FUJIFILM Dimatix, Inc.

2250 Martin Avenue
Santa Clara,  CA  95050

United States
http://www.dimatix.com
  • Booth: 207


FUJIFILM Dimatix is driving a revolution in inkjet tech.

FUJIFILM Dimatix's MEMS-based technology lets inkjet printing create products like displays and electronics, RFID antennas, smart tags, solar cells, DNA arrays, smart packaging, solar cells and wearable electronics.

The Dimatix Materials Printer (DMP) is a cartridge-based piezo inkjet printing system that enables direct deposition under digital control of functional fluids - including nanoparticle-based metallic and organic materials - onto virtually any surface, including plastic, glass, ceramics, and silicon, as well as flexible substrates from membranes, gels, and thin films to paper products, over an area of 200 x 300 mm.

The DMP has been accepted as the industry standard for the accelerated development of inkjet solutions. By employing single-use cartridge-based printheads, the DMP minimizes waste of expensive fluid materials, thereby eliminating the cost and complexity associated with traditional product development and prototyping.


 Products

  • FUJIFILM Dimatix Materials Printer
    The FUJIFILM Dimatix Materials Printer DMP-2850 is a cost-effective, easy-to-use precision materials deposition system for R&D and prototyping....

  • The FUJIFILM Dimatix Materials Printer DMP-2850 is a bench-top materials deposition system designed for micro-precision jetting a variety of functional fluids onto virtually any surface, including plastic, glass, ceramics, and silicon, as well as flexible substrates from membranes, gels, and thin films to paper products. A complete turnkey system, the DMP-2850 facilitates developing and testing manufacturing processes as well as product prototypes. It also can be used for low-volume manufacturing of products from flexible circuits, RFID tags and displays to DNA arrays, and wearable electronics. By employing single-use cartridges that researchers can fill with their own fluid materials, the DMP-2850 minimizes waste of expensive fluid materials, thereby eliminating the cost and complexity associated with traditional product development and prototyping.


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