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SCHLOETTER FA DR ING MAX

Overview
  • Total Patents
    51
About

SCHLOETTER FA DR ING MAX has a total of 51 patent applications. Its first patent ever was published in 1974. It filed its patents most often in Germany, EPO (European Patent Office) and WIPO (World Intellectual Property Organization). Its main competitors in its focus markets surface technology and coating, audio-visual technology and materials and metallurgy are ENTHONE OMI INC, PARK KYOUNG YEE and UYEMURA C & CO LTD.

Patent filings per year

Chart showing SCHLOETTER FA DR ING MAXs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 Strube Gernot 23
#2 Jordan Manfred 23
#3 Dietterle Michael 8
#4 Roubal Jiri 6
#5 Pfiz Roland 5
#6 Muenker Peter 4
#7 Fetzer Karl 4
#8 Jordan Dr Manfred 3
#9 Jiri Roubal 2
#10 Jordan Manfred Dr 2

Latest patents

Publication Filing date Title
EP2492371A1 Cobalt-free passivation solution and method for depositing cobalt-free passivation coatings on zinc and zinc alloy surfaces
EP2431500A1 Regeneration of zinc nickel alkali electrolytes by removing cyanide ions by using soluble quarternary ammonium compounds
EP2384800A1 Regeneration of alkaline zinc nickel electrolytes by removing cyanide ions
DE102009045569A1 Black passivation of zinc and zinc iron layers
EP2130950A1 Method for pretreating reinforced steel, wrought iron or cast iron before galvanic coating
DE102005016819A1 Electrolyte, process for the deposition of tin-bismuth alloy layers and use of the electrolyte
DE102004033979A1 Process for improving the solderability of nickel coatings
DE102004014680B3 Demetallizing solution for removing tin-bismuth layers, e.g. from electronic or electrical components, containing acid (e.g. alkylsulfonic acid), nitroaromatic compound and aminopolycarboxylic acid
DE10342291A1 Process for the acidic electrolytic deposition of a metal alloy for coating electronic components comprises passing deposited metal back into the chloride-free electrolyte solution by adding and dissolving the corresponding metal compounds
DE10208120A1 Process for metallizing ceramics based on titanates
JP2002339095A Method of depositing tin-bismuth-copper alloy
JP2003105581A Method and apparatus for electrolytic deposition of tin alloy
WO0224979A1 Electrolyte and method for depositing tin-copper alloy layers
DE10059139A1 Use of an organic sulfur compound in an acidic electrolyte for the deposition of tin-copper alloy
DE10046600A1 Electrolyte and process for the deposition of tin-copper alloy layers and use of the electrolyte
DE10035102A1 Process for coating hardened steel or cast iron components with zinc-nickel alloys and coated substrates obtainable by this process
DE10026680C1 Electrolyte and method for depositing tin-silver alloy layers and use of the electrolyte
DE19905981C1 Electrolyte solution and method for the production of lead tin layers and use
DE19852219C1 Aqueous solution for the electrolytic deposition of tin-zinc alloys and use of the solution
DE19837431A1 Coating hardened steel or cast iron components and method of applying same