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    • 4. 发明授权
    • Position sensor
    • 位置传感器
    • US08421447B2
    • 2013-04-16
    • US12654358
    • 2009-12-17
    • Tetsuji Inoue
    • Tetsuji Inoue
    • G01B7/14
    • G01B7/30G01B7/003G01D5/2066
    • An electromagnetic induction type rotary encoder includes an excitation board including an excitation coil, a detection board fixed to a movable element to face the excitation board and including a detection coil placed to face the excitation coil with a clearance therefrom, and a controller for outputting an excitation signal to the excitation coil and processing a detection signal output from the detection coil. The controller includes an excitation circuit for exciting the excitation coil at high frequency and a high-frequency generating circuit, a demodulation circuit for demodulating a signal from the detection coil in accordance with excitation to the excitation coil, a waveform shaping circuit for waveform shaping a signal from the demodulation circuit, and a pulse generating circuit for outputting a pulse signal based on the signal from the waveform shaping circuit. Each of the excitation coil and the detection coil is formed in a meandering coil pattern.
    • 一种电磁感应式旋转编码器包括:励磁基板,包括励磁线圈,固定到可动元件以面对激励板的检测板,并且包括设置成与其间隔开的励磁线圈放置的检测线圈;以及控制器, 激励信号到激励线圈并处理从检测线圈输出的检测信号。 控制器包括用于激励高频激励线圈的激励电路和高频发生电路,用于根据激励对激励线圈解调来自检测线圈的信号的解调电路,用于波形整形的波形整形电路 来自解调电路的信号;以及脉冲发生电路,用于根据来自波形整形电路的信号输出脉冲信号。 励磁线圈和检测线圈中的每一个以曲折线圈图案形成。
    • 5. 发明申请
    • FUEL SUPPLY DEVICE
    • 燃油供应装置
    • US20090183715A1
    • 2009-07-23
    • US11814693
    • 2006-01-23
    • Shuji YamamotoTetsuji Inoue
    • Shuji YamamotoTetsuji Inoue
    • F02M37/04F01P1/06F28F7/00
    • F02M37/0082F02M37/103F02M37/106
    • The present invention provides a fuel supply device that can suppress the excessive heating of a fuel supplied from a fuel pump into an internal combustion engine even if a control module is cooled. The fuel supply device (1) comprises a set plate (10) attached to a mounting hole (34a) of a fuel tank (34), an electric fuel pump (30) attached to an inner surface of the set plate (10), a control module (14) attached to an outer surface of the set plate (10), the control module driving the fuel pump (30) using electric power supplied from the exterior, and a heat radiating member (32) for radiating heat generated in the control module. One end of the heat radiating member (32) is thermally connected to the control module (14), and the other end of the heat radiating member (32) protrudes downward from the inner surface of the set plate (10).
    • 本发明提供一种燃料供给装置,即使控制模块被冷却,也能够抑制从燃料泵供给到内燃机的燃料的过度加热。 燃料供给装置(1)包括安装在燃料箱(34)的安装孔(34a)上的固定板(10),安装在固定板(10)的内表面上的电动燃油泵(30) 控制模块(14),其安装在所述固定板(10)的外表面上,所述控制模块使用从外部供应的电力驱动所述燃料泵(30);以及散热构件(32),用于散热 控制模块。 散热构件(32)的一端与控制模块(14)热连接,散热构件(32)的另一端从固定板(10)的内表面向下突出。
    • 7. 发明授权
    • Fault diagnosis system in load driving arrangement and fuel pump control system
    • 负载驱动装置和燃油泵控制系统故障诊断系统
    • US08195355B2
    • 2012-06-05
    • US12223033
    • 2007-02-07
    • Tetsuji Inoue
    • Tetsuji Inoue
    • G01M17/00G01R31/14
    • F02D41/22F02D2041/224Y02T10/40
    • In a fault diagnosis system (10) in a load driving arrangement, the fault diagnosis system detecting a fault in the load driving arrangement in which a controller (13) outputs a control signal to a driver (12) and the driver (12) drives a load (11) according to the control signal, a fault detecting unit (21) and an exclusive OR circuit (22) are provided to enable outputting, as a monitor signal, a signal opposite to the control signal upon detecting a fault in the load driving arrangement and outputting, as a monitor signal, the same signal as the control signal when not detecting a fault, a monitor signal output from the exclusive OR circuit (22) is input to the controller (13), and the controller (13) compares the control signal and the monitor signal and diagnoses whether a fault occurs in the load driving arrangement, based on the result of the comparison.
    • 在负载驱动装置的故障诊断系统(10)中,故障诊断系统检测负载驱动装置中的故障,其中控制器(13)向驾驶员(12)输出控制信号,并且驱动器(12)驱动 提供根据控制信号的负载(11),故障检测单元(21)和异或电路(22),以便在检测到所述控制信号中的故障时,将与所述控制信号相反的信号作为监视信号输出 负载驱动装置,作为监视信号输出与未检测到故障时的控制信号相同的信号,从异或电路(22)输出的监视信号输入到控制器(13),控制器(13) )比较控制信号和监视信号,并基于比较的结果来诊断负载驱动装置中是否发生故障。