NEENAH Techni-Print EZP self-weeding laser transfer paper - 11 in x 17 in - 50 sheets

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NEENAH Techni-Print EZP self-weeding laser transfer paper - 11 in x 17 in - 50 sheets

Sku:

Retail Price:

SW Wholesale Price:

SignWarehouse Pro Icon

Note:
Orders exceeding the stock on hand amount are processed as special orders, which require additional processing and shipping time and are not eligible for return.

Note:
Orders exceeding the stock on hand amount are processed as special orders, which require additional processing and shipping time and are not eligible for return.

Overview

Applications

NEENAH Techni-PRINT EZP Heat Transfer Paper is for transferring photos and graphics to white and light colored fabrics, is easy to use, yet gives crisp vibrant images regardless of the model of the laser printer or copier. Techni-PRINT EZP is a one-step self-weeding transfer paper. A swingaway heat press is required.


FEATURES:
  • One-step self-weeding transfer paper for light garment decoration
  • OKI supported 
  • Works in all LED, laser printer and copiers 
APPLICATIONS:

  • Cotton
  • Polyester
  • Mixed Fabric
  • Nylon
  • Silk
  • Leather
  • Denim
  • Paper
  • Bookcovers
  • Wood
  • Metal
  • Felt



  • APPLICATION PROCESS:
    1. Print on the transparent A-Foil
    2. Press together with the B-Paper LowTemp
    3. Peel both sheets from each other while HOT
    4. Cut around the design
    5. Press onto your garment
    6. Re-press to increase the washability of the document
    The process requires:
    A. (Transparent Foil) Imaging sheet
    B. Low Temp Transfer Sheet

    Note: Both sold separately.

    You just print on the transparent A-Foil press it together with the dark opaque B-Paper LowTemp and separate both sheets from each other while hot. Now you have white coverage on the image through the B-Paper LowTemp which does not only increase the opacity of the transfer on dark garments but also contributes to its washability. Both steps are done at the same temperature. The application tolerances are extremely high reducing handling errors and allowing the user high flexibility.