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    • 33. 发明授权
    • Method of adjusting a pulse-width modulation clock
    • 调整脉宽调制时钟的方法
    • US07986294B2
    • 2011-07-26
    • US11706127
    • 2007-02-13
    • Kazuo Kojima
    • Kazuo Kojima
    • G09G3/36
    • G09G3/3413G09G3/2014G09G2300/0452G09G2360/145
    • A method for driving a planar light source device is provided. The planar light source device includes (a) a plurality of planar light source units to light a color LCD device from the back, each planar light source unit including a red LED, a green LED, and a blue LED; and (b) a driving circuit to perform ON/OFF control of the red LED, the green LED, and the blue LED included in each planar light source unit on the basis of pulse-width modulation. The method includes adjusting respective pulse-width modulation unit clocks CLR-unit, CLG-Unit, and CLB-Unit in each planar light source unit to long or short by increasing or decreasing the number of frequency division cycles of a system clock in the driving circuit.
    • 提供一种用于驱动平面光源装置的方法。 平面光源装置包括:(a)从背面照射彩色LCD装置的多个平面光源单元,每个平面光源单元包括红色LED,绿色LED和蓝色LED; 以及(b)驱动电路,其基于脉宽调制来执行包括在每个平面光源单元中的红色LED,绿色LED和蓝色LED的ON / OFF控制。 该方法包括通过增加或减少驱动中的系统时钟的分频周期数来将每个平面光源单元中的各个脉冲宽度调制单元时钟CLR单元,CLG单元和CLB单元调整为长或短 电路。
    • 34. 发明授权
    • Engine control system and engine control method
    • 发动机控制系统和发动机控制方式
    • US07379810B2
    • 2008-05-27
    • US11643927
    • 2006-12-22
    • Tsutomu SogaKazuo Kojima
    • Tsutomu SogaKazuo Kojima
    • B60T7/12F02M7/00
    • F02D41/16F02D41/0072F02D41/123F02D41/1446F02D41/22F02D41/2467F02D41/405F02D2041/227F02D2200/023
    • An engine control system and an engine control method are disclosed wherein a combustible component quantity of intake air, reflecting combustible components in a crankcase of an engine, is calculated on the basis of a deviation between basic injection quantity for a target rotational speed to be attained and an actual injection quantity during operation to perform idling stabilizing control. A ratio of the combustible components mixed to engine oil is calculated on the basis of the combustible component quantity of intake air and a temperature of engine oil. During a status of the engine with a given temperature of engine oil and the mixing ratio of the combustible components in engine oil, a fuel injection affect eliminating operation is executed.
    • 公开了一种发动机控制系统和发动机控制方法,其中基于目标转速的基本喷射量之间的偏差来计算发动机曲轴箱内的可燃组分的可燃成分量的进气, 以及在执行空转稳定控制的操作期间的实际喷射量。 基于进气的可燃成分量和发动机油的温度来计算混合到发动机油中的可燃成分的比例。 在具有发动机油的给定温度的发动机的状态和发动机油中的可燃组分的混合比例的情况下,执行燃料喷射影响消除操作。
    • 38. 发明授权
    • Method of manufacturing a nickel-metal hydride secondary cell
    • 镍氢二次电池的制造方法
    • US5537733A
    • 1996-07-23
    • US298670
    • 1994-08-31
    • Hideaki KozawaKazuo KojimaTomoyuki OnoHirofumi YanagawaHideaki KitazumeKouji Taguchi
    • Hideaki KozawaKazuo KojimaTomoyuki OnoHirofumi YanagawaHideaki KitazumeKouji Taguchi
    • H01M2/02H01M2/04H01M2/08H01M2/12H01M10/34H01M10/28H01M10/30
    • H01M2/1229H01M10/345H01M2/0413H01M2/08H01M2/0217Y02P70/54Y10T29/49108Y10T29/4911Y10T29/49115Y10T29/49808Y10T29/49925Y10T29/53139
    • A rectangular nickel-metal hydride secondary cell permits improving the air-tightness and also permits preventing a metal case from being deformed in a step of folding an open end portion of the metal case. The rectangular nickel-metal hydride secondary cell, includes a rectangular cylindrical metal case having a bottom, an electrode group housed in the metal case, an alkali electrolyte contained in the metal case, a rectangular sealing plate mounted near the open end portion of the metal case. An insulating gasket is interposed in a compressed state between the inner wall near the open end of the metal case and the sealing plate. The metal case comprises a folded portion formed by inwardly folding the open end portion of the metal case and an inwardly projecting stepped portion formed along the inner surface of the metal case below the folded portion. The sealing plate is fixed to the metal case at the portion between the folded portion and the stepped portion of the metal case with the insulating gasket interposed therebetween, the folded portion at a corner portion of the open end portion of the metal case has an angle of 80.degree. to 100.degree.. Such a secondary cell can be formed by a process which includes charging-discharging cycles, an aging step, and a full charging step.
    • 矩形的镍氢二次电池允许改善气密性,并且还允许在折叠金属外壳的开口端部的步骤中防止金属外壳变形。 矩形的镍氢二次电池包括一个具有底部的矩形圆柱形金属外壳,一个容纳在金属外壳中的一个电极组,一个包含在金属外壳中的碱性电解质,一个安装在金属开口端附近的矩形密封板 案件。 在金属壳体的开口端附近的内壁与密封板之间,以压缩状态插入绝缘垫片。 金属外壳包括通过向内折叠金属外壳的开口端部形成的折叠部分和沿着折叠部分下方的金属外壳的内表面形成的向内突出的台阶部分。 密封板在金属壳体的折叠部分和阶梯部分之间的部分处固定到金属壳体上,绝缘垫片插入其间,金属壳体的开口端部的角部处的折叠部分具有角度 80°至100°。 这种二次电池可以通过包括充电 - 放电循环,老化步骤和完全充电步骤的方法形成。
    • 40. 发明授权
    • Semiconductor device and method of manufacturing thereof
    • 半导体装置及其制造方法
    • US4822989A
    • 1989-04-18
    • US52386
    • 1987-05-21
    • Keiji MiyamotoAtsushi NakamuraTsuneo SatohKazuo KojimaMasayuki Morita
    • Keiji MiyamotoAtsushi NakamuraTsuneo SatohKazuo KojimaMasayuki Morita
    • G06K19/077H01L23/498H01L23/538G06K19/06
    • G06K19/07745G06K19/07743H01L23/49855H01L23/5388H01L2924/0002
    • This invention concerns a semiconductor device of a tape carrier type and a method of manufacturing the same, wherein electroconductive layers made of the same material as that of lead terminals are disposed so as to substantially surround the circumferential edge of a hole for containing an IC chip with a predetermined gap as barrier portions for controlling the flowing range or the coating range on a carrier tape before coagulation of the coating material when the surface of said IC chip after being inserted into the IC chip-containing hole and connected with the lead terminals is coated with the coating material. The steps formed with the surface of the carrier tape and the barrier portions which substantially surround the circumferential edge of the hole at a predetermined gap thereby results in controlling the flowing range of the coating material before coagulation, by which the coating region on the surface of the IC chip, etc. with the coating material is made uniform and the scattering in the film thickness is minimized.
    • 本发明涉及一种载带型半导体器件及其制造方法,其中由与引线端子相同的材料制成的导电层被设置为基本上围绕用于容纳IC芯片的孔的圆周边缘 在将IC芯片的表面插入到IC芯片容纳孔中并与引线端子连接之后,预定间隙作为阻挡部分,用于控制涂层材料凝结前的载带上的流动范围或涂覆范围 涂上涂料。 形成载体带的表面和基本上以预定间隙围绕孔的圆周边缘的阻挡部分形成的台阶,从而导致在凝结之前控制涂层材料的流动范围,通过该步骤,表面上的涂层区域 使具有涂层材料的IC芯片等均匀,并使膜厚度的散射最小化。