会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 73. 发明授权
    • Speed control circuit for electric motors
    • 电动机速度控制电路
    • US4181876A
    • 1980-01-01
    • US877350
    • 1978-02-13
    • Kenji KatoHaruhiko Tanaka
    • Kenji KatoHaruhiko Tanaka
    • H02P25/10H02P7/295H02P25/14H02P5/16
    • H02P25/14
    • The speed control circuit comprises a full wave rectifier having its output connected to an adjustable D.C. voltage divider. A series circuit connected to an A.C. power source includes an electric motor and an anti-parallel connection of two thyristors. The gates of the thyristors are connected to the output of the voltage divider via separate trigger circuits each providing a different trigger voltage proportional to the setting of the voltage divider. In this manner one or both thyristors may be selectively activated and the electric motor can be driven with half the waves as well as with full waves of the power source.
    • 速度控制电路包括一个全波整流器,其输出端连接到一个可调直流分压器。 连接到交流电源的串联电路包括电动机和两个晶闸管的反并联连接。 晶闸管的栅极通过单独的触发电路连接到分压器的输出,每个触发电路提供与分压器的设置成比例的不同触发电压。 以这种方式,一个或两个晶闸管可以被选择性地激活,并且电动机可以用一半的波以及电源的全波来驱动。
    • 74. 发明授权
    • Hot water supply apparatus and heat medium control method
    • 热水供应装置和热介质控制方法
    • US09557752B2
    • 2017-01-31
    • US12711646
    • 2010-02-24
    • Kenji Kato
    • Kenji Kato
    • F24D12/02G05D23/19F24D19/10
    • G05D23/192F24D12/02F24D19/1012F24D19/1051F24D2200/18Y02B30/14Y02B30/745
    • A hot water supply apparatus using a heat medium provides a heat medium circulation path that circulates the heat medium, a heat medium pump that pumps the heat medium into the heat medium circulation path, a heat source that generates heat heating the heat medium, a heat medium heat exchanger that exchanges heat generated by the heat source for the heat medium, a hot water supply heat exchanger that exchanges heat of the heat medium circulating in the heat medium circulation path for clean water, and a control unit that sets the heat medium in the heat medium circulation path in a predetermined temperature and controls the rotating speed of the heat medium pump and the combustion amount of the heat source according to a heat requirement.
    • 使用热介质的热水供给装置提供使热介质循环的热介质循环路径,将热介质泵送到热介质循环路径的热介质泵,产生热介质的热源,热介质 中间热交换器,用于交换由热介质的热源产生的热量;热交换器,用于对在热介质循环路径中循环清洁水的热介质进行热交换;以及控制单元,其将热介质设置在 所述热介质循环路径处于预定温度,并根据热量要求控制所述热介质泵的转速和所述热源的燃烧量。
    • 75. 发明授权
    • NOx sensor and production method thereof
    • NOx传感器及其生产方法
    • US08512536B2
    • 2013-08-20
    • US12358678
    • 2009-01-23
    • Kenji KatoHisashi SasakiKoji Shiotani
    • Kenji KatoHisashi SasakiKoji Shiotani
    • G01N27/407G01N27/409G01N27/41
    • G01N33/0037G01N27/4074G01N27/4075G01N27/417Y02A50/245
    • A NOx sensor includes a sensor element equipped with first and second pumping cells to define first and second measurement chambers. The first pumping cell exerts an oxygen pumping action against the first measurement chamber to adjust the oxygen concentration in the gas under measurement within the first measurement chamber to a given level. The second pumping cell exerts an oxygen pumping action against the second measurement chamber to produce a pumping cell current according to the NOx concentration in the gas under measurement. When the moisture content of the gas under measurement changes from 2 vol % to 8 vol %, the NOx sensor allows a variation of NOx concentration detection value based on the pumping cell current in such a manner that the NOx concentration detection value reaches a transient peak value of 20 ppm or smaller and converges to ±5 ppm of a reference value within 5 seconds.
    • NOx传感器包括配备有第一和第二泵浦单元以限定第一和第二测量室的传感器元件。 第一泵送单元对第一测量室施加氧气抽吸作用,以将在第一测量室内测量的气体中的氧浓度调节到给定的水平。 第二泵送单元对第二测量室施加氧气抽吸作用,以根据测量气体中的NOx浓度产生泵浦电池电流。 当测量气体的水分含量从2vol%变化到8vol%时,NOx传感器允许基于泵浦单元电流的NOx浓度检测值的变化,使得NOx浓度检测值达到瞬时峰值 值在20ppm以下,并且在5秒内收敛到参考值的±5ppm。
    • 78. 发明授权
    • Separator unit
    • 分离器单元
    • US08367269B2
    • 2013-02-05
    • US11370921
    • 2006-03-09
    • Noriyuki TakadaKenji KatoYoshihiro TamuraToshihiko Nonobe
    • Noriyuki TakadaKenji KatoYoshihiro TamuraToshihiko Nonobe
    • H01M8/04
    • H01M8/0267H01M8/0247H01M8/026H01M8/04014H01M2008/1095
    • A separator unit inserted into a fuel cell having an electrolyte layer interposed between a fuel electrode and an oxygen electrode is provided with a plate like separator that separates fuel gas supplied to the fuel electrode from oxidizing gas supplied to the oxygen electrode, and a mesh like collector having an opening that forms one of a passage through which the fuel gas flows and a passage through which the oxidizing gas flows. The collector is provided to at least one side of the separator base in abutment against one of the fuel electrode and the oxygen electrode. The separator base has a coolant passage formed therein, through which a coolant is allowed to flow, and an electrode abutment portion of the collector, which abuts against one of the fuel electrode and the oxygen electrode, has an aperture ratio higher than those of other portions of the collector.
    • 插入到具有置于燃料电极和氧电极之间的电解质层的燃料电池中的分离器单元设置有板状隔板,该板状隔板将供给燃料电极的燃料气体与供给到氧电极的氧化气体分离, 收集器具有形成燃料气体通过的通道中的一个的开口和氧化气体流过的通道。 收集器被提供到隔板基座的至少一侧,以抵靠燃料电极和氧电极中的一个。 分离器底座具有形成在其中的冷却剂通道,允许冷却剂流动,并且与集电器的电极邻接部分抵靠燃料电极和氧电极中的一个具有比其他开口率高的开口率 收集器的一部分。
    • 79. 发明授权
    • Gas sensor control apparatus and method
    • 气体传感器控制装置及方法
    • US08361306B2
    • 2013-01-29
    • US12630423
    • 2009-12-03
    • Satoshi TeramotoHirotaka OnogiKoji ShiotaniKenji KatoTakashi Kawai
    • Satoshi TeramotoHirotaka OnogiKoji ShiotaniKenji KatoTakashi Kawai
    • G01N27/26G01N27/417
    • G01N27/419
    • There is provided a control apparatus for a gas sensor, which has a sensor element equipped with first and second oxygen pumping cells. The sensor control apparatus is configured to drive the first oxygen pumping cell to adjust the oxygen concentration of gas under measurement, drive the second oxygen pumping cell to produce a flow of electric current according to the amount of oxygen pumped out of the oxygen concentration adjusted gas by the second oxygen pumping cell, perform specific drive control to control the amount of oxygen pumped by the second oxygen pumping cell to a predetermined level after startup of the sensor element and before the application of the drive voltage between the electrodes of the second oxygen pumping cell.
    • 提供了一种用于气体传感器的控制装置,其具有配备有第一和第二氧气泵浦单元的传感器元件。 传感器控制装置被配置为驱动第一氧气泵送单元以调节测量气体的氧气浓度,驱动第二氧气泵送单元,根据从氧浓度调节气体中抽出的氧气的量产生电流 通过第二氧气泵送单元,执行特定的驱动控制,以在启动传感器元件之后并且在第二氧气泵送电极之间施加驱动电压之前,将第二氧气泵浦单元泵浦的氧气量控制到预定水平 细胞。
    • 80. 发明申请
    • HOT WATER SUPPLY APPARATUS AND HEAT MEDIUM CONTROL METHOD
    • 热水设备和热介质控制方法
    • US20110203788A1
    • 2011-08-25
    • US12711646
    • 2010-02-24
    • Kenji Kato
    • Kenji Kato
    • G05D23/00F28D15/00G05D7/00F28F13/12
    • G05D23/192F24D12/02F24D19/1012F24D19/1051F24D2200/18Y02B30/14Y02B30/745
    • A hot water supply apparatus using a heat medium provides a heat medium circulation path that circulates the heat medium, a heat medium pump that pumps the heat medium into the heat medium circulation path, a heat source that generates heat heating the heat medium, a heat medium heat exchanger that exchanges heat generated by the heat source for the heat medium, a hot water supply heat exchanger that exchanges heat of the heat medium circulating in the heat medium circulation path for clean water, and a control unit that sets the heat medium in the heat medium circulation path in a predetermined temperature and controls the rotating speed of the heat medium pump and the combustion amount of the heat source according to a heat requirement.
    • 使用热介质的热水供给装置提供使热介质循环的热介质循环路径,将热介质泵送到热介质循环路径的热介质泵,对热介质进行热加热的热源, 中间热交换器,用于交换由热介质的热源产生的热量;热交换器,用于对在热介质循环路径中循环清洁水的热介质进行热交换;以及控制单元,其将热介质设置在 所述热介质循环路径处于预定温度,并根据热量要求控制所述热介质泵的转速和所述热源的燃烧量。