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    • 1. 发明申请
    • Method and program for labeling multi material data
    • 多材料数据标签的方法和程序
    • US20060267974A1
    • 2006-11-30
    • US10553602
    • 2004-05-10
    • Masaya KatoKiwamu KaseTomonori Yamada
    • Masaya KatoKiwamu KaseTomonori Yamada
    • G06T15/00
    • G06F17/5018
    • The present invention includes an external data acquisition step (S1), an external data input step (A), a cell division step (B), a cell classification step (C), a space classification step (D), a simulation step (S3), and an output step (S4). The cell classification step (C) includes a step of further classifying each of the boundary cells (13a) into a first type cell and a second type cell. The first type cell has a cutting point at which an edge line or vertex is cut by the boundary data. The second type cell has a cutting point that lies on a boundary with another cell of different hierarchy, and is larger than the another cell. The cell classification step (C) further includes a step of assigning a material number to each cell vertex.
    • 本发明包括外部数据获取步骤(S1),外部数据输入步骤(A),单元划分步骤(B),单元分类步骤(C),空间分类步骤(D),模拟步骤 (S 3)和输出步骤(S 4)。 细胞分类步骤(C)包括将每个边界细胞(13a)进一步分类为第一类型细胞和第二类型细胞的步骤。 第一类型单元具有边界线或顶点被边界数据切割的切割点。 第二类型单元具有位于与不同层次的另一单元格的边界上的切割点,并且大于另一单元格。 细胞分类步骤(C)还包括向每个细胞顶点分配材料编号的步骤。
    • 2. 发明授权
    • Method and program for labeling multi material data
    • 多材料数据标签的方法和程序
    • US07620528B2
    • 2009-11-17
    • US10553602
    • 2004-05-10
    • Masaya KatoKiwamu KaseTomonori Yamada
    • Masaya KatoKiwamu KaseTomonori Yamada
    • G06F7/60G06F17/00G06G7/48G06T15/00
    • G06F17/5018
    • The present invention includes an external data acquisition step (S1), an external data input step (A), a cell division step (B), a cell classification step (C), a space classification step (D), a simulation step (S3), and an output step (S4). The cell classification step (C) includes a step of further classifying each of the boundary cells (13a) into a first type cell and a second type cell. The first type cell has a cutting point at which an edge line or vertex is cut by the boundary data. The second type cell has a cutting point that lies on a boundary with another cell of different hierarchy, and is larger than the another cell. The cell classification step (C) further includes a step of assigning a material number to each cell vertex.
    • 本发明包括外部数据获取步骤(S1),外部数据输入步骤(A),单元划分步骤(B),单元分类步骤(C),空间分类步骤(D),模拟步骤 S3)和输出步骤(S4)。 细胞分类步骤(C)包括将每个边界细胞(13a)进一步分类为第一类型细胞和第二类型细胞的步骤。 第一类型单元具有边界线或顶点被边界数据切割的切割点。 第二类型单元具有位于与不同层级的另一单元格的边界上的切割点,并且大于另一单元格。 细胞分类步骤(C)还包括向每个细胞顶点分配材料编号的步骤。
    • 9. 发明申请
    • PLATING METHOD AND METHOD OF FORMING MAGNETIC POLE
    • 成形方法及其形成方法
    • US20090246715A1
    • 2009-10-01
    • US12246252
    • 2008-10-06
    • Yasunori KouchiMasaya Kato
    • Yasunori KouchiMasaya Kato
    • G03F7/20
    • G03F7/0751C25D5/022G11B5/1278G11B5/3116G11B5/3163
    • The plating method is capable of firmly adhering a resist pattern on a plating base in case that, for example, a main magnetic pole of a vertical recording magnetic head is formed by using the resist pattern and accurately configurating a sectional shape of a plated pattern. The plating method comprises the steps of: applying an alkoxylsilyl propyl amino triazine dithiol solution, which is formed by dissolving alkoxylsilyl propyl amino triazine dithiol acting as molecular glue in a solvent, onto the plating base; volatilizing the solvent to form a molecular glue layer; applying resist onto the plating base coated with the molecular glue layer; optically exposing and developing the resist to expose a part of the plating base; and plating the exposed part of the plating base coated with the molecular glue layer.
    • 在例如通过使用抗蚀剂图案形成垂直记录磁头的主磁极并精确地构造电镀图案的截面形状的情况下,电镀方法能够将抗蚀剂图案牢固地粘附在电镀基板上。 电镀方法包括以下步骤:通过将作为分子胶的烷氧基甲硅烷基丙基氨基三嗪二硫醇溶解在溶剂中而形成的烷氧基甲硅烷基丙基氨基三嗪二硫醇溶液施加到电镀基体上; 挥发溶剂形成分子胶层; 将抗蚀剂涂布在涂布有分子胶层的镀覆基底上; 光刻曝光和显影抗蚀剂以暴露电镀基底的一部分; 并镀覆涂有分子胶层的电镀基底的露出部分。