LEICA GEOSYSTEMS AG has a total of 1,883 patent applications. It increased the IP activity by 21.0%. Its first patent ever was published in 1990. It filed its patents most often in EPO (European Patent Office), United States and China. Its main competitors in its focus markets measurement, computer technology and optics are TRIMBLE AB, SUZHOU FENGZHIHUO DIGITAL TECHNOLOGY CO LTD and CYRA TECHNOLOGIES INC.
# | Country | Total Patents | |
---|---|---|---|
#1 | EPO (European Patent Office) | 556 | |
#2 | United States | 297 | |
#3 | China | 293 | |
#4 | WIPO (World Intellectual Property Organization) | 223 | |
#5 | Australia | 164 | |
#6 | Canada | 155 | |
#7 | Republic of Korea | 39 | |
#8 | Brazil | 34 | |
#9 | Germany | 24 | |
#10 | Japan | 23 | |
#11 | South Africa | 11 | |
#12 | Argentina | 9 | |
#13 | Mexico | 9 | |
#14 | Switzerland | 8 | |
#15 | Norway | 7 | |
#16 | New Zealand | 6 | |
#17 | Russian Federation | 4 | |
#18 | Ukraine | 4 | |
#19 | Finland | 3 | |
#20 | India | 3 | |
#21 | Chile | 2 | |
#22 | United Kingdom | 2 | |
#23 | Hong Kong | 2 | |
#24 | Peru | 2 | |
#25 | France | 1 | |
#26 | Israel | 1 | |
#27 | Sweden | 1 |
# | Industry | |
---|---|---|
#1 | Measurement | |
#2 | Computer technology | |
#3 | Optics | |
#4 | Audio-visual technology | |
#5 | Civil engineering |
# | Technology | |
---|---|---|
#1 | Measuring distances | |
#2 | Radio navigation | |
#3 | Measuring length, angles and areas | |
#4 | Image data processing | |
#5 | Optical systems | |
#6 | Television | |
#7 | Special measuring | |
#8 | Data recognition and presentation | |
#9 | Electric digital data processing | |
#10 | Dredging |
# | Name | Total Patents |
---|---|---|
#1 | Siercks Knut | 99 |
#2 | Hinderling Juerg | 78 |
#3 | Braunecker Bernhard | 76 |
#4 | Jensen Thomas | 73 |
#5 | Kotzur Norbert | 67 |
#6 | Lippuner Heinz | 67 |
#7 | Giger Kurt | 66 |
#8 | Metzler Bernhard | 65 |
#9 | Aebischer Beat | 64 |
#10 | Dusha Damien | 56 |
Publication | Filing date | Title |
---|---|---|
WO2021069079A1 | Metrology system | |
EP3786578A1 | Surveying instrument | |
EP3783385A1 | Combined point cloud generation using a stationary laser scanner and a mobile scanner | |
US2021055102A1 | Surveying system with image-based measuring | |
EP3783305A1 | Drive system in a geodetic measurement instrument | |
EP3783308A1 | Geodetic system | |
EP3779357A1 | Localisation of a surveying instrument | |
US2020387741A1 | Method for creating point cloud representations | |
EP3748289A1 | Scanning surveying device | |
EP3734222A1 | Coordinate measuring and/or stake out device | |
EP3730970A1 | Providing atmospheric correction data for a gnss network-rtk system by encoding the data according to a quad-tree hierarchy | |
US2020309515A1 | Surveying systems | |
EP3708952A1 | System used for improving automatic control of machine operations of construction site machinery | |
EP3708951A1 | Auto centring levelling | |
EP3693698A1 | Measuring device with event-based camera | |
EP3677871A1 | Measuring system | |
EP3671261A1 | 3d surveillance system comprising lidar and multispectral imaging for object classification | |
EP3671273A1 | System for rough localization of moveable cooperative targets during laser tracker based industrial object measurement | |
EP3671115A1 | Geodetic stake-out system | |
WO2020119912A1 | Measurement method, measurement systems and auxiliary measurement instruments |