CERACON INC has a total of 33 patent applications. Its first patent ever was published in 1984. It filed its patents most often in United States, Japan and Canada. Its main competitors in its focus markets materials and metallurgy, machines and semiconductors are METALS LTD, IAP RESEARCH INC and METAL ALLOYS INC.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 14 | |
#2 | Japan | 4 | |
#3 | Canada | 3 | |
#4 | Mexico | 3 | |
#5 | Singapore | 3 | |
#6 | Australia | 2 | |
#7 | EPO (European Patent Office) | 2 | |
#8 | Germany | 1 | |
#9 | WIPO (World Intellectual Property Organization) | 1 |
# | Industry | |
---|---|---|
#1 | Materials and metallurgy | |
#2 | Machines | |
#3 | Semiconductors | |
#4 | Civil engineering | |
#5 | Electrical machinery and energy | |
#6 | Machine tools | |
#7 | Thermal processes |
# | Technology | |
---|---|---|
#1 | Working metallic powder | |
#2 | Building materials | |
#3 | Unspecified technologies | |
#4 | Semiconductor devices | |
#5 | Earth drilling | |
#6 | Alloys | |
#7 | Magnets and transformers | |
#8 | Presses | |
#9 | Special electric heating or lighting | |
#10 | Furnaces |
# | Name | Total Patents |
---|---|---|
#1 | Oslin Brian L | 7 |
#2 | Anderson Raymond L | 7 |
#3 | Meeks Iii Henry S | 6 |
#4 | Fleming Marc S | 5 |
#5 | Chan Hing | 4 |
#6 | Lansing Lucile | 3 |
#7 | Rele Sundeep V | 3 |
#8 | Meeks Henry S | 3 |
#9 | Ecer Gunes M | 3 |
#10 | Meeks Henry S Iii | 3 |
Publication | Filing date | Title |
---|---|---|
US6630008B1 | Nanocrystalline aluminum metal matrix composites, and production methods | |
US6355209B1 | Metal consolidation process applicable to functionally gradient material (FGM) compositons of tungsten, nickel, iron, and cobalt | |
US6309594B1 | Metal consolidation process employing microwave heated pressure transmitting particulate | |
US6123896A | Texture free ballistic grade tantalum product and production method | |
US5032352A | Composite body formation of consolidated powder metal part | |
US4975414A | Rapid production of bulk shapes with improved physical and superconducting properties | |
US4915605A | Method of consolidation of powder aluminum and aluminum alloys | |
US4933140A | Electrical heating of graphite grain employed in consolidation of objects | |
US4853178A | Electrical heating of graphite grain employed in consolidation of objects | |
US4869869A | Method of consolidating FeNdB magnets | |
US4980340A | Method of forming superconductor | |
US4808224A | Method of consolidating FeNdB magnets |