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    • 1. 发明申请
    • MOTOR DRIVE APPARATUS EQUIPPED WITH DYNAMIC BRAKING CIRCUIT FAULT DETECTION CAPABILITY
    • 装有动态制动电路的电机驱动装置故障检测能力
    • US20090174349A1
    • 2009-07-09
    • US12324972
    • 2008-11-28
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraKenichi Takayama
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraKenichi Takayama
    • H02P6/24H02P3/12
    • H02P3/18G01R31/024
    • A motor drive apparatus 1 having a dynamic braking circuit 5 for producing a deceleration torque utilizing a braking force caused by a synchronous motor 4 acting as a generator when the synchronous motor 4 is deenergized, is equipped with a dynamic braking circuit fault detection capability, and comprises: a DC power supply 2 which is obtained by rectifying input AC power; voltage application means 2, 3, 10, 11 for applying a voltage to the windings of the synchronous motor 4 and to the dynamic braking circuit 5 for a predetermined length of time by switching power transistors A to F connected to the DC power supply 2; current detection means 6 for detecting the value of a current flowing from the power transistors A to F; and fault checking means 11 for checking the dynamic braking circuit 5 for the presence or absence of a fault, based on the current value detected by the current detection means 6 and on a predefined threshold value. With this configuration, detection of faults in the dynamic braking circuit is accomplished without requiring the addition of a contact signal or a control circuit.
    • 具有动力制动电路5的电动机驱动装置1配备动态制动电路故障检测能力,该动力制动电路5利用在同步电动机4断电时作为发电机的同步电动机4产生的制动力产生减速转矩, 包括:通过整流输入AC电力获得的直流电源2; 通过连接到直流电源2的功率晶体管A至F将电压施加到同步电动机4的绕组和动态制动电路5达预定时间长度的电压施加装置2,3,10,11; 用于检测从功率晶体管A到F的电流值的电流检测装置6; 以及用于根据由电流检测装置6检测到的电流值和预定义的阈值来检查动态制动电路5是否存在故障的故障检查装置11。 利用这种配置,可以在不需要添加接触信号或控制电路的情况下实现动态制动电路中的故障的检测。
    • 2. 发明授权
    • Controller for servomotor
    • 伺服电机控制器
    • US07531981B2
    • 2009-05-12
    • US11703797
    • 2007-02-08
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraKenichi Takayama
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraKenichi Takayama
    • G05B11/32
    • G05B19/404
    • A controller for a servomotor capable of improving accuracy of positioning and quality of a machined surface by switching modes of correction of a position command or the like, and reducing a shock at the time of switching. A correction amount generating section obtains a correction amount based on a value of a correction factor such as machine temperature. When the external signal is in ON state, a position command or the like is corrected by the correction amount obtained by the correction amount generating section and sent via switches. A correction amount holding section holds the correction amount obtained by the correction amount generating section. When the external signal turns to OFF state, the connection of the switches is changed so that correction is performed by the correction amount held in the correction amount holding section. When the connection of the switches is changed, the correction amount does not change rapidly, so that the machine does not suffer a shock. In positioning, the external signal is turns to ON state, so that the positioning is carried out accurately by performing correction by the correction amount sent from the correction amount generating section. When a high-quality machined surface is required, the external signal is turned to OFF state so that the correction amount does not change to achieve improvement in the quality of a machined surface.
    • 一种伺服电动机的控制器,其能够通过切换位置指令等的切换模式来提高加工面的定位精度和质量,并减少切换时的冲击。 校正量生成部根据机器温度等校正因子的值来求出校正量。 当外部信号处于接通状态时,通过由校正量产生部分获得的校正量来校正位置指令等并通过开关发送。 校正量保持部保持由校正量生成部获得的校正量。 当外部信号变为OFF状态时,改变开关的连接,从而通过校正量保持部中保持的校正量进行校正。 当开关的连接发生变化时,校正量不会迅速变化,因此机器不会受到冲击。 在定位中,外部信号变为接通状态,从而通过从校正量产生部分发送的校正量执行校正来精确地执行定位。 当需要高质量的加工表面时,外部信号变为断开状态,使得校正量不变,以实现加工表面的质量的提高。
    • 3. 发明授权
    • Motor drive apparatus equipped with dynamic braking circuit fault detection capability
    • 电机驱动装置配备动态制动电路故障检测功能
    • US08054015B2
    • 2011-11-08
    • US12324972
    • 2008-11-28
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraKenichi Takayama
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraKenichi Takayama
    • H02P3/18
    • H02P3/18G01R31/024
    • A motor drive includes a dynamic braking circuit for producing a deceleration torque utilizing a braking force caused by a synchronous motor acting as a generator when the synchronous motor is deenergized. The motor drive apparatus is equipped with a dynamic braking circuit fault detection capability, a DC power supply which is obtained by rectifying input AC power, voltage application function for applying a voltage to the windings of the synchronous motor and to the dynamic braking circuit for a predetermined length of time by switching power transistors connected to the DC power supply, current detection unit for detecting the value of a current flowing from the power transistors, and fault checking unit for checking the dynamic braking circuit for the presence or absence of a fault, based on the current value detected by the current detection unit and on a predefined threshold value.
    • 电动机驱动器包括动态制动电路,用于当同步电动机断电时,利用由作为发电机的同步电动机引起的制动力产生减速转矩。 电机驱动装置配备有动态制动电路故障检测能力,通过整流输入交流电源获得的直流电源,向同步电动机的绕组施加电压的电压施加功能和用于电动机的动态制动电路 通过切换连接到直流电源的功率晶体管的预定时间长度,用于检测从功率晶体管流出的电流的值的电流检测单元和用于检查动态制动电路的有无故障的故障检查单元, 基于由当前检测单元检测的当前值和预定义的阈值。
    • 4. 发明申请
    • Controller for servomotor
    • 伺服电机控制器
    • US20070188123A1
    • 2007-08-16
    • US11703797
    • 2007-02-08
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraKenichi Takayama
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraKenichi Takayama
    • G05B11/32
    • G05B19/404
    • A controller for a servomotor capable of improving accuracy of positioning and quality of a machined surface by switching modes of correction of a position command or the like, and reducing a shock at the time of switching. A correction amount generating section obtains a correction amount based on a value of a correction factor such as machine temperature. When the external signal is in ON state, a position command or the like is corrected by the correction amount obtained by the correction amount generating section and sent via switches. A correction amount holding section holds the correction amount obtained by the correction amount generating section. When the external signal turns to OFF state, the connection of the switches is changed so that correction is performed by the correction amount held in the correction amount holding section. When the connection of the switches is changed, the correction amount does not change rapidly, so that the machine does not suffer a shock. In positioning, the external signal is turns to ON state, so that the positioning is carried out accurately by performing correction by the correction amount sent from the correction amount generating section. When a high-quality machined surface is required, the external signal is turned to OFF state so that the correction amount does not change to achieve improvement in the quality of a machined surface.
    • 一种伺服电动机的控制器,其能够通过切换位置指令等的切换模式来提高加工面的定位精度和质量,并减少切换时的冲击。 校正量生成部根据机器温度等校正因子的值来求出校正量。 当外部信号处于接通状态时,通过由校正量产生部分获得的校正量来校正位置指令等并通过开关发送。 校正量保持部保持由校正量生成部获得的校正量。 当外部信号变为OFF状态时,改变开关的连接,从而通过校正量保持部中保持的校正量进行校正。 当开关的连接发生变化时,校正量不会迅速变化,因此机器不会受到冲击。 在定位中,外部信号变为接通状态,从而通过从校正量产生部分发送的校正量执行校正来精确地执行定位。 当需要高质量的加工表面时,外部信号变为断开状态,使得校正量不变,以实现加工表面的质量的提高。
    • 5. 发明授权
    • Die cushion controller
    • 模具缓冲控制器
    • US07845205B2
    • 2010-12-07
    • US11550330
    • 2006-10-17
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraSatoshi Ikai
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraSatoshi Ikai
    • B21J9/18B21J7/46
    • G05B19/19B21D24/02G05B2219/42087G05B2219/42123G05B2219/45143
    • A die cushion controller, for driving a die cushion, disposed in opposition to a slide of a press machine, by controlling a servo motor, including: a pressure command portion which prepares a pressure command value for exerting a predetermined pressure to a press material disposed between the slide and the die cushion; a pressure detecting portion which detects an actual pressure exerted on the press material; a speed correction value preparing portion which prepares a speed correction value by multiplying a differential value of the pressure command value prepared by the pressure command portion by a coefficient; and a first speed command portion which prepares a speed command value to be instructed to the servo motor based on the pressure command value prepared by the pressure command portion, the actual pressure detected by the pressure detecting portion, and the speed correction value prepared by the speed correction value preparing portion.
    • 一种模具缓冲控制器,用于通过控制伺服电动机来驱动与冲压机的滑动相对设置的模具缓冲垫,包括:压力指令部分,其为制备的压力材料制备用于施加预定压力的压力指令值 滑块和模座之间; 压力检测部,其检测施加在所述挤压材料上的实际压力; 速度校正值准备部,其通过将由所述压力指令部准备的所述压力指令值的差分值乘以系数来准备速度校正值; 以及第一速度指令部,其基于由压力指令部准备的压力指令值,由压力检测部检测出的实际压力和由该压力指令部分准备的速度修正值,准备要指示给伺服电动机的速度指令值 速度校正值准备部。
    • 8. 发明申请
    • METHOD FOR CHANGING FORCE CONTROL GAIN AND DIE CUSHION CONTROL APPARATUS
    • 改变力控制增益和DIE嵌套控制装置的方法
    • US20080066515A1
    • 2008-03-20
    • US11857620
    • 2007-09-19
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraSatoshi Ikai
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraSatoshi Ikai
    • B21D22/00
    • B21D24/02G05B19/237G05B2219/41251G05B2219/45143
    • A method for changing a force control gain expressed as a ratio of force error to velocity command value in a control circuit performing a force control of a servo motor driving a die cushion disposed opposite to a slide in a press machine. The method includes: obtaining a difference between a displacement of the slide and a displacement of the die cushion in a state in which the slide and the die cushion collide with and are exerting force on each other; detecting the force when the difference of the displacements is obtained; calculating a spring constant of a structural portion based on a proportionality between the difference of the displacements and the force, when regarding the structural portion including the slide and the die cushion as an elastic structure; and changing the force control gain based on the spring constant using a fixed proportionality that exists between the force control gain and a reciprocal of the spring constant.
    • 一种用于在执行对在压机中与滑块相对设置的模座的驱动伺服电动机的力控制的控制电路中,改变表示为力误差与速度指令值的比的力控制增益的方法。 该方法包括:在滑块和模座碰撞并且彼此施加力的状态下,获得滑块的位移和模具垫的位移之间的差异; 当获得位移的差异时检测力; 当关于包括滑动件和模具衬垫的结构部分作为弹性结构时,基于位移的差异和力之间的比例来计算结构部分的弹簧常数; 并且使用存在于力控制增益和弹簧常数的倒数之间的固定比例度,基于弹簧常数来改变力控制增益。
    • 9. 发明申请
    • Die cushion mechanism, and apparatus and method for controlling the same
    • 模具缓冲机构及其控制装置及方法
    • US20060090656A1
    • 2006-05-04
    • US11265078
    • 2005-11-03
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraSatoshi Ikai
    • Yasusuke IwashitaTadashi OkitaHiroyuki KawamuraSatoshi Ikai
    • B30B15/26
    • G05B19/19B21D24/02G05B2219/41139G05B2219/42087G05B2219/45131
    • A control apparatus for controlling a die cushion mechanism including a servo-motor as a drive source and producing a force adapted to be applied to a slide in a press machine. The control apparatus includes a force commanding section for commanding a force to be produced by the die cushion mechanism; a force detecting section for detecting the force produced by the die cushion mechanism; a motor-speed detecting section for detecting an operating speed of the servo-motor; a slide-speed detecting section for detecting a moving speed of the slide; and a force controlling section for executing a force control on the servo-motor, based on a force command value commanded by the force commanding section, a force detected value detected by the force detecting section, a motor-speed detected value detected by the motor-speed detecting section and a slide-speed detected value detected by the slide-speed detecting section.
    • 一种用于控制模具缓冲机构的控制装置,其包括作为驱动源的伺服电动机,并且产生适于施加到冲压机中的滑块的力。 控制装置包括用于指示由模具缓冲机构产生的力的力指令部分; 用于检测由模具缓冲机构产生的力的力检测部分; 电动机速度检测部,用于检测伺服电动机的运转速度; 用于检测滑块的移动速度的滑块速度检测部分; 以及力控制部,其基于由所述力指令部指定的力指令值,由所述力检测部检测到的力检测值,对所述伺服电动机进行力控制,由所述电动机检测出的电动机速度检测值 速度检测部和由滑动速度检测部检测到的滑动速度检测值。