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    • 6. 发明申请
    • Mobility enhancement in SiGe heterojunction bipolar transistors
    • SiGe异质结双极晶体管中的迁移增强
    • US20070045775A1
    • 2007-03-01
    • US11212187
    • 2005-08-26
    • Thomas AdamDureseti Chidambarrao
    • Thomas AdamDureseti Chidambarrao
    • H01L29/00
    • H01L29/7378H01L29/161H01L29/165
    • The present invention relates to a high performance heterojunction bipolar transistor (HBT) having a base region with a SiGe-containing layer therein. The SiGe-containing layer is not more than about 100 nm thick and has a predetermined critical germanium content. The SiGe-containing layer further has an average germanium content of not less than about 80% of the predetermined critical germanium content. The present invention also relates to a method for enhancing carrier mobility in a HBT having a SiGe-containing base layer, by uniformly increasing germanium content in the base layer so that the average germanium content therein is not less than 80% of a critical germanium content, which is calculated based on the thickness of the base layer, provided that the base layer is not more than 100 nm thick.
    • 本发明涉及在其中具有含SiGe的层的基极区域的高性能异质结双极晶体管(HBT)。 含SiGe的层的厚度不超过约100nm,具有预定的临界锗含量。 含SiGe的层还具有不小于预定临界锗含量的约80%的平均锗含量。 本发明还涉及通过均匀地提高基底层中的锗含量,使其中的平均锗含量不低于临界锗含量的80%,来提高具有含SiGe的基底层的HBT中的载流子迁移率的方法 ,其基于基底层的厚度计算,条件是基底层不大于100nm厚。
    • 7. 发明授权
    • Coupling link
    • 耦合链接
    • US06176073B1
    • 2001-01-23
    • US09355569
    • 1999-09-23
    • Thomas Adam Shine
    • Thomas Adam Shine
    • F16G1318
    • F16G11/103A63B29/02
    • A coupling link (1) comprises a unitary body having a first main limb (2), a second main limb (3), and a third limb (4) which forms an open loop (6), one end of which extends between the first and second main limbs. Loading of ropes, slings or protection onto the coupling limnk (1) is simply a matter of temporarily deforming the rope or device and looping it over the third limb (4). The required unloading action is too complex for it to happen accidently. The three dimensional topology of the coupling link (1) eliminates the requirement for a spring biased gate and is therefore inherently safer than a conventional karabiner. In a preferred example, the first and second main limbs are joined to form a closed loop (5).
    • 联轴器(1)包括具有第一主支杆(2),第二主支杆(3)和形成开环(6)的第三支柱(4)的整体,其一端在 第一和第二主要肢体。 将绳索,吊索或保护装载到联轴器(1)上只是使绳索或装置暂时变形并将其环绕在第三肢(4)上。 所需的卸载动作太复杂,无法意外发生。 耦合链节(1)的三维拓扑结构消除了对弹簧偏置门的要求,因此固有地比传统的karabiner更安全。 在一个优选实施例中,第一和第二主支柱相连以形成闭环(5)。
    • 8. 发明授权
    • Electrode assembly
    • 电极组件
    • US6084392A
    • 2000-07-04
    • US101033
    • 1998-08-04
    • Thomas Adam ShineIan Basil Shine
    • Thomas Adam ShineIan Basil Shine
    • G01N15/12
    • G01N15/1218
    • An electrode assembly (1) for resistive pulse spectroscopy comprises two flat electrodes (3) substantially equal in size and shape and supported in face-to-face, parallel relationship to one another, and a plate-like fluid-tight insulator (2) positioned between electrodes and extended beyond the periphery of the electrodes with the electrodes (3) being fixed to the insulator (2). Each electrode has a hole (4) extending through the electrode in a central region thereof (4), the holes (4) of the two electrodes (3) being aligned with one another. The insulator (2) having a preformed aperture (16) therein which is located substantially centrally with respect to the holes (4) in the electrodes (3) and has a smaller diameter than the holes, the aperture (16) being located such as to allow a flow of liquid to pass therethrough and through the holes in the electrode.
    • PCT No.PCT / GB96 / 03241 Sec。 371日期:1998年8月4日 102(e)日期1998年8月4日PCT 1996年12月27日PCT公布。 出版物WO97 / 24600 日期1997年7月10日用于电阻脉冲光谱的电极组件(1)包括两个基本相等的尺寸和形状的扁平电极(3),并且以彼此面对面的平行关系支撑,并且板状流体 - 紧密绝缘体(2)位于电极之间并且延伸超过电极的周边,其中电极(3)固定到绝缘体(2)。 每个电极具有在其中心区域(4)延伸穿过电极的孔(4),两个电极(3)的孔(4)彼此对准。 绝缘体(2)在其中具有预先形成的孔(16),其相对于电极(3)中的孔(4)大致居中并且具有比孔小的直径,孔(16)位于 以允许液体流通过并穿过电极中的孔。
    • 9. 发明授权
    • Database automated recovery system
    • 数据库自动恢复系统
    • US5778387A
    • 1998-07-07
    • US444624
    • 1995-05-19
    • Thomas Adam WilkersonRoger Lynn BechtelJames Robert CessnaDavid Francis CostelloJames Louis FrentropEdwin Lee RyanGary Douglas Shaw
    • Thomas Adam WilkersonRoger Lynn BechtelJames Robert CessnaDavid Francis CostelloJames Louis FrentropEdwin Lee RyanGary Douglas Shaw
    • G06F11/14G06F17/30
    • G06F11/1471Y10S707/99953
    • The present invention is directed to a method and apparatus that automates the database recovery process. A person not technically skilled in the use of a computer can operate the new procedure. The process operates under a system in which menus known as "panels" prompt the user for information and process selection. The user merely selects one of the panels to start and operate the system. Each recovery procedure follows the same general series of steps comprising of initialization of system location and variables, selection by the operator of major functions including research, recovery, and cleanup, process of the function and function options, and execution of the mode in which the function will be processed. This panel driven system results in a significant reduction of the amount of time required for recovery, at least a twenty percent decrease for the period. In accordance with the present invention, the user identifies the corrupted database and enters the database name and estimated time stamp into the computer. The database recovery system automatically creates program control language and executes the language wherein the result provides a new, more accurate time stamp. The recovery system then creates additional program control language using the new time stamp and executes the program control language which then recovers the uncorrupted data. The user does not need to look up, write, or enter any program control language. These functions are fully automated.
    • 本发明涉及使数据库恢复过程自动化的方法和装置。 在技​​术上熟练使用计算机的人可以操作新的程序。 该过程在称为“面板”的菜单的系统下运行,提示用户进行信息和过程选择。 用户仅选择一个面板来启动和操作系统。 每个恢复过程遵循相同的一系列步骤,包括系统位置和变量的初始化,操作者选择主要功能,包括研究,恢复和清理,功能和功能选项的处理,以及执行模式 功能将被处理。 该面板驱动系统导致恢复所需时间的显着减少,此期间至少减少了百分之二十。 根据本发明,用户识别损坏的数据库,并将数据库名称和估计的时间戳输入到计算机中。 数据库恢复系统自动创建程序控制语言并执行语言,其中结果提供了一个新的更准确的时间戳。 然后,恢复系统使用新的时间戳创建附加的程序控制语言,并执行程序控制语言,然后恢复未被破坏的数据。 用户不需要查找,写入或输入任何程序控制语言。 这些功能是完全自动化的。