PLASMA DISPLAY PANEL
    21.
    发明申请
    PLASMA DISPLAY PANEL 审中-公开
    等离子显示面板

    公开(公告)号:US20120049730A1

    公开(公告)日:2012-03-01

    申请号:US13319607

    申请日:2011-03-07

    CPC classification number: H01J11/12 H01J11/36 H01J11/40 H01J11/48 H01J2211/38

    Abstract: A plasma display panel includes a front plate, a rear plate, and a bonding layer to bond the front plate to the rear plate. The front plate has a protective layer. The rear plate has a barrier rib. The protective layer includes a base layer. Aggregated particles are dispersed all over the base layer. The base layer contains a first metal oxide and a second metal oxide. Through an X-ray diffraction analysis, a peak of the base layer exists between a first peak of the first metal oxide, and a second peak of the second metal oxide. The first metal oxide and the second metal oxide are two kinds of oxides selected from a group consisting of MgO, CaO, SrO, and BaO. The rear plate has a barrier rib. The bonding layer bonds at least one part of the barrier rib to the protective layer.

    Abstract translation: 等离子体显示面板包括前板,后板和将前板结合到后板的接合层。 前板具有保护层。 后板具有障壁。 保护层包括基层。 聚集的颗粒遍布基层。 基层包含第一金属氧化物和第二金属氧化物。 通过X射线衍射分析,在第一金属氧化物的第一峰和第二金属氧化物的第二峰之间存在基层的峰。 第一金属氧化物和第二金属氧化物是选自MgO,CaO,SrO和BaO的两种氧化物。 后板具有障壁。 粘合层将阻挡肋的至少一部分结合到保护层。

    Plasma display panel
    22.
    发明授权
    Plasma display panel 失效
    等离子显示面板

    公开(公告)号:US07990067B2

    公开(公告)日:2011-08-02

    申请号:US11907671

    申请日:2007-10-16

    Applicant: Taro Naoi Hai Lin

    Inventor: Taro Naoi Hai Lin

    CPC classification number: H01J11/12 H01J11/40

    Abstract: Row electrode pairs and column electrodes are provided between the front glass substrate and the back glass substrate. Magnesium oxide single-crystal particles, which are doped with aluminum and have characteristics of causing cathode luminescence having a peak within a wavelength range of 200 nm to 300 nm upon excitation by application of electron beams, are disposed in a position facing the discharge cells, and form part of a protective layer for a dielectric layer overlying the row electrodes and/or phosphor layers.

    Abstract translation: 行电极对和列电极设置在前玻璃基板和后玻璃基板之间。 掺杂有铝并具有通过施加电子束激发而在200nm至300nm的波长范围内具有峰值的阴极发光的特性的氧化镁单晶颗粒被设置在面对放电单元的位置, 并形成覆盖行电极和/或荧光体层的电介质层的保护层的一部分。

    System and Methods to Improve Efficiency of VLIW Processors
    23.
    发明申请
    System and Methods to Improve Efficiency of VLIW Processors 审中-公开
    提高VLIW处理器效率的系统和方法

    公开(公告)号:US20110022821A1

    公开(公告)日:2011-01-27

    申请号:US12719823

    申请日:2010-03-08

    Applicant: Yunsi Fei Hai Lin

    Inventor: Yunsi Fei Hai Lin

    CPC classification number: G06F9/3822 G06F9/3017 G06F9/3802 G06F9/3853

    Abstract: Exemplary embodiments provide microprocessors and methods to implement instruction packing techniques in a multiple-issue microprocessor. Exemplary instruction packing techniques implement instruction grouping vertically along packed groups of consecutive instructions, and horizontally along instruction slots of a multiple-issue microprocessor. In an exemplary embodiment, an instruction packing technique is implemented in a very long instruction word (VLIW) architecture designed to take advantage of instruction level parallelism (ILP).

    Abstract translation: 示例性实施例提供微处理器和方法来实现多发微处理器中的指令打包技术。 示例性指令打包技术沿着连续指令的打包组垂直地执行指令分组,并且沿着多发微处理器的指令槽水平地执行指令分组。 在示例性实施例中,指令打包技术在被设计为利用指令级并行性(ILP)的非常长的指令字(VLIW)架构中实现。

    Plasma display panel and method of manufacturing same
    24.
    发明申请
    Plasma display panel and method of manufacturing same 有权
    等离子显示面板及其制造方法

    公开(公告)号:US20100213818A1

    公开(公告)日:2010-08-26

    申请号:US12662768

    申请日:2010-05-03

    CPC classification number: H01J9/02 H01J11/12 H01J11/40 Y10T428/24372

    Abstract: A plasma display panel including a front substrate and a back substrate facing each other across a discharge space, and a plurality of row electrode pairs and a plurality of column electrodes extending in a direction orthogonal to the row electrodes. The row electrodes and said column electrodes being provided between the front substrate and the back substrate and forming unit light emission areas at intersections with each other within the discharge space. A crystal having a volumetric particle-size distribution in which a ratio of a crystal having a particle size of 0.7 μm or less is 25% or less, is provided in an area facing the discharge space between the front substrate and the back substrate.

    Abstract translation: 一种等离子体显示面板,包括:前面基板和背面基板,横跨放电空间;以及多个行电极对和多个沿与行电极正交的方向延伸的列电极。 行电极和列电极设置在前基板和后基板之间,并且在放电空间内彼此相交处形成单元发光区域。 在面向前基板和后基板之间的放电空间的区域中设置有具有粒径为0.7μm以下的晶体的比例为25%以下的体积粒径分布的晶体。

    COMPENSATION METHOD, PROGRAM, RECORDING MEDIUM, AND RECEIVER FOR OFDM SIGNAL HAVING CFO AND DCO
    25.
    发明申请
    COMPENSATION METHOD, PROGRAM, RECORDING MEDIUM, AND RECEIVER FOR OFDM SIGNAL HAVING CFO AND DCO 审中-公开
    具有CFO和DCO的OFDM信号的补偿方法,程序,记录介质和接收器

    公开(公告)号:US20100177851A1

    公开(公告)日:2010-07-15

    申请号:US12665455

    申请日:2008-06-19

    CPC classification number: H04L25/03343 H04L25/06 H04L27/2657 H04L27/2676

    Abstract: A frequency offset (CFO) and a direct current component offset (DCO) occur in an OFDM scheme signal. To address this, such a method has been suggested which allows a pilot signal to be mixed with a communicated signal for compensation. However, if the pilot signal has a long duration, then a compensation method without the pilot signal is required to compensate signals during that period. However, no such a method is conventionally available which compensates for both the CFO and DCO without the pilot signal. Using the orthogonality of the OFDM signal, the matrix of a system in which CDO and DCO have occurred is subjected to the singular value decomposition, thereby predetermining the CFO candidate value which allows for demodulating zero from the received signal and an array of numerical values of CFO check data. Then, in a compensation section (17), the received signal is successively multiplied by the numerical values. The typical CFO value provided when the minimum value has been demodulated is outputted as an estimate value for compensation.

    Abstract translation: 在OFDM方案信号中出现频率偏移(CFO)和直流分量偏移(DCO)。 为了解决这个问题,已经提出了这样的方法,其允许将导频信号与通信信号混合以进行补偿。 然而,如果导频信号具有较长的持续时间,则需要不具有导频信号的补偿方法来补偿该期间的信号。 然而,没有这种传统上可用的方法来补偿没有导频信号的CFO和DCO。 使用OFDM信号的正交性,其中发生CDO和DCO的系统的矩阵经受奇异值分解,从而预先确定允许从接收信号中解调零的CFO候选值和数字值 CFO检查数据。 然后,在补偿部(17)中,将接收信号依次乘以数值。 当解调最小值时提供的典型CFO值作为补偿的估计值被输出。

    Plasma display device and method of driving plasma display panel
    26.
    发明授权
    Plasma display device and method of driving plasma display panel 失效
    等离子体显示装置及驱动等离子体显示面板的方法

    公开(公告)号:US07463220B2

    公开(公告)日:2008-12-09

    申请号:US11110941

    申请日:2005-04-21

    Abstract: A plasma display device and a method of driving a plasma display panel are provided for improving the contrast without degrading the image quality. Each of display cells formed on the plasma display panel has a magnesium oxide layer containing magnesium oxide crystals. The magnesium oxide crystals are excited by an electron beam irradiated thereto and emit cathode luminescence light having a peak in a wavelength range of 200 to 300 nm. In order to trigger a rest discharge in all the display cells, each row electrode pair of the plasma display panel is applied with a reset pulse which has a particular pulse waveform. The voltage value of this reset pulse slowly changes over time to reach a peak voltage value.

    Abstract translation: 提供等离子体显示装置和驱动等离子体显示面板的方法,用于在不降低图像质量的情况下改善对比度。 形成在等离子体显示面板上的每个显示单元具有含有氧化镁晶体的氧化镁层。 氧化镁晶体被照射到其上的电子束激发,并发射具有200-300nm波长范围内的峰的阴极发光。 为了在所有显示单元中触发休止放电,等离子体显示面板的每个行电极对被施加具有特定脉冲波形的复位脉冲。 该复位脉冲的电压值随时间缓慢变化,达到峰值电压值。

    Method and system for particle characterization and identification

    公开(公告)号:US11237089B2

    公开(公告)日:2022-02-01

    申请号:US16271755

    申请日:2019-02-08

    Abstract: Disclosed herein is a novel, compact, real time optical particle identification and characterization system and method of use within both gaseous and liquid media. The system can implement elastic and/or inelastic light scattering techniques simultaneously and complimentarily under the same sensor platform. By separating the sensing components from the electro-optical unit and using optical fibers for interconnection, only the sensing components need to be exposed to the environmental conditions. This reduces the design constraints on the electro-optical unit and permits the incorporation of optical components into the sensor probe that can withstand high-temperature, high-pressure, and corrosive environments. Thus, the system can be used in benign, moderate, and harsh environments.

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