Assignee profile:

LUMERA CORPORATION

City:

Bothell, Washington

Country:

United States

Published Applications:

41

Last publication date:

2010-02-18

Patent Grants:

35

Last grant date:

2013-07-09

Top Inventors for applications by LUMERA CORPORATION

These are the the leading inventors for applications assigned to LUMERA CORPORATION:

Recent patent applications by LUMERA CORPORATION

LUMERA CORPORATION based in Bothell, US has been assigned the rights to these inventions. The list includes both Pending Applications and Patent Grants:

#1 | 2010-02-18 ✅ Patent 8,483,524 granted on 2013-07-09
US20100040322A1
Physics

Integrated electro-optic device and method of making

#2 | 2009-09-17 ✅ Patent 7,888,387 granted on 2011-02-15
US20090231678A1
Chemistry; metallurgy

Electro-optic chromophore having an edot structure, and related methods and apparatuses

#3 | 2009-05-28 ✅ Patent 7,902,322 granted on 2011-03-08
US20090137772A1
Physics

Nonlinear optical chromophores with stabilizing substituent and electro-optic devices

#4 | 2009-04-09 ✅ Patent 8,094,315 granted on 2012-01-10
US20090093067A1
Physics

Methods for making and using SPR microarrays

#5 | 2008-12-04
US20080298737A1
Performing operations; transporting

Integrated Resistor Fabrication Method and Optical Devices Therefrom

#6 | 2008-12-04
US20080298736A1
Physics

Broadband Electro-Optic Polymer Modulators With Integrated Resistors

#7 | 2008-11-27 ✅ Patent 7,713,428 granted on 2010-05-11
US20080290066A1
Physics

Method of fabricating polymer modulators with etch stop clads

#8 | 2008-10-30 ✅ Patent 7,796,855 granted on 2010-09-14
US20080267571A1
Physics

Electro-optic polymer devices with semiconducting oligomer clads

#9 | 2008-03-13
US20080063411A1
Electricity

Photonics-based Multi-band Wireless Communication System

#10 | 2008-03-13
US20080063028A1
Electricity

Photonics-based Multi-band Wireless Communication Methods

#11 | 2007-10-04
US20070232811A1
Chemistry; metallurgy

STERICALLY HINDERED PI-BRIDGE NONLINEAR OPTICAL CHROMOPHORES, PROCESSES INCLUDING SAME, AND DEVICES THEREFROM

#12 | 2007-09-27 ✅ Patent 7,889,347 granted on 2011-02-15
US20070222996A1
Physics

Surface plasmon resonance spectrometer with an actuator driven angle scanning mechanism

#13 | 2007-07-19
US20070164842A1
Electricity

Electro-Optic Radiometer to Detect Radiation

#14 | 2007-07-05 ✅ Patent 7,330,631 granted on 2008-02-12
US20070154161A1
Physics

Electro-optic polymer waveguide devices incorporating organically modified sol-gel clads

#15 | 2007-06-07 ✅ Patent 7,463,358 granted on 2008-12-09
US20070128455A1
Physics

Highly stable surface plasmon resonance plates, microarrays, and methods

#16 | 2007-04-17 ✅ Patent 7,206,111 granted on 2007-04-17
US10775836
-

Sterically hindered PI-bridge nonlinear optical chromophores, processes including same, and devices therefrom

#17 | 2007-03-27 ✅ Patent 7,197,222 granted on 2007-03-27
US11299007
-

Waveguide interface

#18 | 2007-02-08 ✅ Patent 7,368,520 granted on 2008-05-06
US20070032628A1
Chemistry; metallurgy

Crosslinked compositions comprising a poly(arylene ether) and a nonlinear optical chromophore, and devices incorporating same

#19 | 2006-09-19 ✅ Patent 7,109,355 granted on 2006-09-19
US10757375
-

Fluorinated π-bridge second order nonlinear optical chromophores and electro-optic devices therefrom

#20 | 2006-07-27 ✅ Patent 7,262,230 granted on 2007-08-28
US20060167213A1
Chemistry; metallurgy

Process of preparing crosslinked, low loss polymers with tunable refractive indices

#21 | 2006-07-27 ✅ Patent 7,345,134 granted on 2008-03-18
US20060167212A1
Chemistry; metallurgy

Crosslinked polymers with low loss and tunable refractive indices

#22 | 2006-07-27 ✅ Patent 7,231,127 granted on 2007-06-12
US20060165369A1
Physics

Waveguide devices with low loss clads and tunable refractive indices

#23 | 2006-06-29 ✅ Patent 7,196,155 granted on 2007-03-27
US20060142533A1
Chemistry; metallurgy

Process for preparing poly(arylene ethers) with pendant crosslinkable groups

#24 | 2006-05-11 ✅ Patent 7,161,726 granted on 2007-01-09
US20060098910A1
Physics

Linear optical modulators and method of linear optical modulation

#25 | 2006-03-28 ✅ Patent 7,019,453 granted on 2006-03-28
US10625371
-

Polymers having pendant nonlinear optical chromophores and electro-optic devices therefrom

#26 | 2006-03-16 ✅ Patent 7,064,713 granted on 2006-06-20
US20060055604A1
Electricity

Multiple element patch antenna and electrical feed network

#27 | 2006-02-07 ✅ Patent 6,995,884 granted on 2006-02-07
US10395610
-

Fluorinated crosslinked electro-optic materials and electro-optic devices therefrom

#28 | 2005-10-27 ✅ Patent 7,087,701 granted on 2006-08-08
US20050239970A1
Chemistry; metallurgy

Poly(arylene ethers) with pendant crosslinkable groups, and devices incorporating same

#29 | 2005-08-30 ✅ Patent 6,937,811 granted on 2005-08-30
US10299155
-

Polymer waveguide devices incorporating electro-optically active polymer clads

#30 | 2005-07-21 ✅ Patent 7,125,949 granted on 2006-10-24
US20050159574A1
Physics

Fluorinated sol-gel electro-optic materials, process for producing same, and devices therefrom

#31 | 2005-07-21 ✅ Patent 7,241,394 granted on 2007-07-10
US20050158849A1
Electricity

Process of fabricating polymer sustained microelectrodes

#32 | 2005-07-21 ✅ Patent 7,250,712 granted on 2007-07-31
US20050156499A1
Physics

Polymer sustained microelectrodes

#33 | 2005-06-07 ✅ Patent 6,902,871 granted on 2005-06-07
US10264461
-

Method for manufacturing polymer microstructures and polymer waveguides

#34 | 2005-05-19 ✅ Patent 7,101,957 granted on 2006-09-05
US20050107569A1
Chemistry; metallurgy

Crosslinked compositions comprising a poly(arylene ether) and a nonlinear optical chromophore, and devices incorporating same

#35 | 2005-05-19 ✅ Patent 7,038,004 granted on 2006-05-02
US20050107568A1
Chemistry; metallurgy

Process for preparing poly(arylene ethers) with pendant crosslinkable groups

#36 | 2005-05-19 ✅ Patent 7,067,593 granted on 2006-06-27
US20050107567A1
Chemistry; metallurgy

Poly(arylene ethers) with pendant crosslinkable groups, and devices incorporating same

#37 | 2005-05-19 ✅ Patent 7,001,678 granted on 2006-02-21
US20050106417A1
Chemistry; metallurgy

Crosslinked polymer blends that include a luminescent polymer, and devices incorporating same

#38 | 2005-05-19 ✅ Patent 7,008,556 granted on 2006-03-07
US20050106416A1
Chemistry; metallurgy

Process for preparing crosslinked polymer blends that include a luminescent polymer

#39 | 2005-05-17 ✅ Patent 6,895,162 granted on 2005-05-17
US10370785
-

Multi-layer electro-optic polymer modulators with reduced optical coupling loss

#40 | 2005-03-08 ✅ Patent 6,864,375 granted on 2005-03-08
US10439621
-

Highly stable and efficient nonlinear optical chromophores for electro-optic polymers

#41 | 2005-02-08 ✅ Patent 6,852,563 granted on 2005-02-08
US10762030
-

Process of fabricating electro-optic polymer devices with polymer sustained microelectrodes

AssigneeID:

232343 ⎘