PLASTIC TINTED FILM USE

Brand Owner (click to sort) Address Description
AMERICAN AUTO ACCESSORIES AMERICAN AUTO ACCESSORIES, INC. 142-42 41st Avenue Flushing NY 11355 plastic tinted film for use on auto windows;as to AMERICAN;automobile seat cushions, license plate holders, fitted steering wheel covers, steering wheel locks, gear shifter and turn signal knobs for use in automobiles;lights for vehicles, namely, decorative, neon lights; ground light kits for automobiles comprised of decorative lights, hardware and electrical wiring sold as a unit;dusting brushes and feather dusters for vehicles;AUTO ACCESSORIES;The stippling shown in the drawing is not intented to indicate color.;
AMERICAN AUTO ACCESSORIES AMERICAN AUTO ACCESSORIES, INC. 142-42 41st Avenue Flushing NY 11355 plastic tinted film for use on auto windows;air fresheners for automobiles;automobile seat cushions, license plate holders, fitted steering wheel covers, steering wheel locks, gear shifter and turn signal knobs for use in automobiles;lights for vehicles, namely, decorative, neon lights; ground light kits for automobiles comprised of decorative lights, hardware, and electrical wiring sold as a unit;dusting brushes and feather dusters for vehicles;AUTO ACCESSORIES;
GLAREMASTER UV-X LEE, JAMES K. 6931 HERMOSA CIRCLE BUENA PARK CA 90620 plastic tinted film for use in home, auto, recreational vehicles, boats and air planes;
NEON PENNZOIL-QUAKER STATE COMPANY 150 N. Dairy Ashford Houston TX 77079 PLASTIC TINTED FILM FOR USE IN HOME OR AUTO WINDOWS;FLOOR MATS FOR VEHICLES;VEHICLE SEAT COVERS, LICENSING PLATE FRAMES, WHEELCOVERS FOR VEHICLES, SEMI-FITTED VEHICLE COVERS, AUTOMOBILE WINDSHIELD SUNSHADES; VEHICLE ORGANIZERS NAMELY, DRINK HOLDERS WITH COMPARTMENTALIZED DRAWERS AND FILE POCKETS;
 

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

   
Technical Examples
  1. The invention provides a method for designing tinted contact lenses that permits the computer-assisted modeling of a tinted lens on-eye. The method of the invention provides a substantially accurate prediction as to the appearance of the lens on-eye and reduces the number of designs that must be clinically tested and the number of iterations that each design must go through.