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    • 5. 发明授权
    • High-voltage feed-through capacitor and magnetron
    • 高压直流电容器和磁控管
    • US07184256B1
    • 2007-02-27
    • US11444493
    • 2006-06-01
    • Tsukasa SatoYukihiko ShirakawaIsao FujiwaraHisashi Tanaka
    • Tsukasa SatoYukihiko ShirakawaIsao FujiwaraHisashi Tanaka
    • H01G4/35H01G4/236
    • H01G4/35H01G4/236
    • A high-voltage feed-through capacitor includes: a capacitor element; a grounding metal fitting; an insulating resin; two through conductors; an insulating cover; and an insulating tube. The capacitor element has two separate electrodes on one side and one common electrode on the other side and is mounted on one side of the grounding metal fitting with the common electrode being connected to the same side of the grounding metal fitting. The insulating resin fills a space inside the capacitor element. Each through conductor has a rod-like conductor portion passing through the grounding metal fitting and the capacitor element and connected to the separate electrode. At least a portion of the insulating tube is attached to the rod-like conductor portion within the capacitor element. The insulating cover is attached to the rod-like conductor portion to have one end thereof in contact with one end of the insulating tube.
    • 高压直流电容器包括:电容器元件; 接地金属配件; 绝缘树脂; 两根导线; 绝缘盖; 和绝缘管。 电容器元件在一侧具有两个单独的电极,另一侧具有一个公共电极,并且安装在接地金属配件的一侧,公共电极连接到接地金属配件的同一侧。 绝缘树脂填充电容器元件内的空间。 每个贯通导体具有穿过接地金属配件和电容器元件并连接到单独电极的棒状导体部分。 绝缘管的至少一部分附接到电容器元件内的棒状导体部分。 绝缘盖附接到杆状导体部分,以使其一端与绝缘管的一端接触。
    • 8. 发明授权
    • Adsorption type air conditioning using adsorbent and liquid refrigerant
    • 使用吸附剂和液体制冷剂的吸附式空调
    • US5768908A
    • 1998-06-23
    • US723297
    • 1996-09-30
    • Hisashi TanakaYuichi ShirotaHikaru Sugi
    • Hisashi TanakaYuichi ShirotaHikaru Sugi
    • B60H1/00B60H1/22B60H1/32F25B17/08
    • F24F3/1411B60H1/00007B60H1/22B60H1/3201F25B17/08F24F2003/144
    • A desiccant tank storing desiccant is accommodated in a thermal insulation case, and a desiccant tank-side ventilation duct is formed between the desiccant tank and the thermal insulation case. Ventilation path change-over dampers are provided to switch a ventilation path of the desiccant tank-side ventilation duct to an interior heat release operation path or an exterior heat release operation path. A thermal insulation case accommodates a water tank storing water therein and connected with the desiccant tank through a connection pipe without using valves. A water tank-side ventilation duct is formed between the water tank and the thermal insulation case. Ventilation path change-over dampers are provided to switch a ventilation path of the water tank-side ventilation duct to an interior heat absorption/radiation operation path or an exterior heat absorption/radiation operation path.
    • 储存干燥剂的干燥剂罐容纳在隔热箱中,并且在干燥剂箱和绝热箱之间形成干燥剂罐侧通风管道。 提供通风路径切换阻尼器以将干燥剂箱侧通风管道的通风路径切换到内部放热操作路径或外部放热操作路径。 隔热箱容纳储存水的水箱,并通过连接管与干燥剂罐连接,而不使用阀门。 在水箱和保温箱之间形成一个水箱侧通风管道。 提供通气路径切换阻尼器以将水箱侧通风管道的通风路径切换到内部吸热/辐射操作路径或外部吸热/辐射操作路径。
    • 9. 发明授权
    • Refrigerant apparatus
    • 制冷剂
    • US4742694A
    • 1988-05-10
    • US39284
    • 1987-04-17
    • Yasushi YamanakaKauya NakagawaHisashi Tanaka
    • Yasushi YamanakaKauya NakagawaHisashi Tanaka
    • F25B1/02F25B41/06F25B43/00F25B1/10
    • F25B43/006F25B1/02F25B41/06F25B2341/0662F25B2400/074F25B2400/0751F25B2400/13F25B2400/16F25B2400/23
    • A refrigerant apparatus having a compressor, a condenser, a first expansion valve means, a gas-liquid separator, a second expansion valve means and an evaporator. The compressor has a plurality of cylinders one of which is connected with the gas phase of the gas-liquid separator in order to inject the gas coolant into the compressor, other cylinders of the compressor being connected to the evaporator in order to suck the coolant from the evaporator. Since the gas coolant within the gas-liquid separator is injected into the compressor, the cooling capacity of the coolant passing through the evaporator can be expanded so that the cooling capacity of the present invention is increased. Though the gas coolant within the gas-liquid separator which includes no lubricant is sucked toward the compressor, the compressor can be lubricated by the lubricant coolant effectively, because the same compressor sucks the coolant containing lubricant from the evaporator.
    • 具有压缩机,冷凝器,第一膨胀阀装置,气液分离器,第二膨胀阀装置和蒸发器的制冷剂装置。 压缩机具有多个气缸,其中一个与气 - 液分离器的气相连接,以便将气体冷却剂喷射到压缩机中,压缩机的其它气缸连接到蒸发器以便从 蒸发器。 由于气液分离器内的气体冷却剂被注入到压缩机中,所以可以扩大通过蒸发器的冷却剂的冷却能力,从而提高本发明的冷却能力。 虽然不含润滑剂的气液分离器内的气体冷却剂朝向压缩机吸入,但由于相同的压缩机从蒸发器吸入含有润滑剂的冷却剂,所以能够有效地润滑冷却剂来润滑压缩机。
    • 10. 发明授权
    • Air cooling device
    • 空气冷却装置
    • US4478767A
    • 1984-10-23
    • US447959
    • 1982-12-08
    • Osamu WatanabeHisashi TanakaHitoshi YoshinoToshiaki Sadamasu
    • Osamu WatanabeHisashi TanakaHitoshi YoshinoToshiaki Sadamasu
    • F28F27/00F24F6/04F28C1/00F28C1/04B01F3/04
    • F24F6/04F28C1/00F28C1/04F28C2001/006Y10S261/03
    • An air cooling device including a first water spray device, an air cooling part including a filler wherein cooling water sprayed from the first water spray device is brought into direct contact with intake air so that the intake air is cooled by the sprayed water through heat exchange therebetween on the surface of the filler, a first water reservoir that receives and reserves the water dropped from the filler and a cooling tower for rapidly cooling water to be sprayed in the air cooling part to a steady state condition prior to starting of an electrical apparata coupled to the air cooling device and to be cooled thereby. In the cooling tower, water from the first reservoir is sprayed into a second filler and thereby evaporatively cooled. The cooled water is collected in a second water reservoir and circulated therefrom to the first water spray device by means of a pump.
    • 一种空气冷却装置,包括第一喷水装置,包括填充物的空气冷却部分,其中从第一喷水装置喷射的冷却水与进气直接接触,使得进气通过热交换被喷射的水冷却 在填充物的表面上,接收并储存从填料滴下的水的第一储水器和用于在启动电气设备之前快速冷却在空气冷却部分中喷洒到稳定状态的水的冷却塔 联接到空气冷却装置并由此冷却。 在冷却塔中,将来自第一储存器的水喷入第二填料中,从而蒸发冷却。 冷却的水被收集在第二储水器中并通过泵循环到第一水喷射装置。