Attribute Name
|
Value
|
---|---|
Application
|
Easy Clean, Smudge Resistance
|
Application Method
|
Solution applied by dipping (preferred), spray, or syringe dispense
|
Available Container Sizes
|
12 lb (5.4 kg) 1 Gal Container
|
Brand
|
Novec™
|
Can Size
|
2 Fluid Ounce (US), 3.5 Liquid Gallon (US)
|
Coating Location
|
Device Screens and Glass Surfaces
|
Coating Thickness (Dip Coated)
|
5 - 10 nm
|
Coverage Area
|
Depends on the application
|
Dry Time
|
5 - 30 Seconds
|
Net Weight (Imperial)
|
0.18 lb, 12 lb
|
Net Weight (Metric)
|
5.4 kg, 81 g
|
Overall Height (Imperial)
|
10.25 in, 5.5 in
|
Overall Height (Metric)
|
13.97 cm, 26.035 cm
|
Overall Length (Imperial)
|
11.5 in, 3.4 in
|
Overall Length (Metric)
|
29.21 cm, 8.636 cm
|
Overall Width (Imperial)
|
11.5 in, 3.3 in
|
Overall Width (Metric)
|
29.21 cm, 8.382 cm
|
Polymer Type
|
Fluorosilane
|
Product Form
|
Liquid
|
Product Series
|
Novec 1720
|
Product Type
|
Protecting
|
Removability
|
Permanent
|
RoHS 2011/65/EU Compliant
|
Yes
|
Solids Level
|
0.1 %
|
Storage Temperature
|
60 °F - 80 °F (16 °C - 27 °C)
|
Thermal Cure Time and Temperature
|
15 to 60 Minutes @ 70-150 Degree C
|
UV Detectable
|
No
|
3M™ Novec™ 1720 Electronic Grade Coating adds easy clean capabilities to surfaces such as glass flat panel displays and mobile electronic device components. It is a clear, 0.1 wt% fluorosilane polymer in a hydrofluoroether solvent.
Additional Information 3M™ Novec™ 1720 Electronic Grade Coating adds easy clean and anti-smudge capabilities to a variety of surfaces such as anti-reflective (AR) flat panel displays and mobile electronic device components. It is a clear, low viscosity, low surface tension solution of a 0.1 wt% fluorosilane polymer carried in a hydrofluoroether solvent. The coating dries to a thin, transparent, permanent film with excellent hydrophobic and oleophobic properties. It covalently bonds to glass and metal oxide layers and protects steel, aluminum, composites and a variety of other surfaces. The coating can air-dry in seconds and needs to be thermally post-cured.