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    • 1. 发明授权
    • Air flow rate measuring device incorporating hot wire type air flow meter
    • 含热丝式空气流量计的空气流量测量装置
    • US4404846A
    • 1983-09-20
    • US302435
    • 1981-09-09
    • Teruo YamauchiYoshishige OhyamaHiroshi KuroiwaMamoru FujiedaTadashi Kirisawa
    • Teruo YamauchiYoshishige OhyamaHiroshi KuroiwaMamoru FujiedaTadashi Kirisawa
    • F02D41/18F02D45/00G01F1/00G01F1/68G01F1/684G01F1/696G01F1/72
    • G01F1/6842G01F1/72
    • The invention relates to an air flow rate measuring device making use of a hot wire type air flow meter and adapted to measure the true intake air flow rate while compensating for the error attributable to the reversing of the air. The device includes an operation unit adapted to accumulate the output from the hot wire type air flow meter to calculate an apparent intake air flow rate Q.sub.a =Q.sub.1 +Q.sub.2, where Q.sub.1 is the flow rate during reversing of the air while Q.sub.2 represents the flow rate during forward flowing of the air. The apparent flow rate Q.sub.a is discriminated by a signal derived from means for detecting the period in which the reversing of intake air takes place into the flow rate Q.sub.1 in the reversing or backward direction and the flow rate Q.sub.1 in the forward direction, by means of the operation unit. Another operation unit performs the calculation of difference Q.sub.2 -Q.sub.1 to determine the true air flow rate Q.sub.o.
    • PCT No.PCT / JP81 / 00018 Sec。 371日期1981年9月9日 102(e)1981年9月9日PCT PCT。 出版物WO81 / 02202 日本1981年8月6日。本发明涉及一种使用热丝式空气流量计的空气流量测量装置,其适于在补偿由空气反转引起的误差的同时测量真实的进气流量。 该装置包括适于积累来自热丝式空气流量计的输出的操作单元,以计算表观进气流量Qa = Q1 + Q2,其中Q1是空气反向期间的流量,而Q2表示流量 在向前流动的空气中。 表观流量Qa由来自用于检测进入空气的反转时间的装置的反馈或反向方向的流量Q1和向前方向上的流量Q1的信号借助于 操作单元。 另一个操作单元执行差分Q2-Q1的计算,以确定真空气流量Qo。
    • 3. 发明授权
    • Engine control apparatus
    • 发动机控制装置
    • US4552116A
    • 1985-11-12
    • US641337
    • 1984-08-16
    • Hiroshi KuroiwaTadashi KirisawaTeruo YamauchiYoshishige Oyama
    • Hiroshi KuroiwaTadashi KirisawaTeruo YamauchiYoshishige Oyama
    • F02D9/02F02B1/04F02D41/04F02D41/10F02D41/12F02D41/14F02D43/00F02B3/00F02D9/00
    • F02D41/1476F02D43/00F02B1/04
    • An engine control apparatus of fuel supply preferential type in which the rate of fuel supply is controlled in accordance with the amount of operation of an accelerator pedal and the operation condition of the engine, and the opening of the throttle valve is controlled in accordance with a command opening which is determined by the rate of the fuel supply is disclosed. For ensuring a good air-fuel ratio control, the control apparatus comprises first closed loop control adapted to detect the throttle valve opening and to effect a control to make the throttle valve opening converge at the command opening and second closed loop control adapted to detect the air-flow ratio of the air-fuel mixture fed to the engine wth air-fuel ratio sensor which detects oxygen concentration in the exhaust gases from the engine and to effect a control to make the air-fuel ratio converge at a command air-fuel ratio.
    • 一种燃料供给优先型的发动机控制装置,其中根据加速器踏板的操作量和发动机的操作条件来控制燃料供给速率,并且根据一个控制器控制节气门的打开 公开了由燃料供给速率确定的指令开度。 为了确保良好的空燃比控制,控制装置包括适于检测节气门开度的第一闭环控制,并且进行控制以使节流阀开度在命令开度处收敛,并且第二闭环控制适于检测 供给到发动机的第一空燃比传感器的空气燃料混合物的空气流量比,其检测来自发动机的废气中的氧浓度,并且进行使空燃比在指令空燃比处收敛的控制 比。
    • 4. 发明授权
    • Air flow metering apparatus for internal combustion engines
    • 用于内燃机的气流计量装置
    • US4142407A
    • 1979-03-06
    • US797690
    • 1977-05-17
    • Hiroshi KuroiwaYoshishige OhyamaYutaka NishimuraNobuaki Miyakawa
    • Hiroshi KuroiwaYoshishige OhyamaYutaka NishimuraNobuaki Miyakawa
    • F02D35/00F02D41/18G01F1/32G01F1/684G01F5/00G01F7/00
    • G01F7/00F02D41/185G01F1/3209G01F1/3272G01F1/6842G01F5/00Y02T10/146
    • An air flow metering apparatus for measuring a suction air flow fed to an internal combustion engine comprises at least two Karman' vortex type air flow meters disposed separately in at least two air suction passages, respectively. The output signals from the flow meters are switched in such manner that in a predetermined range of high air flow rates, the output signal from one of the flow meter is utilized for measuring or sensing the air flow rate, while in a predetermined low flow rate range, the output signal from the other flow meter is utilized for the same purpose. Alternatively, in a predetermined low flow rate range, only one of the air suction passages is employed, while both of the air suction passages are employed in a predetermined range of high air flow rates. The air flow metering apparatus assures the detection or measurement of the suction air flow rate over a whole operation range of the engine with a high reliability and enhanced accuracy.
    • 用于测量供给内燃机的吸入空气流的气流计量装置包括分别设置在至少两个空气吸入通道中的至少两个卡门涡流式空气流量计。 来自流量计的输出信号以这样的方式切换,使得在高空气流量的预定范围内,来自流量计中的一个的输出信号用于测量或感测空气流速,而在预定的低流量 范围内,来自另一个流量计的输出信号用于相同的目的。 或者,在预定的低流量范围内,仅使用一个空气吸入通道,而两个空气吸入通道都以高空气流量的预定范围使用。 空气流量计量装置确保在发动机的整个工作范围内以高可靠性和高精度检测或测量吸入空气流量。
    • 5. 发明授权
    • Air-fuel ratio control apparatus
    • 空燃比控制装置
    • US4132199A
    • 1979-01-02
    • US814623
    • 1977-07-11
    • Hiroshi KuroiwaYutaka NishimuraYoshishige OhyamaTorazo Nishimiya
    • Hiroshi KuroiwaYutaka NishimuraYoshishige OhyamaTorazo Nishimiya
    • F02B1/04F02D41/14F02M7/24F02B33/00
    • F02D41/1489F02M7/24F02B1/04Y10S261/74
    • An air-fuel ratio control apparatus for use in a motor vehicle having an internal combustion engine provided with a carburetor including a main fuel supply system and a low speed fuel supply system for supplying fuel to the engine. The apparatus includes an electromagnetic valve for controlling the volume of air flowing through the air bleed of the main fuel supply system, an electromagnetic valve for controlling the volume of air flowing through the air bleed of the low speed fuel supply system, an O.sub.2 sensor for detecting the concentration of O.sub.2 in exhaust emissions, and a control circuit for producing as an output a control signal in accordance with a signal from the O.sub.2 sensor. The two electromagnetic valves are controlled by the same signal from the control circuit. A plurality of microswitches for detecting the starting of the engine, high speed operation of the engine and power operation of the engine respectively are provides so as to disconnect the control circuit from the electromagnetic valves.
    • 一种用于具有内燃机的机动车辆的空燃比控制装置,所述内燃机设置有包括主燃料供给系统和用于向发动机供给燃料的低速燃料供给系统的化油器。 该装置包括用于控制流过主燃料供应系统的排气的空气的体积的电磁阀,用于控制流过低速燃料供应系统的排气的空气的体积的电磁阀,用于 检测废气排放物中的O 2浓度;以及控制电路,用于根据来自O2传感器的信号输出控制信号。 两个电磁阀由来自控制电路的相同信号控制。 提供用于检测发动机起动,发动机的高速运转和发动机的动力运行的多个微型开关,以分离控制电路与电磁阀。
    • 10. 发明授权
    • VCM driver and PWM amplifier
    • VCM驱动器和PWM放大器
    • US07710678B2
    • 2010-05-04
    • US12169891
    • 2008-07-09
    • Yasuhiko KokamiHiroshi Kuroiwa
    • Yasuhiko KokamiHiroshi Kuroiwa
    • G11B5/02G11B21/02
    • G11B5/5526G11B5/5547
    • The present invention provides a VCM driver realizing low power consumption and high accuracy and a PWM amplifier compensating a dead time distortion. A phase compensator, a ΔS modulator receiving an output signal of the phase compensator and converting the output signal to a control code of predetermined bits, a PWM modulator receiving the control code to produce a PWM signal, and an output circuit receiving the PWM signal to drive a voice coil constitute a forward path. A sense amplifier sensing a current of the voice coil, an ADC receiving an output signal of the sense amplifier, a low-pass filter receiving an output signal of the ADC, and a decimation filter receiving an output signal of the low-pass filter constitute a feedback path. An output signal of the decimation filter is fed back to the input side of the phase compensator to form a major feedback loop having a first-order characteristic loop gain. An output signal of the decimation filter is fed back to the output side of the phase compensator to form a minor feedback loop having a loop gain which is flat until a target band frequency when viewed from the output side of the phase compensator.
    • 本发明提供了实现低功耗和高精度的VCM驱动器以及补偿死区时间失真的PWM放大器。 接收相位补偿器的输出信号并将输出信号转换成预定比特的控制码的相位补偿器,调制器调制器,接收控制码产生PWM信号的PWM调制器,以及接收PWM信号的输出电路 信号驱动音圈构成前进路径。 感测放大器,感测音圈的电流,接收读出放大器的输出信号的ADC,接收ADC的输出信号的低通滤波器以及接收低通滤波器的输出信号的抽取滤波器构成 反馈路径。 抽取滤波器的输出信号被反馈到相位补偿器的输入侧以形成具有一阶特性环路增益的主反馈环路。 抽取滤波器的输出信号被反馈到相位补偿器的输出侧,以形成从相位补偿器的输出侧观察到直到目标频带频率为止的环路增益的次级反馈环路。