Brandstätter
Anita Brandstätter, Innsbruck AT
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20100285463 | SELECTING NUCLEIC ACID SAMPLES SUITABLE FOR GENOTYPING - The present invention relates to a method for selecting a DNA sample comprising genomic DNA suitable for genotyping, comprising the steps of: i) pre-genotyping said genomic DNA using a set of polymorphic markers; ii) determining out of said set of polymorphic markers the percentage of polymorphic markers for which said genomic DNA is homozygous; and iii) selecting said DNA sample when said genomic DNA is homozygous for less than 70% of said set of polymorphic markers. Furthermore, a method of genotyping comprising a step of using a DNA sample selected by the method in accordance with the present invention and/or a step of applying the method provided herein is disclosed. The present invention also relates to a method for identifying a gene or a locus on a genome, said method comprising a step of using a DNA sample selected by the method provided herein and a step of applying the method described herein. Further, the present invention relates to a kit for carrying out the method in accordance with the present invention comprising primers for the amplification of the set of polymorphic markers employed herein. | 11-11-2010 |
Connye BrandstÄtter, Furt DE
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20100077661 | INSERT CONTAINER - The invention relates to an insert container for plant pots with a base, at least one side wall, which adjoins the base with a lower edge, is formed with an upper edge open at the top and surrounds an interior, a longitudinal axis extending perpendicular to the base, supports arranged on the base and extending in the direction of the longitudinal axis, at least one water-permeable watering device arranged on the base and at least one indentation which extends in the direction of the longitudinal axis, in the at least one side wall. | 04-01-2010 |
Connye BrandstÄtter, Furt DE
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20100077661 | INSERT CONTAINER - The invention relates to an insert container for plant pots with a base, at least one side wall, which adjoins the base with a lower edge, is formed with an upper edge open at the top and surrounds an interior, a longitudinal axis extending perpendicular to the base, supports arranged on the base and extending in the direction of the longitudinal axis, at least one water-permeable watering device arranged on the base and at least one indentation which extends in the direction of the longitudinal axis, in the at least one side wall. | 04-01-2010 |
Ingo Brandstätter, Kopfing Im Innkreis AT
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20130119688 | HANDLING DEVICE FOR HANDLING OF A WAFER - Handling device for handling of a wafer in the processing of the wafer with the following features: a carrier with a flat receiving side for holding the wafer, an especially lattice-like grid structure which is raised on the receiving side relative to the receiving side, a flexible cover which covers the grid structure relative to the carrier, sealing it, for fixing of the wafer on the carrier, and a grid space which is bordered by the cover and the carrier can be exposed to negative pressure, characterized in that the grid structure and the cover with the receiving side form an especially trough-shaped receiving space for holding of receiving structures which are provided on the wafer and which are raised relative to the wafer receiving side. | 05-16-2013 |
Klaus BrandstÄtter, Rosstal DE
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20130103380 | SYSTEM AND METHOD FOR CONTROLLING MULTIPLE COMPUTER PERIPHERAL DEVICES USING A GENERIC DRIVER - A method for controlling a peripheral hardware device connected to a computer system is disclosed, the computer system includes an operating system, acting as the host operating system, running on a processor platform, and a generic device driver configured to operate on the combination of the operating system and a processor platform. The peripheral hardware device is delivered with an original peripheral hardware device driver file written for at least one of another operating system and a another processor platform, handling, by the generic device driver, interfaces between the operating system, the peripheral hardware devices and a software application. These are configured to interact with the original peripheral device driver file, and emulating, by the generic device driver, at least a part of the another operating system and the another processor that are required for the peripheral hardware device to operate on the operating system and the processor. | 04-25-2013 |
Werner Brandstätter, Sankt Andra AT
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20110011499 | METHOD AND DEVICE FOR HARDENING PROFILES - The invention relates to a method for producing hardened profiles, in particular hardened open profiles, wherein the component is at least partly heated to above the austenitizing temperature of the base material and after heating the component is cooled at a rate above the critical hardening rate, the energy necessary for the heating being introduced at least partly by induction, wherein free edges are provided in the component to adjust a temperature or hardness gradient over the cross section of the component, the size, type and extension of the edges being set for a desired degree of hardness and/or hardness gradient. | 01-20-2011 |
20110076477 | METHOD FOR PRODUCING COATED AND HARDENED COMPONENTS OF STEEL AND COATED AND HARDENED STEEL STRIP THEREFOR - The invention relates to a method for the production of a hardened component made of a hardenable steel, wherein the steel strip is exposed to a temperature increase in an oven, and is thus exposed to an oxidizing treatment such that a surface oxide layer is created, and subsequently a coating using a metal or a metal alloy is carried out. The strip is heated and at least partially austenitized for producing an at least partially hardened component, and subsequently cooled and thereby hardened. The invention also relates to a steel strip produced according to said method. | 03-31-2011 |
Werner Brandstätter, Sankt Andra AT
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20110011499 | METHOD AND DEVICE FOR HARDENING PROFILES - The invention relates to a method for producing hardened profiles, in particular hardened open profiles, wherein the component is at least partly heated to above the austenitizing temperature of the base material and after heating the component is cooled at a rate above the critical hardening rate, the energy necessary for the heating being introduced at least partly by induction, wherein free edges are provided in the component to adjust a temperature or hardness gradient over the cross section of the component, the size, type and extension of the edges being set for a desired degree of hardness and/or hardness gradient. | 01-20-2011 |
20110076477 | METHOD FOR PRODUCING COATED AND HARDENED COMPONENTS OF STEEL AND COATED AND HARDENED STEEL STRIP THEREFOR - The invention relates to a method for the production of a hardened component made of a hardenable steel, wherein the steel strip is exposed to a temperature increase in an oven, and is thus exposed to an oxidizing treatment such that a surface oxide layer is created, and subsequently a coating using a metal or a metal alloy is carried out. The strip is heated and at least partially austenitized for producing an at least partially hardened component, and subsequently cooled and thereby hardened. The invention also relates to a steel strip produced according to said method. | 03-31-2011 |
Werner BrandstÄtter, Linz AT
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20110045316 | METHOD FOR PRODUCING A HARDENED PROFILED STRUCTURAL PART - The invention relates to a method for producing a hardened profiled structural part from a hardenable steel alloy with cathodic corrosion protection. The method includes applying a coating to a sheet made of a hardenable steel alloy, wherein the coating comprises zinc, and the coating further comprises one or several elements with affinity to oxygen in a total amount of 0.1 weight-% to 15 weight-% in relation to the total coating. After applying the coating, the coated sheet steel is roller-profiled in a profiling device, so that the sheet tape is formed into a roller-formed profiled strand. Thereafter, the coated sheet steel is brought, at least in parts and with the admission of atmospheric oxygen, to a temperature required for hardening and is heated to a structural change required for hardening. A skin made of an oxide of the element(s) with affinity to oxygen is formed on the surface of the coating. After sufficient heating the sheet is cooled, wherein the rate of cooling is set in such a way that hardening of the sheet alloy is achieved. The invention further relates to a corrosion-protection layer and a profiled structural element. | 02-24-2011 |
Werner BrandstÄtter, Linz AT
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20110045316 | METHOD FOR PRODUCING A HARDENED PROFILED STRUCTURAL PART - The invention relates to a method for producing a hardened profiled structural part from a hardenable steel alloy with cathodic corrosion protection. The method includes applying a coating to a sheet made of a hardenable steel alloy, wherein the coating comprises zinc, and the coating further comprises one or several elements with affinity to oxygen in a total amount of 0.1 weight-% to 15 weight-% in relation to the total coating. After applying the coating, the coated sheet steel is roller-profiled in a profiling device, so that the sheet tape is formed into a roller-formed profiled strand. Thereafter, the coated sheet steel is brought, at least in parts and with the admission of atmospheric oxygen, to a temperature required for hardening and is heated to a structural change required for hardening. A skin made of an oxide of the element(s) with affinity to oxygen is formed on the surface of the coating. After sufficient heating the sheet is cooled, wherein the rate of cooling is set in such a way that hardening of the sheet alloy is achieved. The invention further relates to a corrosion-protection layer and a profiled structural element. | 02-24-2011 |
20110139308 | METHOD FOR THE PRODUCTION AND REMOVAL OF A TEMPORARY PROTECTIVE LAYER FOR A CATHODIC COATING - The invention relates to a method for the production and removal of a temporary protective layer for a cathodic coating, particularly for the production of a hardened steel component with an easily paintable surface, wherein a steel sheet made of a hardenable steel alloy is subjected to a preoxidation, wherein said preoxidation forms a FeO layer with a thickness of 100 nm to 1,000 nm and subsequently a melt dip coating is conducted, wherein, during the melt dip coating, a zinc layer is applied having a thickness of 5 to 20 μm, preferably 7 to 14 μm, on each side, wherein the melt dip process and the aluminum content of the zinc bath is adjusted such that, during the melt dip coating, an aluminum content for the barrier layer results of 0.15 g/m | 06-16-2011 |