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FREND™ 2.0

Microfluidic immunofluorescence analyzer

FREND 2.0 features more powerful hardware components and improved connectivity options. Its redesigned user interface offers a more intuitive and user-friendly experience, with simplified navigation and more organized menus for easier access to key functions. Moreover, its accelerated data processing capabilities provide faster data analysis and results generation. Discover the benefits of our upgraded platform, designed for high efficiency and user convenience.

KEY FEATURES & BENEFITS
8” inch Touchscreen / Window 10 OS
QR code/barcode scanner
Built-in thermal printer
Rapid quantitative immunoassay
Small sample volume analysis
LIS/HIS Available
 









“Simple, Streamlined, Familiarity”



FREND 2.0 introduces a range of user-friendly features. The 8-inch touchscreen with the Windows 10 operating system and the streamlined user interface ensure familiarity and ease of use.  The device is equipped with a front-facing QR code/barcode scanner for simplified data input and a built-in thermal printer for convenient result printing. Users can utilize the 'Quick Mode' for rapid screening of large sample sets. The alarm system provides maintenance notifications. Additionally, it offers multi-language support to accommodate a diverse range of user needs. 













 




 


  • Dimensions

    276 (W) x 263 (D) x 202 (H) mm
    (10.9 (W) x 10.3 (D) x 7.9 (H) inch)

  • Weight

    3.4 kg (7.5 lb)

  • Rated output

    12V, 5A

  • Pixel format

    1280 x 800, Touch LCD

  • OS

    Window 10

  • Code chip reader

    QR code and Code chip reader

  • Barcode reader

    Installed

  • Printer

    Installed

  • LIS

    Installed (HL7)

ExTransfection™ Protocol Library

ExTransfection™ provides open protocols that make it easy for users to set up and run experiments. Its 24-well optimization method helps users to optimize transfection protocols easily and quickly.

ExTransfection™ also offers a pre-programmed optimization protocol that helps an easy and quick optimization of electrical parameters for both adherent and suspended cells.