Inventor · San Jose, CA, US

Cesar Clavero

24Patents
3h-index
26Co-inventors
55Inventor score

Filing activity: Feb 23, 2017 → May 18, 2022

Most-cited inventions

PatentTitleAreaCited byStatus
US10138158B2 Coated article having low-E coating with IR reflecting layer(s) and high index nitrided dielectric layers Chemistry; Metallurgy 8 Active
US10562812B2 Coated article having metamaterial-inclusive layer, coating having metamaterial-inclusive layer, and/or method of making the same Chemistry; Metallurgy 5 Active
US10392300B2 Heat treatable coated article having titanium nitride and ITO based IR reflecting layers Fixed Constructions 3 Active
US10233531B2 Coated article with low-E coating having protective doped silver layer for protecting silver based IR reflecting layer(s), and method of making same Chemistry; Metallurgy 3 Active
US10196735B2 Coated article having low-E coating with IR reflecting layer(s) and doped titanium oxide dielectric layer(s) and method of making same Chemistry; Metallurgy 2 Active
US10647611B2 IG window unit having triple silver coating and dielectric coating on opposite sides of glass substrate Emerging Cross-Sectional Technologies 1 Active
US10480058B2 Coated article with low-E coating having protective doped silver layer for protecting silver based IR reflecting layer(s), and method of making same Chemistry; Metallurgy 1 Active
US10213988B2 Coated article having low-E coating with IR reflecting layer(s) and niobium-doped titanium oxide dielectric layer(s) and method of making same Chemistry; Metallurgy 1 Active
US10233532B2 Coated article with low-E coating having reflecting system with silver and zinc based barrier layer(s) Chemistry; Metallurgy 1 Active
US11168023B2 IG window unit having triple silver coating and dielectric coating on opposite sides of glass substrate Emerging Cross-Sectional Technologies 1 Active
US10584409B2 Coated article having low-E coating with IR reflecting layer(s) and doped titanium oxide dielectric layer(s) and method of making same Chemistry; Metallurgy 0 Active
US10179946B2 Coated article having low-E coating with IR reflecting layer(s) and niobium bismuth based high index layer and method of making same Chemistry; Metallurgy 0 Active
US10526692B2 Heat treatable coated article having zirconium nitride and ITO based IR reflecting layers Fixed Constructions 0 Active
US10227819B2 Coated article with low-E coating having doped silver IR reflecting layer(s) Fixed Constructions 0 Active
US10584058B2 Heat treatable coated article having titanium nitride and ITO based IR reflecting layers Fixed Constructions 0 Active
US12205061B2 Shared data induced quality control for a chemical mechanical planarization process Physics 0 Active
US10830933B2 Matrix-embedded metamaterial coating, coated article having matrix-embedded metamaterial coating, and/or method of making the same Chemistry; Metallurgy 0 Active
US10745798B2 Coated article with low-E coating having IR reflecting system with silver and zinc based barrier layer(s) Chemistry; Metallurgy 0 Active
US10343948B2 Coated article having low-E coating with IR reflecting layer(s) and high index nitrided dielectric layers Chemistry; Metallurgy 0 Active
US10392689B2 Heat treatable coated article having zirconium nitride and ITO based IR reflecting layers Fixed Constructions 0 Active
US10731244B2 Coated article with low-E coating having protective doped silver layer for protecting silver based IR reflecting layer(s), and method of making same Chemistry; Metallurgy 0 Active
US10479053B2 Coated article having low-E coating with IR reflecting layer(s) and niobium-doped titanium oxide dielectric layer(s) and method of making same Chemistry; Metallurgy 0 Active
US10287673B2 Coated article having low-E coating with IR reflecting layer(S) and yttrium inclusive high index nitrided dielectric layer Chemistry; Metallurgy 0 Active
US10793469B2 Heat treatable coated article having titanium nitride and ITO based IR reflecting layers Fixed Constructions 0 Active

Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.