Inventor

Neil M. Prosser

Inventor
Lockport, NY, US

Overview

37→
Patents
1993–2021
Patent span
Mechanical engineering
Primary field (CPC F)

Patents· 37 as inventor

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

F25Jprimary
F25JLiquefaction, solidification or separation of gases or gaseous or liquefied gaseous mixtures by pressure and cold treatment or by bringing them into the supercritical state50%
Y10STechnical subjects covered by former uspc cross-reference art collections [xracs] and digests10%
B01DSeparation9%
Y02CCapture, storage, sequestration or disposal of greenhouse gases [ghg]9%
F25BRefrigeration machines, plants or systems3%
H03GControl of amplification3%
H04BTransmission3%
B64GCosmonautics1%
C01BNon-metallic elements1%
C09KMaterials for miscellaneous applications, not provided for elsewhere1%
PatentTitleYear
11,018,783System and method for mitigating broadband interference202110,931,321System and method for optimizing intermodulation performance of receivers202110,816,263System and method for high recovery of nitrogen and argon from a moderate pressure cryogenic air separation unit202010,808,967Refrigeration cycle for liquid oxygen densification202010,663,223System and method for enhanced recovery of argon and oxygen from a nitrogen producing cryogenic air separation unit202010,663,222System and method for enhanced recovery of argon and oxygen from a nitrogen producing cryogenic air separation unit202010,663,224System and method for enhanced recovery of argon and oxygen from a nitrogen producing cryogenic air separation unit202010,337,792System and method for production of argon by cryogenic rectification of air201910,145,609Method ad apparatus for argon recovery in a cryogenic air separation unit integrated with a pressure swing adsorption201810,066,871Method and apparatus for argon rejection and recovery201810,024,596Method and apparatus for argon recovery in a cryogenic air separation unit integrated with a pressure swing adsorption system201810,018,413Method and apparatus for increasing argon recovery in a cryogenic air separation unit integrated with a pressure swing adsorption system201810,012,437Method and apparatus for argon recovery in a cryogenic air separation unit integrated with a pressure swing adsorption system201810,012,438Method and apparatus for argon recovery in a cryogenic air separation unit integrated with a pressure swing adsorption system20189,222,725'Air separation method and apparatus'20158,484,992'Krypton xenon recovery from pipeline oxygen'20138,448,463'Cryogenic rectification method'20138,443,625'Krypton and xenon recovery method'20137,665,329'Cryogenic air separation process with excess turbine refrigeration'20107,533,540'Cryogenic air separation system for enhanced liquid production'20097,487,648'Cryogenic air separation method with temperature controlled condensed feed air'20097,299,656'Cryogenic rectification system for neon production'20077,114,352'Cryogenic air separation system for producing elevated pressure nitrogen'20066,881,354'Multicomponent refrigerant fluids for low and cryogenic temperatures'20056,626,008'Cold compression cryogenic rectification system for producing low purity oxygen'20036,622,520'Cryogenic rectification system for producing low purity oxygen using shelf vapor turboexpansion'20036,286,336'Cryogenic air separation system for elevated pressure product'20015,916,262'Cryogenic rectification system for producing low purity oxygen and high purity oxygen'19995,896,755'Cryogenic rectification system with modular cold boxes'19995,675,977'Cryogenic rectification system with kettle liquid column'19975,600,970'Cryogenic rectification system with nitrogen turboexpander heat pump'19975,582,036'Cryogenic air separation blast furnace system'19965,469,710'Cryogenic rectification system with enhanced argon recovery'19955,467,601'Air boiling cryogenic rectification system with lower power requirements'19955,398,514'Cryogenic rectification system with intermediate temperature turboexpansion'19955,337,570'Cryogenic rectification system for producing lower purity oxygen'19945,197,296'Cryogenic rectification system for producing elevated pressure product'1993

Career & activity timeline

Assembled from patent assignee/location history and declaration credentials.

1993–2020Patents assigned to PRAXAIR TECHNOLOGY INC (35)· patent assignee history
1993–1995Based in East Amherst, NY, US· patent location history
1996–2020Based in Lockport, NY, US· patent location history
2018–2020Patents assigned to PROSSER NEIL M (12)· patent assignee history
2018Patents assigned to LUO YANG (5)· patent assignee history
2020Patents assigned to HANDLEY JAMES R (4)· patent assignee history
2020Patents assigned to KROMER BRIAN R (4)· patent assignee history
2021Based in Rochester, NY, US· patent location history

Inventor activity

Assignee and location history derived from the patent record.

Assignees
AssigneePatentsSpan
PRAXAIR TECHNOLOGY INC351993–2020
PROSSER NEIL Mself122018–2020
LUO YANG52018
HANDLEY JAMES R42020
KROMER BRIAN R42020
Locations
LocationPatentsSpan
Lockport, New York, US301996–2020
East Amherst, New York, US51993–1995
Rochester, New York, US22021