Method of Forming Aluminum Based Alloy Wiring Circuit and Method of Forming Element Structure of Display Device
    2.
    发明申请
    Method of Forming Aluminum Based Alloy Wiring Circuit and Method of Forming Element Structure of Display Device 审中-公开
    铝基合金线路形成方法及显示装置元件结构形成方法

    公开(公告)号:US20080052903A1

    公开(公告)日:2008-03-06

    申请号:US11847423

    申请日:2007-08-30

    IPC分类号: H05K3/20 C22C21/00 H01B13/00

    摘要: The present invention proposes the technique in which aluminum based alloy is used as a wiring material, and the number of process is sharply reduced in the technique of forming the aluminum based alloy wiring circuit, thereby making it possible to efficiently manufacture the element. The present invention is a method of forming the wiring circuit by the aluminum based alloy, wherein the development process of a resist layer and the etching process of an aluminum based alloy film are simultaneously performed with a developing solution for the aluminum based alloy film laminated with the resist layer. This aluminum based alloy is preferably 5 Å/sec to 40 Å/sec in etching rate by the developing solution.

    摘要翻译: 本发明提出了使用铝基合金作为配线材料的技术,并且在形成铝基合金布线电路的技术中,工艺数量急剧减少,从而可以有效地制造元件。 本发明是一种通过铝基合金形成布线电路的方法,其中抗蚀剂层的显影工艺和铝基合金膜的蚀刻工艺同时与用于与 抗蚀剂层。 这种铝基合金在显影液的蚀刻速度下优选为5埃/秒至40埃/秒。

    Manufacturing method of metal hydride alkaline storage cell
    3.
    发明授权
    Manufacturing method of metal hydride alkaline storage cell 失效
    金属氢化物碱性蓄电池的制造方法

    公开(公告)号:US06902588B2

    公开(公告)日:2005-06-07

    申请号:US10786091

    申请日:2004-02-26

    摘要: A method of manufacturing a metal hydride alkaline storage cell includes a first step of preparing a negative electrode by applying a paste containing hydrogen absorbing alloy powder onto a substrate; and a second step of placing the negative electrode and a positive electrode into a cell can with disposing separator therebetween, and thereafter pouring an electrolyte into the cell can. Into the paste or the electrolyte, a catalytic metal compound that has a proportion of 0.1 to 2.5 wt. % based on the weight of the hydrogen-absorbing alloy powder and that is soluble in the electrolyte is added. Consequently, the catalytic action of the metal is fully utilized by this method that dots a catalytic metal or metal compound on the alloy surface, and thereby the inner pressure characteristic (high-rate charge characteristic) of a cell is improved.

    摘要翻译: 一种制造金属氢化物碱性蓄电池的方法包括:通过将含有吸氢合金粉末的浆料涂覆在基材上来制备负极的第一步骤; 以及将负极和正极放置在电池罐中的第二步骤,在其间设置隔板,然后将电解液注入电池罐中。 向糊状物或电解质中加入催化剂金属化合物,其比例为0.1〜2.5重量% 加入基于吸氢合金粉末的重量且可溶于电解质的%。 因此,通过该方法充分利用金属的催化作用,使合金表面上的催化金属或金属化合物点,从而提高电池的内部压力特性(高速率电荷特性)。

    Hydrogen storage alloy powder and method of manufacturing the same
    6.
    发明授权
    Hydrogen storage alloy powder and method of manufacturing the same 有权
    储氢合金粉及其制造方法

    公开(公告)号:US06238822B1

    公开(公告)日:2001-05-29

    申请号:US09147482

    申请日:1999-01-07

    IPC分类号: H01M462

    摘要: The invention provides a hydrogen absorbing alloy electrode obtained by the step P1 of preparing a hydrogen absorbing alloy powder containing cobalt and nickel, the step P2 of subjecting the surfaces of the alloy particles to a reduction treatment with high-temperature hydrogen by holding the powder in a high-temperature hydrogen atmosphere under the conditions of temperature, pressure and time sufficient to reduce oxides formed in a surface layer portion of each of the alloy particles, not melting the alloy particles and not permitting the alloy particles to absorb hydrogen, the step P3 of treating the resulting powder with an acid or alkali by immersing the powder in an acid or alkaline aqueous solution, followed by suction filtration, washing with water and drying, and the step P4 of applying the resulting power to an electrically conductive substrate and shaping the substrate in the form of the electrode. The electrode thus provided has higher activity than conventionally.

    摘要翻译: 本发明提供一种通过制备含有钴和镍的吸氢合金粉末的步骤P1获得的吸氢合金电极,通过将粉末保持在高温氢气中来对合金颗粒的表面进行还原处理的步骤P2 在温度,压力和时间足以减少形成在每个合金颗粒的表层部分中的氧化物的条件下的高温氢气氛,不熔化合金颗粒并且不允许合金颗粒吸收氢,步骤P3 通过将粉末浸渍在酸或碱性水溶液中,然后抽吸过滤,用水洗涤并干燥,用酸或碱处理所得粉末,以及步骤P4将所得功率施加到导电基底上并使 电极形式的衬底。 由此提供的电极比以往更高的活性。

    Non-sintered nickel electrode for alkaline storage battery
    8.
    发明授权
    Non-sintered nickel electrode for alkaline storage battery 失效
    碱性蓄电池用非烧结镍电极

    公开(公告)号:US6060195A

    公开(公告)日:2000-05-09

    申请号:US124916

    申请日:1998-07-30

    摘要: In the non-sintered nickel electrode for an alkaline storage battery according to the present invention, the active material powder is made up of composite particles, each comprising a nickel hydroxide-containing core particle and a shell layer coating the nickel hydroxide-containing core particle, the shell layer containing a bismuth-containing compound, or is made up of composite particles, each comprising a nickel hydroxide-containing core particle, an inner shell layer coating the nickel hydroxide-containing core particle and an outer shell layer coating the inner shell layer, the inner shell layer containing a bismuth-containing compound and the outer shell layer containing cobalt metal, cobalt monoxide, cobalt hydroxide, cobalt oxyhydroxide or a sodium-containing cobalt compound prepared by adding an aqueous solution of sodium hydroxide to cobalt metal, cobalt monoxide, cobalt hydroxide or cobalt oxyhydroxide to obtain a mixture and heat-treating the mixture in the presence of oxygen. Provided is a non-sintered nickel electrode for an alkaline storage battery, having a high active material utilization rate not only when charged at normal temperatures but also when charged at high temperatures, and having good charge-discharge cycle characteristics.

    摘要翻译: 在本发明的碱性蓄电池用非烧结镍电极中,活性物质粉末由复合粒子构成,其中含有含氢氧化镍的核心粒子和包覆含氢氧化镍的核心粒子的壳层 ,包含含铋化合物的壳层,或由复合颗粒组成,每个复合颗粒包含含氢氧化镍的核心颗粒,涂覆含氢氧化镍的核心颗粒的内壳层和涂覆内壳的外壳层 层,含有含铋化合物的内层层和含有钴金属,一氧化钴,氢氧化钴,氢氧化正钴或含钴钴化合物的外壳层,其通过将氢氧化钠水溶液加入钴金属,钴 一氧化碳,氢氧化钴或氢氧化正钴,得到混合物,并在牛的存在下热处理该混合物 y根 提供一种用于碱性蓄电池的非烧结镍电极,其不仅在常温下充电,而且在高温下充电时具有高活性物质利用率,并且具有良好的充放电循环特性。

    RS flip-flop
    10.
    发明授权
    RS flip-flop 失效
    RS触发器

    公开(公告)号:US5208487A

    公开(公告)日:1993-05-04

    申请号:US862661

    申请日:1992-04-01

    IPC分类号: H03K3/037 H03K3/356

    摘要: A logic circuit outputs a logic signal in response to set inputs and a reset input. This logic signal is applied to output terminals through a latch circuit. When outputs Q and Q of the RS flip-flop maintain a previous state, the latch circuit is activated by a control signal applied from an OR gate to hold a previous logic signal received from the logic circuit. Thus, the logic circuit and latch circuit are arranged on a signal path from input terminals to output terminals. These logic circuit and latch circuit do not include a series connection of transistors and, therefore, is operable at high speed in response to the inputs. Consequently, the outputs Q and Q have excellent response characteristics relative to the set and reset inputs, to enable a high-speed operation.

    摘要翻译: 逻辑电路根据设定输入和复位输入输出逻辑信号。 该逻辑信号通过锁存电路施加到输出端子。 当RS触发器的输出Q和& upbar&Q保持先前状态时,锁存电路由从或门施加的控制信号激活,以保持从逻辑电路接收到的先前的逻辑信号。 因此,逻辑电路和锁存电路被布置在从输入端子到输出端子的信号路径上。 这些逻辑电路和锁存电路不包括晶体管的串联连接,因此可以响应于输入以高速操作。 因此,输出Q和& upbar&Q相对于设定和复位输入具有优异的响应特性,以实现高速运行。