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    • 82. 发明授权
    • Cooling system with adsorption refrigerator
    • 带吸附式冷冻机的冷却系统
    • US06840056B2
    • 2005-01-11
    • US10615079
    • 2003-07-08
    • Masaaki Tanaka
    • Masaaki Tanaka
    • F25B17/08F25B25/00H05K7/20F25B27/00
    • H05K7/20363F25B17/08F25B25/005F25B2400/24Y02A30/277Y02A30/278Y02B30/62Y02B30/64
    • In a cooling system for cooling first and second heat-generating members, the first heat-generating member is cooled by a refrigerator, and cold produced by the refrigerator is stored in a cold storage unit, so that both the first and second heat-generating members can be continuously cooled by only using a single adsorption unit. Therefore, production cost of the cooling system can be reduced. Further, because the second heat-generating member is cooled through the cold storage unit, a temperature change in the adsorption unit immediately after a switching between an adsorbing mode and a desorbing mode can be absorbed in the cold storage unit. Accordingly, the heat-generating members can be stably cooled while the component number of the cooling system can be decreased.
    • 在用于冷却第一和第二发热部件的冷却系统中,第一发热部件由冰箱冷却,由冷藏库产生的冷存储在冷藏单元中,使得第一和第二发热部件 可以通过使用单个吸附单元连续冷却构件。 因此,可以降低冷却系统的生产成本。 此外,由于通过冷藏单元冷却第二发热构件,所以在吸热模式和解吸模式之间的切换之后的吸附单元的温度变化可以在冷藏单元中被吸收。 因此,能够使冷却系统的部件数减少,能够使发热部件稳定地冷却。
    • 89. 发明授权
    • Laser device
    • 激光设备
    • US4942588A
    • 1990-07-17
    • US377774
    • 1989-07-10
    • Koji YasuiMasaaki TanakaMasaki Kuzumoto
    • Koji YasuiMasaaki TanakaMasaki Kuzumoto
    • H01S3/034H01S3/036H01S3/082
    • H01S3/082H01S3/034H01S3/036
    • In a laser device employing an optical resonator which is constructed of a total reflection mirror and a partial reflection mirror, a total reflection plane having an opening is interposed between the partial reflection mirror and the total reflection mirror, the total reflection plane may be formed of, for example, a dielectric thin film or a metallic totally-reflective thin film produced with a cluster ion beam, and the total reflection plane and the total reflection mirror are arranged so as to establish a resonant state. The total reflection plane is formed on an aperture of the partial reflection mirror. The opening of the total reflection plane may be ring-shaped, or a plurality of openings may be provided. The total reflection plane may be located centrally. In a laser device employing an unstable optical resonator, a beam deriving mirror may be disposed within the optical resonator.
    • 在采用由全反射镜和部分反射镜构成的光学谐振器的激光装置中,在部分反射镜和全反射镜之间插入具有开口的全反射面,全反射面可以由 例如,使用聚簇离子束制造的电介质薄膜或金属全反射薄膜,并且配置全反射面和全反射镜,以便建立共振状态。 全反射面形成在部分反射镜的孔上。 全反射面的开口可以是环状的,也可以设置多个开口。 全反射面可以位于中央。 在采用不稳定光学谐振器的激光装置中,光束衍射反射镜可以设置在光学谐振器内。