gptkbp:instanceOf
|
patent
|
gptkbp:abstract
|
A method for improving efficiency.
|
gptkbp:applicationNumber
|
10/780,123
|
gptkbp:applicationPublicationNumber
|
2004/0123456 A1
|
gptkbp:applicationStatus
|
published
|
gptkbp:applicationType
|
non-provisional
|
gptkbp:assignee
|
gptkb:ABC_Corporation
|
gptkbp:citedBy
|
gptkb:US_7,123,456_B2
|
gptkbp:claims
|
20
|
gptkbp:classification
|
C11
|
gptkbp:country
|
gptkb:United_States
|
gptkbp:description
|
This patent describes a novel chemical process.
|
gptkbp:examiner
|
gptkb:Dr._Emily_White
|
gptkbp:expirationDate
|
2024-02-06
|
gptkbp:fieldOfInvention
|
Chemical_processes
|
gptkbp:fieldOfUse
|
Industrial applications
|
gptkbp:filingDate
|
2004-02-06
|
https://www.w3.org/2000/01/rdf-schema#label
|
US 6,789,482 C11
|
gptkbp:internationalClassification
|
C11B
|
gptkbp:inventor
|
gptkb:Alice_Johnson
gptkb:John_Doe
Jane_Smith
|
gptkbp:issueDate
|
2004-09-14
|
gptkbp:issuedBy
|
gptkb:United_States_Patent_and_Trademark_Office
|
gptkbp:legalStatus
|
granted
|
gptkbp:maintenanceFee
|
paid
|
gptkbp:patentAbstract
|
A novel method for enhancing chemical reactions.
|
gptkbp:patentAssignee
|
gptkb:XYZ_Inc.
|
gptkbp:patentCitation
|
US_5,678,901
|
gptkbp:patentClaim
|
4.
3.
20.
5.
13.
15.
19.
2.
6.
16.
1.
11.
12.
14.
7.
8.
10.
9.
17.
18.
|
gptkbp:patentFamily
|
US_6,789,482
|
gptkbp:patentField
|
Chemical_engineering
|
gptkbp:patentLink
|
https://patents.google.com/patent/US6789482C11
|
gptkbp:patentNumber
|
6,789,482
|
gptkbp:patentOffice
|
gptkb:USPTO
|
gptkbp:patentType
|
granted
utility
|
gptkbp:priorArt
|
US_5,123,456
|
gptkbp:priorityDate
|
2003-02-06
|
gptkbp:relatedApplication
|
US_10/123,456
|
gptkbp:relatedPatent
|
gptkb:US_6,789,481_C10
|
gptkbp:status
|
active
|
gptkbp:title
|
Method for improving chemical efficiency.
|