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    • 2. 发明申请
    • RAW MODULE FOR PRODUCING A THIN-FILM SOLAR MODULE, AND THIN-FILM SOLAR MODULE
    • 用于生产薄膜太阳能模块的原始模块和薄膜太阳能模块
    • US20120199178A1
    • 2012-08-09
    • US13365322
    • 2012-02-03
    • Hermann WagnerWalter PsykPeter Lechner
    • Hermann WagnerWalter PsykPeter Lechner
    • H01L31/042
    • H01L31/0468H01L31/046H01L31/0465Y02E10/50
    • A raw module is provided that includes a substrate, a front electrode layer, a semiconductor layer, and a rear electrode layer. The layers are separated by structuring trenches into sub cells, which are electrically connected in series in an interconnection direction. The module has a first separating region separating the module into two sub modules along a first separating line running in the interconnection direction. The separating region includes: a first and a second isolation trench running parallel to one another and on both sides of the first separating line in the interconnection direction; a third isolation trench extending from the first isolation trench at least as far as the first separating line but not as far as the second isolation trench; and a fourth isolation trench extending from the second isolation trench at least as far as the separating line but not as far as the first isolation trench.
    • 提供了一种包括基板,前电极层,半导体层和后电极层的原始模块。 通过将沟槽构造成子电池来分离层,其沿互连方向串联电连接。 该模块具有第一分离区域,该第一分离区域沿着在互连方向上运行的第一分隔线将模块分成两个子模块。 分离区域包括:在互连方向上彼此平行并且在第一分离线的两侧上延伸的第一和第二隔离沟槽; 从所述第一隔离沟槽延伸的第三隔离沟槽至少与所述第一分隔线相同但不等于所述第二隔离沟槽; 以及从所述第二隔离沟槽延伸的第四隔离沟槽至少与所述分离线相同但不等于所述第一隔离沟槽的距离。
    • 5. 发明授权
    • Semiconductor detector with optimised radiation entry window
    • 具有优化辐射入口窗的半导体探测器
    • US07105827B2
    • 2006-09-12
    • US10741198
    • 2003-12-19
    • Peter LechnerGerhard LutzLothar Strueder
    • Peter LechnerGerhard LutzLothar Strueder
    • G01T1/24
    • H01L31/115H01J2237/2441H01L31/022408
    • Described is a semiconductor detector for detecting electromagnetic radiation or particle radiation, comprising a semiconductor body (10) of a first conduction type, comprising first and second main surfaces; a group of drift electrodes comprising a second, opposite, conduction type, with said drift electrodes being arranged on the first main surface for generating at least one drift field in the semiconductor body (10); and a counterelectrode arrangement (30) which is arranged on the second main surface, which comprises the second conduction type and which forms a radiation entry window, wherein the counterelectrode arrangement (30) comprises a two-dimensional main electrode (31) and at least one barrier electrode (32) which are electrically insulated from each other, and wherein the barrier electrode (32), of which there is at least one, is connected to a voltage source (50) and is designed such that a blocking voltage is applied to it relative to the semiconductor body (10), with said blocking voltage exceeding the blocking voltage of the main electrode (31).
    • 描述了一种用于检测电磁辐射或粒子辐射的半导体检测器,包括第一和第二主表面的第一导电类型的半导体本体(10) 一组漂移电极,包括第二相对导电型,所述漂移电极布置在第一主表面上,用于在半导体本体(10)中产生至少一个漂移场; 和布置在第二主表面上的反电极布置(30),其包括第二导电类型并形成辐射入口窗,其中反电极布置(30)包括二维主电极(31),并且至少包括 一个彼此电绝缘的阻挡电极(32),并且其中至少有一个的阻挡电极(32)连接到电压源(50),并被设计成施加阻塞电压 相对于半导体本体(10),其中所述阻挡电压超过主电极(31)的阻断电压。
    • 6. 发明授权
    • Thin-film solar module
    • 薄膜太阳能组件
    • US06013870A
    • 2000-01-11
    • US232887
    • 1999-01-15
    • Walter PsykPeter Lechner
    • Walter PsykPeter Lechner
    • H01L27/142H01L31/046H01L31/042H01L31/05
    • H01L27/142H01L31/046Y02E10/50
    • This solar module in integrated thin-film technology consists of a number of solar cells 11, 12, 13, 14 tandem mounted and series-connected on common substrate 1 and a number of diodes 21, 22, 23, 24 disposed parallel and adjacent thereto. Overlap zones 10, 20 are formed by a projecting edge area of electrode layer 2, 4 of a solar cell or diode engaging a recess in the corresponding electrode layer of the adjacent diode or solar cell. Each diode is connected in the reverse direction with the adjacent solar cell in at least two overlap zones, i.e. front electrode layer 2 of the diode with back electrode layer 4 of the solar cell in at least one of said overlap zones 10, and back electrode layer 4 of the diode with front electrode layer 2 of the solar cell in at least one other overlap zone 20.
    • 该集成薄膜技术的太阳能模块由多个并联安装并串联连接在公共基板1上的多个太阳能电池11,12,13,14组成,并且多个二极管21,22,23,24平行并相邻配置 。 重叠区10,20由与相邻二极管或太阳能电池的相应电极层中的凹部接合的太阳能电池或二极管的电极层2,4的突出边缘区域形成。 每个二极管在与至少两个重叠区域中的相邻太阳能电池相反的方向上连接,即在至少一个所述重叠区域10中的具有太阳能电池的背面电极层4的二极管的前部电极层2和背面电极 二极管的层4与太阳能电池的前电极层2在至少一个其它重叠区20中。
    • 7. 发明授权
    • Device for fastening a mounting frame for hygienic apparatus
    • 用于安装卫生设备的安装框架的装置
    • US5138802A
    • 1992-08-18
    • US550074
    • 1990-07-09
    • Peter Lechner
    • Peter Lechner
    • A47K1/00A47K1/05E03C1/32E03C1/322E03D11/14
    • A47K1/05E03C1/322E03D11/146Y10T403/4697
    • Device for attaching a mounting frame to a building wall. The frame has openings in its side walls into which holders (2) made of plastic stops are inserted. The holders (2) have a receiving part (2a) with two openings extending at right angles to one another and into which a connecting piece (10, 6) and a bolt (3) are slid. The connecting piece (10, 6) includes a shaft with corrugations which engage matching corrugations on the bolt (3). The connecting pieces (10, 6) can be detachably attached to a holder (2) in any insert depth without the use of tools. The device serves in particular to fasten a mounting frame during installation of a temporary wall.
    • 用于将安装框架连接到建筑物墙壁的装置。 框架在其侧壁上具有开口,其中插入由塑料挡块制成的保持件(2)。 保持器(2)具有接收部分(2a),其具有彼此成直角延伸的两个开口,连接件(10,6)和螺栓(3)滑动到该接收部分中。 连接件(10,6)包括具有波纹的轴,其接合螺栓(3)上的匹配的波纹。 在不使用工具的情况下,连接片(10,6)能够以任何插入深度可拆卸地附接到保持器(2)。 该装置特别用于在安装临时墙壁期间紧固安装框架。