Our Technology

Innovative 3D Imaging Technology

Advanced 3D OCT technology delivers ultra-high-resolution, cross-sectional imaging for precise diagnostics. Engineered to perform in vibrational and challenging environments, it ensures consistent accuracy across diverse settings. MedevPlus devices maintain high-quality imaging even in vibrational or challenging environments, thanks to advanced engineering. This ensures consistent, accurate diagnostics in diverse settings.

IXanner revolutionizes accessibility with its portable, lightweight design, bringing cutting-edge imaging directly to patients. By eliminating bulky systems, it enables rapid, high-precision diagnostics in high-volume and low-resource environments, expanding global access to advanced medical technology.


Their innovative 3D OCT technology enables faster, precise diagnoses, empowering professionals to detect conditions earlier and improve patient outcomes. MedevPlus breaks the boundaries of traditional imaging, providing portable, powerful solutions that transform medical visualization.

Breakthrough IP

Patented Spectrometer which is Battery Powered

Patented spectrometers boost OCT, providing detailed tissue images for early, precise abnormality detection, exceeding other technologies' capabilities.

FPGA-Based OCT Device

FPGA-based OCT offers rapid, flexible data processing, enabling faster imaging, accurate results, and improved workflow efficiency.

Artifact reduction method

MedevPlus's novel motion artifact reduction ensures sharp OCT images, enhancing accuracy and reliability across diverse applications and environments.

Precise optical biometry

Automated optical system provides accurate biometric measurements, reducing errors and improving diagnoses for glaucoma, cataracts, and retinal diseases.

Accurate 3D Mission Vision

MedevPlus provides precise 3D tissue visualizations, enabling detailed analysis, disease monitoring, and confident treatment planning.

Miniaturized binocular OCT

Meta-optics enables miniaturized binocular OCT, creating wearable, real-time imaging for high-quality portable diagnostics.