Jan-Frederik
Jan Frederik Doddema, Stadskanaal NL
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20140357785 | COMPOSITION FOR COATING A SUBSTRATE AND METHOD FOR COATING A SUBSTRATE - The present invention relates to a composition comprising: (a) about 10 wt. % to about 90 wt. % of an amorphous polymer, said amorphous polymer having a glass transition temperature of lower than about −20° C., and (b) about 10 wt. % to about 90 wt. % of a solvent, wherein the amounts of (a) and (b) are calculated on the total weight of the composition, and wherein the solvent is a terpene having a boiling point of about 130° C. to about 270° C. The present invention also relates to a process for the application of a protective layer to a substrate, the process comprising application of a layer of the composition to the surface of the substrate or a part thereof. The present invention further relates to a container comprising the composition and a propellant. | 12-04-2014 |
20150112017 | COMPOSITION FOR THE APPLICATION OF A PROTECTIVE LAYER TO A SUBSTRATE AND METHOD FOR THE APPLICATION THEREOF - The present invention relates to a composition comprising: (a) about 5 wt. % to about 30 wt. % of an amorphous polymer, said amorphous polymer having a glass transition temperature of lower than about −20° C., (b) about 15 wt. % to about 60 wt. % of a filler, and (c) about 10 wt. % to about 80 wt. % of a solvent, wherein the amounts of (a), (b) and (c) are calculated on the total weight of the composition. The present invention also relates to a process for the application of a protective layer to a substrate, the process comprising application of a layer of the composition to the surface of the substrate or a part thereof. The present invention further relates to a container comprising the composition and a propellant. | 04-23-2015 |
Jan Frederik Fohr, Ransbach-Baumbach DE
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20150206632 | SOFT MAGNETIC IRON-COBALT-BASED ALLOY AND METHOD FOR THE PRODUCTION OF A SOFT MAGNETIC IRON-COBALT-BASED ALLOY - Soft magnetic iron-cobalt-based alloys and a method for producing semi-finished products from these alloys are disclosed. The alloys may have a composition consisting essentially of | 07-23-2015 |
Jan Frederik Hoogkamp, Breda NL
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20080297758 | Lithographic support structure - The invention relates to a transfer apparatus for transferring an object (W). the transfer apparatus comprises a gripper ( | 12-04-2008 |
20140333915 | Radiation Source - A radiation source (SO) suitable for providing a beam of radiation to an illuminator of a lithographic apparatus. The radiation source comprises a nozzle ( | 11-13-2014 |
Jan-Frederik Kuhn, Friedrichshafen DE
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20140148308 | METHOD FOR OPERATING A VEHICLE DRIVE TRAIN DURING A STARTING PROCESS - A method of operating a vehicle drive-train during a starting process. The drive-train has a drive mechanism which can couple a continuously-variable power-branched transmission in which a plurality of transmission ratios can be engaged. The transmission ratios can be varied continuously by adjusting a variator, the transmission driving a drive output. A force flow between the drive mechanism and the drive output can be produced by a frictional shifting element by appropriately adjusting the transmission capacity of the shifting element. When a start command is issued, a starting transmission ratio is engaged in the area of the transmission device. During the engagement of the starting transmission ratio the transmission capacity of the frictional shifting element is adjusted to values greater than zero. | 05-29-2014 |
Jan-Frederik Nekarda, Freiburg DE
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20090221112 | Method for Metallizing Semiconductor Elements and Use Thereof - The present invention relates to a method for metallizing semiconductor components in which aluminium is used. In particular in the case of products in which the process costs play a big part, such as e.g. solar cells based on silicon, a cost advantage can be achieved with the invention. In addition, the present invention relates to the use of the method, for example in the production of solar cells. | 09-03-2009 |
Jan-Frederik Nekarda, Freiburg Im Breisgau DE
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20110233711 | METHOD FOR LOCAL CONTACTING AND LOCAL DOPING OF A SEMICONDUCTOR LAYER - A method for local contacting and local doping of a semiconductor layer including the following process steps: A) Generation of a layer structure on the semiconductor layer through i) application of at least one intermediate layer on one side of the semiconductor layer, and ii) application of at least one metal layer onto the intermediate layer last applied in step i), wherein the metal layer at least partly covers the last applied intermediate layer, B) Local heating of the layer structure in such a manner that in a local region a short-time melt-mixture of at least partial regions of at least the layers: metal layer, intermediate layer and semiconductor layer, forms. After solidification of the melt-mixture, a contacting is created between metal layer and semiconductor layer. It is essential that in step A) i) at least one intermediate layer designed as dopant layer is applied, which contains a dopant wherein the dopant has a greater solubility in the semiconductor layer than the metal of the metal layer. | 09-29-2011 |