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    • 1. 发明申请
    • Heat Exchanger
    • 热交换器
    • US20080060797A1
    • 2008-03-13
    • US11791538
    • 2005-11-22
    • Masaaki KitazawaShigeharu Taira
    • Masaaki KitazawaShigeharu Taira
    • F28F1/10
    • F24F1/0059F28F1/32
    • A fin (6) is provided with a rib (15) extending generally parallel to an outer edge (25) of the fin (6) and insertion holes (22) placed in staggered arrangement for receiving heat exchange tubes. The insertion holes (22) and the rib (15) are formed such that when an inside diameter of the insertion holes (22) is set as D [mm], a distance between a center of the insertion hole (22) and the outer edge (25) is set as L [mm], a distance between a center of the rib (15) and the outer edge (25) is set as La [mm], a width of the rib (15) is set as LL1 [mm], a thickness of the fin (6) is set as t [mm], a height of the rib (15) is set as h1 [mm], and a minimum distance between the insertion holes is set as P [mm], then 0.4 15, and D/P
    • 翅片(6)设置有大致平行于翅片(6)的外边缘(25)延伸的肋(15)和插入孔(22),所述插入孔以交错布置放置以接收热交换管。 插入孔(22)和肋(15)形成为使得当插入孔(22)的内径设定为D [mm]时,插入孔(22)的中心与外侧 边缘(25)设定为L [mm],将肋(15)的中心与外缘(25)之间的距离设定为La [mm],将肋(15)的宽度设为LL 1 [mm],翅片(6)的厚度设定为t [mm],肋(15)的高度设定为h 1 [mm],插入孔之间的最小距离设定为P [mm],然后0.4 15和D / P <0.5。
    • 4. 发明申请
    • Heat Exchanger
    • 热交换器
    • US20070261817A1
    • 2007-11-15
    • US11791539
    • 2005-11-22
    • Masaaki KitazawaShigeharu Taira
    • Masaaki KitazawaShigeharu Taira
    • F25B29/00
    • F28F1/32F24F1/0059F28F17/005F28F2225/06
    • A fin (6) is provided with insertion holes (22) for receiving heat exchange tubes and a rib (15) extending generally parallel to an outer edge (25) of the fin (6). The rib (15) is placed closer to the outer edge (25) than all the insertion holes (22) are. The rib (15) is formed on the fin (6) such that when an inside diameter of the insertion holes (22) is set as D [mm], a distance between a center of the insertion hole (22) nearest to the rib (15) and the outer edge (25) is set as L [mm], a distance between a center of the rib (15) and the outer edge (25) is set as La [mm], a width of the rib (15) is set as LL [mm], a thickness of the fin (6) is set as t [mm], and a height of the rib (15) is set as h [mm], then 0.4
    • 翅片(6)设置有用于接收热交换管的插入孔(22)和大致平行于翅片(6)的外边缘(25)延伸的肋(15)。 肋(15)比所有插入孔(22)更靠近外边缘(25)放置。 肋(15)形成在翅片(6)上,使得当插入孔(22)的内径设定为D [mm]时,最靠近肋的插入孔(22)的中心之间的距离 (15)和外缘(25)设定为L [mm],肋(15)的中心与外缘(25)之间的距离设定为La [mm],肋的宽度 15)设定为LL [mm],将翅片(6)的厚度设定为t [mm],将肋(15)的高度设定为h [mm],然后设定为0.4
    • 5. 发明授权
    • Method for measuring I-V characteristics of solar cell, and solar cell
    • 测量太阳能电池和太阳能电池的I-V特性的方法
    • US08446145B2
    • 2013-05-21
    • US12700910
    • 2010-02-05
    • Shigeharu TairaTakeshi Nishiwaki
    • Shigeharu TairaTakeshi Nishiwaki
    • G01R1/06
    • H01L31/022433G01R31/2603H02S50/10Y02E10/50
    • An aspect of the invention provides a method for measuring I-V characteristics of a solar cell, the solar cell comprising a plurality of fine line-shaped electrodes formed on a first surface in a predetermined direction; and a coupling line formed on the first surface that electrically couples at least two fine line-shaped electrodes among the plurality of fine line-shaped electrodes, the coupling line having a line width larger than a line width of the fine line-shaped electrodes. The method includes: contacting a probe pin for voltage measurement with the coupling line; contacting two or more probe pins for current measurement electrically connected to each other with two or more fine line-shaped electrodes including the fine line-shaped electrodes coupled to each other by the coupling line among the plurality of fine line-shaped electrodes; and measuring I-V characteristics while irradiating the first surface with light.
    • 本发明的一个方面提供了一种用于测量太阳能电池的I-V特性的方法,所述太阳能电池包括沿预定方向形成在第一表面上的多个细线状电极; 以及形成在所述第一表面上的电耦合线,所述耦合线电连接所述多个细线状电极中的至少两个细线状电极,所述耦合线具有大于所述细线状电极的线宽的线宽。 该方法包括:将用于电压测量的探针连接到耦合线; 接触两个或更多个用于电流测量的探针,用两个或更多个细线形电极彼此电连接,所述细线形电极包括通过多个细线状电极之间的耦合线彼此耦合的细线状电极; 并且在用光照射第一表面时测量I-V特性。
    • 8. 发明授权
    • Refrigerating device
    • 制冷装置
    • US07003980B2
    • 2006-02-28
    • US10169224
    • 2000-12-18
    • Shigeharu Taira
    • Shigeharu Taira
    • F25B1/00
    • C09K5/045C09K2205/122C09K2205/24F25B9/002F25B13/00F25B41/003F25B2400/12F25B2500/01Y02P20/123Y02P20/124
    • An energy-saving type refrigerating device capable of preventing global warming, allowing a communication pipe diameter to be reduced and the number of types of the communication pipe diameters to be reduced while a COP of over the COP obtained when R22 is used is provided by using, as a refrigerant, R32 with small global warming potential (GWP), comprising a compressor (23), a first heat exchanger (22), a expansion means (26), and a second heat exchanger (2), wherein R32 is used as a refrigerant, the diameter of a first communication pipe (42) is set to 2/8 in. and that of a second communication pipe (41) is set to ⅜ in. in the refrigerating capacity range of 2.2 to 5.6 kW, the diameter of the first communication pipe (42) is set to 2/8 in. and that of the second communication pipe (41) is set to 4/8 in. in the refrigerating capacity range of 4.5 to 7.1 kW, and the diameter of the first communication pipe (42) is set to 2/8 in. and that of the second communication pipe (41) is set to ⅝ in. in the refrigerating capacity range of 7.1 to 14.0 kW.
    • 一种能够防止全球变暖的节能型制冷装置,通过使用在使用R22时在COP上超过COP的同时,能够减少连通管直径并减少连通管直径的种类数量, 作为制冷剂,具有小的全球变暖潜能值(GWP)的R32包括压缩机(23),第一热交换器(22),膨胀装置(26)和第二热交换器(2),其中使用R32 作为制冷剂,第一连通配管(42)的直径设定为2/8英寸,第二连通配管(41)的直径在2.2〜5.6kW的制冷量范围内设定为3/8 in ,在4.5〜7.1kW的制冷量范围内将第一连通配管(42)的直径设定为2/8英寸,第二连通配管(41)的直径设定为4/8英寸, 第一连通管(42)的直径设定为2/8英寸,第二连通管的直径设定为2/8英寸 管道(41)在7.1至14.0千瓦的制冷量范围内设定为5/8英寸。