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
    • 1. 发明专利
    • Multiple transmission system
    • 多传输系统
    • JP2007221251A
    • 2007-08-30
    • JP2006036939
    • 2006-02-14
    • Hitachi LtdKyushu Electric Power Co Inc九州電力株式会社株式会社日立製作所
    • ICHINOSE YUJISAITO SUNAOKOMI YUTAKAFUJITA HIROBUMIMIZOGAMI HIRONORI
    • H04J1/00H04J11/00
    • PROBLEM TO BE SOLVED: To provide a multiple transmission system capable of monitoring a deterioration state of devices of distribution powers and switches by utilizing communication cables installed at present and utilized for communication. SOLUTION: In two pairs of communication cables, an FSK transmitter 4a transmits a low frequency signal for communication using a low frequency band to an FSK receiver 5b through a first pair communication cable 6a in one direction, and an FSK transmitter 4b transmits a low frequency signal to an FSK receiver 5a through a second pair communication cable 6b in the other direction. A high frequency signal with a high frequency band transmitted/received by OFDM transmitters/receivers 10a, 10b, 10c, 10d comprises at least three or more carriers arranged at an equal frequency interval, and data allocated to the carriers are changed depending on a transmission state. The high frequency signal with the high frequency band transmitted/received by the OFDM transmitters/receivers 10a, 10b, 10c, 10d is transmitted through the two pairs of the communication cables 6a, 6b in two ways. The low frequency signal and the high frequency signal are superimposed one on the other. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够通过利用当前安装并用于通信的通信电缆来监视配电功率和开关的装置的劣化状态的多传输系统。 解决方案:在两对通信电缆中,FSK发射机4a通过第一对通信电缆6a在一个方向上向FSK接收机5b发送用于使用低频带通信的低频信号,并且FSK发射机4b发送 通过另一方向上的第二对通信电缆6b向FSK接收机5a发送低频信号。 由OFDM发射机/接收机10a,10b,10c,10d发送/接收的具有高频带的高频信号包括以等频间隔布置的至少三个或更多个载波,并且分配给载波的数据根据​​传输而改变 州。 具有由OFDM发射机/接收机10a,10b,10c,10d发送/接收的高频带的高频信号通过两对通信电缆6a,6b以两种方式传输。 低频信号和高频信号彼此叠加。 版权所有(C)2007,JPO&INPIT
    • 2. 发明专利
    • Feeding-side connector
    • 进料侧连接器
    • JP2012079665A
    • 2012-04-19
    • JP2010226772
    • 2010-10-06
    • Kyushu Electric Power Co Inc九州電力株式会社
    • ADACHI KAZUYUKIKURAYAMA KOJIFUJITA HIROBUMIMATSUO YOSHIYUKI
    • H01R13/639
    • PROBLEM TO BE SOLVED: To provide a feeding-side connector with improved operability which allows users to check the fitting state between a receiving-side connector and the feeding-side connector without being affected by ambient noises, and which enables smooth fitting between the receiving-side connector and the feeding-side connector.SOLUTION: A feeding-side connector 100 comprises: an engaging part 41 having an engaging claw 41a which is engaged with a step 201b of a receiving-side connector 201; a protrusion regulating part 42 which covers the engaging claw 41a of the engaging part 41, and which slides to the rear end side of the feeding-side connector 100 when brought into contact with the receiving-side connector 201, thereby exposing the engaging claw 41a of the engaging part 41; and a protrusion push-up part 43 which is inserted between a terminal holding part 31 and the engaging part 41 by the sliding motion of the protrusion regulating part 42, thereby pushing up the engaging claw 41a of the engaging part 41 to the outer peripheral side of a case coupling part 33.
    • 要解决的问题:为了提供具有改进的可操作性的进给侧连接器,其允许用户在不受环境噪声的影响的情况下检查接收侧连接器和馈送侧连接器之间的装配状态,并且能够平滑地配合 在接收侧连接器和馈送侧连接器之间。 馈电侧连接器100包括:接合部41,其具有与接收侧连接器201的台阶201b接合的接合爪41a; 突出限制部分42,其覆盖接合部分41的接合爪41a,并且当与接收侧连接器201接触时滑动到馈电侧连接器100的后端侧,从而使接合爪41a 的接合部41; 以及通过突起限制部42的滑动而插入在端子保持部31与接合部41之间的突起上推部43,从而将卡合部41的卡合爪41a向外周侧 案件联结部分33.案件版权:(C)2012,JPO&INPIT
    • 4. 发明专利
    • Battery device
    • 电池装置
    • JP2010141971A
    • 2010-06-24
    • JP2008313524
    • 2008-12-09
    • Kyushu Electric Power Co IncMitsubishi Heavy Ind Ltd三菱重工業株式会社九州電力株式会社
    • NISHIDA TAKEHIKOHASHIZAKI KATSUOADACHI KAZUYUKIMURAKAMI SHINJIKURAYAMA KOJIFUJITA HIROBUMI
    • H02J7/02H01M10/42H01M10/48
    • H02J7/0021G01R31/3658H01M10/0525H01M10/06H01M10/425H01M10/482H01M10/486H01M2010/4278Y10T307/391Y10T307/685
    • PROBLEM TO BE SOLVED: To avoid increase in communication load and simply and easily give identification information of battery rows. SOLUTION: A battery device 100 includes: a battery row group formed by connecting battery rows 50a to 50c, each including one or more battery cells, in series; multiple battery management units 10a to 10c provided in correspondence with the respective battery rows 50a to 50c and manage the states of the corresponding battery rows 50a to 50c; a central management unit 20 that gives unique identification information to each of the battery management units 10a to 10c and acquires the respective state-of-battery information of the battery rows 50a to 50c from the battery management units 10a to 10c and manages them; a second communication line 40 connecting the battery management units 10a to 10c in a daisy chain configuration; a first communication line 30 connecting either of those positioned at ends of the battery management units 10a to 10c with the central management unit 20 among the plurality of battery management units 10a to 10c; and multiple connection switching units 60a to 60c that are respectively provided in the second communication line 40 between battery management units and switch the state between battery management units between connection and disconnection. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了避免通信负载增加,简单易行地提供电池行的识别信息。 解决方案:电池装置100包括:通过串联连接各自包括一个或多个电池单元的电池行50a至50c而形成的电池行组; 多个电池管理单元10a至10c与各电池行50a至50c相对应地设置并管理相应的电池行50a至50c的状态; 向每个电池管理单元10a至10c提供唯一的识别信息的中央管理单元20,并且从电池管理单元10a至10c获取电池行50a至50c的各个状态电池信息并进行管理; 以菊花链配置连接电池管理单元10a至10c的第二通信线路40; 在多个电池管理单元10a至10c中,连接位于电池管理单元10a至10c的端部的第一通信线路与中央管理单元20; 以及多个连接切换单元60a至60c,其分别设置在电池管理单元之间的第二通信线路40中,并且在连接和断开之间切换电池管理单元之间的状态。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Battery charging rate calculation device, battery charging rate calculation method, and program
    • 电池充电速率计算装置,电池充电速率计算方法和程序
    • JP2010271288A
    • 2010-12-02
    • JP2009125666
    • 2009-05-25
    • Kyushu Electric Power Co IncMitsubishi Heavy Ind Ltd三菱重工業株式会社九州電力株式会社
    • GOTO MITSUFUMIHASHIZAKI KATSUOOISHI MASAZUMINISHIDA TAKEHIKOADACHI KAZUYUKIFUJITA HIROBUMI
    • G01R31/36H01M10/44H01M10/48H02J7/00
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To provide a battery charging rate calculation device capable of precisely calculating SOC of a battery by properly setting a start condition of a charging rate correction operation.
      SOLUTION: An SOCI calculation part 14, from actually measured current integration, calculates a charging rate A of a battery based on the integration value of charging/discharging current. Here, since a current detection error amount is accumulated in the integration value of the charging/discharging current, an SOCV calculation part 11, from estimated open voltage, is required to calculate a charging rate B, for correction, on the basis of the estimated open voltage of the battery. A current occurrence frequency calculation part 18 calculates on occurrence frequency for each charging/discharging current value, and transmits a charging rate correction operation start signal, for correcting the charging rate A with the charging rate B on the basis of the charging/discharging current value of highest occurrence frequency, to an SOC switching determination part 16. Thus, an SOC switching part 17 can correct charging rate at proper timing.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够通过适当地设定充电率校正操作的开始条件来精确地计算电池的SOC的电池充电率计算装置。 解决方案:根据实际测量的电流积分,SOCI计算部分14基于充电/放电电流的积分值计算电池的充电速率A. 这里,由于在充电/放电电流的积分值中累积电流检测误差量,所以根据估计的开路电压需要SOCV计算部11计算用于校正的充电率B, 电池的开路电压。 电流发生频率计算部18针对每个充放电电流值计算发生频率,并根据充电/放电电流值发送用于以充电率B校正充电率A的充电率校正操作开始信号 SOC切换部17可以在适当的时刻校正充电率。 版权所有(C)2011,JPO&INPIT