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WANG YUNBING

Overview
  • Total Patents
    54
  • GoodIP Patent Rank
    235,343
About

WANG YUNBING has a total of 54 patent applications. Its first patent ever was published in 2006. It filed its patents most often in United States and China. Its main competitors in its focus markets medical technology, machines and macromolecular chemistry and polymers are SOLAR LAB INC, GALE DAVID C and OXFORD BIOMATERIALS LTD.

Patent filings in countries

World map showing WANG YUNBINGs patent filings in countries
# Country Total Patents
#1 United States 53
#2 China 1

Patent filings per year

Chart showing WANG YUNBINGs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 Wang Yunbing 54
#2 Gale David C 11
#3 Oberhauser James 8
#4 Ma Xiao 8
#5 Pacetti Stephen D 4
#6 Glauser Thierry 3
#7 Huang Bin 3
#8 Castro Daniel A 2
#9 Vazquez Luis 2
#10 Kleiner Lothar 2

Latest patents

Publication Filing date Title
CN106218854A Lift aircraft fuselage assembly
US2013310913A1 Polymer scaffold with multi-pleated balloon
US2013255853A1 Uniform crimping and deployment methods for polymer scaffold
US2012046756A1 Treatment of nasal cavities with stent having a soft outer layer
US2012299226A1 Method and system for manufacturing a polymer endoprosthesis by injection molding and blow molding
US2012290073A1 Bioabsorbable scaffolds made from composites
US2012285609A1 Methods for crimping a polymeric scaffold to a delivery balloon and achieving stable mechanical properties in the scaffold after crimping
US2012290071A1 Bioabsorbable scaffold with particles providing delayed acceleration of degradation
US2012290070A1 Control of degradation profile of bioabsorbable poly(l-lactide) scaffold
US2012285123A1 Methods of stabilizing molecular weight of polymer stents after sterilization
US2012290063A1 Method of Increasing Stent Retention of Bioabsorbable Scaffolding with a Sheath
US2011260358A1 Post electron beam conditioning of polymeric medical devices
US2012091633A1 Method to minimize chain scission and monomer generation in processing of poly(L-lactide) stent
US2012042501A1 Reducing crimping damage to polymer scaffold
US2011271513A1 Methods for crimping a polymeric stent scaffold onto a delivery balloon
US2011270387A1 Implantable medical devices comprising poly[l-lactide-co-(3,6-dialkyl-1,4-dioxane-2,5-dione)]
US2011021717A1 Method to make poly(L-lactide) stent with tunable degradation rate
US2011066222A1 Polymeric Stent and Method of Making Same
US2011022163A1 Implantable medical device comprising copolymer of L-lactide with improved fracture toughness
US2011022155A1 Biodegradable stent with adjustable degradation rate