MI LLC has a total of 2,897 patent applications. It decreased the IP activity by 22.0%. Its first patent ever was published in 1991. It filed its patents most often in United States, WIPO (World Intellectual Property Organization) and Canada. Its main competitors in its focus markets civil engineering, basic materials chemistry and chemical engineering are M-I L L C, M-I LLC and ALSOP ALBERT W.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 483 | |
#2 | WIPO (World Intellectual Property Organization) | 451 | |
#3 | Canada | 310 | |
#4 | EPO (European Patent Office) | 296 | |
#5 | Mexico | 239 | |
#6 | Norway | 229 | |
#7 | Brazil | 186 | |
#8 | Australia | 152 | |
#9 | EAPO (Eurasian Patent Organization) | 148 | |
#10 | United Kingdom | 115 | |
#11 | Argentina | 103 | |
#12 | China | 87 | |
#13 | Malaysia | 26 | |
#14 | Colombia | 16 | |
#15 | New Zealand | 16 | |
#16 | Ecuador | 5 | |
#17 | Egypt | 5 | |
#18 | African Intellectual Property Organization | 4 | |
#19 | Poland | 3 | |
#20 | Ukraine | 3 | |
#21 | African Regional Industrial Property Organization | 2 | |
#22 | Algeria | 2 | |
#23 | Israel | 2 | |
#24 | Republic of Korea | 2 | |
#25 | Peru | 2 | |
#26 | Russian Federation | 2 | |
#27 | Austria | 1 | |
#28 | Croatia | 1 | |
#29 | Iceland | 1 | |
#30 | Netherlands | 1 | |
#31 | Panama | 1 | |
#32 | Serbia | 1 | |
#33 | Saudi Arabia | 1 | |
#34 | South Africa | 1 |
# | Industry | |
---|---|---|
#1 | Civil engineering | |
#2 | Basic materials chemistry | |
#3 | Chemical engineering | |
#4 | Machines | |
#5 | Environmental technology | |
#6 | Measurement |
# | Technology | |
---|---|---|
#1 | Earth drilling | |
#2 | Materials for miscellaneous applications | |
#3 | Separating solids | |
#4 | Separation | |
#5 | Unspecified technologies | |
#6 | Unspecified technologies | |
#7 | Water treatment | |
#8 | Analysing materials | |
#9 | Liquid hydrocarbon mixture production | |
#10 | Mixing |
# | Name | Total Patents |
---|---|---|
#1 | Patel Arvind D | 266 |
#2 | Carr Brian S | 149 |
#3 | Stamatakis Emanuel | 142 |
#4 | Horton Robert L | 129 |
#5 | Cady Eric | 105 |
#6 | Browne Neale | 100 |
#7 | Ballard David Antony | 88 |
#8 | Ivan Catalin | 86 |
#9 | Suter Roger | 85 |
#10 | Kapila Mukesh | 80 |
Publication | Filing date | Title |
---|---|---|
WO2021040995A1 | System and method for locking a weight assembly | |
WO2021003134A1 | Bob and shaft designs for portable rheometry units | |
WO2021003143A1 | System and method for stabilizing a vibratory separator screen assembly | |
WO2020264233A1 | Agitator apparatus and method of use | |
WO2020263990A1 | Additives to temporarily reduce viscosities in oil-based fluids | |
WO2020257002A1 | Crosslinked synthetic polymer-based reservoir drilling fluid | |
WO2020256921A1 | Vibratory separators | |
US2020369938A1 | Inhibitive Divalent Wellbore Fluids, Methods of Providing Said Fluids, and Uses Thereof | |
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WO2020232318A1 | Polymeric amidoamine emulsifiers | |
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US2020362221A1 | Polymeric Rheology Modifiers | |
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GB202001338D0 | Magnetic pump suction strainer | |
WO2020142616A1 | Rheometer systems and related methods | |
WO2020102149A1 | Methods for wellbore strengthening | |
WO2020097489A1 | Flat rheology wellbore fluids for generating clean wellbores | |
WO2020086513A1 | Low density oil-based wellbore fluids and methods thereof | |
US2020124513A1 | Systems and Methods for Monitoring and/or Predicting Sagging Tendencies of Fluids | |
US2021088499A1 | Automated analysis of drilling fluid |