Inventor

Jan Lipson

Inventor
Cupertino, CA, US

Overview

40→
Patents
1987–2015
Patent span
Electricity
Primary field (CPC H)

Patents· 40 as inventor

Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.

H01Sprimary
H01SDevices using the process of light amplification by stimulated emission of radiation [laser] to amplify or generate light24%
G02BOptical elements, systems or apparatus20%
G01NInvestigating or analysing materials by determining their chemical or physical properties11%
G01JMeasurement of intensity, velocity, spectral content, polarisation, phase or pulse characteristics of infrared, visible or ultraviolet light8%
H04BTransmission7%
B82YSpecific uses or applications of nanostructures6%
A61BDiagnosis4%
G03HHolographic processes or apparatus4%
H10WGeneric packages, interconnections, connectors or other constructional details of devices covered by class h104%
H04JMultiplex communication3%
PatentTitleYear
8,953,160'Systems having a reflected light sensor and methods of use'20158,744,221'Apparatus for transforming the aspect ratio of an optical input field based on stacked waveguides'20148,411,265'Apparatus for stabilizing mechanical, thermal, and optical properties and for reducing the fluorescence of biological samples for optical evaluation'20138,355,125'All reflective apparatus for injecting excitation light and collecting in-elastically scattered light from a sample'20138,050,308'Transmitter optical subassembly with volume phase holographic optics'20118,027,033'Calibrated analyte concentration measurements in mixtures'20117,973,925'Apparatus for stabilizing mechanical, thermal, and optical properties and for reducing the fluorescence of biological samples for optical evaluation'20117,961,312'Calibrated analyte concentration measurements in mixtures'20117,742,166'Enhancing selectivity and/or sensitivity of spectroscopic measurements in media'20107,668,220'Single mode vertical cavity surface emitting laser using photonic crystals with a central defect'20107,560,298'Methods for producing a tunable vertical cavity surface emitting laser'20097,546,042'System and method for reducing interference in an optical data stream using multiple, selectable equalizers'20097,536,213'Reduction in scattering from a turbid medium by photo-bleaching'20097,386,020'Systems, devices and methods for temperature-based control of laser performance'20087,277,210'Measuring spectral lines from an analyte using multiplexed holograms and polarization manipulation'20077,266,401'Measuring analytes from an electromagnetic spectrum using a wavelength router'20077,254,155'High power single mode vertical cavity surface emitting laser'20077,254,149'Submount, pedestal, and bond wire assembly for a transistor outline package with reduced bond wire inductance'20077,251,261'Temperature tuning the wavelength of a semiconductor laser using a variable thermal impedance'20077,211,830'Circuit interconnect for optoelectronic device'20077,092,418'Compact laser package with integrated temperature control'20067,083,337'Optical transceiver port'20067,072,538'Planar reconfigurable optical add/drop module'20066,898,379'System and method for reducing interference in an optical data stream'20056,880,983'Optoelectronic module with thermally isolated components'20056,876,004'Circuit interconnect for optoelectronic device for controlled impedance at high frequencies'20056,868,104'Compact laser package with integrated temperature control'20056,862,302'Maintaining desirable performance of optical emitters over temperature variations'20056,853,767'Methods for manufacturing optical coupling elements'20056,829,281'Vertical cavity surface emitting laser using photonic crystals'20046,810,056'Single mode vertical cavity surface emitting laser using photonic crystals with a central defect'20046,791,746'Extended bandwidth semiconductor optical amplifier'20046,778,581'Tunable vertical cavity surface emitting laser'20046,744,804'Edge emitting lasers using photonic crystals'20046,704,343'High power single mode vertical cavity surface emitting laser'20046,668,113'Compact optical assembly for optoelectronic transceivers'20035,020,049'Optical sub-carrier multiplex television transmission system using a linear laser diode'1991H0000551'Optical package with improved fiber alignment fixture'19884,747,657'Achieving improved radial alignment in an optical package'19884,658,394'Optical transmission'1987

Career & activity timeline

Assembled from patent assignee/location history and declaration credentials.

1987–1991Patents assigned to AT & T BELL LAB (2)· patent assignee history
1987Based in Bethlehem, PA, US· patent location history
1988Based in Upper Macungie Township, Lehigh County, PA, US· patent location history
1991Based in Breinigsville, PA, US· patent location history
2003–2011Patents assigned to FINISAR CORP (24)· patent assignee history
2003–2015Based in Cupertino, CA, US· patent location history
2007–2013Patents assigned to C8 MEDISENSORS INC (10)· patent assignee history
2013–2015Patents assigned to ICE DONALD A (3)· patent assignee history
2013–2015Patents assigned to HOFMEISTER RUDOLF J (2)· patent assignee history

Inventor activity

Assignee and location history derived from the patent record.

Assignees
AssigneePatentsSpan
FINISAR CORP242003–2011
C8 MEDISENSORS INC102007–2013
ICE DONALD A32013–2015
AT & T BELL LAB21987–1991
HOFMEISTER RUDOLF J22013–2015
Locations
LocationPatentsSpan
Cupertino, California, US362003–2015
Upper Macungie Township, Lehigh County, Pennsylvania, US21988
Breinigsville, Pennsylvania, US11991
Bethlehem, Pennsylvania, US11987