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    • 4. 发明授权
    • Light texture process of fabricating a magnetic recording media
    • 制造磁记录介质的光纹理过程
    • US6103339A
    • 2000-08-15
    • US3187
    • 1998-01-06
    • Cheng-Der LinJason S. LinYuan-Ming ChangAn-Hung Tan
    • Cheng-Der LinJason S. LinYuan-Ming ChangAn-Hung Tan
    • G11B5/82G11B5/73G11B5/84G11B5/66
    • G11B5/7315G11B5/8404G11B5/8408Y10S428/90Y10T428/24355
    • Nowadays, in fabricating a magnetic recording medium, a disk substrate is first mechanically polished to form an even surface. Next, a laser texturing process is performed to produce a textured annular landing zone on the disk substrate. A magnetic layer is then formed on the disk substrate to complete the fabrication process. However, abnormal asperity usually remains on the surface of the disk substrate. Further, as the amount of exposure time in the air increases, an oxide film is inevitably formed on the surface of the disk substrate. Both of them degrade the surface smooth of the disk substrate, resulting in poor control of the size and structure of the laser texture. In addition, due to the irregular distribution of the mechanical polished texture on the disk substrate, a subsequently formed magnetic layer can not easily achieve the desired properties. This invention therefore provides a light texture process for fabricating a magnetic recording medium. The process is characterized in forming light textures by a two-step light texturing process before forming the laser texture on a disk substrate. The process is intended to remove abnormal asperity and oxide film on the disk substrate, as well as form a plurality of circumferential light textures on the surface of the disk substrate. The roughness of the circumferential light textures is less than that of the laser texture. As the surface smooth of the disk substrate is improved, the size and structure of the laser texture are more controllable. Furthermore, it is easier to form a magnetic layer having desired properties because the circumferential light textures are distributed in a regular way.
    • 现在,在制造磁记录介质时,首先机械抛光盘基片以形成均匀的表面。 接下来,执行激光纹理化处理以在盘基底上产生纹理化的环形着陆区。 然后在盘基板上形成磁性层以完成制造工艺。 然而,异常粗糙度通常保留在盘基片的表面上。 此外,随着空气中的曝光时间量的增加,不可避免地在盘基板的表面上形成氧化膜。 它们都降低了盘基片的表面光滑度,导致激光纹理的尺寸和结构控制不良。 另外,由于在盘基板上的机械抛光纹理的不规则分布,随后形成的磁性层不能容易地达到期望的性能。 因此,本发明提供了一种用于制造磁记录介质的光纹理工艺。 该方法的特征在于在将光刻基体形成激光纹理之前通过两步光纹理化处理形成光纹理。 该方法旨在去除盘基片上的异常粗糙和氧化膜,并且在盘基片的表面上形成多个圆周光纹理。 圆周光纹理的粗糙度小于激光纹理的粗糙度。 随着盘基片的表面光滑度的提高,激光纹理的尺寸和结构更加可控。 此外,由于周向光纹理以规则的方式分布,所以容易形成具有期望特性的磁性层。
    • 8. 发明申请
    • ASSEMBLED FILM ANTENNA STRUCTURE
    • 组装胶片天线结构
    • US20090267841A1
    • 2009-10-29
    • US12255477
    • 2008-10-21
    • Chia-Yu LIAOYuan-Ming CHANG
    • Chia-Yu LIAOYuan-Ming CHANG
    • H01Q1/38
    • H01Q9/0442
    • The present invention provides an assembled film antenna structure. The antenna structure includes a substrate, a feeder and conductive medium. The substrate is provided with a conductive thin-profile antenna body. The antenna body includes a signal connector. One side of the conductive medium is connected with the feeder, and the other side is assembled and positioned securely onto the signal connector of antenna body. An anchor protrudes from one side of the conductive medium, and the anchor is embedded into the antenna body and substrate via hot pressing. Thus, the conductive medium and antenna body can be assembled in a more simple and fast way, generating an improved applicability and industrial efficiency.
    • 本发明提供一种组装膜天线结构。 天线结构包括基板,馈线和导电介质。 基板设置有导电薄型天线体。 天线体包括信号连接器。 导电介质的一侧与馈线连接,另一侧被安装在天线体的信号连接器上。 锚固体从导电介质的一侧突出,并且锚通过热压嵌入天线体和基板中。 因此,可以以更简单和快速的方式组装导电介质和天线体,从而产生改进的适用性和工业效率。