Jürgen Schneider
Jürgen Schneider, Balingen-Frommern DE
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20090211304 | Transfer needle with internal spring tip - In a transfer needle ( | 08-27-2009 |
20110072859 | SLIDER NEEDLE WITH BUILT-IN CENTER STRIP - A slider needle ( | 03-31-2011 |
Jürgen Schneider, Kirchzarten DE
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20100044739 | Light-Radiating Semiconductor Component with a Luminescence Conversion Element - The light-radiating semiconductor component has a radiation-emitting semiconductor body and a luminescence conversion element. The semiconductor body emits radiation in the ultraviolet, blue and/or green spectral region and the luminescence conversion element converts a portion of the radiation into radiation of a longer wavelength. This makes it possible to produce light-emitting diodes which radiate polychromatic light, in particular white light, with only a single light-emitting semiconductor body. A particularly preferred luminescence conversion dye is YAG:Ce. | 02-25-2010 |
20100176344 | WAVELENGTH-CONVERTING CASTING COMPOSITION AND LIGHT-EMITTING SEMICONDUCTOR COMPONENT - The wavelength-converting casting composition is based on a transparent epoxy casting resin with a luminous substance admixed. The composition is used in an electroluminescent component having a body that emits ultraviolet, blue or green light. An inorganic luminous substance pigment powder with luminous substance pigments is dispersed in the transparent epoxy casting resin. The luminous substance is a powder of Ce-doped phosphors and the luminous substance pigments have particle sizes≦20 μm and a mean grain diameter d | 07-15-2010 |
Jürgen Schneider, Balingen-Frommern DE
Patent application number | Description | Published |
---|---|---|
20090211304 | Transfer needle with internal spring tip - In a transfer needle ( | 08-27-2009 |
20110072859 | SLIDER NEEDLE WITH BUILT-IN CENTER STRIP - A slider needle ( | 03-31-2011 |
Jürgen Schneider, Kirchzarten DE
Patent application number | Description | Published |
---|---|---|
20100044739 | Light-Radiating Semiconductor Component with a Luminescence Conversion Element - The light-radiating semiconductor component has a radiation-emitting semiconductor body and a luminescence conversion element. The semiconductor body emits radiation in the ultraviolet, blue and/or green spectral region and the luminescence conversion element converts a portion of the radiation into radiation of a longer wavelength. This makes it possible to produce light-emitting diodes which radiate polychromatic light, in particular white light, with only a single light-emitting semiconductor body. A particularly preferred luminescence conversion dye is YAG:Ce. | 02-25-2010 |
20100176344 | WAVELENGTH-CONVERTING CASTING COMPOSITION AND LIGHT-EMITTING SEMICONDUCTOR COMPONENT - The wavelength-converting casting composition is based on a transparent epoxy casting resin with a luminous substance admixed. The composition is used in an electroluminescent component having a body that emits ultraviolet, blue or green light. An inorganic luminous substance pigment powder with luminous substance pigments is dispersed in the transparent epoxy casting resin. The luminous substance is a powder of Ce-doped phosphors and the luminous substance pigments have particle sizes≦20 μm and a mean grain diameter d | 07-15-2010 |
20120241779 | Light-Radiating Semiconductor Component with a Luminescence Conversion Element - The light-radiating semiconductor component has a radiation-emitting semiconductor body and a luminescence conversion element. The semiconductor body emits radiation in the ultraviolet, blue and/or green spectral region and the luminescence conversion element converts a portion of the radiation into radiation of a longer wavelength. This makes it possible to produce light-emitting diodes which radiate polychromatic light, in particular white light, with only a single light-emitting semiconductor body. A particularly preferred luminescence conversion dye is YAG:Ce. | 09-27-2012 |
Jürgen Schneider, Bobenheim Am Berg DE
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20110257272 | MIXED CRYSTALS, METHOD FOR THE PRODUCTION THEREOF AND USE THEREOF IN THE PRODUCTION OF BAKED GOODS - The present invention relates to mixed crystals comprising a) leavening agent and b) 0.1 to 5000 ppm by weight of crystallization aid, based on the total amount of the leavening agent, in the form of at least polymer, wherein when hydrophilic cellulose derivatives are used as crystallization aid, the amount thereof is reduced to less than 100 ppm by weight, based on the total amount of the leavening agent. The present invention further relates to the production of the mixed crystals and to the use thereof in the production of bakery products, as acid regulator in foods, in the production of cosmetics products, in the synthesis and formulation of pharmaceutical products, and also as blowing agent in industrial processes such as, for example, the production of foam rubber, or for fire-extinguishing formulations. The present invention relates, furthermore, to the production of bakery products. | 10-20-2011 |
20120263825 | PROCESS FOR PRODUCING BAKED GOODS - The present invention relates to a process for producing baked goods which is characterized in that a mixture of at least one baking raising agent and at least one substance selected from the group consisting of asparaginase, sulfites, bisulfites, metabisulfites and chlorides is used in the production of the baked goods dough. In addition, the present invention relates to a mixture of at least one baking raising agent and at least one substance selected from the group consisting of asparaginase, sulfites, bisulfites, metabisulfites and chlorides. In addition, the present invention relates to the use of sulfites and metabisulfites for decreasing acrylamide in foods. | 10-18-2012 |
Jürgen Schneider, Linden DE
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20150204653 | COORDINATE MEASURING METHOD AND COORDINATE MEASURING MACHINE FOR MEASURING SURFACES, COMPRISING AN OPTICAL SENSOR - Some embodiments of the invention relate to a coordinate measuring method for detecting an object surface by means of a coordinate measuring machine, comprising a measuring head for accommodating a sensor, a guiding unit for producing a relative movement of the measuring head in relation to the object surface in at least one direction, an optical sensor for detecting the object surface, and a control unit, the object surface being optically detected by the optical sensor during the coordinate measuring method, and a data set representing a surface profile in an object profile domain being generated. The data set is filtered by simulating contact of the surface profile represented by the data set with a virtual tactile sensor, and a tactile data set is derived from the simulated contact such that the tactile data set represents a virtual tactile surface profile in a virtual sensor domain. | 07-23-2015 |