Filter and Method For Filtering
    191.
    发明申请
    Filter and Method For Filtering 失效
    过滤器和过滤方法

    公开(公告)号:US20080244220A1

    公开(公告)日:2008-10-02

    申请号:US11870488

    申请日:2007-10-11

    Abstract: A filter and method of filtering modifies the computation order to accommodate horizontal symmetric filtering, and modifies the source operands while modifying the SIMD computation, so as to eliminate such heavy overhead of transposing a pixel matrix. The filter and method of filtering reformats the equations involved in the prior art to the following equations, thereby acquiring the interpolation results by reducing the required clock cycles to three cycles: acc=a0*(|p0+p5|p1+p6|p2+p7|p3+p8|) acc=a1*(|p1+p4|p2+p5|p3+p6|p4+p7|)+acc acc=a2*(|P2+P3|P3+P4|P4+P5|P5+P6|)+acc

    Abstract translation: 滤波器和滤波方法修改计算顺序以适应水平对称滤波,并且在修改SIMD计算的同时修改源操作数,以消除转置像素矩阵的这种沉重的开销。 过滤器和过滤方法将现有技术中涉及的方程重新格式化为以下等式,从而通过将所需的时钟周期减少到三个周期来获得内插结果:<?in-line-formula description =“In-line Formulas”end =“lead”?> acc = a 0 *(| p 0 + p 5 | p 1 + p 6 | p 2 + p 7 | p 3 + p 8 |)<?in-line-formula description = 行公式“end =”tail“?> <?in-line-formula description =”In-line Formulas“end =”lead“?> acc = a 1 *(| p 1 + p 4 | p 2 + p 5 | p 3 + p 6 | p 4 + p 7 |)+ acc <?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description = 直线公式“end =”lead“?> acc = a 2 *(| P 2 + P 3 | P 3 + P 4 | P 4 + P 5 | P 5 + P 6 |)+ 公式描述=“内联公式”end =“tail”?>

    Two-terminal solid-state memory device and two-terminal flexible memory device based on nanocrystals or nanoparticles
    192.
    发明申请
    Two-terminal solid-state memory device and two-terminal flexible memory device based on nanocrystals or nanoparticles 审中-公开
    基于纳米晶体或纳米颗粒的双端固态存储器件和双端灵活存储器件

    公开(公告)号:US20060231889A1

    公开(公告)日:2006-10-19

    申请号:US11106195

    申请日:2005-04-13

    Abstract: A two-terminal memory device based on semiconductor (such as Si or Ge) or metal (such as Al or Au) nanocrystals and/or nanoparticles is described wherein each device has a substrate, a dielectric layer (such as SiO2 or organic dielectric materials) nanocrystals and/or nanoparticles distributed throughout the dielectric layer, and a metal (or poly-crystalline Si, or conductive organic materials) gate electrode. The memory states of the device are distinguished by charging and discharging the nanocrystals and/or nanoparticles. This two-terminal memory device is much simpler than the conventional four-terminal MOSFET-based memory device in terms of device structure and fabrication process. In addition, it is flexible if the memory devices are fabricated on flexible substrate with organic materials.

    Abstract translation: 描述了基于半导体(例如Si或Ge)或金属(例如Al或Au)纳米晶体和/或纳米颗粒的两端存储器件,其中每个器件具有衬底,介电层(例如SiO 2 或有机电介质材料)分布在整个电介质层中的纳米晶体和/或纳米颗粒以及金属(或多晶Si或导电有机材料)栅电极。 通过对纳米晶体和/或纳米颗粒进行充电和放电来区分器件的存储状态。 在器件结构和制造过程方面,这种两端存储器件比传统的基于四端子的MOSFET的存储器件简单得多。 此外,如果存储器件在具有有机材料的柔性衬底上制造,则它是灵活的。

    Multi-dimensional elastic light scattering
    193.
    发明申请
    Multi-dimensional elastic light scattering 审中-公开
    多维弹性光散射

    公开(公告)号:US20060155178A1

    公开(公告)日:2006-07-13

    申请号:US11261452

    申请日:2005-10-27

    CPC classification number: G01N33/48

    Abstract: A method of examining a sample includes measuring, as function of wavelength of light elastically scattered from the sample, at least 2 properties, selected from the group consisting of scattering angle theta of the light, scattering angle phi of the light, and polarization of the light. The scattering angle theta is an angle between backward direction and direction of propagation of the light, and scattering angle phi is an angle between incident light polarization and projection of direction of the light propagation onto a plane in which incident electric field oscillates.

    Abstract translation: 检查样品的方法包括测量作为从样品弹性散射的光的波长的函数,至少选自由光的散射角度θ,光的散射角度phi和光的偏振度 光。 散射角θ是光的向后方向和传播方向之间的角度,散射角φi是入射光偏振与入射电场振荡的平面上的光传播方向的投影之间的角度。

    Inter-procedural allocation of stacked registers for a processor
    196.
    发明申请
    Inter-procedural allocation of stacked registers for a processor 有权
    用于处理器的堆叠寄存器的程序间分配

    公开(公告)号:US20050149918A1

    公开(公告)日:2005-07-07

    申请号:US10747426

    申请日:2003-12-29

    CPC classification number: G06F8/441

    Abstract: A method for an allocation of stacked registers for Intel's Itanium® processor includes a three step process. Step I determines an intra-procedural stacked register usage by a program having a plurality of procedures. In step II, the disclosed method performs an inter-procedural analysis to assign quota of stacked register usage to every procedure. In step III, each procedure is allocated stacked register usage based on the quota assignments of step II.

    Abstract translation: 英特尔安腾(R)处理器分配堆叠寄存器的方法包括三步骤过程。 步骤I通过具有多个过程的程序来确定程序内堆叠的寄存器使用。 在步骤II中,所公开的方法执行程序间分析以将堆叠的寄存器使用的配额分配给每个过程。 在步骤III中,基于步骤II的配额分配,分配每个过程的堆叠寄存器使用。

    Tweezer
    198.
    外观设计
    Tweezer 有权

    公开(公告)号:USD1066807S1

    公开(公告)日:2025-03-11

    申请号:US29877490

    申请日:2023-06-07

    Applicant: Yang Liu

    Designer: Yang Liu

    MULTIPURPOSE IMAGING AND DISPLAY SYSTEM
    199.
    发明公开

    公开(公告)号:US20230319377A1

    公开(公告)日:2023-10-05

    申请号:US18206379

    申请日:2023-06-06

    Applicant: Yang Liu

    Inventor: Yang Liu

    Abstract: A multi-purpose imaging and display system includes a display; a detector coupled to the display and having a field of view; and a filter communicating with the detector. The field of view is imaged by the detector through the filter, the filter configured to be sensitive to a first frequency spectrum, so the detector displays only objects within the field of view on the detector that emit one or more frequencies within the first frequency spectrum. The detector and filter can work together in different operational states or modes for acquiring image data of a target object under investigation. A computing device can be included to process acquired image data, and communication interfaces can be employed to achieve networking of multiple systems. A peripheral interface allows a plurality of peripheral devices to be selectively added to tailor the data acquisition and display capabilities of the imaging and display system.

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