UV Laser CTS Computer To Screen DMD DLP Technology

Brand Name:GIS
Certification:ISO 9001
Model Number:CTS100
Minimum Order Quantity:1 set
Delivery Time:20 work days
Place of Origin:Jiangsu, China
Contact Now

Add to Cart

Verified Supplier
Location: Suzhou China
Address: Floor 2, Building 2, Ruijing Building, No.868, Jinshan South Road, Mudu Town, Wuzhong District, Suzhou
Supplier`s last login times: within 28 hours
Product Details Company Profile
Product Details

Laser Direct Screen Making Machine For Screen Printing Textile


The CTS laser direct imaging machine uses TI's DMD digital imaging technology to form a clear and sharp direct network point image on the silk screen through laser projection. In this way, the digital graphics in the computer can be imaged on the screen. This system has become the process of making screen images before silk screen printing.

Data files is directly read by the computer to screen (CTS) and then converted into images which will be transmitted through laser beams onto screens by DMD and lens.


  • Specification / Model

    CTS100
    Max screen size ( mm )900x1000
    Min screen size ( mm )400x400

    Max exposure size ( mm )

    800x900
    Screen frame thickness
    (bespoke service is available)
    25-45mm
    Imaging SystemDMD DLP Technology
    Emulsion thickness (EOM)Solvent resistant emulsion 3μm-150μm, water resistant emulsion 3μm- 220μm
    Exposure time120-240s/ ㎡, #350 yellow mesh
    Resolution1270/2540dpi (Optional)
    Raster133LPI
    Focus systemFixed focusing
    File format1_bit tiff etc.
    Laser typeUV laser, wavelength 405±5nm
    Laser power20W/25W(Optional)
    Equipment size (mm)1550x1330x1460
    Equipment net weight1100KG
    ConditionsYellow light room with cleanliness Class 10000, temperature 22±2°C,
    40-70% relative humidity (No condensation)
    PowerSingle phase 220v, 50/60HZ, 4KW(CTS200,CTS300), gas 1L/min

China UV Laser CTS Computer To Screen DMD DLP Technology supplier

UV Laser CTS Computer To Screen DMD DLP Technology

Inquiry Cart 0