{"id":14683,"date":"2024-04-26T13:21:24","date_gmt":"2024-04-26T11:21:24","guid":{"rendered":"https:\/\/www.ufe.cz\/patenty\/"},"modified":"2026-03-18T11:18:26","modified_gmt":"2026-03-18T10:18:26","slug":"patents","status":"publish","type":"page","link":"https:\/\/www.ufe.cz\/en\/patents\/","title":{"rendered":"Patents"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-page\" data-elementor-id=\"14683\" class=\"elementor elementor-14683 elementor-8945\" data-elementor-post-type=\"page\">\n\t\t\t\t<div class=\"elementor-element elementor-element-e87bd11 e-flex e-con-boxed e-con e-parent\" data-id=\"e87bd11\" data-element_type=\"container\">\n\t\t\t\t\t<div class=\"e-con-inner\">\n\t\t\t\t<div class=\"elementor-element elementor-element-1b5cf0e elementor-widget__width-initial elementor-widget elementor-widget-text-editor\" data-id=\"1b5cf0e\" data-element_type=\"widget\" data-widget_type=\"text-editor.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t\t\t\t\t<h3><span data-olk-copy-source=\"MessageBody\">Czech patents<\/span><\/h3><ol><li>M. Cifra, P. K\u016frka, D. Havelka, J. Havl\u00ed\u010dek. <strong>A method to determine complex permittivity<\/strong>. Czech Republic, Patent no. 309946, 9.6.2022.<\/li><li>H. Robert, M. Piliarik. <strong>Thermo-optical spatial light modulator<\/strong>. Czech Republic, Patent no. 308572, 29.10.2020.<\/li><li>P. Honz\u00e1tko. <strong>Reflective metallic resonance diffraction grating with flow mode, production and use<\/strong>. Czech Republic, Patent no. 308307, 18.3.2020.<\/li><li>J. Mr\u00e1zek. <strong>Colloidal diffusion source of phosphorus for preparing doped silicon<\/strong>. Czech Republic, Patent no. 308558, 19.10.2020.<\/li><li>H. L\u00edsalov\u00e1, E. Brynda, I. V\u00ed\u0161ov\u00e1, M. Houska, F. Surman, K. Mrkvov\u00e1, X. Chadtov\u00e1 Song, J. Homola. <strong>A method of preparing a surface of a substrate comprising carboxybetaine functional groups<\/strong>. Czech Republic, Patent no. 307026, 2017.<\/li><li>P. Peterka, P. Ko\u0161ka, O. Podrazk\u00fd, V. Mat\u011bjec, I. Ka\u0161\u00edk. <strong>Amplifying module, method of making the same, and cladding pumped<\/strong><br \/><strong>optical device incorporating the module<\/strong>. Czech Republic, Patent no. 305888, 9.3.2016.<\/li><li>C. Rodriguez-Emmenegger, F. Surman, E. Brynda, M. Houska, H. L\u00edsalov\u00e1, J. Homola. <strong>Polymeric brushes resistant to deposition of biological media components, process for their preparation and their use<\/strong>. Czech Republic, Patent no. 306039, 2016.<\/li><li>P. Ko\u0161ka, P. Peterka, M. P\u00edsa\u0159\u00edk. <strong>Mode field adapter for signal branch of pump and signal combiners, combiner, and optical device<\/strong>. Czech Republic, Patent no. 305868, 2.3.2016.<\/li><li>P. Peterka, P. Honz\u00e1tko and R. Slav\u00edk. <strong>All-fiber passive Q-switched laser with passive Q-switching.<\/strong> Czech Republic, Patent no. 303333, 21.6.2012.<\/li><li>J. Homola, O. Telezhnikova, J. Dost\u00e1lek. <strong>Method for Spectroscopy of Surface Plasmons in Surface Plasmon Resonance Sensors and Element for the Use of Thereof<\/strong>. Czech Republic, Patent no. 299489, 2008.<\/li><li>P. Peterka, V. Mat\u011bjec, I. Ka\u0161\u00edk. <strong>Method and device for coupling the signal and pump into double-clad optical fiber for fiber amplifiers and lasers<\/strong>. Czech Republic, Patent no. 301215, 12.4.2005.<\/li><li>J. \u010ctyrok\u00fd, J. Dost\u00e1lek, J. Homola. <strong>Multichannel detection for optical sensors based on surface plasmons and sensor element for this purpose.<\/strong> Czech Republic, Patent no. 291728, 2003.<\/li><\/ol><h3>\u00a0<\/h3><h3><span data-olk-copy-source=\"MessageBody\">National patents granted abroad<\/span><\/h3><ol><li>H. Robert, M. Piliarik. <strong>Thermo-optical spatial light modulator<\/strong>. USA, Patent no. US11397163B2, 2026.<\/li><li>H. Robert, M. Piliarik. <strong>Thermo-optical spatial light modulator<\/strong>. Japan. Patent no. JPO JP 2022-521199, 2022.<\/li><li>C. Rodriguez-Emmenegger, F. Surman, E. Brynda, T. Riedel, M. Houska, H. L\u00edsalov\u00e1, J. Homola. <strong>COPOLYMER OF N-(2-HYDROXYPROPYL) METHACRYLAMIDE AND CARBOXYBETAINE METHACRYLAMIDE, POLYMER BRUSHES<\/strong>. Europe. Patent no. EP 3292161, 8.4.2020.<\/li><li>C. Rodriguez-Emmenegger, F. Surman, E. Brynda, T. Riedel, M. Houska, H. L\u00edsalov\u00e1, J. Homola. <strong>COPOLYMER OF N-(2-HYDROXYPROPYL) METHACRYLAMIDE AND CARBOXYBETAINE METHACRYLAMIDE, POLYMER BRUSHES<\/strong>. USA. Patent no. US 10626209, 21.4.2020.<\/li><li>J. Homola, M. Piliarik, I. Tich\u00fd, M. Vala, P. Adam, J. Hepnar, K. Chadt. <strong>Surface Plasmon Resonance coupler and Disperser Sensor<\/strong>. USA. Patent no. US 8094316, 1.10.2012.<\/li><li>J. Homola, O. Telezhnikova, J. Dost\u00e1lek. <strong>Method for Spectroscopy of surface plasmons in surface plasmon resonance sensors and an element for the use thereof<\/strong>. Canada. Patent no. CA 2598118, 14.6.2011.<\/li><li>J. Homola, O. Telezhnikova, J. Dost\u00e1lek. <strong>Method for Spectroscopy of surface plasmons in surface plasmon resonance sensors and an element for the use thereof. <\/strong>USA. Patent no. US 7973933, 5.7.2011.<\/li><li>J. Homola, O. Telezhnikova, J. Dost\u00e1lek. <strong>Method for Spectroscopy of surface plasmons in surface plasmon resonance sensors and an element for the use thereof<\/strong>. China. Patent no. CN101175989, 24.8.2011.<\/li><\/ol><h3>\u00a0<\/h3><h3><span data-olk-copy-source=\"MessageBody\">Utility models<\/span><\/h3><ol><li>I. Barto\u0148, P. Peterka, O. Podrazk\u00fd. <strong>Thulium-doped optical fiber<\/strong>. Czech Republic. Utility model no. 39239, 16.03.2026.<\/li><li>J. Mr\u00e1zek. <strong>Colloidal diffusion source of phosphorus for preparing N-type doped silicon prepared by dispersion with inorganic fillers<\/strong>. Czech Republic. Utility model no. 34310, 18.08.2020.<\/li><li>J. Mr\u00e1zek. <strong>Hydrophobic colloidal diffusion source of phosphorus for preparing doped silicon type N<\/strong>. Czech Republic. Utility model no. 34311, 18.08.2020.<\/li><li>J. Mr\u00e1zek. <strong>Colloidal diffuse source of phosphorus for preparing doped of the type N silicon.\u00a0<\/strong>Czech Republic. Utility model no. 32924, 10.6.2019.<\/li><li>J. Mr\u00e1zek. <strong>Colloidal boron diffusion source for the preparation of doped P-type silicon.<\/strong> Czech Republic. Utility model no. 33261, 30.09.2019.<\/li><li>P. Honz\u00e1tko. <strong>Single-frequency, wide-scalable fiber optic laser.<\/strong> Czech Republic. Utility model no. 31754, 7.5.2018.<\/li><li>O. Podrazk\u00fd, J. Mr\u00e1zek, I. Ka\u0161\u00edk, L. \u0160a\u0161ek, R. Schilhart. <strong>Optical pH meter with microscopic probe<\/strong>. Czech Republic. Utility model no. 30867, 31.7.2017.<\/li><li>P. Peterka, P. Ko\u0161ka, M. P\u00edsa\u0159\u00edk. <strong>Adaptor element of field profile of signal mergers and pumping, merger and optical device ng<\/strong>. Czech Republic. Utility model no. 28064, 09.4.2015.<\/li><li>P. Honz\u00e1tko. <strong>Widely tunable coherent optical signal generator for middle infrared spectrum. <\/strong>Czech Republic. Utility model no. 28042, 31.3.2015.<\/li><li>M. Nerudov\u00e1. <strong>Positioning light-tight chamber for parallel measurement of photon emission<\/strong>. Czech Republic. Utility model no. 26574, 26.11.2013.<\/li><li>M. Nerudov\u00e1. <strong>Light-tight chamber for measuring photon emission from biological samples<\/strong>. Czech Republic. Utility model no. 26119, 19.9.2013.<\/li><li>P. Honz\u00e1tko. <strong>Optical device for wave conversion of optical signals. <\/strong>Czech Republic. Utility model no. 20815, 26.4.2012.<\/li><li>J. Lorin\u010d\u00edk, F. Kostka. <strong>Electronic circuit for the electrostatic switching of ion or electron beams between the detectors of electrically charged particles. <\/strong>Czech Republic. Utility model no. 21419, 2.8.2010.<\/li><\/ol>\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t","protected":false},"excerpt":{"rendered":"<p>Czech patents M. Cifra, P. K\u016frka, D. Havelka, J. Havl\u00ed\u010dek. A method to determine complex permittivity. Czech Republic, Patent no. 309946, 9.6.2022. H. Robert, M. Piliarik. Thermo-optical spatial light modulator. Czech Republic, Patent no. 308572, 29.10.2020. P. Honz\u00e1tko. Reflective metallic resonance diffraction grating with flow mode, production and use. Czech Republic, Patent no. 308307, 18.3.2020. [&hellip;]<\/p>\n","protected":false},"author":6,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"footnotes":""},"acf":[],"_links":{"self":[{"href":"https:\/\/www.ufe.cz\/en\/wp-json\/wp\/v2\/pages\/14683"}],"collection":[{"href":"https:\/\/www.ufe.cz\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.ufe.cz\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.ufe.cz\/en\/wp-json\/wp\/v2\/users\/6"}],"replies":[{"embeddable":true,"href":"https:\/\/www.ufe.cz\/en\/wp-json\/wp\/v2\/comments?post=14683"}],"version-history":[{"count":0,"href":"https:\/\/www.ufe.cz\/en\/wp-json\/wp\/v2\/pages\/14683\/revisions"}],"wp:attachment":[{"href":"https:\/\/www.ufe.cz\/en\/wp-json\/wp\/v2\/media?parent=14683"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}