BLUE-LIGHT-EMITTING PHOSPHOR AND LIGHT-EMITTING DEVICE EQUIPPED WITH THE BLUE-LIGHT-EMITTING PHOSPHOR
    2.
    发明申请
    BLUE-LIGHT-EMITTING PHOSPHOR AND LIGHT-EMITTING DEVICE EQUIPPED WITH THE BLUE-LIGHT-EMITTING PHOSPHOR 有权
    蓝光发光磷光体和发光蓝光发光装置

    公开(公告)号:US20130200777A1

    公开(公告)日:2013-08-08

    申请号:US13821349

    申请日:2011-09-07

    IPC分类号: C09K11/77 H05B33/14

    摘要: A blue light-emitting phosphor having an elemental formula of Sr3-xMgSi2O8:Eux (wherein x represents a value in the range of 0.008 to 0.110), a merwinite crystal structure and a crystal lattice strain of 0.080% or less as determined from an X-ray diffraction pattern at diffraction angle 2θ of 20-130° by the Le Bail method, wherein the X-ray diffraction pattern is determined using a CuKα ray having an incident angle of θ, is used advantageously as a blue light-emitting material for a light-emitting device which comprises a semiconductor light-emitting element capable of emitting a light having a wavelength of 350-430 nm upon application of an electrical current, such as a white light-emitting LED lamp, and a blue light-emitting material capable of emitting a blue light upon excitation with a light emitted by the semiconductor light-emitting element.

    摘要翻译: 具有Sr3-xMgSi2O8:Eux的元素式的蓝色发光荧光体(其中x表示0.008〜0.110的范围),由X值测定的merwinite晶体结构和晶格应变为0.080%以下 通过Le Bail方法的衍射角2θ为20-130°的射线衍射图,其中使用具有入射角θ的CuKα射线确定X射线衍射图案,有利地用作蓝色发光材料 一种发光装置,其包括能够在施加电流时发射波长350-430nm的光的半导体发光元件,例如白色发光LED灯和蓝色发光材料 能够在用半导体发光元件发出的光激发时发出蓝色光。

    Negative active material for lithium ion battery and lithium ion battery including the same
    3.
    发明授权
    Negative active material for lithium ion battery and lithium ion battery including the same 有权
    锂离子电池和锂离子电池的负极活性物质包括它们

    公开(公告)号:US08227100B2

    公开(公告)日:2012-07-24

    申请号:US12314438

    申请日:2008-12-10

    IPC分类号: H01M4/131 H01M4/485 C01G31/02

    摘要: The present invention relates to a negative active material for a lithium ion battery and a lithium ion battery including the negative active material. The negative active material for a lithium ion battery includes a hexagonal lithium vanadium composite oxide including lithium, vanadium, and magnesium. The lithium and the vanadium are included in a mole ratio within a range of 1.15≦Li/V≦1.35, and the magnesium and the vanadium are included in a mole ratio within a range of 0.01≦Mg/V≦0.06. The present invention provides a negative active material for a lithium ion battery having a stable crystal structure, excellent high rate of charge and discharge, and good charge and discharge cycle characteristics.

    摘要翻译: 本发明涉及锂离子电池用负极活性物质和负极活性物质的锂离子电池。 用于锂离子电池的负极活性材料包括包含锂,钒和镁的六方晶系锂钒复合氧化物。 锂和钒的摩尔比包括在1.15≤n1E; Li / V和nlE; 1.35的范围内,镁和钒的摩尔比包括在0.01< NlE; Mg / V& NlE; 0.06的范围内。 本发明提供一种锂离子电池用负极活性物质,其具有稳定的晶体结构,优异的高充放电率,良好的充放电循环特性。

    Film forming apparatus
    4.
    发明授权
    Film forming apparatus 有权
    成膜装置

    公开(公告)号:US07691203B2

    公开(公告)日:2010-04-06

    申请号:US11341093

    申请日:2006-01-27

    IPC分类号: C23C16/22 H01L21/36 C23C16/00

    摘要: A film forming apparatus is provided that can prevent source gases from reacting together before reaching the substrate being processed in the apparatus, minimize the influence of the radiation heat from the substrate, and make the gas behavior in the reaction chamber better for crystal film formation. The apparatus forms a film on a surface of a heated substrate 5 by causing a first source gas and a second source gas to react together. The apparatus has a processing chamber 1, in which the substrate 5 is placed. The processing chamber 1 is divided into a heating chamber 1a and a reaction chamber 1b by at least the substrate 5 so that the substrate surface can be exposed to the source gases in the reaction chamber 1b. The apparatus further has an exhaust duct 7, through which the exhaust gas can be discharged. The exhaust duct 7 faces the exposed substrate surface and connects with the reaction chamber 1b. The apparatus further has first supply ports 11 and second supply ports 12, through which the first and second source gases respectively can be supplied independently onto the substrate surface. The supply ports 11 and 12 are positioned outside the exhaust duct 7. This enables the source gases to react immediately near the substrate 5 so that high-quality crystal film formation can be performed on the substrate.

    摘要翻译: 提供了一种成膜装置,其可以在到达装置内被处理的基板之前防止源气体一起反应,从而最小化来自基板的辐射热的影响,并使反应室中的气体行为更好地用于晶体膜形成。 该装置通过使第一源气体和第二源气体一起反应而在加热的基板5的表面上形成膜。 该装置具有处理室1,其中放置有基板5。 处理室1至少由基板5分成加热室1a和反应室1b,使得基板表面能够暴露于反应室1b中的源气体。 该装置还具有排气管7,排气可以排出。 排气管7面对暴露的基板表面并与反应室1b连接。 该装置还具有第一供应端口11和第二供应端口12,第一和第二源气体可以分别通过第一供应端口11和第二供应端口12独立地供应到基板表面上。 供给口11和12位于排气管7的外部。这使得源气体能够在基板5附近立即反应,从而可以在基板上进行高质量的晶体成膜。

    Negative active material for non-aqueous rechargeable battery, and non-aqueous rechargeable battery including same
    5.
    发明申请
    Negative active material for non-aqueous rechargeable battery, and non-aqueous rechargeable battery including same 有权
    用于非水可再充电电池的负极活性材料和包括其的非水可再充电电池

    公开(公告)号:US20080070118A1

    公开(公告)日:2008-03-20

    申请号:US11902206

    申请日:2007-09-19

    IPC分类号: H01M6/14

    摘要: The negative active material for a non-aqueous rechargeable battery includes a main component of lithium vanadium oxide, and at least one selected from the group consisting of Li3VO4, vanadium carbide, and mixtures thereof. The Li3VO4 is included in an amount of 0.5 to 3.0 wt % based on the total weight of the negative active material, and the vanadium carbide is included in amount of 0.5 wt % or less based on the total weight of the negative active material. The negative active material can improve discharge capacity of the non-aqueous rechargeable battery.

    摘要翻译: 用于非水可再充电电池的负极活性材料包括锂钒氧化物的主要成分,以及选自Li 3 VO 4的至少一种,钒 碳化物及其混合物。 相对于负极活性物质的总重量,Li 3 VO 4含量为0.5〜3.0重量%,碳化钒的含量为 基于负极活性物质的总重量为0.5重量%以下。 负极活性物质可以提高非水可再充电电池的放电容量。

    Sequence control circuit
    6.
    发明授权
    Sequence control circuit 失效
    顺序控制电路

    公开(公告)号:US06421773B1

    公开(公告)日:2002-07-16

    申请号:US08976148

    申请日:1997-11-21

    申请人: Toru Inagaki

    发明人: Toru Inagaki

    IPC分类号: G06F738

    摘要: A sequence control circuit provided in such as a test pattern generator of a memory test apparatus, and made capable of designating a plurality of branches according to a plurality of branch conditions in describing a test pattern program. This sequence control circuit comprises a plurality of branch address registers for storing different branch addresses, respectively, and a logic operation circuit receiving a plurality of flags for detecting combinations of flag values. A program counter controller selects a certain branch address according to a combination of flag values detected in the logic operation circuit and arranges to load the branch address stored in the selected branch address register to a program counter.

    摘要翻译: 一种序列控制电路,其设置在存储器测试装置的测试图形发生器中,并且能够在描述测试图案程序时根据多个分支条件指定多个分支。 该序列控制电路分别包括用于存储不同分支地址的多个分支地址寄存器,以及接收用于检测标志值的组合的多个标志的逻辑运算电路。 程序计数器控制器根据在逻辑运算电路中检测到的标志值的组合来选择某个分支地址,并且将存储在所选择的分支地址寄存器中的分支地址加载到程序计数器。

    Address pattern generator for burst address access of an SDRAM
    7.
    发明授权
    Address pattern generator for burst address access of an SDRAM 失效
    用于SDRAM的突发地址访问的地址模式生成器

    公开(公告)号:US5940875A

    公开(公告)日:1999-08-17

    申请号:US016710

    申请日:1998-01-30

    摘要: An address pattern generator for testing a semiconductor device, particularly, a synchronous DRAM (SDRAM) is disclosed. The address pattern generator can switch an interleave mode and a sequential mode of address generation for a SDRAM during a test process in real time and generates column addresses for the SDRAM by a Y address generation section alone. The address generator includes an address selector that selects and outputs from a lower Y address signal, a Z address signal, and an operation mode control signal, a conversion memory that outputs data based on a conversion table, a multiplexer that selects and outputs an output from the conversion memory and the lower Y address signal in accordance with a burst length control signal. In another aspect, the address pattern generator includes a counter that loads the lower address signal from the Y address generator section for the sequential mode while a fixed value for the interleave mode, an exclusive OR gate that receives an output signal of the counter to an input terminal and the lower address signal from the Y address generation section to the other input terminal, and a multiplexer that selects the output signal of the counter for the sequential mode and the output signal of the exclusive OR gate for the interleave mode.

    摘要翻译: 公开了一种用于测试半导体器件,特别是同步DRAM(SDRAM)的地址模式发生器。 地址模式发生器可以在测试过程中实时地切换SDRAM的交错模式和顺序地址生成模式,并且由Y地址生成部分单独生成用于SDRAM的列地址。 地址生成器包括:地址选择器,其从较低的Y地址信号,Z地址信号和操作模式控制信号中选择和输出,转换存储器,其基于转换表输出数据;多路复用器,其选择和输出输出 根据突发长度控制信号从转换存储器和较低的Y地址信号。 在另一方面,地址模式发生器包括一个计数器,用于为顺序模式加载来自Y地址生成器部分的较低地址信号,而交织模式的固定值,接收该计数器的输出信号的异或门 输入端子和从Y地址产生部分到另一个输入端子的较低地址信号,以及多路复用器,用于选择用于顺序模式的计数器的输出信号和用于交错模式的异或门的输出信号。

    Brazing system
    8.
    发明授权
    Brazing system 有权
    钎焊系统

    公开(公告)号:US08418743B2

    公开(公告)日:2013-04-16

    申请号:US13356023

    申请日:2012-01-23

    IPC分类号: B23K1/00 B23K20/14

    摘要: A brazing system for brazing component members of a workpiece has a brazing chamber an inside of which is made a heating space of a volume corresponding to the workpiece, a radiant heating means provided with a plurality of heating sources which are positioned so as to correspond to a plurality of regions into which two facing surfaces of the workpiece are respectively divided, a convection heating means for circulating a heated inert gas to the heating space so as to heat the workpiece, and a control means for controlling the operation of the heating sources and the circulation of the inert gas. Each heating source is independently controlled by the control means, and the convection heating means circulates the inert gas so as to reduce a temperature difference of the workpiece caused by the heating sources.

    摘要翻译: 用于钎焊工件的组件的钎焊系统具有钎焊室,其内部被制成与工件相对应的体积的加热空间,辐射加热装置设置有多个加热源,其被定位成对应于 将工件的两个相对表面分别分开的多个区域,用于将加热的惰性气体循环到加热空间以加热工件的对流加热装置,以及用于控制加热源的操作的控制装置, 惰性气体的循环。 每个加热源由控制装置独立地控制,对流加热装置使惰性气体循环,以减少加热源产生的工件的温度差。

    Solid oxide fuel cell and manufacturing method thereof
    9.
    发明授权
    Solid oxide fuel cell and manufacturing method thereof 有权
    固体氧化物燃料电池及其制造方法

    公开(公告)号:US07914941B2

    公开(公告)日:2011-03-29

    申请号:US12576472

    申请日:2009-10-09

    IPC分类号: H01M4/90 H01M8/12

    摘要: An electric power generation cell 1 is constituted by arranging a fuel electrode layer 4 on one side of a solid electrolyte layer 3 and an air electrode layer 2 on the other side of the solid electrolyte layer 3. The solid electrolyte layer 3 is constituted of an oxide ion conductor mainly composed of a lanthanum gallate based oxide. The fuel electrode layer 4 is constituted of a porous sintered compact having a highly dispersed network structure in which a skeletal structure formed of a consecutive array of metal grains is surrounded by mixed conductive oxide grains. For the air electrode layer 2, a porous sintered compact mainly composed of cobaltite is used. This configuration reduces the overpotentials of the respective electrodes and the IR loss of the solid electrolyte layer 3, and accordingly can actualize a solid oxide type fuel cell excellent in electric power generation efficiency.

    摘要翻译: 发电单元1通过在固体电解质层3的一侧配置燃料电极层4和在固体电解质层3的另一侧设置空气极层2而构成。固体电解质层3由 氧化物离子导体主要由没有没有的镧镧氧化物组成。 燃料电极层4由具有高度分散的网状结构的多孔烧结体构成,其中由连续阵列的金属颗粒形成的骨架结构被混合的导电氧化物颗粒包围。 对于空气电极层2,使用主要由钴酸盐组成的多孔烧结体。 由此,能够降低各电极的超电势和固体电解质层3的IR损失,能够实现发电效率优异的固体氧化物型燃料电池。