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    • 2. 发明授权
    • Printing apparatus and print method
    • 印刷装置和印刷方法
    • US06659584B2
    • 2003-12-09
    • US09215186
    • 1998-12-18
    • Yasushi MiuraHiroyuki MiyakeHiroyuki KuriyamaMasashi ShimizuChikanobu IkedaShigeru Watanabe
    • Yasushi MiuraHiroyuki MiyakeHiroyuki KuriyamaMasashi ShimizuChikanobu IkedaShigeru Watanabe
    • B41J29393
    • B41J2/2142B41J29/393
    • A printing apparatus and a print control method which detect a defective printing element in operation failure status while reciprocate-scanning a printhead, and perform appropriate print control such as complementary printing on an unprinted portion by the defective printing element, without reducing the printing speed. An apparatus, to which the method is applied, has a photosensor 8, to detect ink discharge statuses of a plurality of nozzles of a printhead 5, which is provided between a home position of the printhead and the outside of an effective printing area where image printing is to be made. While the printhead 5 is scanned, test ink discharge is performed at the position of the photosensor 8, and the ink discharge statuses of the nozzles are detected by the photosensor 8. A corrector 123 analyzes the operation statuses of the nozzles of the printhead 5 based on the results of detection in a real time manner. A CPU 25 performs print control based on the results of analysis.
    • 一种打印装置和打印控制方法,其在往复扫描打印头的同时检测出操作故障状态中的有缺陷的打印元件,并且在不降低打印速度的情况下,在未打印部分上执行适当的打印控制,例如由打印不良的打印元件进行的互补打印。 应用该方法的装置具有光电传感器8,用于检测打印头5的多个喷嘴的喷墨状态,该喷墨状态设置在打印头的原始位置和图像的有效打印区域的外部之间 打印要做。 当打印头5被扫描时,在光电传感器8的位置执行测试墨水排出,并且由光电传感器8检测喷嘴的排墨状态。校正器123分析打印头5的喷嘴的操作状态 对实时检测结果。 CPU25根据分析结果进行打印控制。
    • 5. 发明授权
    • Metabolic energy monitoring system
    • 代谢能监测系统
    • US08852097B2
    • 2014-10-07
    • US11806241
    • 2007-05-30
    • Kazuyuki ShimadaHiroyuki KuriyamaHideyuki Ban
    • Kazuyuki ShimadaHiroyuki KuriyamaHideyuki Ban
    • A61B5/00A61B5/024G06F19/00A61B5/01
    • A61B5/02438A61B5/01A61B2562/0219G16H40/63
    • A metabolic energy monitoring system is provided which comprises: a wearable device having a movement sensor, a temperature sensor and a pulse wave sensor and adapted to be worn on a human body; a database to store activity state decision knowledge data including activity state decision condition data and calorie consumption calculation knowledge data including a calorie consumption calculating algorithm for each metabolic state; an activity state decision unit to determine the activity state based on a detection signal from the wearable device and activity state decision knowledge data; a metabolic state decision unit to detect an activity continuation state, and determine the metabolic state; a calorie consumption calculating unit to calculate a calorie consumption according to the metabolic state; and an output unit to output the calorie consumption.
    • 提供了一种代谢能量监测系统,其包括:具有移动传感器,温度传感器和脉搏波传感器并且适于佩戴在人体上的可佩戴装置; 数据库,用于存储包括活动状态决定条件数据和卡路里消耗计算知识数据的活动状态决策知识数据,所述知识数据包括每个代谢状态的卡路里消耗计算算法 活动状态决定单元,基于来自所述可穿戴装置的检测信号和活动状态决定知识数据来确定活动状态; 代谢状态决定单元,用于检测活动继续状态,并确定代谢状态; 热量消耗计算单元,根据代谢状态计算卡路里消耗量; 以及输出单元,用于输出卡路里消耗。
    • 9. 发明申请
    • Metabolic energy monitoring system
    • 代谢能监测系统
    • US20070282176A1
    • 2007-12-06
    • US11806241
    • 2007-05-30
    • Kazuyuki ShimadaHiroyuki KuriyamaHideyuki Ban
    • Kazuyuki ShimadaHiroyuki KuriyamaHideyuki Ban
    • A61B5/00
    • A61B5/02438A61B5/01A61B2562/0219G16H40/63
    • A metabolic energy monitoring system is provided which comprises: a wearable device having a movement sensor, a temperature sensor and a pulse wave sensor and adapted to be worn on a human body; a database to store activity state decision knowledge data including activity state decision condition data and calorie consumption calculation knowledge data including a calorie consumption calculating algorithm for each metabolic state; an activity state decision unit to determine the activity state based on a detection signal from the wearable device and activity state decision knowledge data; a metabolic state decision unit to detect an activity continuation state, and determine the metabolic state; a calorie consumption calculating unit to calculate a calorie consumption according to the metabolic state; and an output unit to output the calorie consumption.
    • 提供了一种代谢能量监测系统,其包括:具有移动传感器,温度传感器和脉搏波传感器并且适于佩戴在人体上的可佩戴装置; 数据库,用于存储包括活动状态决定条件数据和卡路里消耗计算知识数据的活动状态决策知识数据,所述知识数据包括每个代谢状态的卡路里消耗计算算法 活动状态决定单元,基于来自所述可穿戴装置的检测信号和活动状态决定知识数据来确定活动状态; 代谢状态决定单元,用于检测活动继续状态,并确定代谢状态; 热量消耗计算单元,根据代谢状态计算卡路里消耗量; 以及输出单元,用于输出卡路里消耗。
    • 10. 发明申请
    • Controller for senor node, measurement method for biometric information and its software
    • 传感器控制器,生物识别信息的测量方法及其软件
    • US20070191719A1
    • 2007-08-16
    • US11723930
    • 2007-03-22
    • Shunzo YamashitaHiroyuki KuriyamaKiyoshi AikiTakanori Shimura
    • Shunzo YamashitaHiroyuki KuriyamaKiyoshi AikiTakanori Shimura
    • A61B5/02
    • A61B5/0002A61B5/02438A61B5/681A61B2560/0209
    • The precision of measuring biometric information is enhanced while suppressing the consumption of a battery in a sensor node. In a method of measuring the biometric information in a sensor node including a controller for driving a sensor to measure biometric information, the controller supplies power from a battery to an acceleration sensor for detecting the movement of a living body to detect the movement of the living body, the controller determines whether or not measurement by a pulsebeat sensor is possible based on the detected movement of the living body (P330), and shuts off power to the acceleration sensor having a power consumption lower than that of the pulsebeat sensor when the determination results show that measurement is possible, and thereafter supplying power to the pulsebeat sensor having a power consumption larger than that of the acceleration sensor to measure the biometric information (P340).
    • 在抑制传感器节点中的电池消耗的同时增强了测量生物信息的精度。 在测量包括用于驱动传感器以测量生物特征信息的控制器的传感器节点中的生物信息的方法中,控制器将电力从电池供给到加速度传感器,用于检测活体的运动以检测生物的移动 控制器基于检测到的活体的移动来确定是否可以通过脉搏波传感器进行测量(P 330),并且在功率消耗低于脉冲波形传感器的功率消耗的加速度传感器时切断电力 确定结果表明测量是可能的,然后向具有大于加速度传感器功率消耗的脉冲波形传感器供电以测量生物特征信息(P 340)。