OXFORD NANOPORE TECH LTD has a total of 657 patent applications. It decreased the IP activity by 20.0%. Its first patent ever was published in 2008. It filed its patents most often in United States, United Kingdom and EPO (European Patent Office). Its main competitors in its focus markets biotechnology, measurement and chemical engineering are ROCHE MOLECULAR SYSTEMS INC, BEIJING CAPITALBIO TECH CO LTD and BIOCHAIN INST INC.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 120 | |
#2 | United Kingdom | 114 | |
#3 | EPO (European Patent Office) | 95 | |
#4 | WIPO (World Intellectual Property Organization) | 93 | |
#5 | China | 70 | |
#6 | Australia | 49 | |
#7 | Canada | 47 | |
#8 | Republic of Korea | 29 | |
#9 | Brazil | 14 | |
#10 | Japan | 7 | |
#11 | Israel | 6 | |
#12 | India | 4 | |
#13 | Singapore | 4 | |
#14 | New Zealand | 2 | |
#15 | South Africa | 2 | |
#16 | Mexico | 1 |
# | Industry | |
---|---|---|
#1 | Biotechnology | |
#2 | Measurement | |
#3 | Chemical engineering | |
#4 | Foods and drinks | |
#5 | Computer technology | |
#6 | Micro-structure and nano-technology | |
#7 | Organic fine chemistry |
# | Technology | |
---|---|---|
#1 | Measuring microorganism processes | |
#2 | Analysing materials | |
#3 | Microorganisms | |
#4 | Peptides | |
#5 | Chemical or physical laboratory devices | |
#6 | Enzymes | |
#7 | Bioinformatics | |
#8 | Nanostructure applications | |
#9 | Chemical or physical processes | |
#10 | Sugars |
# | Name | Total Patents |
---|---|---|
#1 | White James | 189 |
#2 | Heron Andrew John | 147 |
#3 | Jayasinghe Lakmal | 118 |
#4 | Clarke James Anthony | 98 |
#5 | Brown Clive Gavin | 92 |
#6 | Wallace Elizabeth Jayne | 78 |
#7 | Clarke James | 74 |
#8 | Turner Daniel John | 56 |
#9 | Milton John | 56 |
#10 | Moysey Ruth | 49 |
Publication | Filing date | Title |
---|---|---|
GB202103605D0 | Alignment of target and reference sequences of polymer units | |
GB202016874D0 | Nanopore support structure and manufacture thereof | |
GB202015993D0 | Method | |
GB202015479D0 | Method | |
GB202009334D0 | Selection method | |
GB202009349D0 | Method | |
GB202009335D0 | Method | |
WO2020234608A1 | Protocol for detecting interactions within one or more dna molecules within a cell | |
GB202007589D0 | Method | |
WO2020208357A1 | Pore | |
GB201917832D0 | Microfluidic device for preparing and analysing a test liquid | |
GB201917742D0 | Method | |
GB201917599D0 | Method | |
WO2020109800A1 | Sensing system and method of operation | |
GB201917060D0 | Method | |
WO2020095052A1 | Pore | |
GB201915480D0 | Improved nanopore sensing device, components and method of manufacture | |
GB201913997D0 | Method | |
GB201913039D0 | Polynicleotide synthesis method kit and system | |
GB201913041D0 | Polynicleotide synthesis method kit and system |