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    • 71. 发明授权
    • Printing system
    • 印刷系统
    • US5696894A
    • 1997-12-09
    • US759835
    • 1996-12-04
    • Kenichi Ono
    • Kenichi Ono
    • G06F3/12G06K15/00
    • G06K15/00G06F3/1294G06K2215/0005G06K2215/0017
    • A printing system comprises one or more data sources for generating print data and for sending the print data to one of a plurality of printing units by wireless communication and a specifying circuit, provided for each of said data sources, for specifying the printing-unit to which the data source corresponding to the specifying circuit should transmit the print data, wherein the specifying circuit specifies the printing unit to which the print data should be transmitted on the basis of information regarding each of the printing units which is transmitted from each printing unit by the wireless communication. The information regarding the printing unit includes printing speed information, paper size information, information indicating whether the printing unit can print both sides of a recording paper or not, or information indicating whether the printing unit is in a busy state or a ready state. The specifying circuit transmits an ID code to identify the specified printing unit to the data source corresponding to the specifying circuit.
    • 打印系统包括用于产生打印数据的一个或多个数据源,并且通过无线通信将打印数据发送到多个打印单元之一,以及为每个所述数据源提供的指定电路,用于将打印单元指定为 其中与指定电路对应的数据源应传送打印数据,其中指定电路根据关于从每个打印单元发送的每个打印单元的信息指定要发送打印数据的打印单元, 无线通信。 关于打印单元的信息包括打印速度信息,纸张尺寸信息,指示打印单元是否可以打印记录纸的两面的信息,或指示打印单元是处于忙状态还是就绪状态的信息。 指定电路向指定电路对应的数据源发送用于识别指定的打印单元的ID码。
    • 72. 发明授权
    • Thermal air-flow sensor
    • 热气流传感器
    • US5092164A
    • 1992-03-03
    • US656607
    • 1991-02-15
    • Hiroki MatsuokaKenichi Ono
    • Hiroki MatsuokaKenichi Ono
    • G01P5/12F02D41/18G01F1/00G01F1/68G01F1/696G01F1/698G01F1/72G01F15/04
    • G01F1/72F02D41/187G01F1/6986
    • A thermal type air flow sensor wherein a heat generating element is arranged in an intake system and a time for obtaining an increase in a temperature by a predetermined value is detected, which time corresponds to an amount of the intake air. This time is measured repeatedly at predetermined intervals in one full cycle of the pulsation, and a total amount of variation in one cycle is calculated by differences of the measured values at adjacent sampling timings, which integrated values are obtained throughout one full cycle. This total amount of variation is compensated by an absolute value of the integrated value of differences between the adjacent measured values, which corresponds to the effect of the change in the average measured value in one full cycle, induced by an acceleration or deceleration of the engine. This compensated variation amount is used to obtain a corrected intake amount value.
    • 一种热式空气流量传感器,其中发热元件布置在进气系统中并且用于获得温度增加预定值的时间被检测到,该时间对应于进气量。 在脉动的一个完整周期中以预定的间隔重复测量该时间,并且通过相邻采样定时的测量值的差来计算一个周期的总变化量,该积分值在整个周期中获得。 该总变化量通过相邻测量值之间的差值的积分值的绝对值来补偿,该绝对值对应于由发动机的加速或减速引起的在一个完整循环中的平均测量值的变化的影响 。 该补偿变化量用于获得校正后的摄入量值。
    • 76. 发明授权
    • Control system for variable speed hydraulic turbine generator apparatus
    • 变速水轮发电机控制系统
    • US4694189A
    • 1987-09-15
    • US911131
    • 1986-09-24
    • Eiji HaraguchiHiroto NakagawaAkira BandoTakao KuwaharaHaruo NoharaKenichi Ono
    • Eiji HaraguchiHiroto NakagawaAkira BandoTakao KuwaharaHaruo NoharaKenichi Ono
    • H02P9/00H02P9/42F01D15/10
    • H02P9/007H02P9/42
    • A control system for variable speed hydraulic turbine generator apparatus comprises an induction generator connected at its primary side to an AC power line system, a secondary excitation controller connected to the secondary side of the induction generator and being responsive to a generator output command signal supplied externally to supply to the induction generator an excitation current which causes the induction generator to generate AC power at the same frequency as that on the AC power line system, a hydraulic turbine for rotating the induction generator, a guide valve for regulating the amount of water supplied to the hydraulic turbine, a rotation speed detector for detecting a rotation speed of the induction generator, a rotation speed command calculator for receiving a hydraulic turbine running condition signal inclusive of the external generator output command signal and calculating an optimum rotation speed command, a rotation speed controller for comparing the optimum rotation speed command with a rotation speed signal from the rotation speed detector and producing a guide valve opening control signal in accordance with a difference between the optimum rotation speed command and the rotation speed signal, and a guide valve driver responsive to the guide valve opening control signal to deliver to the guide valve a signal which controls the opening of the guide valve in accordance with the guide valve opening control signal.
    • 一种用于变速水轮机发电机装置的控制系统包括:其初级侧连接到AC电力线系统的感应发电机,连接到感应发电机的次级侧的辅助励磁控制器,并响应于外部提供的发电机输出指令信号 向感应发电机提供励磁电流,其使感应发电机产生与AC电力线系统相同的频率的AC电力,用于旋转感应发电机的水轮机,用于调节供水量的导向阀 水轮机,用于检测感应发电机的转速的转速检测器,用于接收包括外部发电机输出指令信号的水轮机行驶状态信号并计算最佳转速指令的转速指令运算器,旋转 速度控制器,用于比较最佳腐烂 并且根据最佳转速指令和转速信号之间的差产生导向开阀控制信号,以及响应于导向阀打开控制的导向阀驱动器 信号,以向导阀传送根据导向阀打开控制信号控制导向阀打开的信号。
    • 79. 发明授权
    • Method and apparatus for determining developer consumption, and image forming apparatus
    • 用于确定显影剂消耗的方法和装置,以及图像形成装置
    • US07973952B2
    • 2011-07-05
    • US11558758
    • 2006-11-10
    • Kenichi Ono
    • Kenichi Ono
    • G06K15/00H04N1/00H04N1/46G03G15/00
    • G06K15/00G03G15/553G03G15/556
    • A developer consumption determining method for determining a developer consumption of an image forming apparatus includes the steps of dividing one of writing pixels into a plurality of sub-pixels in a main scanning direction, determining a weighting coefficient for each of surrounding sub-pixels of one of the sub-pixels located within a predetermined distance from the one of the sub-pixels on the basis of positional relationships, determining respective emission coefficients for the surrounding sub-pixels on the basis of one of durations and exposures of the light beams applied to the surrounding sub-pixels, summing products of the weighting coefficients of the surrounding sub-pixels and the respective emission coefficients to obtain total exposure for the one of the sub-pixels, repeating for all of the sub-pixels the steps of determining the weighting coefficient, determining respective emission coefficients, and summing products, and summing the total exposures for all the sub-pixels to determine the developer consumption.
    • 一种用于确定图像形成装置的显影剂消耗的显影剂消耗确定方法包括以下步骤:将主要扫描方向上的多个子像素中的一个写入像素分割成一个,以确定每个像素的一个的加权系数 基于位置关系位于与子像素之一预定距离内的子像素,基于施加到...的光束的持续时间和曝光中的一个确定周围子像素的各个发射系数 周围子像素,周围子像素的加权系数的乘积和相应的发射系数,以获得子像素之一的总曝光,对于所有子像素重复确定加权的步骤 系数,确定各自的发射系数,并对产物求和,并对所有子像素的总曝光进行求和 以确定开发商的消费。