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    • 3. 发明授权
    • Fuel feed device for engine
    • 发动机燃油进给装置
    • US4256075A
    • 1981-03-17
    • US56514
    • 1979-07-11
    • Toyoaki FukuiTatsuro NakagamiNorio EndoTakao MikiTakashi Ishida
    • Toyoaki FukuiTatsuro NakagamiNorio EndoTakao MikiTakashi Ishida
    • F02D41/34F02D41/18F02M51/02F02M69/04F02M69/48G01F1/32F02B3/00
    • F02D41/3094F02D41/185F02M51/02F02M69/044G01F1/3281
    • A fuel feed device for an engine capable of electronically controlling the fuel feed rate corresponding to the suction air flow rate in the intake passage, comprising an air flow rate detecting device for generating electric signals of frequencies proportional to suction air rate, a plurality of electromagnetic valves with a different fuel passage section from one another disposed at a suitable position in the intake passage and adapted so as to permit supplying through a fuel pressure regulator the fuel of a fixed pressure differential with the suction pressure near a fuel outlet, and an electric control means for driving the electromagnetic valves selectively in synchronism with or to follow the frequency of the electric signals or a divided frequency thereof in accordance with the engine operating condition. Thus an accurate and highly reliable fuel supply is achieved over a wide range of engine operating condition from idling to maximum speed operation.
    • 一种用于发动机的燃料供给装置,其能够电子地控制与进气通道中的吸入空气流量相对应的燃料供给速度,包括用于产生与抽吸空气速率成比例的频率的电信号的空气流量检测装置,多个电磁 具有彼此不同的燃料通道部分的阀设置在进气通道中的适当位置,并且适于允许通过燃料压力调节器供给具有靠近燃料出口的吸入压力的固定压差的燃料,以及电 根据发动机工作状态,与电信号的频率或其分频的频率同步地驱动电磁阀的控制装置。 因此,在从空转到最大速度运行的较大范围的发动机运行状态下,可实现精确和高可靠性的燃料供应。
    • 5. 发明授权
    • Fuel feed device for engine
    • 发动机燃油进给装置
    • US4336782A
    • 1982-06-29
    • US142048
    • 1980-04-21
    • Norio EndoTatsuro Nakagami
    • Norio EndoTatsuro Nakagami
    • F02D41/30F02D41/02F02D41/18F02D41/32F02D41/34F02D45/00F02M51/02
    • F02D41/185
    • A fuel feed device for an engine comprises an electric control to control opening and closing of a fuel injection valve in accordance with electric signals output from an operating condition detector prior to the electric signals from an air flow rate detecting device, when the engine is operated under a specific driving condition such as a low speed and high load driving condition. Another electric control can control opening and closing of the fuel injection valve in accordance with the electric signal output from the air flow rate detecting device when the engine is under other driving conditions, so that the present invention has the advantage that highly reliable electronically controlled fuel feed is effected.
    • 发动机的燃料供给装置包括电气控制,以在发动机运转时根据来自操作状态检测器的输出信号来控制燃料喷射阀的打开和关闭,所述电信号来自空气流速检测装置的电信号 在特定的驱动条件下,例如低速和高负载驱动条件。 当发动机处于其他行驶条件下时,另一个电气控制器可以根据从空气流量检测装置输出的电信号来控制燃料喷射阀的打开和关闭,从而本发明的优点是:高可靠性的电子控制燃料 饲料受到影响。
    • 10. 发明授权
    • Touch panel and coordinates detecting method using touch panel
    • 触摸面板,使用触摸面板进行坐标检测
    • US08144128B2
    • 2012-03-27
    • US12687934
    • 2010-01-15
    • Takashi NakajimaNobuyoshi ShimizuKoichi KondohMasanobu HayamaNorio Endo
    • Takashi NakajimaNobuyoshi ShimizuKoichi KondohMasanobu HayamaNorio Endo
    • G06F3/041
    • G06F3/045G06F2203/04808
    • A touch panel includes a lower conductive film, four electrodes disposed in edge portions of four sides of the lower conductive film, and an upper conductive film disposed over the lower conductive film so that the upper and lower conductive films are opposed to each other, to detect an electric potential in the lower conductive film when the upper conductive film is in contact with the lower conductive film. The upper conductive film includes split portions containing no transparent conductive material and split conductive portions divided by the split portions. The touch panel is arranged to detect an electric potential of each of contact points in the split conductive portions when the upper and lower conductive films are brought in contact with each other at the contact points, and detect respective coordinates of the contact points based on the electrical potentials.
    • 触摸面板包括下导电膜,设置在下导电膜的四边的边缘部分的四个电极和设置在下导电膜上的上导电膜,使得上导电膜和下导电膜彼此相对,以及 当上导电膜与下导电膜接触时,检测下导电膜中的电位。 上导电膜包括不包含透明导电材料的分割部分和由分割部分划分的分割导电部分。 触摸面板被配置为当上下导电膜在接触点彼此接触时检测分离导电部分中的每个接触点的电位,并且基于该接触点检测接触点的相应坐标 电位