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    • 6. 发明申请
    • Antisymmetric nanowire crossbars
    • 反对称纳米线交叉杆
    • US20060202358A1
    • 2006-09-14
    • US11079763
    • 2005-03-08
    • Gregory Snider
    • Gregory Snider
    • H01L23/48
    • G11C13/0002B82Y10/00G11C2213/77G11C2213/81H04Q3/0004Y10S977/762
    • Various embodiments of the present invention are directed to antisymmetric nanowire-crossbar-circuit designs. Antisymmetric nanowire crossbars are composed, in certain embodiments of the present invention, of two or more microregions that receive input signals and two or more microregions that send output signals. Antisymmetric nanowire crossbars may include a nanowire-crossbar network having signal paths that carry signals between one or more of the microregions. The nanowire-crossbar network may also carry signals between external electronic devices and one or more of the microregions. Antisymmetric nanowire crossbars may additionally include two or more structures that supply voltage and ground.
    • 本发明的各种实施例涉及反对称纳米线 - 横向电路设计。 在本发明的某些实施例中,反对称纳米线交叉杆由接收输入信号的两个或多个微区域和发送输出信号的两个或更多微区域组成。 反对称纳米线交叉杆可以包括具有在一个或多个微区域之间携带信号的信号路径的纳米线交叉网络。 纳米线交叉网络还可以在外部电子设备与一个或多个微区域之间携带信号。 反对称纳米线交叉杆可以另外包括两个或更多个提供电压和接地的结构。
    • 7. 发明申请
    • FPGA architecture at conventional and submicron scales
    • 常规和亚微米尺度的FPGA架构
    • US20070176630A1
    • 2007-08-02
    • US11343304
    • 2006-01-31
    • Gregory SniderPhilip Kuekes
    • Gregory SniderPhilip Kuekes
    • H03K19/173
    • H03K19/17748B82Y10/00B82Y30/00G11C8/10G11C13/0007G11C13/0014G11C2213/15G11C2213/34G11C2213/51G11C2213/77G11C2213/81H03K19/17728H03K19/1778
    • Reconfigurable logic devices and methods of programming the devices are disclosed. The logic device includes a look-up table (LUT) and at least one storage element configured for sampling LUT output signals. The LUT comprises a plurality of input signals, an array of programmable impedance devices operably coupled to the input signals, and the LUT output signals. Each programmable impedance device in the array includes a first electrode operably coupled to one of the input signal, a second electrode disposed to form a junction wherein the second electrode at least partially overlaps the first electrode, and a programmable material disposed between the first electrode and the second electrode. The programmable material operably couples the first electrode and the second electrode such that each programmable impedance device exhibits a non-volatile programmable impedance. The array may be configured as a one-dimensional or two-dimensional array.
    • 公开了可重构逻辑器件和编程器件的方法。 逻辑器件包括查找表(LUT)和配置用于对LUT输出信号进行采样的至少一个存储元件。 LUT包括多个输入信号,可操作地耦合到输入信号的可编程阻抗装置的阵列和LUT输出信号。 阵列中的每个可编程阻抗器件包括可操作地耦合到输入信号中的一个的第一电极,设置成形成其中第二电极至少部分地与第一电极重叠的结的第二电极和设置在第一电极和 第二电极。 可编程材料可操作地耦合第一电极和第二电极,使得每个可编程阻抗装置呈现非易失性可编程阻抗。 该阵列可以被配置为一维或二维阵列。
    • 8. 发明申请
    • Tool support device
    • 刀具支撑装置
    • US20070131306A1
    • 2007-06-14
    • US11298272
    • 2005-12-09
    • Gregory Snider
    • Gregory Snider
    • B25H1/00
    • B25H1/06
    • A support stand for a tool such as a miter saw is disclosed. The stand includes legs, a beam supported by the legs, and a pair of tool support platforms that may be connected to the tool. The tool support platforms are configured to slide along the beam; moreover, they can be removed from the beam and placed on a supporting surface. Each platform may include a receptacle that engages a clip fastened to the beam. The clip engages the platform to prevent its movement along the beam. Each platform also includes a series of slots through which fasteners are inserted. The slots allow the fasteners to be repositioned so they can be aligned with the specific connection points on a variety of different tools (including tools of different manufacturers).
    • 公开了一种诸如斜切锯的工具的支撑架。 支架包括腿,由腿支撑的梁以及可连接到工具的一对工具支撑平台。 工具支撑平台配置为沿着梁滑动; 此外,它们可以从梁上移除并放置在支撑表面上。 每个平台可以包括接合固定到梁的夹子的插座。 夹子接合平台以防止其沿着梁移动。 每个平台还包括一系列插槽,紧固件通过该插槽插入。 插槽允许紧固件重新定位,以便它们可以与各种不同工具(包括不同制造商的工具)上的特定连接点对齐。