UNIV COVENTRY has a total of 441 patent applications. It decreased the IP activity by 75.0%. Its first patent ever was published in 1987. It filed its patents most often in United Kingdom, WIPO (World Intellectual Property Organization) and EPO (European Patent Office). Its main competitors in its focus markets engines, pumps and turbines, environmental technology and civil engineering are MAY MICHAEL G, MOTODAN LTD and SHIN A C II KK.
# | Country | Total Patents | |
---|---|---|---|
#1 | United Kingdom | 174 | |
#2 | WIPO (World Intellectual Property Organization) | 58 | |
#3 | EPO (European Patent Office) | 38 | |
#4 | Australia | 28 | |
#5 | United States | 28 | |
#6 | Canada | 24 | |
#7 | China | 13 | |
#8 | Czechia | 9 | |
#9 | Republic of Korea | 9 | |
#10 | Brazil | 7 | |
#11 | Republic of Moldova | 7 | |
#12 | Slovakia | 6 | |
#13 | Latvia | 5 | |
#14 | Norway | 5 | |
#15 | Georgia | 4 | |
#16 | Japan | 3 | |
#17 | New Zealand | 3 | |
#18 | Poland | 3 | |
#19 | Bulgaria | 2 | |
#20 | India | 2 | |
#21 | Lithuania | 2 | |
#22 | Malaysia | 2 | |
#23 | South Africa | 2 | |
#24 | Estonia | 1 | |
#25 | Hong Kong | 1 | |
#26 | Hungary | 1 | |
#27 | Russian Federation | 1 | |
#28 | Taiwan | 1 | |
#29 | Ukraine | 1 | |
#30 | Yugoslavia (Serbia and Montenegro) | 1 |
# | Industry | |
---|---|---|
#1 | Engines, pumps and turbines | |
#2 | Environmental technology | |
#3 | Civil engineering | |
#4 | Measurement | |
#5 | Control | |
#6 | Thermal processes |
# | Name | Total Patents |
---|---|---|
#1 | Merritt Dan | 55 |
#2 | Burnham Keith J | 22 |
#3 | Grant Marcus Paul | 14 |
#4 | Pratt Christopher John | 13 |
#5 | Burnham Keith | 11 |
#6 | Keedwell Michael James | 9 |
#7 | Lowe Timothy Robert | 9 |
#8 | Peterson Ian Robert | 8 |
#9 | Walton David John | 7 |
#10 | Heptinstall John | 7 |
Publication | Filing date | Title |
---|---|---|
WO2021038237A1 | Blood pressure measurement device | |
GB202009657D0 | Improvements in or relating to laser peening | |
GB202009658D0 | Improvements in or relating to laser peening | |
WO2020141316A1 | Improvements in or relating to angle of attack sensing | |
GB201918848D0 | A coupling device for a mechanical structure | |
GB201915634D0 | An aerodynamic device | |
GB201913936D0 | A magnetic field sensor | |
WO2020065304A1 | Cyclorotor | |
GB201913092D0 | System and method for conditioning a laser beam | |
GB201909588D0 | A semiconductor device and methods for production thereof | |
GB201907366D0 | Deployable location system | |
GB201808089D0 | A protective brace | |
GB201807390D0 | Improvements in or relating to laser shock peening | |
GB201806393D0 | A vibration dose measurement apparatus | |
GB201721388D0 | Methods of manufacturing Hydrogen | |
US2019310122A1 | Improvements in or relating to the monitoring of fluid flow | |
GB201713281D0 | Coriolis flow meter | |
GB201707965D0 | A Protective brace | |
GB201707554D0 | A method of manufacturing a hollow shelled component and a component | |
GB201619615D0 | Transformable vehicle |