SINGLE BUOY MOORINGS has a total of 1,250 patent applications. It increased the IP activity by 7.0%. Its first patent ever was published in 1968. It filed its patents most often in EPO (European Patent Office), United States and WIPO (World Intellectual Property Organization). Its main competitors in its focus markets transport, mechanical elements and civil engineering are GVA CONSULTANTS AB, EXMAR OFFSHORE COMPANY and MCMULLEN ASS JOHN J.
# | Country | Total Patents | |
---|---|---|---|
#1 | EPO (European Patent Office) | 192 | |
#2 | United States | 182 | |
#3 | WIPO (World Intellectual Property Organization) | 173 | |
#4 | Australia | 121 | |
#5 | Brazil | 96 | |
#6 | China | 88 | |
#7 | Norway | 75 | |
#8 | Canada | 64 | |
#9 | Netherlands | 58 | |
#10 | United Kingdom | 31 | |
#11 | Mexico | 23 | |
#12 | Japan | 21 | |
#13 | Republic of Korea | 18 | |
#14 | Singapore | 15 | |
#15 | Spain | 14 | |
#16 | Malaysia | 14 | |
#17 | France | 11 | |
#18 | India | 9 | |
#19 | Germany | 8 | |
#20 | Italy | 6 | |
#21 | Belgium | 5 | |
#22 | African Intellectual Property Organization | 5 | |
#23 | Denmark | 4 | |
#24 | Indonesia | 4 | |
#25 | South Africa | 4 | |
#26 | Argentina | 3 | |
#27 | African Regional Industrial Property Organization | 1 | |
#28 | Colombia | 1 | |
#29 | Cuba | 1 | |
#30 | New Zealand | 1 | |
#31 | Philippines | 1 | |
#32 | Russian Federation | 1 |
# | Industry | |
---|---|---|
#1 | Transport | |
#2 | Mechanical elements | |
#3 | Civil engineering | |
#4 | Machines | |
#5 | Environmental technology | |
#6 | Chemical engineering | |
#7 | Engines, pumps and turbines |
# | Technology | |
---|---|---|
#1 | Ships | |
#2 | Pipes | |
#3 | Earth drilling | |
#4 | Unspecified technologies | |
#5 | Compressed gas holders | |
#6 | Hydraulic engineering | |
#7 | Reduction of greenhouse gas emissions | |
#8 | Liquefaction of gases by pressure | |
#9 | Unspecified technologies | |
#10 | Machines for liquids |
# | Name | Total Patents |
---|---|---|
#1 | Pollack Jack | 277 |
#2 | Poldervaart Leendert | 203 |
#3 | Wille Hein | 117 |
#4 | Perratone Rene | 66 |
#5 | Braud Jean | 47 |
#6 | Queau Jean-Pierre | 39 |
#7 | Bauduin Christian Raymond | 32 |
#8 | Jack Pollack | 32 |
#9 | Menardo Philippe Albert Christian | 30 |
#10 | Riggs David C | 26 |
Publication | Filing date | Title |
---|---|---|
WO2021059224A1 | Floating hydrocarbon production plant and system | |
WO2021059227A1 | Computer-implemented method for providing a performance parameter value being indicative of a production performance of a floating hydrocarbon production plant | |
WO2021052932A1 | High voltage electric swivel arrangement | |
WO2021032785A1 | Method for installing a tension leg platform based floating object | |
WO2020216854A1 | Swivel stack for transfer of fluid across a rotary interface and method for manufacturing such a swivel stack. | |
WO2020182940A1 | Sea water intake riser system | |
WO2020200541A1 | A method for inspection of catenary anchor lines connected to a floating object | |
WO2020127792A1 | Yoke plate assembly for a mooring arrangement and mooring arrangement comprising such a yoke plate assembly | |
WO2020127804A1 | Floating wind turbine support | |
WO2020064872A1 | Electroactive polymer device and method for manufacturing such an electroactive polymer device | |
WO2020058342A1 | Hydrocarbon production vessel | |
WO2020016406A1 | Cryogenic swivel joint | |
EP3746643A1 | Offshore electrical power plant | |
EP3729633A1 | Switch assisted diode-clamped energy harvesting system for variable capacitance transducers | |
US2020238656A1 | Electro-active polymer device and method for manufacturing such a device | |
CN110785345A | Turret mooring buoy system | |
EP3592942A2 | Steel catenary riser top interface | |
WO2018134255A1 | Mooring system with intermediate buoy floating on water surface | |
CA3050580A1 | Chain table for a turret of a vessel | |
EP3560059A1 | Power generation and distribution arrangement and floating unit comprising such an arrangement |