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    • 2. 发明公开
    • Projector apparatus
    • Projektorvorrichtung
    • EP2184639A2
    • 2010-05-12
    • EP09013906.4
    • 2009-11-05
    • SANYO Electric Co., Ltd.
    • Itsuki, HiroyukiKurosawa, Yoshiaki
    • G03B21/16
    • G03B21/16H04N9/3144H04N9/3167
    • The present invention provides a projector apparatus capable of ensuring stable operation, which is configured to efficiently cool an optical device by circulating air cooled by a cooling part of a refrigeration unit, and further to prevent moisture resulting from evaporation of dew adhered to the cooling part from adversely affecting the optical device when stopping the operation of the refrigeration unit. The optical chamber and the cooling chamber are enclosed respectively by adiabatic walls, the cooling chamber and the optical chamber are connected to each other through a cold air inlet port and a cold air outlet port, and the cold air inlet port and the cold air outlet port are provided with opening and closing mechanisms. In a cooling operation mode, the optical device is cooled with cold air by opening the opening and closing mechanisms, and upon stoppage of the cooling operation, the opening and closing mechanisms are closed to prevent the inflow of the moisture in the cooling chamber to the optical chamber.
    • 本发明提供一种能够确保稳定运行的投影仪装置,其被配置为通过使由制冷单元的冷却部冷却的空气循环的空气高效地冷却光学装置,并且进一步防止由于冷却部附着的露水蒸发而产生的湿气 在停止制冷单元的操作时对光学装置产生不利影响。 光学室和冷却室分别由绝热壁封闭,冷却室和光学室通过冷空气入口和冷空气出口连接,冷空气入口和冷气出口 端口设有开闭机构。 在制冷运转模式中,通过打开开闭机构,用冷空气对光学装置进行冷却,在冷却运转停止时,关闭开闭机构,防止冷却室内的水分流入 光学室。
    • 3. 发明公开
    • Dry air-supplying apparatus and dryer
    • Vorrichtung zur Trockenluftzufuhr und Trockner
    • EP1967641A1
    • 2008-09-10
    • EP08004190.8
    • 2008-03-06
    • Sanyo Electric Co., Ltd.
    • Mukaiyama, HiroshiKurosawa, YoshiakiOtake, MasahisaNagae, Etsushi
    • D06F58/20F26B23/00F24F12/00F24F5/00
    • D06F58/206F26B23/005Y02B30/52Y02P70/40Y02P70/405
    • Problem to be Solved
      To minimize the heat energy required for supplying dry air.
      Solution
      A dry air-supplying apparatus 1 comprises a dry air-supplying air path 6 for supplying air from the surroundings that has been heated as dry air and a discharge air path 7 for discharging the moist air to the surroundings after the drying operation by the supplied dry air. Thus, the dry air-supplying air path draws in surrounding air and provides heat-exchanges by a heat exchanger 13 with the air in the discharge air path, this heat-exchanged air is heated by a radiator 14 and is supplied as dry air; while the discharge air path provides heat-exchanges, by the heat exchanger, the moist air after the drying operation with the air in the dry air-supplying air path, cools and dehumidifies the air that has been heat-exchanged by a cooler, and discharges it.
    • 要解决的问题为了最小化供应干燥空气所需的热能。 解决方案干燥空气供给装置1包括:干燥空气供给用空气路径6,其用于从作为干燥空气加热的周围环境供给空气;以及排出空气通道7,用于在干燥操作之后将湿空气排放到周围环境 供应干燥空气。 因此,干燥空气供给空气通路吸引周围的空气,并且通过热交换器13与排出空气路径中的空气进行热交换,该热交换空气被散热器14加热并作为干燥空气供给; 排气路径通过热交换器进行热交换,干燥后的湿空气与干燥空气供给空气通路中的空气一起冷却并除湿由冷却器进行热交换的空气,并且 放电
    • 4. 发明公开
    • Battery module
    • 电池模块
    • EP2357689A1
    • 2011-08-17
    • EP11001314.1
    • 2011-02-16
    • Sanyo Electric Co., Ltd.
    • Kurosawa, Yoshiaki
    • H01M2/10H01M6/46H01M10/50
    • H01M2/1016H01M6/46H01M10/613H01M10/625H01M10/647H01M10/653H01M10/6554H01M10/6556H01M10/6557H01M10/6567
    • A battery module(1, 1A, 1B) comprising: at least one assembled battery (11, 101)that has a cooling face (11A, 101A) and comprises an assemble of a plurality of electric cells (10)and separators (20, 40)each of which has an insulating property and is interposed between adjacent electric cells of the plurality of electric cells; a cooling plate (12, 12a) through which refrigerant is made to flow, the coolingplate being disposed in contact with the assembled battery; a press device (15, 32)that is disposed to press the assembled battery from an opposite surface side of the assembled battery to the cooling face (11A, 101A) so that the cooling plate is brought into contact with the cooling face under pressure.
    • 1。一种电池模块(1,1A,1B),包括:具有冷却面(11A,101A)并且包括多个电池单元(10)和隔板(20,20)的组装体的至少一个组装电池(11,101) 40),所述多个单电池中的每一个具有绝缘特性并且插入在所述多个单电池的相邻单电池之间; 冷却板(12,12a),制冷剂流过所述冷却板(12,12a),所述冷却板布置成与所述组装电池接触; 设置为从电池组的相对表面侧向冷却面(11A,101A)按压组合电池以使得冷却板在压力下与冷却面接触的加压装置(15,32)。