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    • 62. 发明申请
    • POWER AND GROUND BUSS LAYOUT FOR REDUCED SUBSTRATE SIZE
    • 功率和接地总线布局减少基板尺寸
    • US20070139475A1
    • 2007-06-21
    • US11676551
    • 2007-02-20
    • David KingKristi Rowe
    • David KingKristi Rowe
    • B41J2/14B41J2/16
    • B41J2/04541B41J2/04548B41J2/04563B41J2/0458B41J2/14072B41J2/14129
    • A semiconductor substrate for a micro-fluid ejection device. The substrate includes plurality of micro-fluid ejection actuators disposed adjacent a fluid supply slot in the semiconductor substrate. A plurality of power transistors, occupying a power transistor active area of the substrate, are disposed adjacent the ejection actuators and are connected through a first metal conductor layer to the ejection actuators. An array of logic circuits, occupying a logic circuit area of the substrate, is disposed adjacent the plurality of power transistors and is connected through a polysilicon conductor layer to the power transistors. A power conductor and a ground conductor for the ejection actuators is routed in a second metal conductor layer. The power conductor overlaps at least a portion of the power transistor active area of the substrate and the ground conductor overlaps at least a portion of the logic circuit area of the substrate.
    • 一种用于微流体喷射装置的半导体衬底。 衬底包括邻近半导体衬底中的流体供应槽设置的多个微流体喷射致动器。 占据基板的功率晶体管有源区的多个功率晶体管被设置在喷射致动器附近,并且通过第一金属导体层连接到喷射致动器。 占据基板的逻辑电路区域的逻辑电路阵列被布置成与多个功率晶体管相邻,并且通过多晶硅导体层连接到功率晶体管。 用于喷射致动器的电源导体和接地导体在第二金属导体层中布线。 电源导体与衬底的功率晶体管有源区域的至少一部分重叠,并且接地导体与衬底的逻辑电路区域的至少一部分重叠。
    • 63. 发明申请
    • Combined magnetic field gradient and magnetic field strength sensor
    • 组合磁场梯度和磁场强度传感器
    • US20070096729A1
    • 2007-05-03
    • US10581308
    • 2004-12-16
    • Kevin BrunsonDavid King
    • Kevin BrunsonDavid King
    • G01R33/02
    • G01R33/0286G01R33/022G01R33/0283
    • A magnetic field sensor device (2) is described that comprises an oscillatory member (8) and current control means (6). The current control means (6) is arranged to pass an alternating current (AC) along at least first (10) and second (12) current paths provided through the oscillatory member (8) and is arranged to provide magnetic gradiometer mode operation (i.e. to measure magnetic field gradient) in which current flow through the first current path (10) is in substantially the opposite direction to current flow through the second current path (12). The current control means (6) can also prove magnetometer mode operation (i.e. to measure magnetic field strength). The magnetic field sensor (2) may be used in a compass.
    • 描述了包括振荡构件(8)和电流控制装置(6)的磁场传感器装置(2)。 电流控制装置(6)被布置成沿着穿过振荡构件(8)提供的至少第一(10)和第二(12)电流路径传递交流电(AC),并且被布置成提供磁梯度计模式操作 以测量磁场梯度),其中流过第一电流路径(10)的电流基本上与通过第二电流路径(12)的电流相反。 电流控制装置(6)还可以证明磁力计模式操作(即测量磁场强度)。 磁场传感器(2)可以用于罗盘。
    • 70. 发明授权
    • Apparatus for separating solids drilling fluids
    • 用于分离固体钻井液的装置
    • US06193070B1
    • 2001-02-27
    • US09399901
    • 1999-09-21
    • Brian Raymond RowneyDavid King
    • Brian Raymond RowneyDavid King
    • B03B100
    • E21B21/065B01D21/0042B01D21/009B01D21/01B01D21/2427B01D21/2455B01D21/2488B01D21/262B01D2221/04
    • A solids separation system may be used to separate solids, such as cuttings from drilling fluids used in well drilling operations. The system includes a settling tank having transverse baffles defining a fluid receiving chamber, a fluid output chamber and one or more intermediate chambers. Fluid introduced into the fluid receiving chamber can flow in a sinuous path through apertures in the baffles to the fluid output chamber. Solids settle to the bottom of the settling tank. A material conveyor, preferably an auger, extends along a bottom surface of the settling tank to an outlet port in the fluid receiving chamber. A centrifuge is connected to the output port to receive fluid in which solids have been concentrated. Fluid output from the centrifuge is reintroduced into the settling tank. The apparatus and method of the invention permit a single centrifuge to be used to handle a higher volume of fluid than is possible with conventional methods and apparatus. This provides significant cost savings.
    • 固体分离系统可用于分离固体,例如钻井操作中使用的钻井液的切屑。 该系统包括具有限定流体接收室的横向挡板的沉降槽,流体输出室和一个或多个中间室。 引入流体接收室的流体可以以弯曲的方式流过通过挡板中的孔到流体输出室。 固体沉降到沉淀池的底部。 材料输送机,优选螺旋钻,沿沉降槽的底表面延伸到流体接收室中的出口。 离心机连接到输出端口以接收其中固体已经集中的流体。 来自离心机的流体输出被重新引入沉淀槽。 本发明的装置和方法允许使用单个离心机来处理比常规方法和装置可能的更高体积的流体。 这显着节省了成本。