其通过所述成膜单元在成膜期间排出所述滚筒和所述膜沉积电极之间的间隙,以便强制地将由所述进料气体供应部供应到所述间隙中的进料气体排出至少一个末端 在滚筒的旋转方向上的间隙上游侧和下游侧的部分在平行于滚筒的旋转轴线的方向上在间隙的整个区域上均匀地布置。