Inventor
Pavel Kornilovich
Inventor
Corvallis, OR, US
Overview
Patents· 64 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
B82Yprimary
B82YSpecific uses or applications of nanostructures10%
B01LChemical or physical laboratory apparatus for general use9%
Y10STechnical subjects covered by former uspc cross-reference art collections [xracs] and digests6%
G02FOptical devices or arrangements for the control of light by modification of the optical properties of the media of the elements involved therein4%
G02BOptical elements, systems or apparatus4%
B33YAdditive manufacturing, i.e. manufacturing of three-dimensional [3d] objects by additive deposition, additive agglomeration or additive layering, e.g. by 3d printing, stereolithography or selective laser sintering3%
B81BMicrostructural devices or systems, e.g. micromechanical devices3%
Y10TTechnical subjects covered by former us classification3%
B41JTypewriters3%
G03FPhotomechanical production of textured or patterned surfaces, e.g. for printing, for processing of semiconductor devices3%
PatentTitleYear
11,110,453Microfluidic devices202111,110,456Bead packing in microfluidic channels202111,097,270Microfluidic filtering system202111,072,088Three-dimensional printer202111,059,231Generating three-dimensional objects202110,913,039Microfluidic mixer202110,882,045Polymerase chain reaction device including ejection nozzles202110,857,536Polymerase chain reaction device202010,786,950Three-dimensional (3D) printing composite build material composition202010,759,085Three-dimensional (3D) printing202010,696,939Cell lysis202010,688,772Generating three-dimensional objects202010,655,994Microfluidic flow sensor202010,589,269Microfluidic transport202010,495,507Drop ejection based flow sensor calibration201910,415,086Polymerase chain reaction systems201910,286,366Microfluidic mixing device201910,272,691Microfluidic systems and networks201910,197,188Microfluidic valve201910,132,303Generating fluid flow in a fluidic network20189,981,265Microfluidic mixing device20189,963,739Polymerase chain reaction systems20189,409,170'Microfluidic mixing device'20169,395,050'Microfluidic systems and networks'20168,859,061'Metallic printing'20148,811,778'Systems and method for routing optical signals'20148,740,453'Microcalorimeter systems'20148,702,997'Balancing a microelectromechanical system'20148,695,501'Method of forming a contact printing stamp'20148,651,646'Fluid ejection assembly with circulation pump'20148,526,771'In-plane optical wave guide with area based splitter'20138,521,023'Hierarchical passive networks'20138,520,295'Reflective displays'20138,384,659'Display element including electrodes and a fluid with colorant particles'20138,358,322'Display'20138,184,357'Display element'20128,179,590'Electro-optical display'20128,018,642'Electro-optical display'20117,829,352'Fabrication of nano-object array'20107,803,712'Multilevel imprint lithography'20107,729,576'Modulated signal resonators'20107,639,903'Daisy chain optical interconnect'20097,597,814'Structure formed with template having nanoscale features'20097,499,611'Composite evanescent waveguides and associated methods'20097,407,738'Fabrication and use of superlattice'20087,406,222'Composite evanescent waveguides and associated methods'20087,394,961'Waveguide having low index substrate'20087,381,631'Use of expanding material oxides for nano-fabrication'20087,374,968'Method of utilizing a contact printing stamp'20087,375,368'Superlattice for fabricating nanowires'20087,375,458'Continuous carbon-nanotube filaments for radiation-emitting devices and related methods'20087,375,012'Method of forming multilayer film'20087,335,579'Nanometer-scale memory device utilizing self-aligned rectifying elements and method of making'20087,256,435'Multilevel imprint lithography'20077,223,611'Fabrication of nanowires'20077,135,057'Gas storage medium and methods'20067,132,298'Fabrication of nano-object array'20067,034,332'Nanometer-scale memory device utilizing self-aligned rectifying elements and method of making'20067,009,201'Low-forward-voltage molecular rectifier'20066,926,921'Imprint lithography for superconductor devices'20056,858,162'Single molecule realization of the switch and doide combination'20056,670,631'Low-forward-voltage molecular rectifier'20036,624,002'Bistable molecular mechanical devices with an appended rotor activated by an electric field for electronic switching, gating and memory applications'20036,512,119'Bistable molecular mechanical devices with an appended rotor activated by an electric field for electronic switching, gating and memory applications'2003Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
2003–2021Patents assigned to HEWLETT PACKARD DEVELOPMENT CO (57)· patent assignee history
2003–2006Based in Mountain View, CA, US· patent location history
2005–2021Based in Corvallis, OR, US· patent location history
2008–2018Patents assigned to KORNILOVICH PAVEL (20)· patent assignee history
2008–2014Patents assigned to MARDILOVICH PETER (6)· patent assignee history
2012Based in Corvalis, OR, US· patent location history
2014–2018Patents assigned to GOVYADINOV ALEXANDER (5)· patent assignee history
2014–2018Patents assigned to MARKEL DAVID P (5)· patent assignee history
2018Based in Covallis, OR, US· patent location history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| HEWLETT PACKARD DEVELOPMENT CO | 57 | 2003–2021 |
| KORNILOVICH PAVELself | 20 | 2008–2018 |
| MARDILOVICH PETER | 6 | 2008–2014 |
| GOVYADINOV ALEXANDER | 5 | 2014–2018 |
| MARKEL DAVID P | 5 | 2014–2018 |
Locations
| Location | Patents | Span |
|---|---|---|
| Corvallis, OR, US | 57 | 2005–2021 |
| Mountain View, California, US | 5 | 2003–2006 |
| Covallis, OR, US | 1 | 2018 |
| Corvalis, OR, US | 1 | 2012 |