EVS 3643WP

Premium imaging solution offering dose reduction and enhanced diagnostic accuracy.

  • High-Resolution IGZO TFT
    Next-generation IGZO TFT delivers 10× faster electron mobility and 10× noise reduction for clear, high-resolution images at low doses.

  • FOCUS Scintillator
    Uniform CsI layer minimizes light scattering, producing sharp, high-contrast images even at low radiation.

  • TRUVIEW® ART
    Proprietary image processing reduces light scattering, improving spatial resolution by 30% for sharper detection of subtle lesions in lungs, chest, and heart.

  • DEPAI™ AI Processing
    AI-driven processing enhances clarity and reduces noise by region (bones, muscles, soft tissue), providing 2.5× better detectability at low doses.

Detail Information

EXPEED by QX-Platform

EXPEED P Series provides premium imaging experience in dose reduction and diagnostic accuracy

High Resolution IGZO TFT

DRTECH’s next-generation IGZO TFT, developed with proprietary expertise and in-house technology, features 10 times faster electron mobility and significantly lower leakage current. Compared to a-Si, it enables 10 times noise reduction, delivering high-resolution diagnostic images with minimal noise even at low radiation doses.

FOCUS Scintillator

FOCUS (Fluorescent Optical CsI Upgraded Structure) is a technology that deposits a uniformly structured CsI layer onto the TFT. By significantly reducing noise caused by light scattering compared to conventional CsI, it enables the production of clear, high-contrast images even at low radiation doses.

TRUVIEW®ART

DRTECH’s proprietary image processing technology, TRUVIEW ART, reduces light scattering that occurs in the indirect method where X-rays are converted into light, delivering clearer and sharper images. With over 30% improved spatial resolution compared to conventional systems, it offers outstanding diagnostic performance in detecting subtle lesions in the lungs, chest, and heart.

DEPAI™

DEPAI is an advanced image processing technology that applies AI deep learning algorithms to maintain image clarity while reducing noise, even at low radiation doses. By applying AI-based processing and noise reduction algorithms to each anatomical region—such as bones, muscles, and soft tissues—it delivers more than 2.5 times improved detectability.
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