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    • 2. 发明授权
    • Vacuum pump control device and vacuum device
    • 真空泵控制装置和真空装置
    • US07731484B2
    • 2010-06-08
    • US10508378
    • 2003-03-20
    • Hidemi YamamotoKohji Tsuji
    • Hidemi YamamotoKohji Tsuji
    • F04B49/02
    • F04B49/20F04B37/14F04B49/00F04B2203/0204F04B2205/01F04D19/04F04D27/02
    • The present invention has an object of controlling power consumption by a vacuum pump by varying the number of revolutions of the vacuum pump in accordance with the operating state of a vacuum device.The condition setting part 4 sets the relationship between the operating state of the vacuum device 10 and the rotational speed of the vacuum pump 2 that evacuates the vacuum device 10. This relationship is set to an appropriate value so as to prevent the rotational speed of the vacuum pump 2 from becoming a higher rotational speed than is required. The control part 6, to which external signals S1 through Sn corresponding to the operating state of the vacuum device 10 are input, reads out from the condition setting part 4 and outputs the rotational speed of the vacuum pump 2 corresponding to the external signals. The inverter 8 controls the rotational speed of the vacuum pump based on the output of the control part 6.
    • 本发明的目的是通过根据真空装置的操作状态改变真空泵的转数来控制真空泵的功率消耗。 条件设定部4设定真空装置10的动作状态与抽真空装置10的真空泵2的旋转速度的关系。将该关系设定为适当的值,以防止真空装置10的旋转速度 真空泵2变得比所需的更高的转速。 输入对应于真空装置10的运转状态的外部信号S1〜Sn的控制部6从条件设定部4读出,输出与外部信号对应的真空泵2的转速。 逆变器8基于控制部6的输出来控制真空泵的转速。
    • 3. 发明授权
    • Stack control system and method for data processor
    • 数据处理器的堆栈控制系统和方法
    • US4268903A
    • 1981-05-19
    • US964089
    • 1978-11-27
    • Yusaku MikiHidemi YamamotoYuichi KimihiraAkio Tanaka
    • Yusaku MikiHidemi YamamotoYuichi KimihiraAkio Tanaka
    • G06F9/34G06F7/78G06F9/42G06F13/06
    • G06F7/785G06F9/4426
    • A data processor having a stack area with a desirable variable size formed on a desirable area of a main memory unit in accordance with a direction by a user program, is provided with a stack control register group for controlling the stack area. A stack upper address register in the stack control register group holds the upper address specified on the stack area. The stack lower address register holds the lower limit address specified. A control stack pointer register holds the start address of a control stack area formed on the stack area for storing the number of a register specified by a user program and the contents thereof. A data stack pointer register holds the start address of the data stack area which is formed on said stack area and used by the user program.
    • 具有根据用户程序的方向形成在主存储单元的期望区域上具有期望可变大小的堆栈区域的数据处理器具有用于控制堆栈区域的堆栈控制寄存器组。 堆栈控制寄存器组中的堆栈上地址寄存器保存堆栈区域中指定的高位地址。 堆栈下地址寄存器保存指定的下限地址。 控制堆栈指针寄存器保存形成在堆栈区域上的控制堆栈区域的起始地址,用于存储由用户程序指定的寄存器的数量及其内容。 数据堆栈指针寄存器保存形成在所述堆栈区域上并由用户程序使用的数据堆栈区域的起始地址。
    • 4. 发明申请
    • Vacuum pump control device and vacuum device
    • 真空泵控制装置和真空装置
    • US20050163622A1
    • 2005-07-28
    • US10508378
    • 2003-03-20
    • Hidemi YamamotoKohji Tsuji
    • Hidemi YamamotoKohji Tsuji
    • F04D19/04F04B37/14F04B37/16F04B49/00F04B49/06F04B49/10F04B49/20F04D27/00
    • F04B49/20F04B37/14F04B49/00F04B2203/0204F04B2205/01F04D19/04F04D27/02
    • The present invention has an object of controlling power consumption by a vacuum pump by varying the number of revolutions of the vacuum pump in accordance with the operating state of a vacuum device. The condition setting part 4 sets the relationship between the operating state of the vacuum device 10 and the rotational speed of the vacuum pump 2 that evacuates the vacuum device 10. This relationship is set to an appropriate value so as to prevent the rotational speed of the vacuum pump 2 from becoming a higher rotational speed than is required. The control part 6, to which external signals S1 through Sn corresponding to the operating state of the vacuum device 10 are input, reads out from the condition setting part 4 and outputs the rotational speed of the vacuum pump 2 corresponding to the external signals. The inverter 8 controls the rotational speed of the vacuum pump based on the output of the control part 6.
    • 本发明的目的是通过根据真空装置的操作状态改变真空泵的转数来控制真空泵的功率消耗。 条件设定部4设定真空装置10的动作状态与抽真空装置10的真空泵2的旋转速度的关系。将该关系设定为适当的值,以防止真空装置10的旋转速度 真空泵2变得比所需的更高的转速。 输入对应于真空装置10的运转状态的外部信号S1〜Sn的控制部6从条件设定部4读出,输出与外部信号对应的真空泵2的转速。 逆变器8基于控制部6的输出来控制真空泵的转速。
    • 5. 发明授权
    • Address generating system
    • 地址生成系统
    • US4240139A
    • 1980-12-16
    • US942452
    • 1978-09-14
    • Yasuo FukudaMichio AraiHidemi Yamamoto
    • Yasuo FukudaMichio AraiHidemi Yamamoto
    • G06F9/32G06F9/355G06F12/02G11C8/00
    • G06F9/342G06F12/0292G06F9/322G06F9/324G06F9/3557
    • A data processor includes a base register for a base address modification and a program counter for a relative address modification. An instruction executed in the data processor includes an operation code, a first operand, an address modification judgement bit, an index address modification field, a base address modification field and a displacement. When the instruction is fetched, it is arranged in an address modification and a base modification according to the address modification judgement bit. In the case of the relative address modification, the contents of the program counter is added to the contents of the displacement. In the case of the base address modification, the contents of the base register specified by the base address modification field is added to the contents of the displacement. In the relative address modification and the base address modification, the contents of the general register specified by the index address modification is added to the results of the addition, thereby to form an effective address.
    • 数据处理器包括用于基地址修改的基址寄存器和用于相对地址修改的程序计数器。 在数据处理器中执行的指令包括操作码,第一操作数,地址修改判断位,索引地址修改字段,基地址修改字段和位移。 当取指令时,根据地址修改判断位将其布置在地址修改和基址修改中。 在相对地址修改的情况下,程序计数器的内容被添加到位移的内容。 在基地址修改的情况下,由基址修改字段指定的基址寄存器的内容被添加到位移的内容。 在相对地址修改和基址修改中,通过索引地址修改指定的通用寄存器的内容被添加到添加的结果中,从而形成有效的地址。