Brady

Brady® 110746 Laminated Non-Reflective Rectangular Self-Adhesive Printed Lean Label, 5 in W, ORIGINS OF LEAN THINKING EACH SYSTEM IS PERFECTLY DESIGNED TO GIVE YOU EXACTLY WHAT YOU ARE GETTING TODAY. -DR. W. EDWARDS DEMING Legend, Black on Yellow

110746 MFG #: 110746
$36.69 / PK
Estimated Delivery 7 to 10 Business Days
  • Type: High Performance Laminated Non-Reflective Rectangle Self-Adhesive
  • Width: 5
  • Legend: ORIGINS OF LEAN THINKING EACH SYSTEM IS PERFECTLY DESIGNED TO GIVE YOU EXACTLY WHAT YOU ARE GETTING TODAY. -DR. W. EDWARDS DEMING
  • Legend/Background Color: Black on Yellow
  • Material: B-302 Polyester
Brady® Printed Lean Label, Laminated Non-Reflective Rectangular Self-Adhesive, 5 in Width, Legend: ORIGINS OF LEAN THINKING EACH SYSTEM IS PERFECTLY DESIGNED TO GIVE YOU EXACTLY WHAT YOU ARE GETTING TODAY. -DR. W. EDWARDS DEMING, Black on Yellow Legend/Background, B-302 Polyester, 10 per Pack Labels
  • English language
  • High performance pressure sensitive safety sign and is surface printed polyester with a polyester ov
  • Polyester over laminate
  • Weathers up to 8 years outdoors, even longer indoors and withstands wide temperature variations (up
  • Flexible material conforms to most surfaces while protected graphics hold up to harsh environments,
  • Permanent, pressure sensitive adhesive forms a long-lasting bond to even the most difficult surfaces
  • Cold temperature adhesive allows the signage to be applied at 0 deg F
English language
High performance pressure sensitive safety sign and is surface printed polyester with a polyester over laminate
Polyester over laminate
Weathers up to 8 years outdoors, even longer indoors and withstands wide temperature variations (up to 230 deg F)
Flexible material conforms to most surfaces while protected graphics hold up to harsh environments, abrasion and repeated spills and cleanings
Permanent, pressure sensitive adhesive forms a long-lasting bond to even the most difficult surfaces and shapes
Cold temperature adhesive allows the signage to be applied at 0 deg F