ELECTRICALLY DRIVEN SCIENTIFIC

Brand Owner (click to sort) Address Description
LITACELL Litarion GmbH AM WIESENGRUND 7 KAMENZ 01917 Germany Electrically driven scientific, nautical, surveying, photographic, cinematographic, optical, weighing, measuring, signaling, supervision checking, life-saving and teaching apparatus and instruments, namely, speed cameras, and fire extinguishers; apparatus and instruments for the supply, distribution, transformation, storage, regulation or control of electric current, namely, base stations for telecommunication systems, energy storage systems in the nature of electric transformers for peak shaving, and uninterrupted power supplies; anodes and cathodes for electric batteries; electric batteries; apparatus and instruments for accumulating and storing of electricity, namely, electric cells and rechargeable lithium-ion battery cells;Electrically driven machines for processing plastics; Electrically driven machines for drilling, sawing, screwing, grinding, and cutting metal; Electrically driven machines for drilling, sawing, screwing, grinding, and cutting wood; electrically driven machines for the chemical industry, agriculture and mining, namely, lawn mower machines, and oil and gas drilling machines; electrically driven concrete construction machines; electrically driven packing machines; electrically driven hand held tools, namely, machines for wood, stone, concrete and metal drilling, for wood, stone, concrete and metal sawing, for wood, stone, concrete and metal grinding, and for wood, stone, concrete and metal cutting for use in agriculture, horticulture and forestry, for mechanical engineering, apparatus and vehicle construction and for structural engineering;Electrically driven apparatus for locomotion by land, air or water, namely, passenger cars, buses, trucks, mobility scooters, bicycles, rail vehicles in the nature of trains, forklift trucks, boats, and airplanes; electrically driven apparatus for locomotion by land, air or water, namely, airborne platforms for serving spacecrafts and conducting space applications;
SEPARION Litarion GmbH AM WIESENGRUND 7 KAMENZ 01917 Germany Electrically driven scientific, nautical, surveying, photographic, cinematographic, optical, weighing, measuring, signalling, checking (supervision), life-saving and teaching apparatus and instruments; apparatus and instruments for the supply, distribution, transformation, accumulation, regulation or control of electric current;Electrically driven machines for processing metal, wood and plastics, electrically driven machines for the chemical industry, agriculture, mining, electrically driven textile machines, electrically driven machines for the beverages industry, electrically driven construction machines, electrically driven packing machines; electrically driven hand-operated tools used in agriculture, horticulture and forestry, for mechanical engineering, apparatus and vehicle construction and for structural engineering;Packing, stopping and insulating materials, flexible pipes, not of metal; membrane films to separate anodes and cathodes;Electrically driven games, electrically driven playthings;Chemicals used in industry and science;Electrically driven apparatus for locomotion by land, air or water;Electrically driven apparatus for lighting, heating, steam generating, cooking, refrigerating, drying, ventilating, water supply and sanitary purposes;
 

Where the owner name is not linked, that owner no longer owns the brand

   
Technical Examples
  1. An energy management control apparatus for a molding machine that includes a first electrically-driven prime mover configured to drive at least a first molding machine device, and a second electrically-driven prime mover configured to drive at least a second molding machine device, includes a common DC link configured to provide DC energy to the first electrically-driven prime mover and to the second electrically-driven prime mover. A slave axis is configured to supply and absorb energy from to/from the common DC link. A machine controller is configured to (i) communicate with the first electrically-driven prime mover, the second electrically-driven prime mover, the common DC link, and the slave axis, (ii) cause the slave axis to supply energy to the common DC link in response to input from at least one of the first electrically-driven prime mover and the second electrically-driven prime mover, and (iii) cause the slave axis to absorb energy from the common DC link in response to input from at least one of the first electrically-driven prime mover and the second electrically-driven prime mover.