MITSUI SHIPBUILDING ENG has a total of 11,114 patent applications. It decreased the IP activity by 97.0%. Its first patent ever was published in 1964. It filed its patents most often in Japan, WIPO (World Intellectual Property Organization) and United States. Its main competitors in its focus markets environmental technology, transport and packaging and shipping are KOMIYAMA YOSHIFUMI, MICHAELIS DOMINIC and HASSAVARI NADER.
# | Country | Total Patents | |
---|---|---|---|
#1 | Japan | 8,819 | |
#2 | WIPO (World Intellectual Property Organization) | 360 | |
#3 | United States | 298 | |
#4 | United Kingdom | 190 | |
#5 | China | 179 | |
#6 | Germany | 168 | |
#7 | France | 158 | |
#8 | Republic of Korea | 149 | |
#9 | EPO (European Patent Office) | 132 | |
#10 | Italy | 68 | |
#11 | Norway | 66 | |
#12 | Sweden | 65 | |
#13 | Canada | 64 | |
#14 | Spain | 54 | |
#15 | Brazil | 50 | |
#16 | Taiwan | 50 | |
#17 | Netherlands | 43 | |
#18 | Belgium | 34 | |
#19 | Australia | 30 | |
#20 | Switzerland | 28 | |
#21 | Denmark | 18 | |
#22 | Malaysia | 16 | |
#23 | Singapore | 15 | |
#24 | Hong Kong | 14 | |
#25 | Austria | 9 | |
#26 | Philippines | 8 | |
#27 | Mexico | 6 | |
#28 | Israel | 5 | |
#29 | Finland | 4 | |
#30 | Yugoslavia (Serbia and Montenegro) | 3 | |
#31 | Cyprus | 2 | |
#32 | Portugal | 2 | |
#33 | Czechoslovakia | 1 | |
#34 | Greece | 1 | |
#35 | Hungary | 1 | |
#36 | Malta | 1 | |
#37 | Poland | 1 | |
#38 | Romania | 1 | |
#39 | Tunisia | 1 |
# | Industry | |
---|---|---|
#1 | Environmental technology | |
#2 | Transport | |
#3 | Packaging and shipping | |
#4 | Machine tools | |
#5 | Civil engineering |
# | Name | Total Patents |
---|---|---|
#1 | Suzuki Takeshi | 233 |
#2 | Hamamoto Osamu | 183 |
#3 | Nagamori Shigeru | 171 |
#4 | Uchida Naoki | 165 |
#5 | Iwasaki Toru | 158 |
#6 | Degawa Toru | 152 |
#7 | Kimura Noriaki | 127 |
#8 | Harada Hiroaki | 126 |
#9 | Murata Kazutoshi | 111 |
#10 | Yashima Nobuyoshi | 100 |
Publication | Filing date | Title |
---|---|---|
JP2018058703A | Operator cab for crane | |
JP2018044763A | Boil-off gas recovery system | |
JP2018027854A | Runaway arrester | |
JP2017193449A | Upper frame system of crane upper frame structure and crane manufacturing method | |
JP2017186014A | Offshore floating body structure | |
JP2017171507A | crane | |
JP2017198341A | Boil-off gas recovery system | |
JP2017150303A | Base structure for installing ocean wind turbine | |
JP2017122008A | Tire-type gantry crane and method for controlling the same | |
JP2017100728A | Construction method of ship structure and design method of ship structure, and split structure and moving structure used in these methods | |
WO2018138822A1 | Marine engine system model, marine engine simulator, and ship handling simulator | |
JP2017101329A | Cylindrical member having film | |
KR20170002356A | Vessel Equipped with a Water Quality Monitoring Device and a Device of the Ballast Water | |
JP2018086988A | Maneuvering system for vessel, vessel and maneuvering method for method | |
JP2018090023A | Installation structure of vent pipe on ship | |
JP2018087070A | Structure and structure manufacturing method | |
JP2018084309A | Sliding support body | |
JP2018083688A | Crane and crane manufacturing method | |
JP2018083689A | Quay crane and control method for quay crane | |
JP2018083690A | Quay crane and control method for quay crane |