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    • 1. 发明授权
    • Operating machine
    • 操作机
    • US09030165B2
    • 2015-05-12
    • US13614058
    • 2012-09-13
    • Hiroaki KawaiKoichi ShimomuraHideaki IshiharaShintaro Sasai
    • Hiroaki KawaiKoichi ShimomuraHideaki IshiharaShintaro Sasai
    • H02J7/00H02J7/14H02J7/04B60L11/18B60R16/033
    • H02J7/041B60L11/1818B60R16/033H02J7/044H02J7/045H02J7/1446Y02T10/92
    • An operating machine includes: a charging time estimation unit that estimates a first estimated charging time required to restore a capacity of a first battery from a first estimated residual capacity to a target capacity value of the first battery and a second estimated charging time required to restore a capacity of a second battery from a second estimated residual capacity to a target capacity value of the second battery; a capacity management implementation unit that implements capacity management on the first battery and the second battery such that the first battery is charged for the first estimated charging time and the second battery is charged for the second estimated charging time; and a discharge amount limitation unit for limiting a discharge amount of the second battery during an idling stop so that a residual capacity of the second battery after discharge is maintained at or above a set value.
    • 操作机包括:充电时间估计单元,其估计将第一电池的容量从第一估计剩余容量恢复到第一电池的目标容量值所需的第一估计充电时间,以及恢复所需的第二估计充电时间 从第二估计剩余容量到第二电池的目标容量值的第二电池的容量; 容量管理执行单元,其对所述第一电池和所述第二电池进行容量管理,使得所述第一电池对于所述第一估计充电时间进行充电,并且所述第二电池对所述第二估计充电时间进行充电; 以及排出量限制单元,用于在怠速停止期间限制第二电池的排出量,使得排出后的第二电池的剩余容量保持在设定值以上。
    • 2. 发明申请
    • OPERATING MACHINE
    • 操作机
    • US20130082517A1
    • 2013-04-04
    • US13614058
    • 2012-09-13
    • Hiroaki KAWAIKoichi ShimomuraHideaki IshiharaShintaro Sasai
    • Hiroaki KAWAIKoichi ShimomuraHideaki IshiharaShintaro Sasai
    • H02J1/00
    • H02J7/041B60L11/1818B60R16/033H02J7/044H02J7/045H02J7/1446Y02T10/92
    • An operating machine includes: a charging time estimation unit that estimates a first estimated charging time required to restore a capacity of a first battery from a first estimated residual capacity to a target capacity value of the first battery and a second estimated charging time required to restore a capacity of a second battery from a second estimated residual capacity to a target capacity value of the second battery; a capacity management implementation unit that implements capacity management on the first battery and the second battery such that the first battery is charged for the first estimated charging time and the second battery is charged for the second estimated charging time; and a discharge amount limitation unit for limiting a discharge amount of the second battery during an idling stop so that a residual capacity of the second battery after discharge is maintained at or above a set value.
    • 操作机包括:充电时间估计单元,其估计将第一电池的容量从第一估计剩余容量恢复到第一电池的目标容量值所需的第一估计充电时间,以及恢复所需的第二估计充电时间 从第二估计剩余容量到第二电池的目标容量值的第二电池的容量; 容量管理执行单元,其对所述第一电池和所述第二电池进行容量管理,使得所述第一电池对于所述第一估计充电时间进行充电,并且所述第二电池对所述第二估计充电时间进行充电; 以及排出量限制单元,用于在怠速停止期间限制第二电池的排出量,使得排出后的第二电池的剩余容量保持在设定值以上。
    • 3. 发明申请
    • CRANE
    • 起重机
    • US20120152878A1
    • 2012-06-21
    • US13325388
    • 2011-12-14
    • Hideaki IshiharaShintaro Sasai
    • Hideaki IshiharaShintaro Sasai
    • B66C13/50B66C23/88B66C13/16
    • B66C23/365B66C23/82B66C23/88
    • A crane includes a limiting device to limit a raising/lowering angle of the mast during suspending work to be equal to or less than an upper limit angle which is less than a value of the raising/lowering angle when the mast extends vertically; a release device into which a release instruction for causing the limiting device to release the limitation on the raising/lowering angle of the mast is input; and a first detection section adapted to detect that the mast support device is at an overhanging position where the mast support device pushes up and sets the mast in the work posture. The limiting device is operable whenever the first detection section does not detect that the mast support device is at the overhanging position, even if the release instruction is input into the release device, to prohibit the mast from being tilted rearward beyond the upper limit angle.
    • 起重机包括限制装置,用于限制在悬挂作业期间桅杆的升降角度等于或小于当桅杆垂直延伸时小于上升/下降角度值的上限角度; 输入用于使限制装置释放对桅杆的升降角度的限制的释放指令的释放装置; 以及第一检测部,其适于检测所述桅杆支撑装置处于所述桅杆支撑装置向上推动并将所述桅杆设置在所述作业姿势的悬垂位置。 即使第一检测部分没有检测到桅杆支撑装置处于悬垂位置,即使释放指令被输入到释放装置中,限制装置也可以操作,以防止桅杆向后倾斜超过上限角度。
    • 4. 发明授权
    • Crane
    • 起重机
    • US08936167B2
    • 2015-01-20
    • US13325388
    • 2011-12-14
    • Hideaki IshiharaShintaro Sasai
    • Hideaki IshiharaShintaro Sasai
    • B66C23/26B66C23/82B66C23/88B66C23/36
    • B66C23/365B66C23/82B66C23/88
    • A crane includes a limiting device to limit a raising/lowering angle of the mast during suspending work to be equal to or less than an upper limit angle which is less than a value of the raising/lowering angle when the mast extends vertically; a release device into which a release instruction for causing the limiting device to release the limitation on the raising/lowering angle of the mast is input; and a first detection section adapted to detect that the mast support device is at an overhanging position where the mast support device pushes up and sets the mast in the work posture. The limiting device is operable whenever the first detection section does not detect that the mast support device is at the overhanging position, even if the release instruction is input into the release device, to prohibit the mast from being tilted rearward beyond the upper limit angle.
    • 起重机包括限制装置,用于限制在悬挂作业期间桅杆的升降角度等于或小于当桅杆垂直延伸时小于上升/下降角度值的上限角度; 输入用于使限制装置释放对桅杆的升降角度的限制的释放指令的释放装置; 以及第一检测部,其适于检测所述桅杆支撑装置处于所述桅杆支撑装置向上推动并将所述桅杆设置在所述作业姿势的悬垂位置。 即使第一检测部分没有检测到桅杆支撑装置处于悬垂位置,即使释放指令被输入到释放装置中,限制装置也可以操作,以防止桅杆向后倾斜超过上限角度。
    • 8. 发明申请
    • Microcomputer and encoding system for instruction code and CPU
    • 微机和编码系统的指令代码和CPU
    • US20100017585A1
    • 2010-01-21
    • US12585781
    • 2009-09-24
    • Naoki ItoMasahiro KamiyaHideaki Ishihara
    • Naoki ItoMasahiro KamiyaHideaki Ishihara
    • G06F9/46G06F9/30
    • G06F9/3851G06F9/30003G06F9/30018G06F9/30021G06F9/30032G06F9/30072G06F9/30094G06F9/30145G06F9/30167G06F9/30185G06F9/3552G06F11/0721G06F11/0751
    • A microcomputer that can process plural tasks time-divisionally and in parallel, wherein one of a plural programs described by one of the tasks is described as a looped specific task in which the increment of program addresses is fixed, a program counter is usable as a timer counter, a peripheral function instruction is described in the specific task, the peripheral function instruction is set so as to indicate one or more general-purpose registers as an operand. The CPU executes the peripheral function instruction as one instruction and achieves information needed to execute the instruction by a general-purpose register and stores the execution result into the general-purpose registers. An instruction code encoding system includes an operation code and plural operands for indicating operation targets of an instruction in an instruction code and executing an instruction indicated by the operation code on the operation targets. When the operation targets indicated by the plural operands are set to a combination in which an execution result does not vary, the processing corresponding to an instruction different is executed.
    • 一种可以分时和并行地处理多个任务的微计算机,其中由任务之一描述的多个程序中的一个被描述为循环的特定任务,其中程序地址的增量是固定的,程序计数器可用作 定时器计数器,在特定任务中描述外设功能指令,外设功能指令被设置为指示一个或多个通用寄存器作为操作数。 CPU作为一个指令执行外围功能指令,并实现由通用寄存器执行指令所需的信息,并将执行结果存储到通用寄存器中。 指令代码编码系统包括操作代码和用于指示指令代码中的指令的操作目标的多个操作数,并且执行由操作对象上的操作代码指示的指令。 当由多个操作数指示的操作目标被设置为执行结果不变化的组合时,执行与不同指令相对应的处理。
    • 9. 发明申请
    • Periodic signal processing apparatus
    • 周期信号处理装置
    • US20090204841A1
    • 2009-08-13
    • US12320800
    • 2009-02-05
    • Akimasa NiwaMasahiro KamiyaHideaki IshiharaYoshinori Teshima
    • Akimasa NiwaMasahiro KamiyaHideaki IshiharaYoshinori Teshima
    • G06F13/42
    • G01D3/022
    • A signal processing apparatus for processing a periodic signal outputted from a signal source has a central processing unit and a task switch timer. The central processing unit performs multiple tasks including a signal processing task in parallel. In the signal processing task, the central processing unit starts to process the periodic signal after performing a synchronization processing to synchronize with the periodic signal, setting the task switch timer to a predetermined time upon completion of the synchronization processing, and enabling an interrupt to the central processing unit upon completion of the synchronization processing. The task switch timer disables the interrupt to the central processing unit immediately before expiring. The task switch timer outputs a task switch signal to the central processing unit when expiring, so that the central processing unit switches to the signal processing task.
    • 用于处理从信号源输出的周期信号的信号处理装置具有中央处理单元和任务切换定时器。 中央处理单元并行执行包括信号处理任务的多个任务。 在信号处理任务中,中央处理单元在执行同步处理之后开始对周期信号进行处理以与周期信号同步,在完成同步处理之后将任务切换定时器设定到预定时间, 完成同步处理后的中央处理单元。 任务切换定时器在到期前立即停止中央处理单元的中断。 任务切换定时器在到期时向中央处理单元输出任务切换信号,使得中央处理单元切换到信号处理任务。
    • 10. 发明申请
    • Data reception apparatus and microcomputer having the same
    • 数据接收装置和具有该数据接收装置的微型计算机
    • US20090096504A1
    • 2009-04-16
    • US12285581
    • 2008-10-09
    • Kazushi MatsuoToshihiko MatsuokaHideaki Ishihara
    • Kazushi MatsuoToshihiko MatsuokaHideaki Ishihara
    • H03K3/011
    • H03L1/025H03L1/026H03L7/06
    • A data reception apparatus includes: an oscillation circuit that multiplies or divides an oscillation signal from a CR oscillator based on a cycle setting value, and outputs a clock signal corresponding to the multiplied or divided oscillation signal; a temperature detector; a memory; a clock cycle setting element that reads the cycle setting value corresponding to the temperature from the memory, and inputs the cycle setting value into the oscillation circuit; a receiver that receives a data signal defined by the clock signal; a measurement element that measures a unit bit length of the data signal by counting the clock signal; and a correction element that corrects the cycle setting value based on a count value of the clock signal and a reference count value of a reference cycle corresponding to the unit bit length, and rewrites the cycle setting value with the corrected cycle setting value.
    • 数据接收装置包括:振荡电路,其根据周期设定值对来自CR振荡器的振荡信号进行倍数或分频,并输出与所乘的或分频的振荡信号对应的时钟信号; 温度检测器; 记忆 时钟周期设定元件,其从存储器读取与温度对应的周期设定值,并将该周期设定值输入到振荡电路中; 接收器,接收由时钟信号定义的数据信号; 测量元件,通过对时钟信号进行计数来测量数据信号的单位比特长度; 以及校正元件,其基于时钟信号的计数值和与单位比特长度对应的基准周期的基准计数值来校正周期设定值,并且以修正的周期设定值重写周期设定值。