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    • 1. 发明申请
    • SOLAR CELL MODULE
    • 太阳能电池模块
    • US20130206204A1
    • 2013-08-15
    • US13880378
    • 2012-06-28
    • Masaki YoshidaHidetoshi Kitaura
    • Masaki YoshidaHidetoshi Kitaura
    • H01L31/05
    • H01L31/0508H01L31/0504H01L31/0516H02S40/36Y02E10/50
    • A solar cell module including two or more adjacent solar cells (1a, 1b), a connection member (2) for electrically connecting the solar cells (1a, 1b) to each other, and a solder layer (5) disposed between the solar cells (1) and the connection member (2), wherein first and second opening holes (4a, 4b) are formed at a connection portion of the connection member (2) corresponding to the first and the second solar cells (1a, 1b), the first and the second opening holes (4a, 4b) are configured that solder is deposited into them, and first and second protruding parts (3a, 3b) are formed at a part of the outer periphery of each of the first and second opening holes (4a, 4b) of the connection member(2). By the present invention, it is possible to ensure sufficient thickness of the solder joining layer and to improve reliability for long-term use.
    • 一种太阳能电池模块,包括两个或多个相邻的太阳能电池(1a,1b),用于将太阳能电池(1a,1b)彼此电连接的连接构件(2)和设置在太阳能电池 (1)和连接构件(2),其中在对应于第一和第二太阳能电池(1a,1b)的连接构件(2)的连接部分处形成有第一和第二开孔(4a,4b) 第一和第二开孔(4a,4b)被构造成焊料沉积在其中,并且第一和第二突出部分(3a,3b)形成在每个第一和第二开孔的外周的一部分 (4a,4b)。 通过本发明,可以确保焊料接合层的足够的厚度并提高长期使用的可靠性。
    • 2. 发明授权
    • Solar cell module
    • 太阳能电池组件
    • US09379267B2
    • 2016-06-28
    • US13880378
    • 2012-06-28
    • Masaki YoshidaHidetoshi Kitaura
    • Masaki YoshidaHidetoshi Kitaura
    • H02S40/36H01L31/05
    • H01L31/0508H01L31/0504H01L31/0516H02S40/36Y02E10/50
    • A solar cell module including two or more adjacent solar cells (1a, 1b), a connection member (2) for electrically connecting the solar cells (1a, 1b) to each other, and a solder layer (5) disposed between the solar cells (1) and the connection member (2), wherein first and second opening holes (4a, 4b) are formed at a connection portion of the connection member (2) corresponding to the first and the second solar cells (1a, 1b), the first and the second opening holes (4a, 4b) are configured that solder is deposited into them, and first and second protruding parts (3a, 3b) are formed at a part of the outer periphery of each of the first and second opening holes (4a, 4b) of the connection member (2). By the present invention, it is possible to ensure sufficient thickness of the solder joining layer and to improve reliability for long-term use.
    • 一种太阳能电池模块,包括两个或多个相邻的太阳能电池(1a,1b),用于将太阳能电池(1a,1b)彼此电连接的连接构件(2)和设置在太阳能电池 (1)和连接构件(2),其中,在对应于第一和第二太阳能电池(1a,1b)的连接构件(2)的连接部分处形成有第一和第二开孔(4a,4b) 第一和第二开孔(4a,4b)被构造成焊料沉积在其中,并且第一和第二突出部分(3a,3b)形成在每个第一和第二开孔的外周的一部分 (4a,4b)。 通过本发明,可以确保焊料接合层的足够的厚度并提高长期使用的可靠性。
    • 4. 发明授权
    • Absorber and absorbent article
    • 吸收和吸收制品
    • US09238087B2
    • 2016-01-19
    • US14007596
    • 2012-02-03
    • Takayoshi KonishiMasaki YoshidaNoritomo Kameda
    • Takayoshi KonishiMasaki YoshidaNoritomo Kameda
    • B01J20/00A61L15/28A61F13/53
    • A61L15/28A61F13/53A61F2013/530058A61F2013/530364A61F2013/530372
    • An absorber containing non-wood pulp with the settling velocity in water between 2 and 5 seconds, the mean fiber size of 8 to 25 μm, the apparent bulk density of 0.04 to 0.07 g/cm3, and the absorption for 0.9% physiological saline of at least 20-fold with respect to the pulp mass. The absorber has a thickness change of at least 600%, as the thickness after having absorbed 0.9% physiological saline with respect to the thickness before absorbing 0.9% physiological saline. When addition of 80 mL of 0.9% physiological saline to the absorbent article over a period of 10 seconds is performed three times every 10 minutes and the absorption rate of the absorbent article for each of the three times is evaluated as the time from addition of the 0.9% physiological saline until complete absorption, the absorption rate for each of the three times is not greater than 20 seconds.
    • 一种含有非木浆的吸收剂,其沉降速度在水中为2至5秒,平均纤维尺寸为8至25μm,表观松密度为0.04至0.07g / cm 3,并且0.9%生理盐水的吸收为 相对于纸浆质量至少为20倍。 吸收剂的厚度变化至少为600%以下,因为在吸收0.9%生理盐水之前相对于厚度吸收0.9%生理盐水后的厚度。 在10秒钟内向吸收性物品中加入80mL的0.9%生理盐水,每10分钟进行3次,吸收性物品的吸收速度为3次, 0.9%的生理盐水直至完全吸收,三次中的每一次的吸收速率不大于20秒。