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    • 1. 发明授权
    • Battery discharge gas control system
    • 电池放电气体控制系统
    • US5736836A
    • 1998-04-07
    • US826825
    • 1997-04-08
    • Osamu HasegawaTatsurou HorieYasuyuki SandoToshihiro SoneKazuhiko YagiYuichi NakamuraHiromitsu Sato
    • Osamu HasegawaTatsurou HorieYasuyuki SandoToshihiro SoneKazuhiko YagiYuichi NakamuraHiromitsu Sato
    • H01M2/12H01M10/42H01M10/48H02J7/04H02J7/00
    • H02J7/048
    • A battery discharge gas control system, which releases a hydrogen gas generated from the battery assembly when the battery assembly is charged and discharged, is capable of keeping the battery structure highly resistant to water or humidity. The battery discharge gas control system has a battery having a gas release port, a passage connected to the gas release port, a control valve connected to the passage, a pressure sensor for detecting a pressure in the passage, and a control circuit for opening the control valve to release a gas generated by the battery from the passage, depending on the pressure in the passage as detected by the pressure sensor. During a period of time in which no hydrogen gas is generated or a generated hydrogen gas is not plenty enough to be released while the battery is being charged or discharged, the passage is closed for thereby keeping the battery structure highly resistant to water or humidity. The control valve has a solenoid-operated valve openable in response to a control signal outputted by the control circuit, and a relief valve mechanically openable depending on the pressure in the passage. Even in the event of a failure of the solenoid-operated valve, the relief valve is mechanically opened depending on the pressure in the passage, thereby protecting the passage from damage.
    • 当电池组件被充放电时,释放由电池组件产生的氢气的电池放电气体控制系统能够保持电池结构高度耐水或湿度。 电池放电气体控制系统具有电池,其具有气体释放口,连接到气体释放口的通道,连接到通道的控制阀,用于检测通道中的压力的​​压力传感器,以及用于打开 控制阀根据由压力传感器检测到的通道中的压力,从通道中释放由电池产生的气体。 在电池被充电或排出的时间内不产生氢气或产生的氢气不足够释放的时间段内,通道关闭,从而保持电池结构对水或湿度的抵抗力。 控制阀具有响应于由控制电路输出的控制信号而可打开的电磁阀,以及根据通道中的压力可机械打开的安全阀。 即使在电磁阀故障的情况下,安全阀根据通道内的压力机械地打开,从而保护通道免受损坏。
    • 6. 发明授权
    • Firmware update apparatus and method
    • 固件更新装置及方法
    • US08549510B2
    • 2013-10-01
    • US13054943
    • 2009-08-21
    • Nobuyuki OhamaYuichi Nakamura
    • Nobuyuki OhamaYuichi Nakamura
    • G06F9/44
    • G06F8/66G06F8/65
    • The firmware update apparatus is configured so that data required for update is accessible from both of normal firmware and emergency firmware and is provided with a section which sets the next-time boot destination to the emergency firmware during update, a section which saves a file before update into an area originally occupied by an update file, a section which inspects that a file required for booting the normal firmware is not broken or confirms that activation is actually possible from a virtualized environment, during activation of the emergency firmware, a section which restores the state before update by the saved files before update and a new update procedure automatically generated by reversing the contents of operations of the update procedure, and a section which, for each update file, describes a necessary reactivation target in the update procedure.
    • 固件更新装置被配置为使得可以从正常固件和紧急固件两者访问更新所需的数据,并且在更新期间提供将下一次引导目的地设置为紧急固件的部分,保存文件的部分 更新为最初由更新文件占据的区域,检查启动正常固件所需的文件不被破坏的部分,或确认在激活紧急固件期间实际上可以从虚拟化环境激活的部分,恢复的部分 在更新之前由保存的文件更新之前的状态以及通过反转更新过程的操作的内容而自动生成的新的更新过程,以及对于每个更新文件描述更新过程中必要的重新激活目标的部分。
    • 7. 发明授权
    • Firmware updating system, firmware delivering server, firmware embedded device, and program
    • 固件更新系统,固件发送服务器,固件嵌入式设备和程序
    • US08522233B2
    • 2013-08-27
    • US13120175
    • 2010-03-08
    • Yuichi NakamuraNobuyuki Ohama
    • Yuichi NakamuraNobuyuki Ohama
    • G06F9/44
    • G06F8/63G06F8/654G06F8/658
    • The present invention provides a firmware update technique in which a work area is small, a work time is short, update can be resumed even if power-down occurs, and even a file system which does not support writing is supported. To provide the firmware updating technique, an update creating and distributing server divides old and new version firmware images, extracts a difference between the new and old divided firmware images, creates an updated package, and delivers the updated package to an embedded device. On the other hand, the embedded device applies the updated package to the old version divided firmware image (an existing firmware message currently in use).
    • 本发明提供一种固件更新技术,其中工作区域小,工作时间短,即使发生掉电也可以恢复更新,甚至支持不支持写入的文件系统。 为了提供固件更新技术,更新创建和分发服务器分割旧版本和新版本固件映像,提取新的和旧的分割固件映像之间的差异,创建更新的包,并将更新的包传送到嵌入式设备。 另一方面,嵌入式设备将更新的包应用于旧版本的分割固件映像(当前正在使用的现有固件消息)。
    • 9. 发明授权
    • Apparatus for designing semiconductor integrated circuit, method of designing semiconductor integrated circuit, and program for designing semiconductor integrated circuit
    • 半导体集成电路设计装置,半导体集成电路设计方法以及半导体集成电路设计程序
    • US08438518B2
    • 2013-05-07
    • US13254300
    • 2010-02-19
    • Yuichi Nakamura
    • Yuichi Nakamura
    • G06F17/50
    • G06F17/505G06F2217/84
    • A device comprises a analysis section for detecting hold errors according to data including the values of the input and output nodes of the FF circuit, and identifying the node in which a hold error has occurred, a determining section for determining insertion of the trailing edge FF or the buffer into hold error sections on the basis of the results of the analysis by the analysis section, a FF insertion section for inserting the FF into a hold error section subjected to position determination so as to insert the trailing edge FF, and connecting a clock line to the FF based on the results of the determining section, and a buffer insertion section for inserting the buffer into the hold error section subjected to the position determination so as to insert the FF based on the results of data of the determining section.
    • 一种设备包括:分析部分,用于根据包括FF电路的输入和输出节点的值的数据检测保持错误,以及识别发生保持错误的节点;确定部分,用于确定后沿FF的插入 或缓冲器保持误差部分,基于分析部分的分析结果,FF插入部分,用于将FF插入到经过位置确定的保持误差部分中,以插入后缘FF,并将 基于确定部分的结果的FF的时钟线,以及缓冲器插入部分,用于将缓冲器插入到经过位置确定的保持错误部分中,以便基于确定部分的数据的结果来插入FF。
    • 10. 发明申请
    • VEHICLE
    • 车辆
    • US20120259492A1
    • 2012-10-11
    • US13439848
    • 2012-04-05
    • Akihiro YAMAMOTOJunji KatoYuichi NakamuraHiroshi Murakami
    • Akihiro YAMAMOTOJunji KatoYuichi NakamuraHiroshi Murakami
    • B60L15/00
    • B60K6/52B60K7/0007B60K17/02B60K17/046B60K17/356B60K2007/0046B60K2007/0061B60K2007/0092Y02T10/6265Y10S903/903
    • A vehicle includes a first drive device and a second drive device. The first drive device includes a motor, a motor control device, a connection-disconnection device, and a connection-disconnection device controller. When the vehicle is driven in a state where a driving force of the first drive device is substantially zero, or the vehicle is driven only by a driving force of the second drive device, the connection-disconnection device controller couples the connection-disconnection device to establish a connected state of the connection-disconnection device. The motor control device is configured to perform loss reduction control on the motor to reduce at least one of a loss of the motor and a loss in a power transmission path in power transmitted to the first driving wheel, by establishing the connected state of the connection-disconnection device.
    • 车辆包括第一驱动装置和第二驱动装置。 第一驱动装置包括电动机,电动机控制装置,连接断开装置和连接断开装置控制器。 当车辆在第一驱动装置的驱动力基本上为零的状态下驱动时,或车辆仅由第二驱动装置的驱动力驱动时,连接断开装置控制器将连接断开装置连接到 建立连接断开装置的连接状态。 电动机控制装置被配置为对电动机执行减少损失控制,以通过建立连接的连接状态来减少电动机的损失和传递到第一驱动轮的动力的动力传递路径的损失中的至少一个 - 连接设备。