HERAEUS ELECTRO NITE INT has a total of 1,201 patent applications. It decreased the IP activity by 87.0%. Its first patent ever was published in 1983. It filed its patents most often in EPO (European Patent Office), United States and Germany. Its main competitors in its focus markets measurement, materials and metallurgy and machines are HERAEUS ELECTRO-NITE INT NV, YAMAZATO ELECTRONITE KK and KHERAEUS EHLEKTRO NITE INTERNATSIONAL N V.
# | Country | Total Patents | |
---|---|---|---|
#1 | EPO (European Patent Office) | 168 | |
#2 | United States | 143 | |
#3 | Germany | 125 | |
#4 | Brazil | 104 | |
#5 | Japan | 99 | |
#6 | China | 91 | |
#7 | Republic of Korea | 79 | |
#8 | Australia | 68 | |
#9 | Canada | 62 | |
#10 | WIPO (World Intellectual Property Organization) | 42 | |
#11 | South Africa | 37 | |
#12 | Taiwan | 34 | |
#13 | Ukraine | 32 | |
#14 | Mexico | 28 | |
#15 | Argentina | 14 | |
#16 | Russian Federation | 14 | |
#17 | Poland | 10 | |
#18 | France | 8 | |
#19 | Belgium | 7 | |
#20 | Chile | 6 | |
#21 | Norway | 5 | |
#22 | India | 4 | |
#23 | United Kingdom | 3 | |
#24 | Turkey | 3 | |
#25 | Iceland | 2 | |
#26 | New Zealand | 2 | |
#27 | Slovakia | 2 | |
#28 | African Regional Industrial Property Organization | 1 | |
#29 | Austria | 1 | |
#30 | Czechia | 1 | |
#31 | Egypt | 1 | |
#32 | Hungary | 1 | |
#33 | Indonesia | 1 | |
#34 | Malaysia | 1 | |
#35 | African Intellectual Property Organization | 1 | |
#36 | Romania | 1 |
# | Industry | |
---|---|---|
#1 | Measurement | |
#2 | Materials and metallurgy | |
#3 | Machines | |
#4 | Thermal processes | |
#5 | Environmental technology |
# | Name | Total Patents |
---|---|---|
#1 | Kendall Martin | 124 |
#2 | Neyens Guido Jacobus | 114 |
#3 | Beyens Dries | 88 |
#4 | Knevels Johan | 66 |
#5 | Verstreken Paul Clement | 58 |
#6 | Wienand Karlheinz | 50 |
#7 | Dams Francis | 48 |
#8 | Straetemans Marc | 47 |
#9 | Cappa Guido | 45 |
#10 | Gerits Erik | 40 |
Publication | Filing date | Title |
---|---|---|
EP3693720A1 | Method and apparatus for demolding and analyzing a direct analysis sample | |
EP3588052A1 | Immersion probe and measuring system for use in a converter steelmaking process | |
EP3581913A1 | Improved molten metal sampler | |
EP3581914A1 | Molten metal samplers for high and low oxygen applications | |
EP3533536A1 | Method and apparatus for monitoring a continuous steel casting process | |
GB201621979D0 | Method for measuring a temperature of a molten metal bath | |
EP3336511A1 | Direct analysis sampler | |
EP3336514A1 | Direct analysis sampler | |
EP3336512A1 | Direct analysis sampler with heat sink | |
EP3336513A1 | Sampler for molten metal | |
EP3323605A1 | Convolute tube | |
EP3293505A1 | Immersion device for slag sample collection | |
EP3290881A1 | Method for feeding an optical cored wire and immersion system to carry out the method | |
US2016209342A1 | Reverse filling carbon and temperature drop-in sensor | |
US2016209341A1 | Reverse filling carbon and temperature drop-in sensor | |
EP3104154A1 | Immersion device for molten metal and method | |
EP3081921A1 | Spectrometer calibration method | |
CN104614396A | Sample cup for thermal analysis | |
EP3051262A1 | Feeding device for an optical fiber for measuring the temperature of a melt | |
EP3051263A1 | Immersion device for an optical fiber for measuring the temperature of a melt |