Bloess
Harald Bloess, Radebeul DE
Patent application number | Description | Published |
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20090045336 | Scanning probe microscopy cantilever, corresponding manufacturing method, scanning probe microscope, and scanning method - The present invention provides a scanning probe microscope cantilever comprising a support portion, a lever portion extended from the support portion, and a needle projecting out of a first surface of the cantilever in the vicinity of a free end of the lever portion. From a second surface of the cantilever opposite the first surface, a bore extends through the needle to an aperture formed at a tip of the needle. To the tip of the needle, a substantially globular particle is attached. A method of scanning a sample surface comprises creating relative cantilever motion substantially toward the sample such that the particle experiences a contact force with the sample, illuminating a top surface of the cantilever with laser light such that a portion of the laser light passes through the hollow needle and is emitted from the aperture onto the particle, and detecting scattered light from the sample. | 02-19-2009 |
20090107399 | System and Method of Measuring Film Height on a Substrate - A system of film height measurements and method of measuring film height on a substrate are disclosed. A radiation source illuminates a beam of radiation in the optical range onto a substrate being coated with a layer having a nominal film height is provided. Reflected signals are recorded for two positions and a film height difference of the layer is calculated. | 04-30-2009 |
20090301894 | METHOD OF FABRICATING AN INTEGRATED CIRCUIT - A method of fabricating an integrated circuit comprising providing a substrate, forming a first layer on the substrate by electrochemical deposition using an electrolyte solution, and converting at least a portion of the first layer into a second layer by electrochemical oxidation using an electrolyte solution, the second layer being an oxide layer. | 12-10-2009 |
Harald Bloess, Erfurt DE
Patent application number | Description | Published |
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20110162686 | METHOD FOR INSTALLING PHOTOVOLTAIC MODULES AND A PHOTOVOLTAIC ARRAY - A method of installing a photovoltaic module includes providing a stationary substructure configured as a supporting and affixing structure and affixing the photovoltaic module to the substructure with an adhesive bond. A photovoltaic array includes a stationary substructure configured as a supporting and affixing structure and at least one photovoltaic module affixed to the substructure by an adhesive bond. | 07-07-2011 |
20110265842 | METHOD FOR MOUNTING PHOTOVOLTAIC MODULES AND A PHOTOVOLTAIC ARRAY - A method for mounting photovoltaic modules includes calculating a structural load of at least one photovoltaic module based on an expected mechanical load so as to determine optimal attachment locations on the at least one photovoltaic module for attachment elements. The attachment elements are disposed at the determined attachment locations so that the attachment elements extend partially over a section of the at least one photovoltaic module. The at least one photovoltaic module is attached to the substructure via the attachment elements. | 11-03-2011 |
Stephan Bloess, Burscheid DE
Patent application number | Description | Published |
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20100224480 | Method for Photocatalytic Separation from Surfactant-Containing Dispersions - The invention relates to a method for photocatalytic separation of a dispersed substance from a surfactant-containing dispersion. The surfactant-containing dispersion contains at least one dispersant, one dispersed substance, one surfactant and one photocatalyst. Irradiation of the photocalyst causes the decomposition or modification of the surfactant allowing for the separation of the dispersed substance from the dispersant. | 09-09-2010 |
20110184119 | Bismuth-Containing Catalytic System for Polymerising Polymers - Bismuth-containing catalytic systems, formed using inorganic particles coated with at least one inorganic or organic bismuth compound that is catalytically active when polymerising polymers, characterised in that the inorganic bismuth compound is selected from the group comprising bismuth oxychloride, bismuth hydroxo-sulphate and bismuth carbonate, and in that the organic bismuth compound is selected from the group comprising bismuth acetate, bismuth benzoate, bismuth citrate, bismuth lactate and bismuth phthalate. | 07-28-2011 |