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    • 1. 发明授权
    • Method and device for detaching a component which is attached to a flexible film
    • 用于分离连接到柔性膜的部件的方法和装置
    • US07981246B2
    • 2011-07-19
    • US11596645
    • 2004-12-17
    • Joachim TrinksAndreas MarteWolfgang Herbst
    • Joachim TrinksAndreas MarteWolfgang Herbst
    • B32B38/10H01L21/46
    • H01L21/67132Y10S438/976Y10T156/1132Y10T156/1944
    • The invention relates to a film (2) which comprises a component (1) to be detached therefrom. Said film is placed in the area of the component on a detaching tool (5) that is provided with at least one supporting element (6) for the film, which extends in a plane of support (11). The film is sucked against the support element (6) and partially under the plane of support by exerting negative pressure. The area of the supporting element is provided with at least one surface section (8) which extends in the plane of support when the detaching process begins, and which can be displaced, once the component (1) is grasped by a suction tool (4), plane-parallel to the plane of support while the negative pressure is maintained. The invention allows to control the detaching process of the film in a controlled movement without damaging or displacing the component.
    • 本发明涉及一种薄膜(2),其包括要与其分离的组分(1)。 所述膜被放置在分离工具(5)上的部件的区域中,所述分离工具(5)设置有至少一个用于膜的支撑元件(6),该支撑元件在支撑件(11)的平面中延伸。 通过施加负压将膜吸附在支撑元件(6)上并部分地在支撑平面下方。 支撑元件的区域设置有至少一个表面部分(8),当分离过程开始时,至少一个表面部分(8)在支撑平面中延伸,并且一旦部件(1)被抽吸工具(4) ),平行于支撑平面,同时保持负压。 本发明允许在受控的运动中控制胶片的分离过程,而不损坏或移动该部件。
    • 3. 发明申请
    • Method and Device for Detaching a Component Which is Attached to a Flexible Film
    • 分离附着在柔性薄膜上的组件的方法和装置
    • US20070277929A1
    • 2007-12-06
    • US11596645
    • 2004-12-17
    • Joachim TrinksAndreas MarteWolfgang Herbst
    • Joachim TrinksAndreas MarteWolfgang Herbst
    • B32B38/10
    • H01L21/67132Y10S438/976Y10T156/1132Y10T156/1944
    • The invention relates to a film (2) which comprises a component (1) to be detached therefrom. Said film is placed in the area of the component on a detaching tool (5) that is provided with at least one supporting element (6) for the film, which extends in a plane of support (11). The film is sucked against the support element (6) and partially under the plane of support by exerting negative pressure. The area of the supporting element is provided with at least one surface section (8) which extends in the plane of support when the detaching process begins, and which can be displaced, once the component (1) is grasped by a suction tool (4), plane-parallel to the plane of support while the negative pressure is maintained. The invention allows to control the detaching process of the film in a controlled movement without damaging or displacing the component.
    • 本发明涉及一种薄膜(2),其包括要与其分离的组分(1)。 所述膜被放置在分离工具(5)上的部件区域中,所述分离工具(5)设置有至少一个用于膜的支撑元件(6),该支撑元件在支撑件(11)的平面中延伸。 通过施加负压将膜吸附在支撑元件(6)上并部分地在支撑平面下方。 支撑元件的区域设置有至少一个表面部分(8),当分离过程开始时,至少一个表面部分(8)在支撑平面中延伸,并且一旦部件(1)被抽吸工具(4) ),平行于支撑平面,同时保持负压。 本发明允许在受控的运动中控制胶片的分离过程,而不损坏或移动该部件。
    • 4. 发明授权
    • Thin film solar cell
    • 薄膜太阳能电池
    • US6124545A
    • 2000-09-26
    • US70344
    • 1998-04-30
    • Stefan BauerWolfgang HerbstBernd Schroeder
    • Stefan BauerWolfgang HerbstBernd Schroeder
    • H01L31/075H01L31/20H01L31/00
    • H01L31/202H01L31/075Y02E10/548Y02P70/521
    • In a thin-film solar cell having at least a p-type layer, an intrinsic layer of amorphous silicon and an n-type layer (p-i-n structure), the intrinsic layer has on the interface with the p-type layer an intrinsic interlayer with lower hydrogen content and greater density than the remaining intrinsic layer. The intrinsic layer is deposited on the p-type layer thermocatalytically by the hot wire method, the temperature of the filament being adjusted for controlling the layer properties, and the temperature of the substrate being less than 300.degree. C. The hot wire method can be conducted with an evacuable chamber in which a tantalum wire subjected to at least one weight is mounted in a meander shape at a distance from the substrate holder.
    • 在具有至少p型层,非晶硅本征层和n型层(pin结构)的薄膜太阳能电池中,本征层在与p型层的界面上具有本征中间层 较低的氢含量和比剩余的本征层更大的密度。 本征层通过热丝法热分解沉积在p型层上,调节丝的温度以控制层的性能,并且衬底的温度低于300℃。热丝法可以是 用可抽出的室进行,其中经受至少一个重量的钽线以与基板保持器一定距离的曲折形状安装。