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    • 1. 发明申请
    • LOAD DRIVING APPARATUS
    • 负载驱动装置
    • US20100060177A1
    • 2010-03-11
    • US12553361
    • 2009-09-03
    • Go TAKATAShinichiro KataokaYasunori YamamotoTsukasa KawaharaRyuji UedaDaisuke Itou
    • Go TAKATAShinichiro KataokaYasunori YamamotoTsukasa KawaharaRyuji UedaDaisuke Itou
    • H05B37/02G05F1/00
    • H05B33/0815H05B33/0824
    • The load driving apparatus according to the present invention includes a load current setting signal generating section, a load current generating section, a reference voltage generating section and a drive voltage generating section. The load current setting signal generating section generates a desired load current setting signal. The load current generating section generates a load current based on the load current setting signal to drive the load. The reference voltage generating section generates a reference voltage based on the load current setting signal. The drive voltage generating section generates a drive voltage, supplies the drive voltage to the load, generates a between-both-terminals voltage between both terminals of the load current generating section based on the drive voltage and controls the drive voltage so that the difference between the between-both-terminals voltage and the reference voltage becomes small.
    • 根据本发明的负载驱动装置包括负载电流设定信号生成部,负载电流产生部,基准电压生成部和驱动电压生成部。 负载电流设定信号生成部生成期望的负载电流设定信号。 负载电流产生部根据负载电流设定信号生成负载电流,驱动负载。 参考电压产生部分基于负载电流设置信号产生参考电压。 驱动电压产生部生成驱动电压,向驱动电压供给驱动电压,根据驱动电压在负载电流产生部的两端之间产生两端电压,并控制驱动电压, 两端电压和参考电压变小。
    • 5. 发明申请
    • MOTOR DRIVE DEVICE AND DRIVE METHOD
    • 电机驱动装置和驱动方法
    • US20070126384A1
    • 2007-06-07
    • US11548500
    • 2006-10-11
    • Go TAKATAHideaki MORIYasunori YAMAMOTO
    • Go TAKATAHideaki MORIYasunori YAMAMOTO
    • H02P7/00
    • H02P27/08
    • A rise in the power supply voltage as a result of a sudden speed reducing command causing the motor current to flow to the power supply is prevented. The motor drive device has a drive signal generating unit for generating a drive signal by an energizing control unit, PWM control unit, and oscillation unit; a drive unit for producing drive power to drive the motor based on the drive signal; a torque control signal generating unit for generating a torque control signal specifying the motor torque; a speed detection unit for detecting the rotational speed of the motor and generating a rotational speed signal denoting motor speed information; and a decision unit for generating a speed difference detection signal denoting the difference between the torque control signal and the rotational speed signal. The drive signal generating unit is controlled based on the speed difference detection signal.
    • 防止由于导致电动机电流流向电源的突然减速指令导致的电源电压的上升。 电机驱动装置具有用于通过激励控制部,PWM控制部和振荡部产生驱动信号的驱动信号生成部; 驱动单元,用于基于所述驱动信号产生用于驱动所述马达的驱动力; 转矩控制信号发生单元,用于产生指定电动机转矩的转矩控制信号; 速度检测单元,用于检测电动机的转速并产生表示电动机速度信息的转速信号; 以及判定单元,用于生成表示转矩控制信号和转速信号之间的差的速度差检测信号。 基于速度差检测信号来控制驱动信号生成部。
    • 6. 发明申请
    • MOTOR DRIVE DEVICE AND DRIVE METHOD
    • 电机驱动装置和驱动方法
    • US20070126383A1
    • 2007-06-07
    • US11548495
    • 2006-10-11
    • Go TAKATAHideaki MORIYasunori YAMAMOTO
    • Go TAKATAHideaki MORIYasunori YAMAMOTO
    • H02P3/14
    • H02P6/182
    • A reverse current detection unit detects the direction of the motor current during the synchronous rectifier period based on the polarity of the on voltage of a switching device contained in the motor current path, and outputs a reverse current detection signal representing the result of this detection to the PWM control unit. Change in the output of the PWM control unit that generates the drive signal for a particular switching device in the drive unit is controlled based on the reverse current detection signal and the energizing pattern of the drive unit is changed when motor current is detected in the synchronous rectifier period to be flowing in the opposite direction as in the urging period. The flow of motor current to the power supply is thus reduced and a rise in the power supply voltage can be prevented.
    • 反向电流检测单元根据电动机电流路径中包含的开关装置的导通电压的极性,在同步整流时段期间检测电动机电流的方向,并将表示该检测结果的反向电流检测信号输出到 PWM控制单元。 基于反向电流检测信号来控制产生用于驱动单元中的特定开关装置的驱动信号的PWM控制单元的输出的变化,并且当在同步中检测到电动机电流时,驱动单元的通电模式被改变 整流器周期在与施力期相反的方向上流动。 电动机电流流向电源因此减少,并且可以防止电源电压的上升。