Inventor
Robert L. Kleinberg
Inventor
Ridgefield, CT, US
Overview
Patents· 43 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
G01Vprimary
G01VGeophysics35%
G01NInvestigating or analysing materials by determining their chemical or physical properties31%
E21BEarth or rock drilling13%
G01RMeasuring electric variables13%
Y02ATechnologies for adaptation to climate change5%
F16CShafts1%
H01MProcesses or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy1%
Y02EReduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution1%
PatentTitleYear
10,495,774Method for estimating irreducible water saturation from mercury injection capillary pressure201910,473,557Method, system, and device for automating transfer of tape to microtome sections201910,100,636Bitumen quantification using vibrational spectroscopy20189,880,319'Quality metrics for tight oil reservoirs'20189,519,072'Method and apparatus for locating gas hydrate'20169,410,408'Electrical heating of oil shale and heavy oil formations'20169,405,036'Multiphysics NMR logging techniques for the determination of in situ total gas in gas reservoirs'20167,804,296'Methods and apparatus for monitoring a property of a formation fluid'20107,658,092'Heat switch for chromatographic system and method of operation'20107,511,487'Logging method for determining characteristic of fluid in a downhole measurement region'20097,384,453'Self-contained chromatography system'20086,988,547'Method and system of fluid analysis and control in hydrocarbon well'20066,891,369'Nuclear magnetic resonance method and logging apparatus for fluid analysis'20056,841,996'Nuclear magnetic resonance apparatus and methods for analyzing fluids extracted from earth formation'20056,825,657'Magnetic resonance method for characterizing fluid samples withdrawn from subsurface earth formations'20046,758,090'Method and apparatus for the detection of bubble point pressure'20046,612,171'Gravity measuring apparatus'20036,578,405'Gas seep detection'2003RE038129'Phase change analysis in logging method'20036,563,314'Well logging method and apparatus for determining the nuclear magnetic resonance longitudinal magnetization decay of formations'20036,490,916'Method and system of fluid analysis and control in a hydrocarbon well'20026,346,813'Magnetic resonance method for characterizing fluid samples withdrawn from subsurface formations'20026,232,778'Method for obtaining NMR bound fluid volume using partial polarization'20016,140,817'Magnetic resonance well logging method and apparatus'20006,128,949'Phase change analysis in logging method'20005,923,167'Pulsed nuclear magnetism tool for formation evaluation while drilling'19995,914,598'Pulsed nuclear magnetism tool for formation evaluation while drilling'19995,796,252'Nuclear magnetic resonance borehole logging apparatus and method for ascertaining a volume of hydrocarbons independent of a diffusion coefficient'19985,680,043'Nuclear magnetic resonance technique for determining gas effect with borehole logging tools'19975,629,623'Pulsed nuclear magnetism tool for formation evaluation while drilling'19975,557,201'Pulsed nuclear magnetism tool for formation evaluation while drilling'19965,204,568'Superconducting bearing for borehole and survey gravimeters'19935,153,514'Antenna and wear plates for borehole logging apparatus'19925,055,787'Borehole measurement of NMR characteristics of earth formations'19915,055,788'Borehole measurement of NMR characteristics of earth formations'19915,023,551'Nuclear magnetic resonance pulse sequences for use with borehole logging tools'19914,933,638'Borehole measurement of NMR characteristics of earth formations, and interpretations thereof'19904,857,852'Induction well logging apparatus with transformer coupled phase sensitive detector'19894,845,433'Apparatus for microinductive investigation of earth formations'19894,780,678'Apparatus for microinductive investigation of earth formations'19884,766,384'Well logging apparatus for determining dip, azimuth, and invaded zone conductivity'19884,739,272'Apparatus for microinductive investigation of earth formations with improved electroquasistatic shielding'19884,641,724'Fracture detection using circumferential offset acoustic paths'1987Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
1987–2019Patents assigned to SCHLUMBERGER TECHNOLOGY CORP (38)· patent assignee history
1987–2016Based in Ridgefield, CT, US· patent location history
1993Patents assigned to GWR INSTR (1)· patent assignee history
2009–2019Based in Cambridge, MA, US· patent location history
2018Patents assigned to GEOSERVICES EQUIPEMENTS (1)· patent assignee history
2018Patents assigned to GEOSERVICES EQUIPEMENTS SAS (1)· patent assignee history
2019Patents assigned to CLARAPATH INC (1)· patent assignee history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| SCHLUMBERGER TECHNOLOGY CORP | 38 | 1987–2019 |
| CLARAPATH INC | 1 | 2019 |
| GEOSERVICES EQUIPEMENTS | 1 | 2018 |
| GEOSERVICES EQUIPEMENTS SAS | 1 | 2018 |
| GWR INSTR | 1 | 1993 |
Locations
| Location | Patents | Span |
|---|---|---|
| Ridgefield, CT, US | 34 | 1987–2016 |
| Cambridge, Massachusetts, US | 9 | 2009–2019 |