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    • 1. 发明专利
    • Power source device
    • 电源设备
    • JP2008251263A
    • 2008-10-16
    • JP2007088992
    • 2007-03-29
    • Sanyo Electric Co Ltd三洋電機株式会社
    • TAMEZANE SHIGETOFUKUNAGA TAKESHIKATO JITSUICHIOKADA WATARU
    • H01M2/10H01M10/60H01M10/613H01M10/625H01M10/647H01M10/6555H01M10/6556H01M10/658H01M10/659
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To remarkably enhance safety by concentratedly supplying an abnormal heat generation reducing agent to an abnormal battery by surely operating when a battery becomes in an abnormal state.
      SOLUTION: The power source device is equipped with a plurality of batteries 11 formed by stacking so as to form a gap 19; and a sealed tank 20 in which the abnormal heat generation reducing agent comprising a fire-extinguishing agent or a coolant is filled, formed in the gap 19 between the plurality of batteries through piping 30, 40. The piping 30, 40 are connected to the gap 19 between the batteries through heat melting parts 31, 41 which melt when heated to a prescribed temperature or higher. In the power source device, the heat melting parts 31, 41 connected to the gap between overheated batteries heated higher than the prescribed temperature are melted, and the abnormal heat generation reducing agent filled in the sealed tank 20 is supplied to the gap 19 between the batteries.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过在电池变为异常状态时可靠地操作,通过将异常发热还原剂集中供应到异常电池来显着增强安全性。 电源装置配备有通过层叠形成的多个电池11,以形成间隙19; 以及填充有包含灭火剂或冷却剂的异常发热还原剂的密封容器20,通过配管30,40形成在多个电池之间的间隙19中。管道30,40连接到 电池之间的间隙19通过加热熔化部分31,41,当加热至规定温度或更高时熔化。 在电源装置中,与加热高于规定温度的过热电池之间的间隙连接的加热熔融部31,41熔化,填充在密闭容器20内的异常发热量减少剂被供给到 电池。 版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • DEODORIZING APPARATUS
    • JP2001224676A
    • 2001-08-21
    • JP2000371144
    • 2000-12-06
    • SANYO ELECTRIC CO
    • FUKUNAGA TAKESHINORO TAKUYA
    • G01N27/12A61L2/04A61L9/01A61L9/16B01D53/04
    • PROBLEM TO BE SOLVED: To prevent a malodor generated when a deodorizing material is regenerated under heating. SOLUTION: An inlet valve 6 and an outlet valve 12 are provided to a main air channel 5 having a suction port 2 and a discharge port 3 and a closing valve 14 is also provided in an auxiliary air channel 13 short-circuited to the main air channel in the vicinity of the insides of both valves 6, 12. When a blow fan 7 is rotated in the direction reverse to that at a time of deodorizing operation at a time of the regeneration operation of the deodorizing material 1 under heating, the valves 6, 12 are closed and the valve 14 is opened. Therefore, a circulating flow channel is formed by the main air channel 5 and the auxiliary air channel 13. The malodorous component separated from the deodorizing material 10 in the initial stage of heating is circulated to return to the deodorizing material 10 and, when the oxidative decomposition of the malodorous component becomes dominant by the continuation of heating, the malodorous level in the circulating flow channel lowers. By this constitution, the deodorizing material 10 can be regenerated without leaking a malodor to the outside.
    • 8. 发明专利
    • WASHING MACHINE
    • JP2001137592A
    • 2001-05-22
    • JP32718499
    • 1999-11-17
    • SANYO ELECTRIC CO
    • NAKANISHI MINORUFUKUNAGA TAKESHIUSHIJIMA KAZUFUMIKONDO FUMITAKEAOKI HIDEAKIKISHIMOTO KEIJIHIYAMIZU KAZUYA
    • D06F33/02
    • PROBLEM TO BE SOLVED: To provide a novel rotational frequency detection mechanism for a washing and dehydrating drum that overtops a mechanism of detecting the rotational frequency of a washing and dehydrating drum indirectly from the rotating speed of a motor. SOLUTION: A suspension rod hanger 15 as a connection between a suspension rod 3 by which a washing and dehydrating drum 4 is suspended and a washing machine frame 1 is mounted with a pressure sensor 40, the inductance of which varies according to a pressure variation applied by the suspension rod 3. The inductance variation of the pressure sensor 40 is converted by an inductance-to-frequency conversion circuit 45 into frequency signals, which are passed to a control part 46. In the control part 46, on the basis of a timer value-to-frequency conversion table set in a ROM 48, an arithmetic part 41 computes continuous frequencies and resultantly the rotational frequency of the washing and dehydrating drum 4 from the frequencies. The output of the pressure sensor 40 can be used in the detection of the weight of the washing and dehydrating drum 4 as well as in that detection of the rotational frequency thereof.
    • 9. 发明专利
    • SEALING MATERIAL COATING METHOD FOR SEALED BATTERY
    • JPH1125937A
    • 1999-01-29
    • JP17335897
    • 1997-06-30
    • SANYO ELECTRIC CO
    • NAKADA FUMIAKIFUKUNAGA TAKESHI
    • B05B9/00H01M2/08
    • PROBLEM TO BE SOLVED: To coat a sealing material on the inner surface of the opening part of a battery case simply, easily and uniformly without uneven coating by injecting the sealing material from an injection nozzle arranged in a position away from a coating position to the inner surface of the opening of the battery case and then coating the same. SOLUTION: From an injection nozzle 8, a sealing material S is injected between a lead plate 7 and a battery case 6 and then the sealing material S is coated. By a method of coating the sealing material S by rotating the battery case 6, the injection nozzle 8 is fixed in a fixed position, and the sealing material S is coated over the full circumference of the inner surface of the battery case 6. The battery case 6 is rotated in an arrow direction in the Fig. around the center of a cylindrical case in an upright posture. The injection nozzle 8 injects the sealing material S slightly downward to the inner surface of the battery case 6, and then the sealing material S is coated on the inner surface of the opening part. This is for preventing the sealing material S from being coated on the lead plate 7.