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    • 3. 发明授权
    • Fluid-pressure regulated wafer polishing head
    • 流体压力调节晶片抛光头
    • US6024630A
    • 2000-02-15
    • US488921
    • 1995-06-09
    • Norman ShendonMichael SherwoodHarry Lee
    • Norman ShendonMichael SherwoodHarry Lee
    • B24B37/30B24B37/32H01L21/304B24B5/00
    • B24B37/30B24B37/32
    • A wafer polishing head utilizes a wafer backing member having a wafer facing pocket which is sealed against the wafer and is pressurized with air or other fluid to provide a uniform force distribution pattern across the width of the wafer inside an edge seal feature at the perimeter of the wafer to urge (or press) the wafer uniformly toward a polishing pad. Wafer polishing is carried out uniformly without variations in the amount of wafer material across the usable area of the wafer. A frictional force between the seal feature of the backing member and the surface of the wafer transfers rotational movement of the head to the wafer during polishing. A pressure controlled bellows supports and presses the wafer backing member toward the polishing pad and accommodates any dimensional variation between the polishing head and the polishing pad as the polishing head is moved relative to the polishing pad. An integral, but independently retractable and extendable retaining ring assembly is provided around the wafer backing member and wafer to uniformly and independently control the pressure of a wafer perimeter retaining ring on the polishing pad of a wafer polishing bed.
    • 晶片抛光头利用晶片背衬元件,该晶片背衬元件具有密封在晶片上的晶片对置的凹槽,并且用空气或其它流体加压,以在晶片的宽度上跨过晶片的宽度在边缘密封特征的周边 晶片将晶片均匀地推向(或压入)抛光垫。 在晶片的可用区域的晶片材料的量不变化的情况下均匀地进行晶片抛光。 背衬构件的密封特征与晶片的表面之间的摩擦力在抛光期间将头部的旋转运动转移到晶片。 受压控制的波纹管支撑并将晶片背衬元件按压到抛光垫上,并随着抛光头相对于抛光垫移动而适应抛光头和抛光垫之间的任何尺寸变化。 围绕晶片背衬元件和晶片设置一体的,但是可独立地可收回和可延伸的保持环组件,以均匀且独立地控制晶片周边保持环在晶片抛光床的抛光垫上的压力。
    • 4. 发明申请
    • Malware automated removal system and method using a diagnostic operating system
    • 恶意软件自动删除系统和方法使用诊断操作系统
    • US20090217258A1
    • 2009-08-27
    • US12380681
    • 2009-03-03
    • Michael WenzingerMichael Sherwood
    • Michael WenzingerMichael Sherwood
    • G06F21/00G06F9/00G06F9/44
    • G06F21/56G06F8/62G06F9/44505G06F21/575
    • The present invention automates the operation of multiple malware removal software products using a computerized system that systematically operates the multiple selected software products. These products are executed within a customized Diagnostic Operating System, which is different from the Normal Operating System in which the computer normally operates. Thus, any malware that may be attached to any of the programs, shells, drivers, services, or data files associated with the Normal Operating System cannot corrupt the malware removal process performed under the Diagnostic Operating System. Preferably, the Diagnostic Operating System is accessed from a read-only device prepared on a secure computer separate from the computer that is the target of the malware removal process, and the Diagnostic Operating System executes in a read-only environment. Because many malware removal products rely upon the environment provided by the Normal Operating System, the Diagnostic Operating System must provide redirection to ensure such products perform as expected. Event-triggered redirection of environment variables may be done by either injection of values, or by interception of name/key invocations.
    • 本发明使用系统地操作多个所选择的软件产品的计算机化系统自动化多个恶意软件删除软件产品的操作。 这些产品在定制的诊断操作系统中执行,该系统与计算机正常运行的常规操作系统不同。 因此,可能附加到与正常操作系统相关联的任何程序,shell,驱动程序,服务或数据文件的任何恶意软件不能破坏在诊断操作系统下执行的恶意软件删除过程。 优选地,诊断操作系统从在与作为恶意软件移除过程的目标的计算机分开的安全计算机上准备的只读设备访问,并且诊断操作系统在只读环境中执行。 由于许多恶意软件删除产品依赖于正常操作系统提供的环境,诊断操作系统必须提供重定向,以确保这些产品按预期执行。 环境变量的事件触发重定向可以通过注入值或通过拦截名称/密钥调用来完成。
    • 5. 发明授权
    • Malware automated removal system and method
    • 恶意软件自动删除系统和方法
    • US08266692B2
    • 2012-09-11
    • US11825168
    • 2007-07-05
    • Michael WenzingerMichael Sherwood
    • Michael WenzingerMichael Sherwood
    • G06F21/00
    • G06F21/56G06F8/60G06F8/62G06F21/575
    • The present invention automates the operation of multiple malware removal software products using a computerized system that systematically operates the multiple selected software products. These products are operated them in a customized “Safe Mode” using a shell that is different than the computer's other shell environments. Unlike the ordinary Safe Modes shells, the Custom Safe Mode prevents malware from functioning that ties itself to the normal shell, such as the Windows Explorer shell. In addition, the Custom Safe Mode allows the automation of tasks beyond that which is available under the standard command line shell.
    • 本发明使用系统地操作多个所选择的软件产品的计算机化系统自动化多个恶意软件删除软件产品的操作。 这些产品使用与计算机其他外壳环境不同的外壳以自定义的“安全模式”进行操作。 与普通的安全模式shell不同,“自定义安全模式”可以防止恶意软件运行,使其与正常的外壳(如Windows资源管理器外壳)相联系。 此外,自定义安全模式允许超出标准命令行shell下可用的任务的自动化。
    • 6. 发明授权
    • Fluid-pressure regulated wafer polishing head
    • US07101261B2
    • 2006-09-05
    • US10688663
    • 2003-10-16
    • Norman ShendonMichael SherwoodHarry Lee
    • Norman ShendonMichael SherwoodHarry Lee
    • B24B5/00
    • B24B37/30B24B37/32
    • A wafer polishing head utilizes a wafer backing member having a wafer facing pocket which is sealed against the wafer and is pressurized with air or other fluid to provide a uniform force distribution pattern across the width of the wafer inside an edge seal feature at the perimeter of the wafer to urge (or press) the wafer uniformly toward a polishing pad. Wafer polishing is carried out uniformly without variations in the amount of wafer material across the usable area of the wafer. A frictional force between the seal feature of the backing member and the surface of the wafer transfers rotational movement of the head to the wafer during polishing. A pressure controlled bellows supports and presses the wafer backing member toward the polishing pad and accommodates any dimensional variation between the polishing head and the polishing pad as the polishing head is moved relative to the polishing pad. An integral, but independently retractable and extendable retaining ring assembly is provided around the wafer backing member and wafer to uniformly and independently control the pressure of a wafer perimeter retaining ring on the polishing ad of a wafer polishing bed.
    • 9. 发明授权
    • Malware automated removal system and method using a diagnostic operating system
    • 恶意软件自动删除系统和方法使用诊断操作系统
    • US08234710B2
    • 2012-07-31
    • US12380681
    • 2009-03-03
    • Michael WenzingerMichael Sherwood
    • Michael WenzingerMichael Sherwood
    • G06F21/00
    • G06F21/56G06F8/62G06F9/44505G06F21/575
    • The present invention automates the operation of multiple malware removal software products using a computerized system that systematically operates the multiple selected software products. These products are executed within a customized Diagnostic Operating System, which is different from the Normal Operating System in which the computer normally operates. Thus, any malware that may be attached to any of the programs, shells, drivers, services, or data files associated with the Normal Operating System cannot corrupt the malware removal process performed under the Diagnostic Operating System. Preferably, the Diagnostic Operating System is accessed from a read-only device prepared on a secure computer separate from the computer that is the target of the malware removal process, and the Diagnostic Operating System executes in a read-only environment. Because many malware removal products rely upon the environment provided by the Normal Operating System, the Diagnostic Operating System must provide redirection to ensure such products perform as expected. Event-triggered redirection of environment variables may be done by either injection of values, or by interception of name/key invocations.
    • 本发明使用系统地操作多个所选择的软件产品的计算机化系统自动化多个恶意软件删除软件产品的操作。 这些产品在定制的诊断操作系统中执行,该系统与计算机正常运行的常规操作系统不同。 因此,可能附加到与正常操作系统相关联的任何程序,shell,驱动程序,服务或数据文件的任何恶意软件不能破坏在诊断操作系统下执行的恶意软件删除过程。 优选地,诊断操作系统从在与作为恶意软件移除过程的目标的计算机分开的安全计算机上准备的只读设备访问,并且诊断操作系统在只读环境中执行。 由于许多恶意软件删除产品依赖于正常操作系统提供的环境,诊断操作系统必须提供重定向,以确保这些产品按预期执行。 环境变量的事件触发重定向可以通过注入值或通过拦截名称/密钥调用来完成。