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    • 43. 发明授权
    • Game apparatus
    • 游戏机
    • US08075400B2
    • 2011-12-13
    • US11632022
    • 2005-06-23
    • Shigenobu MatsuyamaRyo UedaToru Takeda
    • Shigenobu MatsuyamaRyo UedaToru Takeda
    • A63F9/24A63F13/00
    • A63F13/90A63F9/00A63F13/00A63F13/213A63F13/42A63F2300/1087A63F2300/205A63F2300/302A63F2300/8005
    • A game machine comprises a monitor for displaying a screen image for prompting a manipulation input, a control panel unit provided with push buttons and adapted to accept manipulations from a game player so as to make progress on a game, a movement mechanism unit disposed at a bottom of a base segment to provide turning and traveling to the control panel unit , an apparatus-body drive control section 107 for controlling the drive of the movement mechanism unit, and a control instruction section or for outputting a given drive control instruction generated during game play to the drive control section, whereby a motion for positional displacement of a manipulation input unit is instructed in line with a game progress or a game result to exert an influence on a difficulty level of a game so as to enhance amusement of the game.
    • 游戏机包括:显示器,用于显示用于提示操作输入的屏幕图像;控制面板单元,其设置有按钮,并且适于接受游戏者的操作以便在游戏中取得进展;移动机构单元, 底部,以提供转向和行进到控制面板单元,用于控制移动机构单元的驱动的装置体驱动控制部分107,以及控制指令部分或用于输出在游戏过程中产生的给定驱动控制指令 播放到驱动控制部分,由此根据游戏进行或游戏结果指示操纵输入单元的位置移动运动,以对游戏的难度等级产生影响,从而增强游戏的娱乐性。
    • 45. 发明授权
    • Signal detecting circuit
    • 信号检测电路
    • US07570044B2
    • 2009-08-04
    • US12033171
    • 2008-02-19
    • Toru Takeda
    • Toru Takeda
    • G01R15/20G01R33/07G01R33/06
    • G01R1/30H03F1/26H03F2200/271H03F2200/54
    • The signal detecting circuit has a first amplifier which amplifies the supplied signals and outputs the amplified signals from first and second output terminals; a switch unit which supplies the signals to the first amplifier such that the polarity thereof is reversed between the first and second periods; a first capacitor, one end of which is connected to the first output terminal; a second capacitor, one end of which is connected to the second output terminal; a first switch, one end of which is connected to the other end of the second capacitor; a second amplifier having an inverting input terminal connected to the other end of the first capacitor, a non-inverting input terminal connected to the other end of the first switch, and an output terminal; a second switch which is connected to between the output terminal and the inverting input terminal, a third switch, one end of which is connected to the other end of the second capacitor; a fourth switch, one end of which is connected to the other end of the non-inverting input terminal; a threshold voltage source which is connected to between the other end of the third switch and the other end of the fourth switch; and a reference voltage source which is connected to either one of the other end of the third switch and the other end of the fourth switch. In the first period, the first switch is off, and the second to fourth switches are on; in the second period, the first switch is on, and the second to fourth switches are off.
    • 信号检测电路具有第一放大器,放大所提供的信号并从第一和第二输出端输出放大的信号; 开关单元,其将信号提供给第一放大器,使得其极性在第一和第二周期之间相反; 第一电容器,其一端连接到第一输出端子; 第二电容器,其一端连接到第二输出端子; 第一开关,其一端连接到第二电容器的另一端; 第二放大器,其具有连接到第一电容器的另一端的反相输入端子,连接到第一开关的另一端的非反相输入端子和输出端子; 第二开关,其连接到输出端子和反相输入端子之间;第三开关,其一端连接到第二电容器的另一端; 第四开关,其一端连接到非反相输入端子的另一端; 阈值电压源,连接在第三开关的另一端和第四开关的另一端之间; 以及参考电压源,其连接到第三开关的另一端和第四开关的另一端中的任一个。 在第一时段中,第一开关断开,第二至第四开关断开; 在第二时段中,第一开关接通,第二至第四开关断开。
    • 47. 发明申请
    • Method of fabricating a thin-film solar cell, and thin-film solar cell
    • 制造薄膜太阳能电池的方法和薄膜太阳能电池
    • US20060266409A1
    • 2006-11-30
    • US11439122
    • 2006-05-24
    • Toru TakedaShinsuke Tachibana
    • Toru TakedaShinsuke Tachibana
    • H01L31/00
    • H01L31/022425H01L31/046H01L31/0463Y02E10/50
    • There is provided a method of fabricating a thin-film solar cell including the steps of: irradiating a first laser light from a side of the substrate to remove the semiconductor and back surface electrode layers; and irradiating a second laser light from the side of the substrate to remove the transparent electrode, semiconductor and back surface electrode layers at a region outer than the region irradiated with the first laser light. There is provided a thin-film solar cell including a transparent electrode layer, a photoelectric conversion semiconductor layer and a back surface electrode layer deposited on a transparent insulator substrate in this order, wherein the solar cell has a perimeter with the transparent electrode layer protruding outer than the semiconductor and back surface electrode layers.
    • 提供一种制造薄膜太阳能电池的方法,包括以下步骤:从基板侧照射第一激光以去除半导体和背面电极层; 以及从所述衬底侧照射第二激光以在所述第一激光照射的区域以外的区域移除所述透明电极,半导体和背面电极层。 提供一种薄膜太阳能电池,其具有透明电极层,光电转换半导体层和沉积在透明绝缘体基板上的背面电极层,其中太阳能电池具有周边,透明电极层突出外侧 比半导体和背面电极层。
    • 49. 发明授权
    • Fuel injection control system for engine
    • 发动机燃油喷射控制系统
    • US06508234B2
    • 2003-01-21
    • US10126696
    • 2002-04-22
    • Kenichi MachidaYoshiaki HirakataToru Takeda
    • Kenichi MachidaYoshiaki HirakataToru Takeda
    • F02M5100
    • F02D41/047F02D41/10F02D41/3094F02D41/345F02M69/043F02M69/044Y02T10/44
    • A required fuel amount for an engine is calculated at a predetermined calculation cycle. A fuel injection amount to be injected from an upstream injection valve and a fuel injection amount to be injected from a downstream injection valve are then calculated. After fuel injection on the basis of the calculated fuel injection amounts, a lack of fuel delivered by the fuel injection amounts immediately before re-calculation of a required fuel amount at the calculation cycle until the end of an intake stroke (end of an intake valve opening period), is calculated by subtracting the fuel injection amounts from the re-calculated required fuel amount. The calculated lack of fuel amount is injected from the downstream injection valve during the intake stroke, e.g., in stages 6 and 7. A portion of a fuel injected from each of the fuel injection valves which has adhered on an inner wall of an intake pipe and subsequently released to be later supplied to the engine, is calculated in accordance with a predetermined adhesion ratio and a predetermined release ratio. The above lack of fuel amount is determined in consideration of the calculated portion of the fuel. The lack of fuel amount is additionally injected, e.g. a fuel correction amount, even during an engine transient state, and engine operability and fuel consumption are improved.
    • 以预定的计算周期计算发动机的所需燃料量。 然后计算从上游喷射阀喷射的燃料喷射量和从下游喷射阀喷射的燃料喷射量。 在基于计算出的燃料喷射量的燃料喷射之后,在计算周期之前立即重新计算所需燃料量直到进气冲程结束(进气阀的末端)之前,由燃料喷射量输送的燃料不足 开始时间)通过从重新计算的所需燃料量中减去燃料喷射量来计算。 在进气冲程期间,例如在阶段6和7中,从下游喷射阀喷射计算出的燃料量不足。从每个燃料喷射阀喷射的燃料的一部分已经粘附在进气管的内壁上 并且随后释放以供应到发动机,根据预定的粘附比和预定的释放比计算。 考虑到计算出的燃料部分来确定上述的燃料量的不足。 另外注入燃料量的不足,例如, 即使在发动机过渡状态期间也能够提高燃料校正量,并且提高发动机的可操作性和燃料消耗。