BAYER CROPSCIENCE LP has a total of 1,157 patent applications. It increased the IP activity by 10.0%. Its first patent ever was published in 2001. It filed its patents most often in United States, WIPO (World Intellectual Property Organization) and EPO (European Patent Office). Its main competitors in its focus markets basic materials chemistry, biotechnology and foods and drinks are SEPRO CORP, JIANGSU SUBIN AGROCHEMICAL CO LTD and APRESLABS LTD.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 240 | |
#2 | WIPO (World Intellectual Property Organization) | 148 | |
#3 | EPO (European Patent Office) | 110 | |
#4 | Canada | 89 | |
#5 | Brazil | 83 | |
#6 | Argentina | 82 | |
#7 | Mexico | 75 | |
#8 | Australia | 68 | |
#9 | China | 64 | |
#10 | Republic of Korea | 41 | |
#11 | Chile | 20 | |
#12 | South Africa | 19 | |
#13 | Taiwan | 18 | |
#14 | Uruguay | 14 | |
#15 | Philippines | 11 | |
#16 | Ukraine | 11 | |
#17 | Israel | 6 | |
#18 | Costa Rica | 5 | |
#19 | Peru | 5 | |
#20 | Singapore | 5 | |
#21 | Dominican Republic | 4 | |
#22 | EAPO (Eurasian Patent Organization) | 4 | |
#23 | Japan | 4 | |
#24 | Ecuador | 3 | |
#25 | Hungary | 3 | |
#26 | Morocco | 3 | |
#27 | Malaysia | 3 | |
#28 | New Zealand | 3 | |
#29 | Russian Federation | 3 | |
#30 | African Regional Industrial Property Organization | 2 | |
#31 | Colombia | 2 | |
#32 | Cuba | 2 | |
#33 | Guatemala | 2 | |
#34 | India | 1 | |
#35 | Nicaragua | 1 | |
#36 | Netherlands | 1 | |
#37 | Serbia | 1 | |
#38 | Tunisia | 1 |
# | Industry | |
---|---|---|
#1 | Basic materials chemistry | |
#2 | Biotechnology | |
#3 | Foods and drinks | |
#4 | Agriculture | |
#5 | Environmental technology |
# | Technology | |
---|---|---|
#1 | Preservation of human bodies | |
#2 | Microorganisms | |
#3 | Peptides | |
#4 | Planting | |
#5 | Climate change adaptation technologies | |
#6 | New plants | |
#7 | Microorganisms | |
#8 | Enzymes | |
#9 | Animal catching | |
#10 | Mixtures of fertilisers |
# | Name | Total Patents |
---|---|---|
#1 | Curtis Damian | 100 |
#2 | Royalty Reed Nathan | 83 |
#3 | Guilhabert-Goya Magalie | 52 |
#4 | Zhu Hong | 51 |
#5 | Wu Tai-Teh | 48 |
#6 | Margolis Jonathan S | 46 |
#7 | Reid Byron | 45 |
#8 | Thielert Wolfgang | 41 |
#9 | Andersch Wolfram | 41 |
#10 | Springer Bernd | 41 |
Publication | Filing date | Title |
---|---|---|
WO2021026206A2 | Improving plant health with in situ formed water absorbing hydrogels | |
WO2021022069A1 | Method of improving cold stress tolerance and crop safety | |
WO2020232316A1 | Targeting sequences for paenibacillus-based endospore display platform | |
WO2020231751A1 | Active compound combinations | |
WO2020190998A1 | Fusion proteins, recombinant bacteria, and exosporium fragments for plant health | |
US2020296960A1 | Fusion proteins, recombinant bacteria, and exosporium fragments for pest control and plant health | |
WO2020181053A1 | Paenibacillus strains and methods for their use | |
WO2020165043A1 | Machine learning based algorithmic procedure | |
WO2020160025A1 | Animal trap detection system using a glue board | |
WO2020154349A1 | Methods and formulations for preventing downward migration of agricultural materials | |
WO2020159627A1 | Applicator for pesticides | |
US2020170252A1 | Herbicidal compositions for animal grazelands and methods for applying the same | |
WO2020112491A1 | Herbicidal compositions for animal grazelands and methods for applying the same | |
WO2020102642A2 | Endospore display platforms, products and methods | |
WO2020102592A1 | Bacillus thuringiensis strains and methods for controlling pests | |
WO2020061140A1 | Methods of controlling animal pests with paenibacillus terrae | |
BR112020026556A2 | SEED TREATMENT METHOD | |
BR112020024301A2 | stabilized fungicidal composition comprising cyclodextrin | |
WO2019226782A1 | System and method for vegetation management risk assessment and resolution | |
WO2019222253A1 | Stabilized fungicidal composition |