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    • 1. 发明授权
    • Device for measuring variable with automatic compensation for offset
    • 用于测量变量的装置,具有自动补偿补偿
    • US4672566A
    • 1987-06-09
    • US442291
    • 1982-11-17
    • Masaharu AsanoYoshihisa KawamuraKoyo Nakamura
    • Masaharu AsanoYoshihisa KawamuraKoyo Nakamura
    • G01D3/02G01K3/08G01K19/00
    • G01D3/022G01K3/08
    • A measurement device for measuring a physical property such as temperature difference, displacement, pressure, fluid flow rate, etc. comprises: (a) an amplifying means which receives and amplifies a voltage signal corresponding to a detected physical property; (b) a reference voltage generator which generates and applies a reference voltage to the amplifying means at a predetermined time; (c) a memory which stores the output voltage signal from the amplifying means when the reference voltage generator applies the reference voltage to the amplifying means; and (d) a calculating means which outputs at least one command signal to the reference voltage generator to apply the reference voltage to the amplifying means and to the memory to store the output voltage of the amplifying means into a specified memory location thereof at the predetermined time and calculates the value of the desired physical property from the current output voltage of the amplifying means with reference to the stored voltage value in the memory, whereby an accurate physical property measurement can be made by compensating for individual differences and deterioration of the characteristics of the measurement device.
    • 用于测量诸如温度差,位移,压力,流体流速等的物理性质的测量装置包括:(a)放大装置,其接收和放大对应于检测到的物理性质的电压信号; (b)参考电压发生器,其在预定时间产生并施加参考电压到所述放大装置; (c)当基准电压发生器将参考电压施加到放大装置时存储来自放大装置的输出电压信号的存储器; 以及(d)计算装置,其将至少一个命令信号输出到参考电压发生器以将参考电压施加到放大装置和存储器,以将放大装置的输出电压存储在预定的存储位置中 时间,并根据存储器中存储的电压值从放大装置的当前输出电压计算所需物理量的值,从而可以通过补偿个体差异和特性劣化来进行精确的物理性质测量 测量装置。
    • 4. 发明授权
    • Control system for promoting catalytic removal of noxious components
from exhaust gas of internal combustion engine
    • 用于促进从内燃机废气中除去有害成分的控制系统
    • US4056932A
    • 1977-11-08
    • US627334
    • 1975-10-30
    • Koyo NakamuraHiroshi Sanbuichi
    • Koyo NakamuraHiroshi Sanbuichi
    • F02B1/04F02D35/00F02M3/09F02M7/24F02D33/00
    • F02D35/0061F02M3/09F02M7/24F02B1/04
    • With respect to an internal combustion engine equipped with a carburetor and a catalytic converter which requires to feed the engine with a stoichiometric air/fuel mixture, the control system is for regulating the air/fuel ratio produced in the carburetor and comprises an auxiliary air admitting passage connected to the fuel discharge passage of the carburetor in addition to a usual air bleed passage for the fuel discharge passage, an electromagnetic valve for controlling the admission of air into the auxiliary passage, an oxygen sensor disposed in the exhaust system upstream of the catalytic converter, and a control circuit for producing continual pulses at a frequency between 5 and 100 Hz. The widths of the individual pulses are increased gradually while the output of the oxygen sensor indicates the air/fuel ratio being below the stoichiometric ratio, and vice versa. The valve is opened as each pulse is applied thereto so that the air feed rate to the fuel in the fuel passage is momentarily augmented by admission of air into the auxiliary passage.
    • 对于配备有化油器和催化转化器的内燃机,其需要将化学计量的空气/燃料混合物供给发动机,所述控制系统用于调节在化油器中产生的空气/燃料比,并且包括辅助空气进入 除了用于燃料排出通道的通常的排气通道之外,还连接到化油器的燃料排放通道的通道,用于控制空气进入辅助通道的电磁阀,设置在催化剂上游的排气系统中的氧传感器 转换器和用于产生频率在5和100Hz之间的连续脉冲的控制电路。 单个脉冲的宽度逐渐增加,而氧传感器的输出表示空气/燃料比低于化学计量比,反之亦然。 当每个脉冲施加到阀上时,阀被打开,使得通过进入辅助通道中的空气来使燃料通道中的燃料的空气供给速率瞬间增加。
    • 5. 发明授权
    • System for controlling no load operation of internal combustion engine
    • 控制内燃机空载运行的系统
    • US4398514A
    • 1983-08-16
    • US231343
    • 1981-02-04
    • Koyo Nakamura
    • Koyo Nakamura
    • F02D41/16F02D31/00F02D41/00F02D41/14F02D33/00
    • F02D41/148F02D31/004F02D41/0005Y02T10/42
    • A system for controlling no load operation of an internal combustion engine is provided wherein an actual engine speed signal and a target engine speed signal are compared and the air flow past a throttle valve is controlled to reduce the difference between these two signals. Subsequently, an actual air fuel ratio and a target air fuel ratio are compared and the air fuel ratio of the mixture to the engine is controlled to reduce the difference between the actual and target air fuel ratio signals. During deceleration of the engine, air flow is controlled to maintain the manifold vacuum smaller than a predetermined value so as to prevent unnecessary enrichment of the mixture due to the vacuum and then air fuel ratio is controlled to reduce the difference between the actual air fuel ratio signal and a target deceleration air fuel ratio signal.
    • 提供了一种用于控制内燃机的空载操作的系统,其中比较实际的发动机转速信号和目标发动机转速信号,并且控制通过节流阀的气流以减小这两个信号之间的差。 随后,比较实际空燃比和目标空燃比,并且控制混合物与发动机的空燃比以减小实际和目标空燃比信号之间的差。 在发动机减速期间,控制气流以使歧管真空度小于预定值,以防止由真空引起的混合物的不必要的浓缩,然后控制空燃比以减小实际空燃比 信号和目标减速空燃比信号。
    • 7. 发明授权
    • Throttle valve operating mechanism
    • 节流阀操作机构
    • US4089307A
    • 1978-05-16
    • US655450
    • 1976-02-05
    • Koyo Nakamura
    • Koyo Nakamura
    • F02D9/02F02D11/08F02D35/00F02M7/24F02D33/00
    • F02D35/00F02D11/08Y02T10/22Y10S261/19
    • An internal combustion engine having at the intake system an electronically controlled carburetor with a throttle valve and in the exhaust system a three-way catalytic converter, the carburetor being operated in response to the composition of exhaust gases entering the three-way catalytic converter. A dashpot mechanism is connected to the throttle valve of the carburetor to damp the returning movement of the throttle valve. Furthermore, a throttle valve opening mechanism is provided to the carburetor to open slightly the throttle valve when a certain vacuum is created in the intake system downstream of the throttle valve.
    • 一种内燃机,其在进气系统处具有带节流阀的电子控制化油器,并且在排气系统中具有三元催化转化器,化油器响应于进入三元催化转化器的废气的组成而操作。 缓冲器机构连接到化油器的节流阀,以阻尼节流阀的返回运动。 此外,当在节流阀下游的进气系统中产生一定的真空时,节气门打开机构设置到化油器上以稍微打开节流阀。
    • 9. 发明授权
    • Intake air density sensor for an internal combustion engine
    • 内燃机进气密度传感器
    • US4320652A
    • 1982-03-23
    • US88553
    • 1979-10-26
    • Koyo Nakamura
    • Koyo Nakamura
    • F02D41/34G01F15/02G01N9/00G01N9/26G01N9/32
    • G01N9/26G01N9/00
    • An intake air density sensor for an internal combustion engine comprises a receptacle in the form of a flask including a spherical chamber and a tubular portion having a very fine diameter, a pressure responsive casing at least whose part is made of an elastomeric membrane and communicated with the receptacle, a gas and a conductive liquid hermetically sealed in the receptacle and pressure responsive casing, respectively, so as to locate a boundary surface between the gas and liquid in the tubular portion, and a resistor longitudinally arranged in the tubular portion so as to form short-circuiting means by the conductive liquid for the resistor, thereby detecting densities of a fluid to be measured by converting variations in pressure of fluid into variations in volume of the pressure responsive casing or sealed gas and further converting variations in position of the boundary surface of the conductive liquid into values of electrical resistances of the resistor without affecting the positional movement of the boundary surface to convert variations in density of the fluid into electrical signals with high detecting sensitivities and high accuracies.
    • 用于内燃机的入口空气密度传感器包括一个烧瓶形式的容器,该容器包括一个球形室和一个具有非常细的直径的管状部分,压力响应壳体至少其部分由弹性膜制成并与 容器,气体和导电液体,分别密封在容器和压力响应壳体中,以便定位管状部分中的气体和液体之间的边界面,以及纵向布置在管状部分中的电阻器,以便 通过用于电阻器的导电液体形成短路装置,从而通过将流体的压力变化转换成压力响应壳体或密封气体的体积变化来检测待测量的流体的密度,并进一步转换边界位置的变化 导电液体的表面变成电阻的电阻值而不影响p 边界面的运动,将流体的密度变化转换成具有高检测灵敏度和高精度的电信号。