Berkeley, California
United States
19
2014-06-26
The entities that hold a legal rights for patent applications filed by inventor Harkness, IV Samuel Dacke:
Samuel Dacke Harkness, IV from Berkeley, US has applied for patents for these inventions. The list has both pending applications and granted patents:
Method and Manufacture Process for Exchange Decoupled First Magnetic Layer
#2 | 2012-09-06Perpendicular media with dual soft magnetic layers
#3 | 2010-08-26GRANULAR PERPENDICULAR MAGNETIC RECORDING MEDIA WITH DUAL RECORDING LAYER AND METHOD OF FABRICATING SAME
#4 | 2010-06-17Hybrid Photovoltaic Cell Using Amorphous Silicon Germanium Absorbers and Wide Bandgap Dopant Layers
#5 | 2010-03-04Method to synthesize ordered magnetic alloys at low temperature
#6 | 2010-03-04Hybrid photovoltaic cell using amorphous silicon germanium absorbers with wide bandgap dopant layers and an up-converter
#7 | 2010-02-25Thin film template for fabrication of two-dimensional quantum dot structures
#8 | 2010-02-25Photovoltaic Device With an Up-Converting Quantum Dot Layer
#9 | 2010-02-25Photovoltaic device with an up-converting quantum dot layer and absorber
#10 | 2010-01-28Oxidized conformal capping layer
#11 | 2010-01-28Method and manufacture process for exchange decoupled first magnetic layer
#12 | 2009-08-27PERPENDICULAR RECORDING MAGNETIC MEDIA HAVING A GRANULAR MAGNETIC RECORDING LAYER AND AN AMORPHOUS SOFT UNDERLAYER
#13 | 2007-03-20Magnetic alloy containing TiOfor perpendicular magnetic recording application
#14 | 2007-02-13Perpendicular magnetic recording media with improved crystallographic orientations and method of manufacturing same
#15 | 2006-12-07Perpendicular media with dual soft magnetic layers
#16 | 2006-06-29Granular perpendicular magnetic recording media with dual recording layer and method of fabricating same
#17 | 2006-02-02Magnetic recording media with tuned exchange coupling and method for fabricating same
#18 | 2005-10-20Magnetic recording media with Cu-containing magnetic layers
#19 | 2005-05-12Oxygen plasma post-deposition treatment of magnetic recording media
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