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    • 3. 发明授权
    • Health-based access to network resources
    • 基于健康的网络资源访问
    • US08561182B2
    • 2013-10-15
    • US12361548
    • 2009-01-29
    • Henry Lee
    • Henry Lee
    • G06F11/00
    • G06F21/55
    • A protection system is described herein that dynamically determines whether a computer system can access a particular resource based on a combination of a dynamic health state of the computer system and a dynamic reputation of the resource. When a user attempts to access a resource, the protection system intercepts the request. The protection system determines the reputation of the resource that the user is attempting to access and the health of the computer system through which the user is attempting to access the resource. Based on the determined resource reputation and the determined computer system health, the protection system determines whether to allow the requested access to the resource.
    • 本文描述了一种保护系统,其基于计算机系统的动态健康状态和资源的动态声誉的组合动态地确定计算机系统是否可以访问特定资源。 当用户尝试访问资源时,保护系统会拦截该请求。 保护系统确定用户尝试访问的资源的信誉以及用户尝试访问资源的计算机系统的运行状况。 基于确定的资源信誉和确定的计算机系统健康状况,保护系统确定是否允许所请求的资源访问。
    • 8. 发明授权
    • State-based implementation of transactions on a file system
    • 在文件系统上基于状态的交易实现
    • US06405217B1
    • 2002-06-11
    • US09157639
    • 1998-09-21
    • Henry Lee
    • Henry Lee
    • G06F1200
    • G06F17/30067
    • State-based offspring objects are created to correspond to each object in a file system when the corresponding object is opened. Each offspring object contains two fields, an original name field containing the name of the object as opened and a final name field. Each name change made to the object is written to the final name field so that the final name field always reflects the last change made to the name of the object. The various combinations of the fields define the offspring object's state. The offspring objects are arranged in a hierarchical structure that mimics the structure of the file system with the offspring object corresponding to the top level open object as its root. When the changes are committed, the state of the offspring object determines the operation to be performed on the corresponding object. Once the commit is completed, the original name field is overwritten with the final name. If changes are aborted, the original name is written to the final name field to revert the changes. A temporary offspring object is created when necessary to provide for circular renaming situations.
    • 当对应的对象被打开时,基于状态的后代对象被创建为对应于文件系统中的每个对象。 每个后代对象包含两个字段,一个原始名称字段,包含已打开的对象的名称和最终名称字段。 对对象进行的每个名称更改都将写入最终名称字段,以便最终名称字段始终反映对对象名称进行的最后一次更改。 这些字段的各种组合定义了后代对象的状态。 后代对象以分层结构排列,模仿文件系统的结构,并以与顶级打开对象相对应的后代对象作为其根。 当提交更改时,后代对象的状态确定对相应对象执行的操作。 提交完成后,原始名称字段将以最终名称覆盖。 如果更改中止,原始名称将写入最终名称字段以还原更改。 必要时创建临时后代对象以提供循环重命名的情况。
    • 9. 发明授权
    • Method for fabrication of a semiconductor device
    • 半导体器件的制造方法
    • US5880006A
    • 1999-03-09
    • US83674
    • 1998-05-22
    • Xi-Wei LinHenry LeeIan R. Harvey
    • Xi-Wei LinHenry LeeIan R. Harvey
    • H01L21/311H01L21/84
    • H01L21/31116
    • A method for forming a semiconductor structure on an active area mesa with minimal loss of field oxide deposited in isolation trenches adjacent the mesa. The trench insulating material is protected by an etch barrier layer having at least a partial resistance to etchants used in further device processing steps. The barrier layer may also be deposited over the surface of the substrate to protect it from damage during device processing. The barrier layer may be removed by an etchant having a selectivity for the barrier layer over that of the surrounding device elements. Final processing of the device may be completed once the barrier layer is removed.
    • 一种用于在有源区域台面上形成半导体结构的方法,其中在邻近台面的隔离沟槽中沉积的场氧化物的损失最小。 沟槽绝缘材料由在其它器件处理步骤中使用的对蚀刻剂具有至少部分电阻的蚀刻阻挡层保护。 阻挡层也可以沉积在衬底的表面上,以防止在器件处理期间的损坏。 可以通过具有对于阻挡层的选择性超过周围器件元件的蚀刻剂的蚀刻剂去除阻挡层。 一旦阻挡层被去除,装置的最终处理就可以完成。