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    • 3. 发明申请
    • METHOD OF FORMING A FLAT MEDIA TABLE FOR PROBE STORAGE DEVICE
    • 形成探针存储器件平面介质表的方法
    • US20090155727A1
    • 2009-06-18
    • US11955538
    • 2007-12-13
    • Ute DrechslerMark A. LantzHugo E. Rothuizen
    • Ute DrechslerMark A. LantzHugo E. Rothuizen
    • G03F7/00
    • G11B9/14B82Y10/00G11B9/1472
    • A method of forming a flat media table for a probe-based storage device includes applying a first-photo-resistive coating to one side of a silicon wafer and a second photo-resistive coating to an opposite side of the silicon wafer. The silicon wafer includes a table layer, a suspension layer and a spacer layer sandwiched therebetween. The first photoresistive coating is applied to the table layer and the second photoresistive coating is applied to the suspension layer. A first pattern is formed through photolithography in the second photoresistive coating and etched into the suspension layer. A second pattern is formed through photolithography in the first photoresistive coating and etched into the table layer. A portion of the table layer is released from the suspension layer though selective etching of the spacer layer so as to form a plurality of stand-offs defined by remaining portions of the spacer layer.
    • 形成用于基于探针的存储装置的平坦介质台的方法包括将第一光阻涂层施加到硅晶片的一侧,将第二光阻涂层施加到硅晶片的相反侧。 硅晶片包括台层,悬置层和夹在其间的间隔层。 将第一光致抗蚀剂涂层施加到台面层,并将第二光致抗蚀剂涂层施加到悬浮层。 在第二光致抗蚀剂涂层中通过光刻形成第一图案并蚀刻到悬浮层中。 在第一光致抗蚀剂涂层中通过光刻形成第二图案并蚀刻到表层中。 通过选择性蚀刻间隔层,使表层的一部分从悬浮层中释放,以形成由间隔层的剩余部分限定的多个支座。
    • 4. 发明申请
    • PROBE STORAGE DEVICE SCANNER CHIP HAVING A MULTI-LAYER MEDIA SUPPORT TABLE
    • 具有多层媒体支持表的探头存储设备扫描器芯片
    • US20090154330A1
    • 2009-06-18
    • US11955516
    • 2007-12-13
    • Mark A. LantzHugo E. Rothuizen
    • Mark A. LantzHugo E. Rothuizen
    • G11B17/00
    • B82Y10/00G11B9/14
    • A probe storage device includes a base plate having a main body provided with a substantially planar surface, and a scanner chip body. The scanner chip body extends across the base plate. The scanner chip body includes first and second substantially parallel planar surfaces that collectively define an outer peripheral edge portion. The scanner chip body further includes at least a mechanical ground portion fixedly mounted to the base plate, a suspension portion, and a scan table base portion. The scan table base portion is selectively movable relative to the mechanical ground portion. The probe storage device further includes a scan table platform. The scan table platform includes first and second parallel substantially planar surfaces. The scan table platform extends across, is offset relative to, and mechanically linked with the scan table base portion so as to form a composite multi-layered support table for the media.
    • 探针存储装置包括具有设置有大致平面的主体的基板和扫描器芯片体。 扫描器芯片主体延伸穿过基板。 扫描器芯片本体包括共同限定外周边缘部分的第一和第二基本上平行的平坦表面。 扫描器芯片体还至少包括固定地安装到基板的机械接地部分,悬架部分和扫描台基部。 扫描台基部相对于机械接地部选择性地移动。 探针存储装置还包括扫描台平台。 扫描台平台包括第一和第二平行的基本平坦的表面。 扫描台平台延伸穿过,相对于扫描台基部偏移并且与扫描台基部部分机械连接,以形成用于介质的复合多层支撑台。
    • 5. 发明申请
    • HERMETIC SEAL FOR A SCANNER ASSEMBLY OF A PROBE STORAGE DEVICE
    • 探测存储设备扫描仪组件的封装密封
    • US20090153915A1
    • 2009-06-18
    • US11955530
    • 2007-12-13
    • Mark A. LantzHugo E. Rothuizen
    • Mark A. LantzHugo E. Rothuizen
    • H04N1/04
    • B82Y10/00G11B9/14
    • A scanner assembly includes a first sealing ring that extends around one of first and second actuating mechanisms of the scanner assembly. A first sealant ring is positioned upon the first sealing ring and is formed from one of a solder seal, glass frit seal and a glue seal. The first sealant ring provides a hermetic seal that maintains a desired operating environment for the one of the first and second actuating mechanisms and a mechanical support for a top plate. A second sealing ring extends around a media table of the scanner assembly. A second sealant ring is positioned upon the second sealing ring and is formed from one of a solder seal, glass frit seal and a glue seal. The second sealing ring provides a hermetic seal that maintains a desired operating environment for the media table and a mechanical support for an array chip.
    • 扫描器组件包括围绕扫描器组件的第一和第二致动机构中的一个延伸的第一密封环。 第一密封环位于第一密封环上并且由焊料密封,玻璃料密封和胶合密封之一形成。 第一密封环提供气密密封,其保持用于第一和第二致动机构中的一个的期望的操作环境和用于顶板的机械支撑。 第二密封环围绕扫描器组件的介质台延伸。 第二密封环定位在第二密封环上并且由焊料密封,玻璃料密封和胶合密封中的一种形成。 第二密封环提供气密密封,其保持用于介质台的期望的操作环境和阵列芯片的机械支撑。
    • 10. 发明授权
    • Linear recording tape with a reduced servo band width, and system and method for using the same
    • 具有减小的伺服带宽的线性记录带,以及使用该记录带的系统和方法
    • US08760795B2
    • 2014-06-24
    • US13080542
    • 2011-04-05
    • Giovanni CherubiniJens JelittoMark A. Lantz
    • Giovanni CherubiniJens JelittoMark A. Lantz
    • G11B5/584
    • G11B5/584G11B20/1201
    • In one embodiment, a linear magnetic recording tape includes at least one servo band having a servo pattern readable by a servo reader of a magnetic head for positioning thereof, wherein the servo pattern is adapted to substantially fill a width b of the servo band, the servo band width h is less than or equal to about 1.2 B/N, N is an integer greater than or equal to 2, and B corresponds to a distance between data read/write transducers of the magnetic head in a direction transverse to a longitudinal length of the tape. In another embodiment, a method includes providing the linear magnetic recording tape, formatting the tape, and positioning the magnetic head within a first lateral tape region. Other linear magnetic tapes, systems, and methods are described according to other embodiments.
    • 在一个实施例中,线性磁记录带包括至少一个具有由磁头的伺服读取器可读取的伺服模式的伺服带,用于定位它,其中伺服模式适于基本上填充伺服带的宽度b, 伺服带宽h小于或等于约1.2B / N,N是大于或等于2的整数,B对应于磁头的数据读/写换能器在横向于纵向的方向上的距离 磁带长度。 在另一个实施例中,一种方法包括提供线性磁记录带,格式化带,以及将磁头定位在第一侧带区域内。 根据其他实施例描述其它线性磁带,系统和方法。