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
    • 12. 发明申请
    • DIRECT OXIDATION FUEL CELL SYSTEMS WITH REGULATED FUEL CONCENTRATION AND OXIDANT FLOW
    • 直接氧化燃料电池系统与调节燃料浓度和氧化剂流量
    • US20090011289A1
    • 2009-01-08
    • US12208699
    • 2008-09-11
    • Chao-Yang WangMasahiro Takada
    • Chao-Yang WangMasahiro Takada
    • H01M8/00H01M8/04
    • H01M8/1009H01M8/04164H01M8/04291H01M8/04313H01M8/04365H01M8/04395H01M8/04447H01M8/04798
    • A direct oxidation fuel cell (DOFC) system, comprises at least one fuel cell assembly including a cathode and an anode with an electrolyte positioned therebetween; a source of liquid fuel in fluid communication with an inlet of the anode; an oxidant supply in fluid communication with an inlet of the cathode; a liquid/gas (L/G) separator in fluid communication with outlets of the anode and cathode for: (1) receiving unreacted fuel and liquid and gaseous products, and (2) supplying a solution of fuel and liquid product to the anode inlet; and a control system for measuring the amount of liquid product and controlling oxidant stoichiometry of the system operation in response to the measured amount of liquid product. Alternatively, the control system controls the concentration of the liquid fuel in the solution supplied to the anode inlet, based upon the system operating temperature or output power.
    • 直接氧化燃料电池(DOFC)系统包括至少一个燃料电池组件,其包括阴极和阳极,电解质位于它们之间; 与阳极入口流体连通的液体燃料源; 与阴极入口流体连通的氧化剂供应源; 与阳极和阴极的出口流体连通的液体/气体(L / G)分离器,用于:(1)接收未反应的燃料和液体和气体产物,以及(2)将燃料和液体产物的溶液供应到阳极入口 ; 以及用于测量液体产物的量并根据所测量的液体产品来控制系统操作的氧化剂化学计量的控制系统。 或者,控制系统基于系统工作温度或输出功率来控制供应到阳极入口的溶液中的液体燃料的浓度。
    • 13. 发明申请
    • DIRECT OXIDATION FUEL CELL
    • 直接氧化燃料电池
    • US20080286617A1
    • 2008-11-20
    • US12116675
    • 2008-05-07
    • Hideyuki UedaMasahiro Takada
    • Hideyuki UedaMasahiro Takada
    • H01M8/02
    • H01M8/1009H01M8/0258H01M8/0263H01M8/04082H01M8/04197
    • A direct oxidation fuel cell of this invention has at least one unit cell including: a membrane-electrode assembly comprising an electrolyte membrane sandwiched between an anode and a cathode, each of the anode and the cathode including a catalyst layer and a diffusion layer; an anode-side separator with a fuel flow channel for supplying a fuel to the anode; and a cathode-side separator with an oxidant flow channel for supplying an oxidant containing oxygen gas to the cathode. The fuel flow channel and the oxidant flow channel are so structured that the concentration of the oxygen gas in the oxidant flow channel is higher at a part opposing an upstream part of the fuel flow channel than at a part opposing a downstream part of the fuel flow channel.
    • 本发明的直接氧化燃料电池具有至少一个单电池,包括:膜 - 电极组件,包括夹在阳极和阴极之间的电解质膜,阳极和阴极中的每一个包括催化剂层和扩散层; 具有用于向阳极供应燃料的燃料流动通道的阳极侧分离器; 以及阴极侧隔板,其具有用于向阴极供给含有氧气的氧化剂的氧化剂流路。 燃料流动通道和氧化剂流动通道被构造成使得氧化剂流动通道中的氧气的浓度在与燃料流动通道的下游部分相对的部分处在与燃料流动通道的上游部分相对的部分处较高 渠道。
    • 14. 发明授权
    • Battery voltage detector
    • 电池电压检测器
    • US06462510B1
    • 2002-10-08
    • US09786342
    • 2001-03-09
    • Masahiro TakadaKazuhiko TamesueYuji Torii
    • Masahiro TakadaKazuhiko TamesueYuji Torii
    • H02J700
    • B60L11/1864B60L11/1848B60L11/1866G01R19/16542Y02T10/7005Y02T10/7061Y02T10/7072Y02T90/121Y02T90/128Y02T90/14Y02T90/163Y02T90/169Y04S30/14
    • A battery power source device is composed of a plurality of battery modules, in which each battery module includes a number of serially connected cells. A voltage detection circuit is associated with each battery module. Each voltage detection circuit includes a differential amplifier that detects a voltage across end terminals of the associated battery module, and the detected voltage is digitized and output through a photo-coupler to a controller. The differential amplifier is connected to the battery module through photo-relays, which are closed in response to an open/close control signal only during a voltage detection operation, so that leak currents are eliminated. The differential amplifier and an associated A/D converter are provided with operating power obtained by transforming the voltage of the battery module with regulators, whereby noise effects are eliminated.
    • 电池电源装置由多个电池模块组成,其中每个电池模块包括多个串联的电池。 电压检测电路与每个电池模块相关联。 每个电压检测电路包括差分放大器,其检测相关联的电池模块的两端的电压,并且检测的电压被数字化并通过光耦合器输出到控制器。 差分放大器通过光电继电器连接到电池模块,光电继电器仅在电压检测操作期间响应于打开/关闭控制信号而关闭,从而消除泄漏电流。 差分放大器和相关的A / D转换器具有通过用调节器转换电池模块的电压而获得的工作功率,从而消除噪声效应。
    • 15. 发明授权
    • Constant speed maintaining apparatus for vehicle
    • 车辆恒速保持装置
    • US5329454A
    • 1994-07-12
    • US901578
    • 1992-06-19
    • Masahiro TakadaAkira Ishida
    • Masahiro TakadaAkira Ishida
    • B60K31/04F16H61/04B60K31/00
    • B60K31/047B60W2510/1045B60W2710/0605
    • A constant speed maintaining apparatus for use in a vehicle includes a vehicle speed detector for detecting a present speed V(t) of the vehicle, a cruise control device for producing a control value U(t), a target speed setting device for setting a target speed Vd(t), and an actuator for changing the opening degree of a throttle valve of a vehicle engine based on the control value U(t) to maintain the present speed V(t) substantially equal to the target speed Vd(t). The cruise control device includes a differentiation device for calculating a differentiated present speed V(t), a parameter estimation device for calculating an estimated parameter b.sub.est based on the present speed V(t), differentiated present speed V(t), and control value U(t), and a control value calculation device for calculating the control value based on the target speed Vd(t), present speed V(t), differentiated present speed V(t), and estimated parameter b.sub.est.
    • 用于车辆的恒速保持装置包括用于检测车辆的当前速度V(t)的车速检测器,用于产生控制值U(t)的巡航控制装置,用于设定 目标速度Vd(t)和用于根据控制值U(t)改变车辆发动机的节气门的开度的致动器,以将当前速度V(t)保持在基本上等于目标速度Vd(t )。 巡航控制装置包括用于计算微分当前速度V(t)的差分装置,用于基于当前速度V(t),微分当前速度V(t)和控制值来最佳地计算估计参数的参数估计装置 U(t)和用于基于目标速度Vd(t),当前速度V(t),微分当前速度V(t)和最佳估计参数来计算控制值的控制值计算装置。
    • 19. 发明授权
    • Power supply device
    • 电源设备
    • US07994765B2
    • 2011-08-09
    • US11882972
    • 2007-08-08
    • Masahiro TakadaToshihiko Ichinose
    • Masahiro TakadaToshihiko Ichinose
    • G05F1/56G05F1/563G05F1/565
    • H02J7/34H01M8/04559H01M8/04589H01M8/0491H01M8/04955H01M16/006H01M2250/10H02J2001/004Y02B40/90Y02B90/14Y02E70/40
    • A power supply device, comprising first and second lead terminals for connection with a load, a fuel cell, an energy storage element connected between the first and second lead terminals, a synchronous-rectification switching power-source portion for converting the output voltage of the fuel cell to the output voltage of the energy storage element and outputting it to the first and second lead terminals, and a current-detecting portion for detecting the output current of the fuel cell, the switching power-source portion further comprising a first switching element connected to the energy storage element in series, a second switching element connected to the energy storage element in parallel, and a simultaneous-turn-off controller for turning off the first and second switching elements simultaneously when the output current detected by the current-detecting portion is not larger than a preset current threshold.
    • 一种电源装置,包括用于与负载连接的第一和第二引线端子,燃料电池,连接在第一和第二引线端子之间的能量存储元件,同步整流开关电源部分,用于将 燃料电池到能量存储元件的输出电压并将其输出到第一和第二引线端子;以及电流检测部分,用于检测燃料电池的输出电流,开关电源部分还包括第一开关元件 与能量存储元件串联连接的第二开关元件和并联的能量存储元件的第二开关元件,以及同时关断控制器,用于当由电流检测检测到的输出电流同时断开第一和第二开关元件时 部分不大于预设电流阈值。