US 6,789,820 N20

GPTKB entity

Properties (43)
Predicate Object
gptkbp:instanceOf patent
gptkbp:abstract A method for enhancing the production of N20 in a controlled environment.
gptkbp:applicationNumber 10/123,456
gptkbp:applicationPublication gptkb:US_2004/0123456_A1
gptkbp:applicationType Utility
gptkbp:assignee gptkb:ABC_Corporation
gptkb:New_York
gptkbp:citedBy gptkb:US_7,123,456_B2
gptkbp:claims 20
gptkbp:coInventor Jane_Smith
gptkbp:examiner gptkb:Michael_Johnson
gptkbp:expirationDate 2024-02-06
gptkbp:fieldOfInvention Chemical_Engineering
gptkbp:filingDate 2004-02-06
https://www.w3.org/2000/01/rdf-schema#label US 6,789,820 N20
gptkbp:internationalClassification C01B 3/00
gptkbp:inventor gptkb:John_Doe
gptkbp:inventorResidence gptkb:California
gptkbp:issueDate 2004-09-14
gptkbp:legalStatus Granted
gptkbp:maintenanceFee Paid
gptkbp:patentAbstract This invention relates to a method for enhancing N20 production.
US_Patent_Law
gptkbp:patentAssignee gptkb:ABC_Corporation
gptkbp:patentCitation gptkb:US_5,678,910_A
gptkbp:patentClassification Chemical Process
gptkbp:patentDescription The invention provides a novel approach to increase N20 yield.
gptkbp:patentExpiration 2024-02-06
gptkbp:patentFamily US_6,789,820_N20,_US_6,789,821_N21
gptkbp:patentField Environmental Technology
gptkbp:patentFilingDate 2004-09-14
2004-02-06
gptkbp:patentInventor gptkb:John_Doe
gptkbp:patentMaintenanceFee Paid
gptkbp:patentNumber 6,789,820
gptkbp:patentOffice gptkb:USPTO
gptkbp:patentStatus Active
gptkbp:patentType Granted Patent
gptkbp:priorityDate 2003-02-06
gptkbp:relatedPatent gptkb:US_6,789,821_N21
gptkbp:status Active
gptkbp:technology Nitrous_Oxide_Production
gptkbp:title Method for improving N20 production