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    • 1. 发明申请
    • CENTRALIZED MONITORING APPARATUS
    • 集中监控装置
    • US20100206540A1
    • 2010-08-19
    • US12709068
    • 2010-02-19
    • Yasuaki SonodaMasanaga TanakaIkue NonoShigeyuki Nakamura
    • Yasuaki SonodaMasanaga TanakaIkue NonoShigeyuki Nakamura
    • G05D23/19F25B49/00
    • F25D29/00F25B27/00F25B2700/21175F25D2400/361F25D2600/02F25D2700/12F25D2700/14G01K2207/04
    • A centralized-monitoring apparatus, which centralized monitors a device including a storage, a temperature sensor to detect a temperature therein, and a temperature-variable device to cool or heat inside the storage such that the temperature reaches a set object-preservation temperature, comprises: an input device to be input with first information indicative of a time zone in which the temperature-variable device performing power-saving operation and second information indicative of a set temperature of the time zone; a storage device to store the first-and-second information from the input device; a timing device to measure a current time; and a control device to control the temperature-variable device, based on the first-and-second information and current time, so as to start operation of turning the temperature to the set temperature when the current time reaches a starting time of the time zone, and terminate the operation when the current time reaches an ending time thereof.
    • 一种中央监控装置,其集中监视包括存储器的装置,用于检测其中的温度的温度传感器,以及用于在存储器内冷却或加热的温度可变装置,使得温度达到设定的对象保存温度,包括 :要输入的第一信息的输入装置,所述第一信息指示所述温度可变设备执行节电操作的时间段和指示所述时区的设定温度的第二信息; 存储装置,用于存储来自输入装置的第一和第二信息; 用于测量当前时间的计时装置; 以及控制装置,基于第一和第二信息和当前时间来控制温度可变装置,以便当当前时间到达时区的开始时间时,开始将温度转到设定温度的操作 并且当当前时间到达其结束时间时终止该操作。
    • 2. 发明授权
    • Centralized monitoring apparatus
    • 集中监控装置
    • US08768531B2
    • 2014-07-01
    • US12709068
    • 2010-02-19
    • Yasuaki SonodaMasanaga TanakaIkue NonoShigeyuki Nakamura
    • Yasuaki SonodaMasanaga TanakaIkue NonoShigeyuki Nakamura
    • F24F11/04F25B29/00F25D23/12F28F13/00F28F27/00G01K3/00G05D23/00G05D23/19
    • F25D29/00F25B27/00F25B2700/21175F25D2400/361F25D2600/02F25D2700/12F25D2700/14G01K2207/04
    • A centralized-monitoring apparatus, which centralized monitors a device including a storage, a temperature sensor to detect a temperature therein, and a temperature-variable device to cool or heat inside the storage such that the temperature reaches a set object-preservation temperature, comprises: an input device to be input with first information indicative of a time zone in which the temperature-variable device performing power-saving operation and second information indicative of a set temperature of the time zone; a storage device to store the first-and-second information from the input device; a timing device to measure a current time; and a control device to control the temperature-variable device, based on the first-and-second information and current time, so as to start operation of turning the temperature to the set temperature when the current time reaches a starting time of the time zone, and terminate the operation when the current time reaches an ending time thereof.
    • 一种中央监控装置,其集中监视包括存储器的装置,用于检测其中的温度的温度传感器,以及用于在存储器内冷却或加热的温度可变装置,使得温度达到设定的对象保存温度,包括 :要输入的第一信息的输入装置,所述第一信息指示所述温度可变设备执行节电操作的时间段和指示所述时区的设定温度的第二信息; 存储装置,用于存储来自输入装置的第一和第二信息; 用于测量当前时间的计时装置; 以及控制装置,基于第一和第二信息和当前时间来控制温度可变装置,以便当当前时间到达时区的开始时间时,开始将温度转到设定温度的操作 并且当当前时间到达其结束时间时终止该操作。
    • 10. 发明授权
    • Device for optically measuring distance
    • 用于光学测量距离的设备
    • US5694204A
    • 1997-12-02
    • US536354
    • 1995-09-29
    • Shigeki NakaseShigeyuki NakamuraHiromi Shimano
    • Shigeki NakaseShigeyuki NakamuraHiromi Shimano
    • G01B11/00G01C3/06G01S17/36G01C3/08
    • G01S17/36
    • In a device 100 for measuring distance, a signal generating circuit 20 generates a driving signal. The driving signal is serially modulated in phase into at least three states. The signal generating circuit 20 further generates reference signals having frequencies the same as the driving signal. A light source 30 is driven by the driving signal to emit detection light which is time-divisionally modulated in phase in accordance with the driving signal. An optical detector 40 receives the detection light which has been emitted from the light source 30 and scattered and reflected by the target. The optical detector 40 generates a detection signal which is time-divisionally modulated in phase in accordance with the received detection light. Homodyne processing circuits 50 and 60 superimpose the detection signal and the reference signals to generate homodyne signals (interference signals). Temporal mean values of intensities of the homodyne signals are obtained. A gain controlling circuit 80 feed-back controls the gains in the circuits 50 and 60. A phase detecting circuit 70 measures the temporal mean values of intensities of the homodyne signals, and calculates a difference between a phase of the detection light emitted from the light source and a phase of the detection light received at the optical detector.
    • 在用于测量距离的装置100中,信号发生电路20产生驱动信号。 驱动信号被相序串行调制成至少三个状态。 信号发生电路20还产生具有与驱动信号相同频率的参考信号。 光源30由驱动信号驱动,发射根据驱动信号相分时调制的检测光。 光检测器40接收从光源30发射并被目标散射和反射的检测光。 光检测器40根据接收的检测光产生相位时分调制的检测信号。 零差处理电路50和60叠加检测信号和参考信号以产生零差信号(干扰信号)。 获得零差信号强度的时间平均值。 增益控制电路80反馈控制电路50和60中的增益。相位检测电路70测量零差信号的强度的时间平均值,并且计算从光发射的检测光的相位之间的差 在光检测器处接收的检测光的源和相位。