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GTAT CORP

Overview
  • Total Patents
    304
  • GoodIP Patent Rank
    9,743
  • Filing trend
    ⇧ 25.0%
About

GTAT CORP has a total of 304 patent applications. It increased the IP activity by 25.0%. Its first patent ever was published in 2006. It filed its patents most often in Taiwan, WIPO (World Intellectual Property Organization) and United States. Its main competitors in its focus markets surface technology and coating, environmental technology and semiconductors are MEMC ELECTRONIC MATERIALS, CALISOLAR INC and EPISPEED S A.

Patent filings per year

Chart showing GTAT CORPs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 Murali Venkatesan 53
#2 Prabhu Gopal 47
#3 Andrukhiv Andriy M 35
#4 Drachev Roman V 35
#5 Lyttle David S 35
#6 Santhanaraghavan Parthasarathy 34
#7 Brainard Robert 31
#8 Hazeltine Bruce 28
#9 Chari Arvind 26
#10 Tanner David 24

Latest patents

Publication Filing date Title
WO2019126413A1 Czochralski growth apparatus conversion assembly
EP3377671A1 Chemical vapor deposition method and apparatus
WO2016060867A1 Generating neutrons using a rotating neutron source material
TW201608622A Substrate-transporting ion beam exfoliation system
TW201612957A Support substrate for ion beam exfoliation of a crystalline lamina
TW201603193A Enhancing the emissivity of a donor substrate for ion implantation
WO2015195283A1 Photovoltaic cell having a coupled expanded metal article
WO2015157054A1 Method of preparing a power electronic device
TW201603104A Magnetic scanning system for ion implanters
TW201547181A Photovoltaic module with flexible circuit
TW201540858A Systems and methods for generating metal oxide coatings
TW201523910A Free-standing metallic article with expansion segment
WO2015057346A1 Product cartridge for transporting product
WO2015057348A1 A method of annealing sapphire
US2015090245A1 Method and apparatus for processing sapphire
US2015090179A1 Technique for controlling temperature uniformity in crystal growth apparatus
US2015092041A1 Method of automatically measuring seed melt back of crystalline material
WO2015035170A1 Bulk silicon carbide having low defect density
WO2015035152A1 Method and apparatus for producing bulk silicon carbide using a silicon carbide seed
CN110670124A Method for producing bulk silicon carbide