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    • 1. 发明专利
    • Refrigerator
    • 冰箱
    • JP2012032007A
    • 2012-02-16
    • JP2010169186
    • 2010-07-28
    • Toshiba Consumer Electronics Holdings CorpToshiba CorpToshiba Home Appliances Corp東芝コンシューマエレクトロニクス・ホールディングス株式会社東芝ホームアプライアンス株式会社株式会社東芝
    • NOGUCHI YOSHIYUKI
    • F25D23/00
    • PROBLEM TO BE SOLVED: To prevent a vegetable compartment from being overcooled in a refrigerator in which mist released from a mist releasing means is supplied to a plurality of storage compartments including the vegetable compartment.SOLUTION: The refrigerator has a refrigerator body having a chilling compartment and the vegetable compartment, a cooler for cooling the chilling compartment and the vegetable compartment, a blower for circulating air in the chilling compartment and the vegetable compartment while contacting the same to the cooler, the mist releasing means for releasing mist from a mist releasing section while atomizing water in a water storage section, a mist blowing out opening for the chilling compartment, and a mist blowing out opening for the vegetable compartment. The refrigerator is constituted such that part of air after passing the cooler circulated by the blower is supplied to the mist blowing out section, the mist blown out from the mist blowing out section along with the air is blown out from the mist blowing out opening for the chilling compartment and is also blown out to the chilling compartment and is blown out from the mist blowing out opening for the vegetable compartment to the vegetable compartment. The opening area of the mist blowing out opening for the vegetable compartment is set smaller than the opening area of the mist to blowing out opening for the chilling compartment.
    • 要解决的问题:为了防止在从雾气释放装置释放的雾被供给到包括蔬菜室的多个储藏室的冰箱中,蔬菜室过冷。 解决方案:冰箱具有冷藏室,其具有冷藏室和蔬菜室,用于冷却冷藏室和蔬菜室的冷却器,用于使冷藏室和蔬菜室中的空气与其接触的鼓风机 冷却器,用于从雾化释放部分释放雾的雾释放装置,同时雾化储水部分中的水,用于冷藏室的喷雾口,以及用于蔬菜室的喷雾口。 冰箱构成为使通过由鼓风机循环的冷却器的空气的一部分供给到喷雾部,从吹出吹出部吹出的雾与空气一起从喷雾吹出口吹出, 冷藏室也被吹送到冷藏室,并且从用于蔬菜室的烟雾吹出口向蔬菜室吹出。 将蔬菜室的喷雾口的开口面积设定为小于雾化室的开口面积,从而吹出冷藏室的开口。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Pipe cage carriage
    • 管道运输
    • JP2009068766A
    • 2009-04-02
    • JP2007237648
    • 2007-09-13
    • Toshiba Consumer Electronics Holdings CorpToshiba CorpToshiba Home Appliances Corp東芝コンシューマエレクトロニクス・ホールディングス株式会社東芝ホームアプライアンス株式会社株式会社東芝
    • OZAKI TATSUYASAKAMOTO NORIAKIOCHIAI KOICHIRONOGUCHI YOSHIYUKI
    • F25D11/00
    • PROBLEM TO BE SOLVED: To provide a pipe cage carriage capable of receiving a cold package in the pipe cage carriage for moving and carrying it while keeping a cooling state, and easily and surely mounting and fixing a cooling unit having a refrigerating cycle to the cage carriage.
      SOLUTION: This pipe cage carriage is composed of a cage carriage main body 2 constituted by fixing a cage body formed into the container shape by joining vertical pipes 5a and horizontal pipes 5b disposed like a fence on a carriage, a heat insulating sheet 6 disposed at an inner face side of the cage body, and a cooling unit 7 provided with a compressor 8 and a condenser 9 forming a refrigerating cycle in a machine chamber 11, receiving an evaporator 10 in a cooling chamber 12 composed of a heat insulating wall material 15 and having a cold air flow out channel 13 and a return flow channel 14, and having the cooling chamber at a lower portion of the machine chamber. An engagement portion 17 of a back face of the cooling unit is engaged with the horizontal pipe 5b of a back face upper portion of the cage carriage main body, the cooling chamber is disposed in the cage carriage main body at a lower part with respect to the engagement portion, and the machine chamber is positioned at an upper part of the horizontal pipe of the back face upper portion.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够在保持冷却状态的同时在管座托架中接收冷包装以便移动和运送的管座托架,并且容易且可靠地安装和固定具有制冷循环的冷却单元 到笼子车厢。 解决方案:该管座托架由保持架托架主体2构成,该托架主体2通过将垂直管5a和托架上的栅栏布置的水平管5b接合而形成为容器形状的笼体而构成,隔热片 6设置在保持架主体的内表面侧,以及冷却单元7,其在机械室11中设置有形成冷冻循环的压缩机8和冷凝器9,在由绝热构成的冷却室12内容纳蒸发器10 壁材料15,并具有冷气流出通道13和回流通道14,并且具有位于机器室下部的冷却室。 冷却单元的背面的接合部17与轿厢主体的背面上部的水平管5b接合,冷却室相对于轿厢主体的下部配置在轿厢主体中 接合部和机械室位于背面上部的水平管的上部。 版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • refrigerator
    • 冰箱
    • JP2011043307A
    • 2011-03-03
    • JP2009193044
    • 2009-08-24
    • Toshiba Consumer Electronics Holdings CorpToshiba CorpToshiba Home Appliances Corp東芝コンシューマエレクトロニクス・ホールディングス株式会社東芝ホームアプライアンス株式会社株式会社東芝
    • UENO SHUNJINOGUCHI YOSHIYUKI
    • F25D23/00
    • PROBLEM TO BE SOLVED: To provide a refrigerator including a non-opposing electrode type electrostatic atomizing device, satisfying conditions of the Electrical Appliances and Material Safety Act without using a switch having 1.5 mm or more of a gap and capable of achieving an electricity shut-off state of a commercial power source and the electrostatic atomizing device when stopped. SOLUTION: The non-opposing electrode type electrostatic atomizing device 26 for supplying mist to a storage compartment of a refrigerator body is connected to a secondary side of a high voltage transformer 47. The high voltage transformer 47 is connected to a first direct current line 88 and a second direct current line 89 from a low voltage direct current circuit 85 for stepping down and rectifying the commercial power source 81 via a reed switch part 51 (reed switches 53, 54). The lead switches 53, 54 are provided on a wall face part of a unit storage chamber so that the on/off state is switched by magnetism of a magnet 71 for detecting opening/closing of a cover member. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种包含非对置电极型静电雾化装置的冰箱,满足“电器和材料安全法”的条件,而不使用具有1.5mm或更大间隙的开关,并且能够实现 停电时商用电源和静电雾化装置的关闭状态。 解决方案:将用于向冰箱主体的储藏室供应雾的非对置电极型静电雾化装置26连接到高压变压器47的次级侧。高压变压器47连接到第一直接 电流线88和来自低压直流电路85的第二直流线89,用于经由舌簧开关部51(簧片开关53,54)逐步降压和整流商用电源81。 引线开关53,54设置在单元存储室的壁面部分上,使得通过用于检测盖构件的打开/关闭的磁体71的磁性来切换开/关状态。 版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Temperature regulating device
    • 温度调节装置
    • JP2010197021A
    • 2010-09-09
    • JP2009045964
    • 2009-02-27
    • Toshiba Consumer Electronics Holdings CorpToshiba CorpToshiba Home Appliances Corp東芝コンシューマエレクトロニクス・ホールディングス株式会社東芝ホームアプライアンス株式会社株式会社東芝
    • NOGUCHI YOSHIYUKI
    • F24F11/02
    • PROBLEM TO BE SOLVED: To provide a temperature regulating device capable of properly performing a cooling operation by surely performing defrosting in frost formation without disposing a temperature sensor on an evaporator, and providing a comfortable cooling space by preventing a user from being excessively cooled even in using a sleeping bag. SOLUTION: In this temperature regulating device in which cold air produced by a cooling unit in which the evaporator in a refrigerating cycle is received in a cooling chamber composed of a circulation fan and a heat insulating wall body having a supply air trunk and a return air trunk, and a compressor, a condenser and a radiation fan for cooling them are disposed in a machine chamber, is circulated by being supplied to a cooled object by the circulation fan and the supply air trunk, and returned to the return air trunk, a temperature of the returned cold air is detected by an air temperature sensor disposed in the return air trunk, and a room temperature sensor is disposed, so that a defrosting operation of the refrigerating cycle is controlled on the basis of the detection temperature of the room temperature sensor, and temperature difference between the room temperature sensor and the air temperature sensor. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种温度调节装置,其能够在不在蒸发器上设置温度传感器的情况下确定地进行霜冻中的除霜而适当地执行冷却操作,并且通过防止使用者过度地提供舒适的冷却空间 即使使用睡袋也可以冷却。 解决方案:在这样一个温度调节装置中,在这个温度调节装置中,由冷却单元产生的冷空气,其中制冷循环中的蒸发器被容纳在由循环风扇组成的冷却室和具有供气主干的隔热壁体中, 返回空气主干,以及用于冷却它们的压缩机,冷凝器和辐射风扇设置在机械室中,通过循环风扇和供气主干被供给冷却物体循环,并返回到返回空气 通过设置在返回空气导管中的空气温度传感器来检测返回的冷气的温度,并且设置室温传感器,从而基于检测温度来控制制冷循环的除霜运转 室温传感器和室温传感器与空气温度传感器之间的温差。 版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • In-vehicle cooling device
    • 车内冷却装置
    • JP2009061899A
    • 2009-03-26
    • JP2007231174
    • 2007-09-06
    • Toshiba Consumer Electronics Holdings CorpToshiba CorpToshiba Home Appliances Corp東芝コンシューマエレクトロニクス・ホールディングス株式会社東芝ホームアプライアンス株式会社株式会社東芝
    • NOGUCHI YOSHIYUKIOZAKI TATSUYASAKAMOTO NORIAKIOCHIAI KOICHIRO
    • B60H1/22
    • PROBLEM TO BE SOLVED: To provide an in-vehicle cooling device simplified in control constitution for comfortable operation-room cooling operation without using a cold storage material by utilizing an AC power supply when a driver has a short sleep, for automatically changing over an input to the cooling device which is continuously driven while stopping the drive of a vehicle engine without making it to continue to operate the cooling device.
      SOLUTION: The in-vehicle cooling device comprises an AC driven in-vehicle compressor 5 for serving as part of a refrigerating cycle, a compressor radiating fan 8 and a cold circulating fan 11 for blowing cold air into a room, a battery 16 which can be charged during operation, a DC-AC converter 15 for converting a DC voltage of the battery into an AC voltage, and a changeover circuit 13 for changing over the driving input of the compressor into either the output voltage of the DC-AC converter or the AC100V voltage. During the operation of a vehicle, the compressor is driven by the DC voltage of the battery converted into the AC voltage by the DC-AC converter, and when power can be supplied from the outside of the vehicle, the compressor is driven directly by a commercial AC voltage 18.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种简化控制结构的车载冷却装置,以便在驾驶员具有短暂的睡眠时通过利用交流电源而不使用冷藏材料进行舒适的操作室冷却操作,以自动改变 通过在停止车辆发动机的驱动而不使其继续操作冷却装置的同时连续驱动的冷却装置的输入。 解决方案:车载冷却装置包括作为制冷循环的一部分的AC驱动车载压缩机5,压缩机散热风扇8和用于将冷空气吹入室内的冷循环风扇11,电池 16,其用于将电池的直流电压转换为交流电压的直流 - 交流转换器15以及用于将压缩机的驱动输入转换为直流 - 直流转换器15的输出电压的转换电路13, AC转换器或AC100V电压。 在车辆的运行中,压缩机由DC-AC转换器转换成AC电压的电池的直流电压驱动,当从车外供电时,压缩机直接由 商业交流电压18.版权所有(C)2009,JPO&INPIT