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DAUSINGER & GIESEN GMBH

Overview
  • Total Patents
    18
  • GoodIP Patent Rank
    181,611
  • Filing trend
    ⇩ 100.0%
About

DAUSINGER & GIESEN GMBH has a total of 18 patent applications. It decreased the IP activity by 100.0%. Its first patent ever was published in 2011. It filed its patents most often in Germany, WIPO (World Intellectual Property Organization) and EPO (European Patent Office). Its main competitors in its focus markets optics are NANJING JINSONGHAN ELECTRIC POWER SCIENCE & TECH CO LTD, GP PHOTONICS INC and KRUPKE WILLIAM F.

Patent filings in countries

World map showing DAUSINGER & GIESEN GMBHs patent filings in countries

Patent filings per year

Chart showing DAUSINGER & GIESEN GMBHs patent filings per year from 1900 to 2020

Focus industries

# Industry
#1 Optics

Focus technologies

Top inventors

# Name Total Patents
#1 Larionov Mikhail 11
#2 Neuhaus Jörg 7
#3 Sommer Steffen 7
#4 Neuhaus Joerg 7
#5 Dausinger Friedrich 5
#6 Hehl Gregor 3
#7 Fink Florian 2
#8 Giesen Adolf 2
#9 Larionov Mikhail Dr 1
#10 Giesen Adolf Dr 1

Latest patents

Publication Filing date Title
DE102017108548A1 Regenerative disk laser amplifier for generating ultra-short laser pulses
DE102016107570A1 Ultra short pulse pump source for generating a plurality of pump pulses
DE102016107068A1 Phase synchronized modulatable resonant electro-optic modulator for switching high power laser pulses
DE102014100204A1 Laser amplifier system with thermal phase correction
DE102013114748A1 Pumping Opt with increased number of passes
DE102013012966A1 Pockels cell with subdued electro-optical crystal
DE102013010756A1 Single-frequency laser with auxiliary resonator
DE102013009509A1 A laser amplifier system comprising a solid state disk with thermal homogenization layer for heat spreading
DE102012021169A1 Laser amplifier system with bonded solid disk
DE102012021168A1 Multipass laser system with coupled multipass cells
DE102012015193A1 Laser amplifier system, has disk guiding multi-pass radiation field from incident field to emergent field such that ratio between number of transitions over disk to number of transitions over optic is equal to ratio of disk to optic
DE102011075274A1 Laser amplifier system