MC1600W

MC1600W

MC1600W Blanket for LED Applications.

The Kinyo MC1600W is designed for LED applications.

Download Product Data Sheet

The Kinyo MC1600W is designed for LED applications.

All-new unique surface formulation and robust carcass. High resistance to all UV, EB, HUV/LED-UV inks, founts, and washes.

Excellent dot reproduction with significantly reduced ghosting, minimized image retention, and improved washability.

Specially profiled and polished surface delivers uniform and sharper dots with enhanced transfer and quick release.

Strict gauge control from blanket to blanket ensures excellent dot reproduction, longevity, and consistency.

Technical Data

These values are typical properties and are not intended for specification purposes.

Purple

Color

Specially designed 100% EPDM blend

Surface Rubber

Polished

Surface Finish

0.6 μm

Surface Roughness (Ra)

Closed cell - medium

Compressible layer

.077"/1.95mm

Nominal thickness

81º

Shore A hardness

1.6

Compressibility

< 1.2%

Elongation

Description

MC1600W Blanket for LED Applications.

The Kinyo MC1600W is designed for LED applications.

Download Product Data Sheet

The Kinyo MC1600W is designed for LED applications.

All-new unique surface formulation and robust carcass. High resistance to all UV, EB, HUV/LED-UV inks, founts, and washes.

Excellent dot reproduction with significantly reduced ghosting, minimized image retention, and improved washability.

Specially profiled and polished surface delivers uniform and sharper dots with enhanced transfer and quick release.

Strict gauge control from blanket to blanket ensures excellent dot reproduction, longevity, and consistency.

Technical Data

These values are typical properties and are not intended for specification purposes.

Additional information

Color

Purple

Surface Rubber

Specially designed 100% EPDM blend

Surface Finish

Polished

Surface Roughness (Ra)

0.6 μm

Compressible layer

Closed cell – medium

Nominal thickness

.077"/1.95mm

Shore A hardness

81º

Compressibility

1.6

Elongation

< 1.2%