Nano-lithography with rotating target and servo-positioned tip
    1.
    发明授权
    Nano-lithography with rotating target and servo-positioned tip 有权
    具有旋转目标和伺服定位尖端的纳米光刻

    公开(公告)号:US08358481B2

    公开(公告)日:2013-01-22

    申请号:US12080278

    申请日:2008-04-02

    IPC分类号: G11B11/08

    摘要: The preferred embodiments of the present invention are devices and processes for producing high resolution lithography or pattern formation on the nanometer scale, using a voltage-biased probe that is slider-mounted along with, or separate from but linked to, a magnetic read head within a HDD mechanism. The probe is guided and positioned over a target layer by the motion of the read head which is, itself, guided by signals from servo tracks on a magnetic layer that activate an electromechanical servomechanism within the HDD. An electric field produced by the probe is capable of modifying the surface of the target layer over which the probe flies either directly, or by current induced or thermally induced effects. Targets such as amorphous or crystalline silicon can be hydrogen passivated and the electric field will produce oxidized or anodized lines with nanometer resolution.

    摘要翻译: 本发明的优选实施例是设备和方法用于在纳米尺度上产生高分辨率平版印刷或图案形成,使用电压偏置探针,滑块安装有沿,或从分开的,但连接到,一个磁性读出头内 HDD机制。 探头通过读取头的运动被引导和定位在目标层上,该读取头本身由在激活HDD内的机电伺服机构的磁性层上的来自伺服磁道的信号引导。 由探针产生的电场能够直接改变探针在其上飞行的目标层的表面,或者通过电流感应或热诱导效应。 诸如非晶体或晶体硅的靶可以被氢钝化,并且电场将产生具有纳米分辨率的氧化或阳极化线。

    Nano-lithography with rotating target and servo-positioned tip
    2.
    发明申请
    Nano-lithography with rotating target and servo-positioned tip 有权
    具有旋转目标和伺服定位尖端的纳米光刻

    公开(公告)号:US20100321820A1

    公开(公告)日:2010-12-23

    申请号:US12080278

    申请日:2008-04-02

    IPC分类号: G11B5/52

    摘要: The preferred embodiments of the present invention are devices and processes for producing high resolution lithography or pattern formation on the nanometer scale, using a voltage-biased probe that is slider-mounted along with, or separate from but linked to, a magnetic read head within a HDD mechanism. The probe is guided and positioned over a target layer by the motion of the read head which is, itself, guided by signals from servo tracks on a magnetic layer that activate an electromechanical servomechanism within the HDD. An electric field produced by the probe is capable of modifying the surface of the target layer over which the probe flies either directly, or by current induced or thermally induced effects. Targets such as amorphous or crystalline silicon can be hydrogen passivated and the electric field will produce oxidized or anodized lines with nanometer resolution.

    摘要翻译: 本发明的优选实施例是使用电压偏置探针来生产高分辨率光刻或图形形成的装置和工艺,所述电压偏置探针与所述磁读取头一起滑动安装,或与之相连, HDD机制。 探头通过读取头的运动被引导和定位在目标层上,该读取头本身由在激活HDD内的机电伺服机构的磁性层上的来自伺服磁道的信号引导。 由探针产生的电场能够直接改变探针在其上飞行的目标层的表面,或者通过电流感应或热诱导效应。 诸如非晶体或晶体硅的靶可以被氢钝化,并且电场将产生具有纳米分辨率的氧化或阳极化线。

    Magnetic head tester using magnetic disk with pre-written servo
    5.
    发明授权
    Magnetic head tester using magnetic disk with pre-written servo 有权
    磁头测试仪采用磁盘预写伺服

    公开(公告)号:US07580218B2

    公开(公告)日:2009-08-25

    申请号:US11217872

    申请日:2005-09-01

    IPC分类号: G11B5/596

    CPC分类号: G11B5/59627 G11B5/455

    摘要: A method for operating a head testing apparatus (spin stand) using a mounted hard disk that has had its servo track information pre-written in an external servo-writing apparatus rather than in the testing apparatus itself. This insures more accurate servo-track writing and renders the testing operation more efficient. The problem of repeatable runout (RRO) associated with the transfer of a disk written in one machine to another is eliminated by forming a corrected position error signal (PES) by subtracting the average offset of one or more servo sector locations previously calculated using limited bandwidth operation of the servomechanism, from the position error signal generated during full bandwidth servo operation of the apparatus.

    摘要翻译: 使用已经将其伺服信息信息预写在外部伺服写入装置而不是在测试装置本身中的安装的硬盘来操作头部测试装置(旋转架)的方法。 这样可以确保更准确的伺服轨迹写入,并使测试操作更有效率。 通过减去先前使用有限带宽计算的一个或多个伺服扇区位置的平均偏移量来形成校正位置误差信号(PES)来消除与将一个机器中写入的盘传输到另一个机器的可重复跳动(RRO)的问题 从设备的全带宽伺服操作期间产生的位置误差信号来操作伺服机构。

    Business solution management (BSM)
    8.
    发明申请
    Business solution management (BSM) 审中-公开
    业务解决方案管理(BSM)

    公开(公告)号:US20050021348A1

    公开(公告)日:2005-01-27

    申请号:US10624860

    申请日:2003-07-21

    IPC分类号: G06Q10/06 G06Q10/10 G06F17/60

    摘要: Systems and techniques to allow a user to design and manage business solutions. The business solution management system (150) comprises a portal layer (112), an application layer (104) and a data repository (106). The portal layer (112) comprises at least first and second agents (204, 208). The application layer (104) comprises at least first and second software applications (220, 224). The first and second agents (204, 208) provide user interfaces to the first and second software applications (220, 224). The first software application (220) is operable to allow a user to design a business solution with user parameters and user-selectable, pre-defined business process objects and pre-defined technology objects. The second software application (224) is operable to allow a user to manage the business solution. The data repository (106) comprises the pre-defined business objects (316) and pre-defined technology objects (314).

    摘要翻译: 允许用户设计和管理业务解决方案的系统和技术。 业务解决方案管理系统(150)包括门户层(112),应用层(104)和数据存储库(106)。 入口层(112)包括至少第一和第二代理(204,208)。 应用层(104)至少包括第一和第二软件应用(220,224)。 第一和第二代理(204,208)向第一和第二软件应用程序(220,224)提供用户界面。 第一软件应用程序(220)可操作以允许用户设计具有用户参数和用户可选择的预定义业务处理对象和预定义技术对象的业务解决方案。 第二软件应用程序(224)可操作以允许用户管理业务解决方案。 数据存储库(106)包括预定义的业务对象(316)和预定义的技术对象(314)。