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    • 2. 发明授权
    • Method for manufacturing solar cell using silicon powder
    • 使用硅粉制造太阳能电池的方法
    • US08603850B2
    • 2013-12-10
    • US13591628
    • 2012-08-22
    • Hiroaki OkaNariaki Oka
    • Hiroaki OkaNariaki Oka
    • H01L21/00H01L21/324H01L21/477
    • H01L31/1804C23C24/10H01L31/068Y02E10/547Y02P70/521
    • To provide a method for manufacturing a solar cell, whereby solar cells can be mass-produced by a simple process at low cost. A first conductivity-type silicon powder (11) is prepared, a silicon powder layer (11a) is formed by disposing the powder in the form of a layer, the powder layer is melted by heating the powder layer to the melting point of silicon or higher, and a first conductivity-type silicon layer (11b) is formed by cooling the melted layer. A second conductivity-type silicon powder (12) is prepared, a second conductivity-type silicon powder layer (12a) is formed by disposing the powder in the form of a layer on the first conductivity-type silicon layer (11b), the powder layer is melted by heating the powder layer to the melting point of silicon or higher, and a second conductivity-type silicon layer (12b) is formed by cooling the melted layer.
    • 为了提供太阳能电池的制造方法,能够以简单的方法以低成本大量生产太阳能电池。 制备第一导电型硅粉末(11),通过将粉末以层的形式设置形成硅粉末层(11a),通过将粉末层加热至硅的熔点或熔融温度 并且通过冷却熔融层形成第一导电型硅层(11b)。 制备第二导电型硅粉末(12),通过在第一导电型硅层(11b)上设置层状的粉末形成第二导电型硅粉末层(12a),粉末 通过将粉末层加热到硅的熔点以上来熔融层,并且通过冷却熔融层形成第二导电型硅层(12b)。
    • 4. 发明申请
    • METHOD FOR MANUFACTURING SOLAR CELL USING SILICON POWDER
    • 使用硅粉制造太阳能电池的方法
    • US20130045559A1
    • 2013-02-21
    • US13591628
    • 2012-08-22
    • Hiroaki OkaNariaki Oka
    • Hiroaki OkaNariaki Oka
    • H01L31/18
    • H01L31/1804C23C24/10H01L31/068Y02E10/547Y02P70/521
    • To provide a method for manufacturing a solar cell, whereby solar cells can be mass-produced by a simple process at low cost. A first conductivity-type silicon powder (11) is prepared, a silicon powder layer (11a) is formed by disposing the powder in the form of a layer, the powder layer is melted by heating the powder layer to the melting point of silicon or higher, and a first conductivity-type silicon layer (11b) is formed by cooling the melted layer. A second conductivity-type silicon powder (12) is prepared, a second conductivity-type silicon powder layer (12a) is formed by disposing the powder in the form of a layer on the first conductivity-type silicon layer (11b), the powder layer is melted by heating the powder layer to the melting point of silicon or higher, and a second conductivity-type silicon layer (12b) is formed by cooling the melted layer.
    • 为了提供太阳能电池的制造方法,能够以简单的方法以低成本大量生产太阳能电池。 制备第一导电型硅粉末(11),通过将粉末以层的形式设置形成硅粉末层(11a),通过将粉末层加热至硅的熔点或熔融温度 并且通过冷却熔融层形成第一导电型硅层(11b)。 制备第二导电型硅粉末(12),通过在第一导电型硅层(11b)上设置层状的粉末形成第二导电型硅粉末层(12a),粉末 通过将粉末层加热到硅的熔点以上来熔融层,并且通过冷却熔融层形成第二导电型硅层(12b)。
    • 7. 发明授权
    • Probe for measuring electric potential of cell
    • 用于测量电池电位的探头
    • US07736477B2
    • 2010-06-15
    • US10595275
    • 2005-07-14
    • Masaya NakataniNobuhiko OzakiHiroaki Oka
    • Masaya NakataniNobuhiko OzakiHiroaki Oka
    • G01N33/487
    • G01N33/48728
    • A probe for measuring an electric potential of a cell includes a plate having a surface having a first cavity provided therein, and a sensor element provided in the first cavity. A second cavity is provided in the bottomsurface of the first cavity. The first flow passage having first and second openings is provided in the plate. The first and second openings of the first flow passage open to the second cavity and outside the plate, respectively. The sensor element includes a thin plate, and a supporting substrate provided around the thin plate and in the first cavity of the plate. The thin plate has a through-hole therein having a first opening and a second opening communicating with the second cavity of the plate. The first flow passage allows fluid to flow therein. A sucking device is coupled with the second opening of the first flow passage as to suck the fluid flowing in the first flow passage. This probe can measure an electric potential of a cell floating in solution as it is in this environment.
    • 用于测量电池的电位的探针包括具有设置在其中的具有第一腔的表面的板和设置在第一腔中的传感器元件。 在第一腔的底面设有第二腔。 具有第一和第二开口的第一流动通道设置在板中。 第一流动通道的第一和第二开口分别向第二腔室和板外开口。 传感器元件包括薄板,以及设置在薄板周围和板的第一腔中的支撑基板。 薄板的通孔中具有第一开口和与板的第二腔连通的第二开口。 第一流道允许流体流入其中。 抽吸装置与第一流动通道的第二开口联接以吸收在第一流动通道中流动的流体。 该探头可以在这种环境中测量浮动在溶液中的电池的电位。