MANUFACTURING PRODUCING D

Brand Owner Address Description
BREAKING PERFORMANCE BARRIERS Oerlikon AM Europe GmbH Steinfeldstraße 7 39179 Barleben Germany Manufacturing and producing of 3D printing; material treatment, namely, 3D printing; rental of 3D printers; additive manufacturing of parts, workpieces, prototypes, models, shapes, tools and other kinds of three-dimensional objects from powders, wires and dispersions, especially by means of vat photopolymerisation, material jetting, binder jetting, material extrusion, powder bed fusion (including but not limited to laser sintering, laser melting, electron beam sintering, heat sintering and electron beam melting), sheet lamination and directed energy deposition; custom additive manufacturing of moulded components by means of processes such as vat polymerisation, material jetting, 3D printing, material extrusion, powder bed fusion (including, but not limited to, laser sintering, laser melting, electron beam sintering, thermal sintering and electron beam melting), sheet lamination and directed energy deposition (DED); coating of workpieces, prefabricated parts, material webs, tools and parts of machines of metal, ceramics, plastics, fibre-reinforced plastics, in particular applying layers of materials of metal, of ceramic materials, of plastic and composites of two or more of these materials; manufacture and preparation of parts, prototypes, models, moulds and tools and other kinds of three-dimensional objects by means of a generative manufacturing process; manufacture of powders for generative manufacturing of three-dimensional objects, in particular by means of laser sintering, laser melting, electron beam sintering and electron beam melting; applying of functional protective layers to workpieces, prefabricated parts, material webs, tools and parts of machines, including pre- and post-treatment steps;3D printers; machines, machine parts and wires for additive manufacturing for additive manufacturing especially by means of VAT photopolymerisation, material jetting, binder jetting, material extrusion, powder bed fusion (including but not limited to laser sintering, laser melting, electron beam sintering, heat sintering and electron beam melting), sheet lamination and directed energy deposition;Powders of metal, alloys of metal and dispersions principally of metals, mixtures of metals, alloys and mixtures comprising metals or alloys, all for generative manufacture of parts, prototypes, models, moulds and tools and other kinds of three-dimensional objects, in particular by means of laser sintering, laser melting, electron beam sintering and electron beam melting; metallic materials, metal alloys and dispersions for the production of layers and layer sequences, in particular surface layers applied to workpieces, tools and machine parts; pure-metal coating powders, alloyed coating powders, coating powder mixtures, solid-state coating materials in wire or plate form, consisting of pure metal or metal alloys for further use as coating materials; metal powder for 3D printers;Coatings (paints) of metallic materials, metal alloys and dispersions, and layers and layer sequences made therefrom, in particular surface layers applied to workpieces, tools and machine parts;Chemicals used in industry and science, being powders or dispersions for generative manufacture of parts, prototypes, models, moulds and tools, and other kinds of three-dimensional objects, in particular by means of laser sintering, laser melting, electron beam sintering and electron beam melting; chemicals, namely, coating materials and thin layers of organic and non-organic materials for applying a coating to substrates, including metal, glass, ceramic, plastic; organometallic compounds;
 

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

   
Technical Examples
  1. Provided are a system and method for automatically tracking a lot being moved between first and second manufacturing lines during semiconductor manufacturing. In one example, the method includes assigning a first state to the lot to indicate the lot's presence in the first manufacturing line. A trigger event indicating that the lot has been moved to the second manufacturing line may be identified, and a second state may be determined for the lot to reflect the lot's presence in the second manufacturing line. The second state may then be assigned to the lot.