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    • 1. 发明授权
    • Electrophysiological recording system and methods of using same
    • 电生理记录系统及其使用方法
    • US09448195B2
    • 2016-09-20
    • US13810402
    • 2011-07-15
    • Alonso P. MorenoGary S. GoldbergAbhijit MondalIan HarveyBrian Baker
    • Alonso P. MorenoGary S. GoldbergAbhijit MondalIan HarveyBrian Baker
    • C12M3/00C12M1/00G01N27/00C12M1/12C12M1/34
    • C12N5/0068C12M25/02C12M41/46C12N2535/00C12N2537/00G01N27/00
    • Electrophysiological recording systems for analysis of cultured cells include an recording device and a housing for supporting the electrophysiological recording device. The device has a porous membrane with top and bottom surfaces and a plurality of pores extending between the top and bottom surfaces. The porous membrane defines a first cell culture region disposed on the top surface and an opposed second cell culture region disposed on the bottom surface. The electrophysiological recording device has a plurality of electrodes positioned on the porous membrane in between a first insulation layer and a second insulation layer. The plurality of electrodes extend to the first cell culture region of the porous membrane. Recording ends of the electrodes measure electrical properties of cells cultured within the first and second cell culture regions, while the contact ends of the electrodes are positioned in electrical communication with data acquisition equipment.
    • 用于分析培养细胞的电生理记录系统包括记录装置和用于支持电生理记录装置的壳体。 该装置具有多孔膜,其具有顶表面和底表面以及在顶表面和底表面之间延伸的多个孔。 多孔膜限定设置在顶表面上的第一细胞培养区和设置在底表面上的相对的第二细胞培养区。 电生理记录装置具有位于第一绝缘层和第二绝缘层之间的多孔膜上的多个电极。 多个电极延伸到多孔膜的第一细胞培养区。 记录电极的末端测量在第一和第二细胞培养区内培养的细胞的电学性质,而电极的接触末端位置与数据采集设备电连通。
    • 2. 发明授权
    • Lens actuator
    • 镜头执行器
    • US08842372B2
    • 2014-09-23
    • US13001992
    • 2009-06-29
    • Charles FisherIan HarveyBrian Baker
    • Charles FisherIan HarveyBrian Baker
    • G02B15/14G02B7/02G02B26/08G02B3/14
    • G02B3/14G02B26/0875
    • A flexible lens may be actuated to change its focal length by a deployable lens actuator. The lens actuator translates a rotational motion of an outer frame into a linear radial motion of a plurality of linear elements. The linear elements have fixed pins, which may be slidably coupled to cam pockets in the outer frame. The cam pockets have a gradually varying distance from the center of the outer frame. The rotation of the outer frame thus drives the cam pockets to slide about the pins, thereby causing radial motions of the linear elements. The linear elements stretch a flexible lens, thereby changing a curvature of the flexible lens.
    • 可以通过可展开的透镜致动器来致动柔性透镜以改变其焦距。 透镜致动器将外框的旋转运动转换成多个线性元件的线性径向运动。 线性元件具有固定的销,其可以可滑动地联接到外框架中的凸轮袋。 凸轮凹部与外框的中心具有逐渐变化的距离。 因此,外框架的旋转驱动凸轮凹部围绕销滑动,从而引起线性元件的径向运动。 线性元件拉伸柔性透镜,从而改变柔性透镜的曲率。
    • 3. 发明申请
    • Electrophysiological Recording System and Methods of Using Same
    • 电生理记录系统及其使用方法
    • US20130196368A1
    • 2013-08-01
    • US13810402
    • 2011-07-15
    • Alonso P. MorenoGary S. GoldbergAbhijit MondalIan HarveyBrian Baker
    • Alonso P. MorenoGary S. GoldbergAbhijit MondalIan HarveyBrian Baker
    • G01N27/00
    • C12N5/0068C12M25/02C12M41/46C12N2535/00C12N2537/00G01N27/00
    • Electrophysiological recording systems for analysis of cultured cells include an recording device and a housing for supporting the electrophysiological recording device. The device has a porous membrane with top and bottom surfaces and a plurality of pores extending between the top and bottom surfaces. The porous membrane defines a first cell culture region disposed on the top surface and an opposed second cell culture region disposed on the bottom surface. The electrophysiological recording device has a plurality of electrodes positioned on the porous membrane in between a first insulation layer and a second insulation layer. The plurality of electrodes extend to the first cell culture region of the porous membrane. Recording ends of the electrodes measure electrical properties of cells cultured within the first and second cell culture regions, while the contact ends of the electrodes are positioned in electrical communication with data acquisition equipment.
    • 用于分析培养细胞的电生理记录系统包括记录装置和用于支持电生理记录装置的壳体。 该装置具有多孔膜,其具有顶表面和底表面以及在顶表面和底表面之间延伸的多个孔。 多孔膜限定设置在顶表面上的第一细胞培养区和设置在底表面上的相对的第二细胞培养区。 电生理记录装置具有位于第一绝缘层和第二绝缘层之间的多孔膜上的多个电极。 多个电极延伸到多孔膜的第一细胞培养区。 记录电极的末端测量在第一和第二细胞培养区内培养的细胞的电学性质,而电极的接触末端位置与数据采集设备电连通。
    • 7. 发明授权
    • Integrated circuit device interconnection techniques
    • 集成电路器件互连技术
    • US06174803B1
    • 2001-01-16
    • US09154050
    • 1998-09-16
    • Ian Harvey
    • Ian Harvey
    • H01L214763
    • H01L23/5283H01L21/76838H01L21/76895H01L23/528H01L2924/0002H01L2924/00
    • The present invention relates to multilevel integrated circuit interconnection techniques. An integrated circuit having a number of electronic components along a semiconductor substrate and a first connection layer having a first number of conductors in selective electrical contact with the components is provided. A first insulative layer is formed on the first connection layer with a first pattern of openings therethrough. A second connection layer is established that has a second number of conductors selectively interconnected to the first conductors through the first pattern of openings. A second insulative layer is formed on the first connection layer with a second pattern of openings therethrough. A third connection layer is formed on the second insulative layer having a third dielectric and a third number of conductors selectively interconnecting the second conductors. The first and second insulative layers are preferably etch selective to a dielectric included in the first, second, and third connection layers; and crossover, crossunder, or local interconnects are formed in a different connection layer than routing interconnects to facilitate higher interconnection density.
    • 本发明涉及多电平集成电路互连技术。 提供了具有沿着半导体衬底的许多电子部件的集成电路和具有与部件选择性电接触的第一数量的导体的第一连接层。 第一绝缘层在第一连接层上形成有第一图案的开口。 建立了第二连接层,其具有通过第一开口图案选择性地互连到第一导体的第二数量的导体。 第二绝缘层在第一连接层上形成有第二图案的开口。 在具有选择性地互连第二导体的第三电介质和第三数量的导体的第二绝缘层上形成第三连接层。 第一和第二绝缘层优选对包括在第一,第二和第三连接层中的电介质的蚀刻选择性; 并且交叉,交叉或局部互连形成在与路由互连不同的连接层中,以促进更高的互连密度。
    • 8. 发明授权
    • Polymer adhesive plasma confinement ring
    • 聚合物粘合剂等离子体约束环
    • US6008130A
    • 1999-12-28
    • US911470
    • 1997-08-14
    • David E. HendersonIan Harvey
    • David E. HendersonIan Harvey
    • H01J37/32H01L21/00H05H1/00
    • H01L21/67069H01J37/32623H01J37/32834H01J37/32935Y10S156/915
    • A plasma confinement ring comprising a first generally planar surface; a second generally planar surface; an aperture extending between the first and second surfaces, the aperture including an annular surface, and a curved surface extending between the annular surface and the first planar surface. A method of manufacturing a plasma reactor for processing a semiconductor wafer, the method comprising providing a reactor chamber and an electrostatic chuck in the reactor chamber for supporting a semiconductor wafer; providing a plasma confinement ring having first and second opposite surfaces, an aperture extending between the first and second opposite surfaces, the aperture being defined by an annular surface, an annular corner being defined at the intersection of the annular surface and the first surface; enhancing adhesion of condensed polymer byproducts by rounding the annular corner to provide a gradual transition from the annular surface to the first surface and roughening the rounded corner to increase surface area; and supporting the ring in the chamber.
    • 一种等离子体限制环,包括第一大体上平坦的表面; 第二大体平面; 在第一和第二表面之间延伸的孔,孔包括环形表面,以及在环形表面和第一平面之间延伸的弯曲表面。 一种制造用于处理半导体晶片的等离子体反应器的方法,所述方法包括在所述反应器室中提供用于支撑半导体晶片的反应室和静电卡盘; 提供具有第一和第二相对表面的等离子体约束环,在所述第一和第二相对表面之间延伸的孔,所述孔由环形表面限定,环形角限定在所述环形表面和所述第一表面的交叉处; 通过对环形角进行四舍五入以提高冷凝的聚合物副产物的附着力,以提供从环形表面到第一表面的逐渐过渡,并使圆角变粗糙以增加表面积; 并支撑在腔室中的环。
    • 10. 发明授权
    • Encoder-type register for an automatic water meter reader
    • 自动水表读取器的编码器类型寄存器
    • US08051723B2
    • 2011-11-08
    • US12384158
    • 2009-04-02
    • Arthur Hendey, Sr.Ronnel GallonIan Harvey
    • Arthur Hendey, Sr.Ronnel GallonIan Harvey
    • G01F15/00
    • G01F15/063G01F15/066
    • An encoder-type register for an automatic meter reader to be interfaced with a visual read-only register of the kind found in a water meter that measures water consumption. The water meter register has a rotatable sweep hand that carries a magnet and rotates around a register plate in relation to the speed and volume of water moving through the water meter. A plurality of (e.g., three) magnetic (e.g., Hall effect) sensors are fixedly positioned one-after-another in the path of the magnet carried by the rotating sweep hand. The magnetic sensors measure the magnetic field produced by the rotating magnet and generate corresponding output signals. A microprocessor receives the output signals generated by the magnetic sensors whenever the magnet rotates therepast. The microprocessor stores information concerning the number of rotations of the magnet carried by the sweep hand depending upon the direction in which the magnet is being rotated as an indication of water consumption. The microprocessor provides the stored information to a meter interface unit connected to a set of output terminals of the encoder register so that such information can be transmitted from the meter interface unit to a remote data collector over a wireless communication path.
    • 用于自动仪表读取器的编码器型寄存器,与用于测量耗水量的水表中发现的类似的可视化只读寄存器连接。 水表寄存器具有可旋转的扫掠手,其携带磁体并相对于移动通过水表的水的速度和体积围绕登记板旋转。 多个(例如三个)磁(例如,霍尔效应)传感器在由旋转扫掠手携带的磁体的路径中固定地定位。 磁传感器测量由旋转磁铁产生的磁场并产生相应的输出信号。 只要磁铁一直旋转,微处理器就会接收磁传感器产生的输出信号。 微处理器存储关于由扫掠手携带的磁体的旋转次数的信息,这取决于磁体旋转的方向作为耗水量的指示。 微处理器将存储的信息提供给连接到编码器寄存器的一组输出端的仪表接口单元,使得这些信息可以通过无线通信路径从仪表接口单元发送到远程数据采集器。