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    • 1. 发明申请
    • SERVICE DEVICE AND SERVICE METHOD
    • 服务设备检修规程
    • WO2011107364A3
    • 2011-12-08
    • PCT/EP2011052533
    • 2011-02-21
    • KUKA SYSTEMS GMBHBECK DIETMARSCHMIDT DIETERJAKOB MARIUS
    • BECK DIETMARSCHMIDT DIETERJAKOB MARIUS
    • H01L21/677
    • H01L21/67742G01R31/2893H02S50/10
    • The invention relates to a service device for handling devices (2) of workpieces (3), in particular solar cell assemblies or strings, which comprises a test device (12) for the workpiece (3) and the handling device (2). The invention also relates to a handling device (2) for workpieces (3), in particular solar cell assemblies or strings, which comprises a multi-axis manipulator (7) having a gripper device (10) for a workpiece (3). A service device (11) is arranged in the working region (83) of the manipulator (7) with a test device (12) for jointly testing the workpiece (3) and the handling device (2), in particular the manipulator (7) and/or the gripper device (10). The invention further relates to a production device for solar elements (6), a service method for handling devices (2) of workpieces (3) and to a service device.
    • 本发明涉及一种Serviceeinricht?伍用于处理装置(2)的工件(3),特别是太阳能电池布置,或串,具有测试设备(12),用于在工件(3)和用于处理的装置(2)。 本发明还涉及一种操作装置(2)用于工件(3),特别是用于太阳能电池阵列或字符串,其具有一个多轴操纵器(7)与用于工件(3)的抓握装置(10)。 在操纵器的工作区(83)(7)是具有用于对工件的常见检查的测试设备(12),一个服务设备(11)(3)和所述操作装置(2),特别是操纵器的(7)和/或所述夹持装置(10 )被布置。 本发明还涉及到太阳能元件的制造装置(6),一种处理设备服务的方法(2)的工件(3)和服务设施。
    • 2. 发明申请
    • TEST DEVICE AND A TEST METHOD
    • 测试设备和程序
    • WO2011110419A3
    • 2011-12-29
    • PCT/EP2011052540
    • 2011-02-21
    • KUKA SYSTEMS GMBHBECK DIETMARSCHMIDT DIETER
    • BECK DIETMARSCHMIDT DIETER
    • H01L21/67G01R31/26H01L31/18
    • H01L21/67265H02S50/10
    • The invention relates to a test device for a workpiece (3), in particular a multilayer solar module having a solar cell arrangement (4). The test device (2) has a supporting device (24), which acts on an inner area (10) of the lower face (9) of the workpiece (3), and an optical recording device (34), which views the lower face (9). The recording device (34) produces a test image (40) of the lower face (9), on which that area (24) which is covered by the supporting device (24) is made visible. The invention also relates to a manufacturing facility for multilayer solar modules (3) having a solar cell arrangement (4), which has a test device (2). The invention furthermore relates to a method for testing a workpiece (3), in particular a multilayer solar module having a solar cell arrangement (4). The workpiece (3) is supported on an inner area (10) of its lower face (9) by a supporting device (24) which acts there.
    • 本发明涉及用于工件(3),特别是多层太阳能模块的测试装置与太阳能电池阵列(4)。 所述测试设备(2)在所述底面的内部区域(10)具有(3)接合所述支撑装置(24)和一个上寻找光学检测装置(34)的下侧(9)的工件(9)。 所述检测装置(34)生成所述底部(9),在该由支承装置(24)覆盖的区域(24)是可见的测试图像(40)。 本发明还涉及一种用于多层太阳能模块(3)太阳能电池阵列的制造装置(4),其具有测试设备(2)。 本发明还涉及一种方法,用于测试的工件(3),特别是多层的太阳能模块的太阳能电池阵列(4)。 所述工件(3)在它的一个进攻有支撑装置(24)的底部(9)的内部区域(10)被支撑。
    • 5. 发明申请
    • HERMETIC HIGH FREQUENCY MODULE AND METHOD FOR PRODUCING THE SAME
    • 密封高频模块和制造方法
    • WO0201630A3
    • 2002-11-21
    • PCT/DE0102117
    • 2001-06-06
    • EADS DEUTSCHLAND GMBHGRUPP MARKUSSCHMIDT DIETER
    • GRUPP MARKUSSCHMIDT DIETER
    • H01P1/30H01L21/48H01L23/544H01L23/66H01P3/12H01L23/04H01L23/10
    • H01L23/66H01L21/481H01L23/544H01L2924/0002H01L2924/00
    • The invention relates to a high frequency module with a hollow conductor structure, consisting of a housing bottom and a housing lid, preferably consisting of ceramic. The housing bottom and the housing lid are preferably co-ordinated with each other in terms of their expansion characteristics. The adjusting device is mounted on the housing lid for positioning on the housing bottom, and consists of a raised photosensitive resist part which tapers conically starting from the housing lid. The adjusting device engages with the hollow conductor on assembly. The layer thickness of the adjusting device is approximately 100 to 200 um. The housing bottom and the housing lid are permanently interconnected by soldering, preferably using solders which are introduced galvanically in solder deposits. To this end, the solder is either applied locally to the housing lid surface or introduced in vias which are structured in the lid.
    • 本发明包括具有波导结构的高频模块,其由壳体底部和壳体盖组成,壳体盖优选由陶瓷制成。 后盖和封面的扩展行为相匹配。 在壳体盖上,调节装置被安装用于定位在壳体底部。 调整装置由一个Photolackerhöhung组成,该锥形从壳体盖开始锥形渐缩。 调节装置在组装期间接合在波导中。 调整装置的层厚约为100〜200μm。 外壳盖和外壳底部通过焊料连接。 优选使用焊料以电镀方式引入焊料沉积物中。 为此,焊料可以局部施加到壳体盖表面上,或者引入到盖中构成的通孔中。
    • 6. 发明申请
    • METHOD FOR SOLDERING
    • 方法用于焊接
    • WO2008145513A3
    • 2009-02-12
    • PCT/EP2008055893
    • 2008-05-14
    • ENDRESS & HAUSER WETZER GMBHSCHMIDT DIETER
    • SCHMIDT DIETER
    • B23K1/00B23K1/002B23K20/00
    • B23K1/002B23K1/0016B23K1/005B23K1/012B23K2201/42
    • The invention relates to a method for soldering a first element (1) to a second element (2), a solder (5) being applied in the zone of junction (3), the junction being produced in at least one zone of junction (3). According to the invention, the first element (1) is only heated in a heating zone (4), said heating (4) being different from the zone of junction (3), and the first element (1) being heated in such a manner that the first element (1) has a temperature above the melting point of the solder (5) in at least one melting zone (6). The invention also relates to a field device of process and automation engineering that is produced according to this method.
    • 其中,焊料(5)在连接区被施加(3)本发明涉及一种方法,用于与第二构件(2)焊接的第一部件(1),并且其中所述化合物是在一个连接区域中的至少(3)产生 , 本发明包括使第一元件(1)仅在一个Erhitzbereich(4),其中,所述Erhitzbereich(4)是从连接区域(3)不同的加热,并且其中,所述第一元件(1)被加热,使得第一 元件(1)具有至少一个熔融部(6)具有焊料的熔点以上的温度(5)。 此外,本发明涉及一种方法和自动化技术的相应产生的现场设备。
    • 7. 发明申请
    • DOSING SYSTEM AND METHOD FOR THE DOSING OF A MEDIUM
    • 给药系统和给药方法
    • WO2010052002A8
    • 2010-08-05
    • PCT/EP2009007940
    • 2009-11-05
    • SARTORIUS STEDIM BIOTECH GMBHSARTORIUS AGREIF OSCAR-WERNERBAUMFALK REINHARDSCHMIDT DIETEROLDENDORF CHRISTIANWEITEMEIER SWEN
    • REIF OSCAR-WERNERBAUMFALK REINHARDSCHMIDT DIETEROLDENDORF CHRISTIANWEITEMEIER SWEN
    • B01F13/10B01F15/04
    • B01F13/1055B01F15/0445
    • The present invention relates to a dosing system and method for the dosing of a medium, having a dosing controller (4), at least one container (2) which can be exchanged and which contains the medium for dosing, and having a dosing valve (3, 3') which can be connected to the container (2). At least one part of the dosing valve (3, 3') which comes into contact with the medium is designed as an exchangeable system component (7, 10), and also has a coding which can be read by a machine and which serves for identification. The at least one container (2), as an exchangeable system component, has a coding which can be read by a machine and which serves for identification, and the exchangeable parts (2, 7, 10, 19) that come into contact with the medium are designed as single-use parts. The dosing controller (4) is connected to a communication unit (5) for reading the coding, and the communication unit (5) has a unique reading connection (22) to each exchangeable system component (2, 7, 10, 19).
    • 计量系统和方法,用于定量给料的介质与计量控制单元(4),含有介质的至少一个要被匀称可互换容器(2)和连接到所述容器(2)的计量阀(3,3“),至少一个与所述介质 接触所述计量阀(3,3“)的传入一部分形成一可更换的系统组件(7,10),并具有用于识别的机器可读代码,所述至少一个容器(2)为可更换系统部件(2)用于识别的机器可读编码 其中,所述进入与介质可交换部件接触(2,7,10,19)被设计为一次性部件,并且其中所述剂量控制单元(4)用的通信单元(5)连接,用于读取码,并且其中,所述通信单元(5 )到每个可更换系统组件(2,7,10,19)或它们的编码具有其自己的读取连接(22)。