MAG INSTR INC has a total of 439 patent applications. It decreased the IP activity by 53.0%. Its first patent ever was published in 1981. It filed its patents most often in United States, EPO (European Patent Office) and China. Its main competitors in its focus markets electrical machinery and energy and environmental technology are BAYCO PRODUCTS LTD, MPOWERD INC and STREAMLIGHT INC.
# | Country | Total Patents | |
---|---|---|---|
#1 | United States | 176 | |
#2 | EPO (European Patent Office) | 29 | |
#3 | China | 22 | |
#4 | WIPO (World Intellectual Property Organization) | 20 | |
#5 | Mexico | 18 | |
#6 | New Zealand | 18 | |
#7 | Brazil | 17 | |
#8 | Canada | 17 | |
#9 | Argentina | 15 | |
#10 | Taiwan | 15 | |
#11 | Republic of Korea | 14 | |
#12 | Australia | 13 | |
#13 | Costa Rica | 7 | |
#14 | EAPO (Eurasian Patent Organization) | 7 | |
#15 | Norway | 7 | |
#16 | Japan | 6 | |
#17 | South Africa | 6 | |
#18 | Hong Kong | 5 | |
#19 | Israel | 4 | |
#20 | Malaysia | 4 | |
#21 | Hungary | 2 | |
#22 | Singapore | 2 | |
#23 | Ukraine | 2 | |
#24 | Belgium | 1 | |
#25 | Switzerland | 1 | |
#26 | Colombia | 1 | |
#27 | Cyprus | 1 | |
#28 | Czechia | 1 | |
#29 | Finland | 1 | |
#30 | India | 1 | |
#31 | Republic of Moldova | 1 | |
#32 | Panama | 1 | |
#33 | Peru | 1 | |
#34 | Poland | 1 | |
#35 | Saudi Arabia | 1 | |
#36 | Tajikistan | 1 |
# | Industry | |
---|---|---|
#1 | Electrical machinery and energy | |
#2 | Environmental technology |
# | Name | Total Patents |
---|---|---|
#1 | Maglica Anthony | 288 |
#2 | West Stacey H | 129 |
#3 | Lewis Armis L | 32 |
#4 | West Stacey | 24 |
#5 | O'Farrell John K | 21 |
#6 | Anthony Maglica | 18 |
#7 | Johnson Ralph Emsley | 17 |
#8 | Radloff Robert P | 14 |
#9 | Lewis Armis Lionel | 12 |
#10 | Johnson Ralph E | 12 |
Publication | Filing date | Title |
---|---|---|
US10443834B1 | LED flashlight with improved heat sink | |
US10851980B1 | Tactical advantage flashlight | |
US9978225B1 | Portable lamp flashlight | |
US2018259168A1 | Apparatus for creating a storage compartment in a flashlight and method of its use | |
US2017051903A1 | Portable lighting devices | |
US2017092918A1 | Method and Apparatus for Reducing Battery Corrosive Electrolyte Leakage | |
US2016153646A1 | Lighting devices | |
US2016153625A1 | Lighting devices | |
US2016178176A1 | Portable lighting devices | |
EP3238278A1 | Improved efficiency lighting apparatus with led directly mounted to a heatsink | |
US9368768B1 | Method and apparatus for minimizing battery corrosive electrolyte leakage | |
US2015103517A1 | Rechargeable lighting devices | |
WO2015042323A1 | Charger cradle for rechargeable lighting device | |
US2014167638A1 | Portable lighting device | |
WO2014110533A2 | Improved lighting devices | |
WO2014110526A1 | Cradle for rechargeable lighting devices | |
MX2013008211A | Multi-mode portable lighting device. | |
TW201235591A | Portable lighting device with reconfigurable user interface | |
MX2011007625A | Portable lighting devices. | |
TW201033516A | Multi-mode portable lighting device |