Laser length sensors for diagnostics of geometric dimensions and surface defects in precision engineering (Q10240): Difference between revisions
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(Removed claim: summary (P836): A new generation of super precise digitally controlled machines in the automotive industry makes it possible to prepare machinery with precision in the nanoscale. However, in order to ensure the highest level of reliability, this exact production requires a 100 % control of the achieved value of precision. The project aims at research and development of unique optical methods to allow for measurement of the geometrical dimensions of engineerin...) |
(Created claim: summary (P836): A new generation of super precise digitally controlled machines in the automotive industry allows you to process engineering products with precision up to the order of nanometers. However, in order to ensure the highest degree of reliability, this precise production requires % control of the accuracy value achieved. The aim of the project is to research and develop unique optical methods that allow the geometric dimensions of engineering product...) |
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A new generation of super precise digitally controlled machines in the automotive industry allows you to process engineering products with precision up to the order of nanometers. However, in order to ensure the highest degree of reliability, this precise production requires % control of the accuracy value achieved. The aim of the project is to research and develop unique optical methods that allow the geometric dimensions of engineering products to be measured in automated production lines with a resolution approaching the nanometer limit. a. (English) | |||||||||||||||
Property / summary: A new generation of super precise digitally controlled machines in the automotive industry allows you to process engineering products with precision up to the order of nanometers. However, in order to ensure the highest degree of reliability, this precise production requires % control of the accuracy value achieved. The aim of the project is to research and develop unique optical methods that allow the geometric dimensions of engineering products to be measured in automated production lines with a resolution approaching the nanometer limit. a. (English) / rank | |||||||||||||||
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Property / summary: A new generation of super precise digitally controlled machines in the automotive industry allows you to process engineering products with precision up to the order of nanometers. However, in order to ensure the highest degree of reliability, this precise production requires % control of the accuracy value achieved. The aim of the project is to research and develop unique optical methods that allow the geometric dimensions of engineering products to be measured in automated production lines with a resolution approaching the nanometer limit. a. (English) / qualifier | |||||||||||||||
point in time: 22 October 2020
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Revision as of 15:01, 22 October 2020
Project in Czech Republic financed by DG Regio
Language | Label | Description | Also known as |
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English | Laser length sensors for diagnostics of geometric dimensions and surface defects in precision engineering |
Project in Czech Republic financed by DG Regio |
Statements
22,663,123.2 Czech koruna
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37,104,000.0 Czech koruna
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61.08 percent
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1 January 2017
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28 September 2019
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MESING, spol. s r.o.
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61500
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Nová generace super přesných digitálně řízených strojů v automobilovém průmyslu umožňuje opracovávat strojírenské výrobky s přesností až v řádu nanometrů. Pro zajištění nejvyššího stupně spolehlivosti však tato přesná výroba vyžaduje stoprocentní kontrolu dosažené hodnoty přesnosti. Cílem projektu je výzkum a vývoj unikátních optických metod, které dovolí v automatizovaných výrobních linkách měřit geometrické rozměry strojírenských výrobků s rozlišením blížícím se nanometrové hranici. a. (Czech)
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A new generation of super precise digitally controlled machines in the automotive industry allows you to process engineering products with precision up to the order of nanometers. However, in order to ensure the highest degree of reliability, this precise production requires % control of the accuracy value achieved. The aim of the project is to research and develop unique optical methods that allow the geometric dimensions of engineering products to be measured in automated production lines with a resolution approaching the nanometer limit. a. (English)
22 October 2020
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Identifiers
CZ.01.1.02/0.0/0.0/15_019/0004676
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