This surface treatment is the most matte variant in our line of Fine Mat™️ anti-glare surface treatments, ranging from Fine Mat™️ A1 to A5.
Fine Mat™️ is specifically developed to produce an exclusive-looking matte surface that dramatically reduces glare and still has excellent optical performance. This is because the cover glass retains its light transmission despite the anti-glare surface treatment, depending on which base material it is applied on.
The coating process creates a unique surface structure consisting of lens-shaped microparticles. This structure scatters light and significantly reduces glare. Despite its anti-glare properties, haze is still low, and light emitted from the display doesn’t get blurred, meaning it retains its image quality. Therefore, disturbing glare is significantly reduced with no loss in image quality from the underlying display.
The A5 variant of Fine Mat™ is suitable for applications such as digital signage, such as infotainment systems, kiosks, passenger information systems, etc.
Typically, these types of applications are used in conditions with a lot of direct light, such as sunlight outdoors or overhead light sources indoors. Therefore, displays used in these environments can benefit from anti-glare surface treatments to improve the readability of the display.
The gloss level of our Fine Mat™️ solutions can be adjusted. A1 is our Anti-Newton grade solution, whereas A3 is suitable for high-resolution displays. A5, which is the most matte solution, is what we usually recommend for digital signage applications. We also have Fine Mat™️ A2 and A4, which naturally fall in between these options. Therefore, we are able to customize the anti-glare solution to exactly match the requirements of your display.
This material can be cut and milled using high-speed routers and cutters suited for machining PMMA and other plastics.
Fine Mat coatings can be laser cut, and cutting parameters must be adjusted to give the best performance for the selected substrate.
Fine Mat can, if allowed by the substrate, be thermoformed and cold-bent.
Parameter | Test | PMMA (substrate) | PC (substrate) |
---|---|---|---|
Transmittance | - | > 90% | > 88% |
Refractive index | ISO 489 | N/A | N/A |
Gloss level (20/60/85°) for standard grades* | Measured with BYK Gardner Micro-TRI-Gloss | 10/50/85 | 10/50/85 |
Parameter | Test | Unit | PMMA (substrate) | PC (substrate) |
---|---|---|---|---|
Pencil hardness | ISO 15184 | - | ≥ 3-4H ** | ≥ 2-3H** |
Adhesion (cross cut) | DIN 5315 | - | 100/100 | 100/100 |
Adhesion (water soak) | DIN 5315 | >15 days @ 65 °C | 100/100 | 100/100 |
Parameter | Test | PMMA (substrate) | PC (substrate) |
---|---|---|---|
Rape seed methyl esters | Adapted ISO 2812, 1976 (72 hour exposure) | No impact | No impact |
Isopronaol, 70% | Adapted ISO 2812, 1976 (72 hour exposure) | No impact | No impact |
Synthetic engine oil | Adapted ISO 2812, 1976 (72 hour exposure) | No impact | No impact |
Transmission oil | Adapted ISO 2812, 1976 (72 hour exposure) | No impact | No impact |
Glycols (coolant) | Adapted ISO 2812, 1976 (72 hour exposure) | No impact | No impact |
PMMA (substrate) | PC (substrate) | |
---|---|---|
Standard format | 1000x740 mm | 1000x740 mm |
Minimum thickness | 0.2 mm | 0.2 mm |
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