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    • 71. 发明授权
    • Ignition timing controlling apparatus for internal combustion engine
    • 内燃机点火正时控制装置
    • US5022362A
    • 1991-06-11
    • US489628
    • 1990-03-07
    • Wataru Fukui
    • Wataru Fukui
    • F02D45/00F02P5/15F02P11/02
    • F02P11/025F02P5/1506Y02T10/46
    • An ignition timing controlling apparatus which is supplied electric current by a relay circuit for backing up and outputs an ignition control signal instructing ignition to an ignition unit in association with a detecting signal of a rotation sensor. Further, the apparatus stops output of the ignition control signal at the stopping time of the engine due to an open state of an ignition switch and prevents the ignition unit from being ignited earlier than desired at the starting time when the ignition switch is in a closed state again, by detecting the open and closed state of the ignition switch and by not outputting the ignition control signal when the ignition switch is in the open state.
    • 点火正时控制装置,其由继电器电路供电,用于备用,并且与旋转传感器的检测信号相关联地输出指示点火单元点火的点火控制信号。 此外,由于点火开关的打开状态,该设备在发动机的停止时间停止点火控制信号的输出,并且防止点火开关处于闭合状态时在启动时提前点燃点火单元 再次通过检测点火开关的打开和关闭状态,并且当点火开关处于打开状态时不输出点火控制信号。
    • 72. 发明授权
    • Engine rotation control device
    • 发动机旋转控制装置
    • US5012779A
    • 1991-05-07
    • US510759
    • 1990-04-18
    • Wataru FukuiToshio Iwata
    • Wataru FukuiToshio Iwata
    • F02P5/15
    • F02P5/1508Y02T10/46
    • An engine control device for controlling the number of revolutions per minute of an engine to be at a prescribed target value in a precise manner during the idling operation thereof. A signal generator generates an output signal representative of the crank angle of the engine in synchrony with the rotation thereof. In one aspect, the number of revolutions per minute of the engine is successively calculated based on the signal generator output. A present average number of revolutions per minute of the engine is calculated and updated every ignition instant. A deviation of the present average number of rpm from the predetermined target value is calculated from the present average number of rpm. The ignition timing is determined based on the deviation thus calculated in such a manner as to maintain the number of engine rpm at the target value. In another aspect, when the number of engine rpm falls into a prescribed idling operation range such as when the engine is decelerated with a clutch disengaged, the operation of the controller for maintaining the number of rpm at the target value is delayed a predetermined time so that a sharp change or an excessive decrease below the target value in the number or rpm can be avoided.
    • 一种发动机控制装置,用于在怠速运转期间以精确的方式将发动机的每分钟转数控制在规定的目标值。 信号发生器与其旋转同步地产生表示发动机的曲柄角的输出信号。 在一个方面,基于信号发生器输出连续地计算发动机的每分钟转数。 每个点火时刻计算并更新目前每分钟发动机的平均转数。 根据目前的平均转数,计算当前平均转数与预定目标值的偏差。 基于由此计算出的偏差确定点火正时,以使发动机转数为目标值。 在另一方面,当发动机转数达到规定的怠速运转范围时,例如当发动机在离合器脱离时减速时,用于将转数维持在目标值的控制器的操作延迟预定时间,因此 可以避免在数量或转速下低于目标值的急剧变化或过度降低。
    • 76. 发明授权
    • Fuel injection control device for internal combustion engine
    • 内燃机燃油喷射控制装置
    • US06622703B2
    • 2003-09-23
    • US09996599
    • 2001-11-30
    • Wataru FukuiToshiki Kurokawa
    • Wataru FukuiToshiki Kurokawa
    • F02M5100
    • F02D41/105F02D2250/12
    • To provide a fuel injection control device for an internal combustion engine which can suppress body vibrations, shocks, etc. and can control the fuel injection quantities during transitional periods easily and effectively in a simple manner. The fuel injection control device includes a crank angle sensor for detecting one angle reference position of at least the suction stroke or earlier strokes or two cylinders whose strokes shift from each other by 360 degrees of crank angle in a four-cycle multi-cylinder engine; various sensors for detecting the operating conditions of the engine; and a control section for determining the appropriate fuel injection quantity for each cylinder of the engine based on engine revolution information derived from the detected cycle of angle reference position detection signals and on operating condition detection signals, in which ½ of the fuel injection quantity determined based on the engine revolution information derived from the detected cycle of the angle reference position detection signals of each of the two cylinders and on the operating condition detection signals is injected simultaneously into the two cylinders.
    • 提供一种可以抑制身体振动,冲击等的内燃机的燃料喷射控制装置,并且能够容易且有效地以简单的方式控制过渡期间的燃料喷射量。燃料喷射控制装置包括曲柄角传感器 用于在四冲程多缸发动机中检测至少吸入冲程或较早冲程的一个角度基准位置或两个气缸,其冲程彼此旋转360度的曲柄角; 用于检测发动机的操作条件的各种传感器; 以及控制部分,用于基于从检测到的角度基准位置检测信号的周期导出的发动机转速信息和基于确定的燃料喷射量的1/2的操作条件检测信号来确定发动机的每个气缸的适当的燃料喷射量 从两个气缸中的每一个的角度基准位置检测信号的检测周期以及操作条件检测信号得到的发动机转速信息同时注入到两个气缸中。
    • 77. 发明授权
    • Ignition control system
    • 点火控制系统
    • US06484692B2
    • 2002-11-26
    • US09995734
    • 2001-11-29
    • Hideki UmemotoTadayuki SagaTatsuji IrieWataru Fukui
    • Hideki UmemotoTadayuki SagaTatsuji IrieWataru Fukui
    • F02P900
    • F02P9/005
    • An ignition control system is provided, which includes: an engine speed detector (101) for calculating an engine speed according to an engine crank angle signal (100); a current supply start controller (102) for outputting a proper current supply start timing signal corresponding to the engine speed to an ignition coil (5); a current supply finish controller (103) for outputting a proper current supply timing signal corresponding to the engine speed to an ignition coil; an ignition coil controller (104) for controlling supply of power to the ignition coil (5) according to the current supply start timing signal and the current supply finish timing signal; and an overspeed determination device (105) for outputting an overspeed determination signal when determining that the engine speed is in excess of a predetermined limit value. The overspeed determination signal prohibits starting the supply of current, and retards the current supply finish timing to such a degree as to decrease engine torque.
    • 提供一种点火控制系统,其包括:用于根据发动机曲柄角信号(100)计算发动机转速的发动机转速检测器(101); 电流供应启动控制器,用于向点火线圈(5)输出对应于发动机转速的适当的电流供应开始定时信号; 用于向点火线圈输出对应于发动机转速的适当电流供给定时信号的电流供给完成控制器(103) 点火线圈控制器(104),用于根据当前供电开始定时信号和电流供应完成定时信号控制对点火线圈(5)的供电; 以及超速判定装置,用于当确定发动机转速超过预定极限值时输出超速确定信号。 超速确定信号禁止开始电流供应,并且将当前供电完成时间延迟到降低发动机扭矩的程度。
    • 78. 发明授权
    • Manufacturing method of a rotation sensor
    • 旋转传感器的制造方法
    • US06427316B1
    • 2002-08-06
    • US09432158
    • 1999-11-02
    • Izuru ShinjoNoriaki HayashiNaoki HiraokaWataru FukuiYutaka Ohashi
    • Izuru ShinjoNoriaki HayashiNaoki HiraokaWataru FukuiYutaka Ohashi
    • H01F706
    • G01P1/026B29C45/14655G01P1/00G01P3/487G01P3/488Y10T29/4902Y10T29/49121Y10T29/49158
    • A method of manufacturing a rotation sensor is provided. In the method, an insert conductor having a predetermined shape and having at least a connector terminal and a conversion device terminal is provided. The insert conductor is insert-molded in a resin base such that at least the connector terminal and the conversion device terminal of the insert conductor remain exposed from the resin base. A resin connector part is molded such that the resin connector part encircles the connector terminal. Also, a magnetoelectric conversion device is connected to the conversion device terminal of the insert conductor, and positioning parts are provided at a tip of the resin base. In addition, the magnetoelectric conversion device is sandwiched between the positioning parts to securely hold the magnetoelectric conversion device, and a press fit part is formed at the tip of the resin base. Also, an output terminal of the magnetoelectric conversion device is pressed against the conversion device terminal of the insert conductor with the press fit part.
    • 提供一种制造旋转传感器的方法。 在该方法中,提供具有预定形状并且至少具有连接器端子和转换装置端子的插入导体。 插入导体嵌入成型在树脂基底中,使得至少插入导体的连接器端子和转换装置端子保持暴露于树脂基部。 树脂连接器部件被模制成使得树脂连接器部分环绕连接器端子。 此外,磁电转换装置连接到插入导体的转换装置端子,并且定位部分设置在树脂基部的尖端处。 此外,磁电转换装置夹在定位部件之间,以牢固地保持磁电转换装置,并且在树脂基座的尖端处形成压配合部分。 此外,磁压转换装置的输出端子通过压配合部分压靠在插入导体的转换装置端子上。
    • 80. 发明授权
    • Internal combustion engine controller
    • 内燃机控制器
    • US5794592A
    • 1998-08-18
    • US890665
    • 1997-07-09
    • Wataru Fukui
    • Wataru Fukui
    • F02P17/00F02D41/22F02D41/34F02D45/00F02N15/10F02P7/077F02P5/00
    • F02D41/009F02P7/0775F02D2250/06
    • In an internal combustion engine controller, a crank angle signal SGTP includes pulses corresponding to first and second reference crank angles and a cylinder identification signal SGCP includes a pulse having a phase difference to the crank angle signal, the pulse number of a specific cylinder from the second reference crank angle to the first reference crank angle is different from those of other cylinders, a control/arithmetic operation circuit includes means for calculating control timings, means for counting the pulse number of the cylinder identification signal, means for outputting a cylinder identification flag FC by assessing a cylinder identifying state based on a count value CP and a previous count value CPO and means for reflecting the cylinder identification flag to the output state of drive signals and control reflection means prohibits the output of the drive signals when the cylinder identification flag is abnormal. With this arrangement, the internal combustion engine controller is capable of avoiding the erroneous control of the internal combustion engine can be obtained without an increase in a cost.
    • 在内燃机控制器中,曲柄角信号SGTP包括对应于第一和第二参考曲柄角的脉冲,并且气缸识别信号SGCP包括具有与曲柄角信号相位差的脉冲,来自所述曲柄角信号的特定气缸的脉冲数 与第一基准曲柄角的第二参考曲柄角不同于其他气缸的控制/运算电路包括用于计算控制定时的装置,用于对气缸识别信号的脉冲数进行计数的装置,用于输出气缸识别标志 FC通过基于计数值CP和先前计数值CPO评估气缸识别状态,以及用于将气缸识别标志反映到驱动信号的输出状态的装置,并且控制反射装置在气缸识别标志时禁止输出驱动信号 是异常的 利用这种布置,内燃机控制器能够避免在不增加成本的情况下获得内燃机的错误控制。