98-0440-4275-6

98-0440-4275-6 Datasheet


Part Datasheet
98-0440-4275-6 98-0440-4275-6 98-0440-4275-6 (pdf)
Related Parts Information
98-0440-4278-0 98-0440-4278-0 98-0440-4278-0
98-0440-4277-2 98-0440-4277-2 98-0440-4277-2
98-0440-4276-4 98-0440-4276-4 98-0440-4276-4
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Application Guidelines

Vikuiti Dual Brightness Enhancement Film-Embossed DBEF-E Vikuiti Dual Brightness Enhancement Film II DBEF-II Vikuiti Dual Brightness Enhancement Film-D400 DBEF-D400 Vikuiti Dual Brightness Enhancement Film-D550 DBEF-D550

The Vikuiti Dual Brightness Enhancement Film DBEF family of Vikuiti Brightness Enhancement Films are all reflective polarizers, in which light of one polarization is reflected and light of the other polarization is transmitted. Most of them use 3M’s multi-layer technology for this polarized light management in which illumination from the backlight is recycled for greater efficiency and performance. All the films substantially boost display brightness and can be used in conjunction with other Vikuiti products such as Vikuiti Brightness Enhancement Film BEF and Enhanced Specular Reflector ESR . Vikuiti DBEF-E Film This version of Vikuiti DBEF film has an embossed front surface. This embossed surface keeps the film from wetting out or optically coupling to the rear polarizer of liquid crystal panels. Vikuiti DBEF II Film This version of Vikuiti DBEF film has a matte surface on both sides. The matte surface keeps the film from wetting out or optically coupling to the rear polarizer of liquid crystal panels. Vikuiti DBEF-D400 Film This version of Vikuiti DBEF film has outer skins of diffuse polycarbonate. These skins improve the film’s thermal and mechanical properties. Vikuiti DBEF-D550 Film This version of Vikuiti DBEF-D550 film has outer skins of diffuse polycarbonate somewhat thicker than the D400 product. These skins improve the film’s thermal and mechanical properties.
3 Innovation

The figures below illustrate the basic construction of the films. All dimensions are approximate, and the figures are not drawn to scale.

Vikuiti DBEF-E Film

Removable Liner............... 60 microns Embossed Surface

Vikuiti DBEF Film 132 microns

Removable Liner............... 60 microns

Delivered Thickness 252 microns Applied Thickness 132 microns excluding liners

Vikuiti DBEF II Film

Removable Liner 45 microns

Vikuiti DBEF Film 150 microns

Removable Liner 45 microns Delivered Thickness 240 microns Applied Thickness 150 microns excluding liners

Vikuiti DBEF-D400 Film

Removable Liner 60 microns Diffuser Layer.................... 130 microns

Vikuiti DBEF Film............. 135 microns

Diffuser Layer.................... 130 microns Removable Liner 60 microns Delivered Thickness 515 microns Applied Thickness 395 microns excluding liners

Vikuiti DBEF-D550 Film

Removable Liner 60 microns Diffuser Layer.................... 210 microns

Vikuiti DBEF Film............. 130 microns

Diffuser Layer.................... 210 microns Removable Liner 60 microns Delivered Thickness 670 microns Applied Thickness 550 microns excluding liners

Formats

Reference the current price sheet or call customer service 1-800-553-9215 for information on part sizes.

To help you orient the film, the sheets will have a small notch cut into one of the corners Except for DBEF-D550 it has the corner removed . Hold the sheets with the cut notch in the upper right-hand corner to identify the transmission angle, as illustrated below. When held like this, you will be looking at the upper surface, which must face the LC glass module, and face away from the backlight.

Notch

Notch

Transmission Axis
0 Degree Format

Corner Cut Out

Transmission Axis
45 Degree Format

DBEFD550 Parts

Ty p i c a l A p l i c a t i o n

LC Glass Module Vikuiti DBEF Film Vikuiti BEF II, BEF III, TBEF Films Optional

Diffuser Optional

Backlight System LED, CCFT, etc.

The film must be mounted with its transmission axis parallel to the transmission axis of the rear polarizer.

General Converting, Assembly, and Handling Recommendations

During converting operations, both the front and rear protective liners should remain on the film. Die cutting is the recommended form of converting and will result in the cleanest edges, although shear cutting and laser cutting may also be acceptable. Whatever method utilized, you should insure that the part has clean, crisp edges without any raggedness or other damage. The part should be precisely cut to provide a close fit in the cavity, yet not so close to experience binding or warping problems from thermal expansion. The part should be left free-floating in the cavity to avoid warping or buckling. If necessary, the part may be tacked down along one edge or two adjacent corners with a double-coated tape, such as Tape # Designs incorporating mounting tabs, or holes mated to mounting pins, are also popular. Remove both protective liners, if the film has them, by tacking near an edge or corner with a piece of aggressive tape and pull gently. If two pieces of 3M Vikuiti Prismatic Film BEF II, BEF III, TBEF are to be incorporated, they should be converted with the grooves of the prism structure of the first sheet at a 90-degree angle to the grooves direction of the second sheet. Be aware that handling any polymer film can generate electrostatic charges, which can attract dust and debris. Remove any loose debris from the film by using compressed air. Avoid fingerprints and debris by wearing clean latex gloves and holding the product at the edges. Keep the area very clean to lessen the likelihood of debris contamination. Maintaining class 1000 clean room conditions is recommended. Using anti-static measures, such as ionized air blowers, whenever possible is recommended. As always, protect the film, especially the edges, from any undue shock or stress.

Storage
More datasheets: T5761-TGS | T5760-TGS | T5761-TGQ | BD249A-S | BD249C-S | BD249B-S | BD249-S | 18488 | 98-0440-4278-0 | 98-0440-4277-2


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Datasheet ID: 98-0440-4275-6 519888