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    • 1. 发明申请
    • ION BALANCE ADJUSTING METHOD AND METHOD OF REMOVING CHARGES FROM WORKPIECE BY USING THE SAME
    • 离子平衡调整方法及使用方法从工件中取出电费
    • US20070133145A1
    • 2007-06-14
    • US11562211
    • 2006-11-21
    • Toshio SATOSatoshi SUZUKI
    • Toshio SATOSatoshi SUZUKI
    • H05F3/00
    • H05F3/04H01T19/04
    • When charges are removed from a charged workpiece by applying positive and negative pulse-like high voltages to positive and negative electrode needles to generate positive and negative ions in a charge removing area and feeding the charged workpiece into the charge removing area, an ion balance inside the charge removing area is measured by a surface potential sensor before the workpiece is fed into the charge removing area, and a pulse width and/or a voltage value of the pulse-like high voltage applied to the electrode needle is changed depending on a measured result, thereby adjusting an amount of ions generated from the electrode needle to take a balance between the positive and negative ions.
    • 当通过向正极针和负极针施加正脉冲和负脉冲高电压以在电荷去除区域中产生正离子和负离子并将带电工件馈送到电荷去除区域中时,从充电工件移除电荷时,内部的离子平衡 在将工件送入电荷去除区域之前,通过表面电位传感器测量电荷去除面积,并且施加到电极针的脉冲状高电压的脉冲宽度和/或电压值根据测量的 结果,从而调节从电极针产生的离子的量以在正离子和负离子之间取得平衡。
    • 3. 发明申请
    • CARDIAC SIGNAL PROCESSING APPARATUS AND CARDIAC SIGNAL PROCESSING METHOD
    • CARDIAC信号处理设备和CARDIAC信号处理方法
    • US20130197377A1
    • 2013-08-01
    • US13729920
    • 2012-12-28
    • Takahiko KISHIJun-ichi TAKADASatoshi SUZUKITomoyoshi YASUE
    • Takahiko KISHIJun-ichi TAKADASatoshi SUZUKITomoyoshi YASUE
    • A61B5/00A61B5/024
    • A61B5/721A61B5/024A61B5/0507A61B5/7207A61B5/725
    • A cardiac signal processing apparatus includes: a unit for acquiring, from a heartbeat sensor, cardiac signals relating to heartbeats of a subject; a low-pass filter for allowing passage of those cardiac signals having a first predetermined frequency or lower, among the cardiac signals; higher harmonic noise acquisition unit for acquiring harmonic signals of low-frequency noise by performing high frequency extrapolation on the signals output from the low-pass filter; a high-pass filter for allowing passage of those cardiac signals having a second predetermined frequency or higher, among the cardiac signals; and higher harmonic noise removal unit for removing the harmonic signals of low-frequency noise from the signals output from the high-pass filter. It is thus made possible to remove noise from the cardiac signals and to obtain desirable heartbeat detection characteristics.
    • 心脏信号处理装置包括:用于从心跳传感器获取与受试者的心跳相关的心脏信号的单元; 用于允许心脏信号中具有第一预定频率或更低频率的心脏信号通过的低通滤波器; 高次谐波噪声获取单元,用于通过对从低通滤波器输出的信号执行高频外推来获取低频噪声的谐波信号; 用于允许心脏信号中具有第二预定频率或更高频率的那些心脏信号通过的高通滤波器; 和高次谐波消除单元,用于从高通滤波器输出的信号中去除低频噪声的谐波信号。 因此,可以从心脏信号中去除噪声并获得所需的心跳检测特性。
    • 4. 发明申请
    • SHAPE MEASURING INSTRUMENT WITH LIGHT SOURCE CONTROL
    • 具有光源控制的形状测量仪器
    • US20110075126A2
    • 2011-03-31
    • US12738691
    • 2008-07-29
    • Satoshi SUZUKIKatsuhiro SATOYoichi SANO
    • Satoshi SUZUKIKatsuhiro SATOYoichi SANO
    • G01C3/08
    • G01B11/24
    • An optical system of a shape measuring instrument includes a laser diode, a first optical system irradiating an object to be measured with laser beam, a second optical system focusing reflected light from the object to be measured, and a CCD line sensor portion for detecting a laser beam from the second optical system, where the first optical system includes an optical path displacing unit for displacing an optical path for laser beam, the optical path displacing unit includes a glass plate rotating about a rotating axis extending in a direction perpendicular to a displacement plane of the optical path, a rotating unit for the glass plate, and a rotating unit controller, and the rotating unit controller causes a rotation angle of the rotating unit to coincide with a rotation angle of the rotating unit obtained when the maximum value of an amount of light received by the CCD line sensor according to rotation of the rotating unit is measured by the rotating unit controller.
    • 形状测量仪器的光学系统包括激光二极管,用激光束照射待测物体的第一光学系统,聚焦来自待测物体的反射光的第二光学系统和用于检测被测物体的CCD线传感器部分 来自第二光学系统的激光束,其中第一光学系统包括用于移动用于激光束的光路的光路位移单元,光路移动单元包括玻璃板,该玻璃板围绕沿垂直于位移的方向延伸的旋转轴线旋转 光路的平面,用于玻璃板的旋转单元和旋转单元控制器,旋转单元控制器使得旋转单元的旋转角度与当最大值的旋转单元获得的旋转单元的旋转角度一致时, 通过旋转单元控制器测量由CCD线传感器根据旋转单元的旋转而接收的光量。
    • 5. 发明申请
    • POWER-SUPPLY CONTROL SYSTEM, POWER-SUPPLY CONTROL METHOD, AND IMAGE FORMING APPARATUS
    • 电源控制系统,电源控制方法和图像形成装置
    • US20120331322A1
    • 2012-12-27
    • US13523338
    • 2012-06-14
    • Satoshi SUZUKI
    • Satoshi SUZUKI
    • G06F1/32G06F1/26
    • G03G15/5004G06F1/3212Y02D10/174
    • A power-supply control system includes a plurality of apparatuses connected to each other. Each apparatus includes a battery configured to supply power in a power saving mode where power consumption is lower than in a normal mode; a detecting unit configured to detect an output voltage of the battery; a transmitting unit configured to transmit a power supply request when the output voltage is determined to be lower than a predetermined value; a receiving unit configured to receive a request from another apparatus; a determining unit configured to determine whether the battery is available for the another apparatus in response to the request; and a control unit configured to control power supply from the battery. The control unit transmits a notification of power supply start to the another apparatus and causes the battery to supply power to the another apparatus when the battery is available for the another apparatus.
    • 电源控制系统包括彼此连接的多个设备。 每个装置包括电池,其被配置为以功耗低于正常模式的功率节省模式供电; 检测单元,被配置为检测所述电池的输出电压; 发送单元,被配置为当所述输出电压被确定为低于预定值时发送电源请求; 接收单元,被配置为从另一设备接收请求; 确定单元,被配置为响应于所述请求来确定所述电池是否可用于所述另一设备; 以及控制单元,被配置为控制来自所述电池的电力供应。 控制单元向另一装置发送电源开始通知,并且当电池可用于另一设备时,使电池向另一设备供电。
    • 9. 发明申请
    • CARBONATE SPRING PRODUCING SYSTEM
    • 碳酸盐弹簧生产系统
    • US20110123402A1
    • 2011-05-26
    • US12977504
    • 2010-12-23
    • Satoshi SUZUKIKen OoyachiHiroki SakakibaraMasaaki SatouMasanori ItakuraHiroshi Tasaka
    • Satoshi SUZUKIKen OoyachiHiroki SakakibaraMasaaki SatouMasanori ItakuraHiroshi Tasaka
    • B01J19/00
    • A61H33/02A61H33/60B01F3/04099Y10S261/07
    • A carbonate spring producing system includes a gas-liquid separator (6) which is connected on the downstream side of a carbonic acid gas dissolver (4). A carbonic acid gas supply means (10) and hot water supply means are connected to the carbonic acid gas dissolver (4). A liquid lead-out pipe (5) is connected to the gas-liquid separator. Preferably an un-dissolved carbonic acid gas lead-out pipe (23) is connected on the upstream sides of the gas-liquid separator (6) and the carbonic acid gas dissolver (4). The un-dissolved carbonic acid gas lead-out pipe (23) includes a control valve (25), a compressor (27), and a liquid level detection means (22). The control valve (25) controls a flow rate of un-dissolved carbonic acid gas from the gas-liquid separator. The liquid level detection means (22) measures a liquid level of the gas-liquid separator. Control means (28) controls the flow rate of the supplied carbonic acid gas and the flow rate of the supplied un-dissolved carbonic acid gas based on the gas-liquid separator liquid level detected by the detection means (22). An amount of un-dissolved carbonic acid gas in the gas-liquid separator is always monitored, so that the un-dissolved carbonic acid gas in the hot water can securely be separated and removed by the gas-liquid separator, and the separated and removed un-dissolved carbonic acid gas can be redissolved.
    • 碳酸盐弹簧制造系统包括连接在碳酸气体溶解器(4)的下游侧的气液分离器(6)。 碳酸气体供给装置(10)和热水供给装置连接到碳酸气体溶解器(4)。 液体引出管(5)连接到气液分离器。 优选在气液分离器(6)和碳酸气体溶解器(4)的上游侧连接未溶解的碳酸气体导出管(23)。 未溶解的碳酸气体导出管(23)包括控制阀(25),压缩机(27)和液位检测装置(22)。 控制阀(25)控制来自气液分离器的未溶解的碳酸气体的流量。 液面检测装置(22)测量气液分离器的液位。 控制装置(28)基于由检测装置(22)检测到的气液分离器液面来控制供给的碳酸气体的流量和供给的未溶解的碳酸气体的流量。 始终监测气液分离器中未溶解的碳酸气体的量,使得热水中的未溶解的碳酸气体可以通过气液分离器可靠地分离和除去,并将其分离除去 未溶解的碳酸气体可以重新溶解。