会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 7. 发明授权
    • Method for manufacturing multi-junction solar cell
    • 制造多结太阳能电池的方法
    • US07709288B2
    • 2010-05-04
    • US11826656
    • 2007-07-17
    • Hajime Goto
    • Hajime Goto
    • H01L21/00H01L31/0376
    • H01L31/035281H01L31/0725H01L31/0735H01L31/1852Y02E10/544Y02P70/521
    • The present invention provides a method for manufacturing a multi-junction solar cell which makes it possible to implement a 4-junction solar cell and to increase the area of a device. A nucleus generation site is disposed on a substrate 2 made of a first semiconductor. A first material gas is fed to the nucleus generation site to form a wire-like semiconductor 3 in the nucleus generation site. A third material gas and a fourth material gas are fed to form a wire-like semiconductor 4 on the semiconductor 3 and a wire-like semiconductor 5 on the semiconductor 4. A nucleus generation site is disposed on a substrate 6. The first material gas is fed to the nucleus generation site to form a wire-like semiconductor 2a in the nucleus generation site. A second material gas to the fourth material gas are fed to form the wire-like semiconductor 3 on the semiconductor 2a, the wire-like semiconductor 4 on the semiconductor 3, and the wire-like semiconductor 5 on the semiconductor 4. The bandgaps of the semiconductors decrease and increase consistently with the distance to the substrate 2 or 6. The nucleus generation site is made of catalytic particles such as Au. The semiconductors 2 and 2a are Ge, the semiconductor 3 is InxGa1-xAs, the semiconductor 4 is GaAs, and the semiconductor 5 is AlyGa1-yAs.
    • 本发明提供了一种多结太阳能电池的制造方法,其可以实现4结太阳能电池并增加器件的面积。 核生成部位设置在由第一半导体构成的基板2上。 第一原料气体被供给至产生核生成部位以在核生成部位形成丝状半导体3。 进料第三原料气体和第四原料气体,以在半导体3上形成丝状半导体4,在半导体4上形成线状半导体5.将核生成部位配置在基板6上。第一原料气体 被送入核产生部位,以在核生成部位形成丝状半导体2a。 进料到第四原料气体的第二原料气体以在半导体2a上形成线状半导体3,在半导体3上形成线状半导体4,并且在半导体4上形成线状半导体5.带隙 半导体与到基板2或6的距离一致地减小并增加。核产生位置由诸如Au的催化颗粒制成。 半导体2和2a是Ge,半导体3是In x Ga 1-x As,半导体4是GaAs,半导体5是Al y Ga 1-y As。
    • 10. 发明授权
    • Gas cooking stove
    • 燃气灶
    • US06505620B1
    • 2003-01-14
    • US09431879
    • 1999-11-02
    • Hajime Goto
    • Hajime Goto
    • F24C520
    • F24C3/14Y02B40/166
    • A gas cooking stove is disclosed to which a very-small gas cylinder is joined in a one-touch manner and the state of joining is reliably maintained. When the gas cooking stove is used, the gas cooking stove can stably be installed. When the gas cooking stove is not used, the overall size can be reduced to save the space. Thus, the operability, safety and the portability can be improved. A valve mechanism, an operation member for opening/closing the valve mechanism and a piezoelectric spark unit are provided. Moreover, a stove body is provided which has an upper portion to which a dish is joined and a lower portion provided with a gas-cylinder joining portion to which a gas cylinder is joined. A grate is rotatively supported by the dish. The gas cylinder having a valve-joining cylindrical portion which is integrally formed with the gas cylinder, which accommodates a valve mechanism, in which the valve mechanism is secured and from which a stem is allowed to project over the valve-joining cylindrical portion is joined to the gas-cylinder joining portion in the one-touch manner. The gas cylinder has the valve-joining cylindrical portion which is held by a cylinder holding member.
    • 公开了一种气体烹饪炉,其中一个非常小的气瓶以一触式方式接合,并且可靠地保持接合状态。 当使用燃气灶具时,可以稳定地安装燃气灶具。 当不使用燃气灶具时,可以减小总体尺寸以节省空间。 因此,可以提高可操作性,安全性和便携性。 提供阀机构,用于打开/关闭阀机构的操作构件和压电火花单元。 此外,设置有具有接合盘的上部的炉体和设置有气缸接合的气缸接合部的下部。 盘子可旋转地支撑着格栅。 具有与容纳阀机构一体形成的气缸的阀接合圆筒部分的气缸连接在阀机构中,其中阀机构被固定并且杆能从该气缸突出到阀接合圆柱部分上, 以一触式方式连接到气缸接合部。 气瓶具有由气缸保持构件保持的阀接合圆筒部。