JUPITER OXYGEN CORP has a total of 105 patent applications. Its first patent ever was published in 2001. It filed its patents most often in United States, EPO (European Patent Office) and Australia. Its main competitors in its focus markets thermal processes, environmental technology and materials and metallurgy are MIYAMOTO KOGYOSHO KK, PREMELT PUMP INC and KOHASZATI GYAREPITOE VALLALAT.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 11 | |
#2 | EPO (European Patent Office) | 10 | |
#3 | Australia | 7 | |
#4 | Japan | 7 | |
#5 | Republic of Korea | 7 | |
#6 | China | 6 | |
#7 | WIPO (World Intellectual Property Organization) | 6 | |
#8 | Canada | 5 | |
#9 | Mexico | 5 | |
#10 | EAPO (Eurasian Patent Organization) | 4 | |
#11 | Israel | 4 | |
#12 | South Africa | 4 | |
#13 | Brazil | 3 | |
#14 | Morocco | 3 | |
#15 | Norway | 3 | |
#16 | Tunisia | 3 | |
#17 | Costa Rica | 2 | |
#18 | Ecuador | 2 | |
#19 | Hong Kong | 2 | |
#20 | New Zealand | 2 | |
#21 | Ukraine | 2 | |
#22 | African Regional Industrial Property Organization | 1 | |
#23 | Georgia | 1 | |
#24 | Croatia | 1 | |
#25 | Latvia | 1 | |
#26 | Montenegro | 1 | |
#27 | Poland | 1 | |
#28 | Serbia | 1 |
# | Industry | |
---|---|---|
#1 | Thermal processes | |
#2 | Environmental technology | |
#3 | Materials and metallurgy | |
#4 | Machines |
# | Name | Total Patents |
---|---|---|
#1 | Gross Dietrich M | 54 |
#2 | Patrick Brian R | 48 |
#3 | Summers Cathy A | 36 |
#4 | Oryschyn Danylo B | 29 |
#5 | Ochs Tom L | 27 |
#6 | Oryshchyn Danylo B | 12 |
#7 | Ochs Thomas L | 10 |
#8 | Turner Paul | 10 |
#9 | Turner Paul C | 9 |
#10 | Schoenfield Mark | 6 |
Publication | Filing date | Title |
---|---|---|
US10845052B1 | Combustion system comprising an annular shroud burner | |
AU2012202742A1 | Oxy-fuel combustion with integrated pollution control | |
EP2284443A2 | Oxy-fuel combustion system with closed loop flame temperature control | |
WO2007140261A2 | Integrated capture of fossil fuel gas pollutants including co2 with energy recovery | |
ZA200703820B | Device and method for boller superheat temperature control | |
CN103216844A | Method and device for removing combustion and integrated pollution | |
US2006207523A1 | Module-based oxy-fuel boiler | |
WO2006054990A1 | Device and method for boiler superheat temperature control | |
KR20070084238A | Device and method for boiler superheat temperature control | |
US2005072379A1 | Device and method for boiler superheat temperature control | |
US6436337B1 | Oxy-fuel combustion system and uses therefor |