Spherical mirrors, either concave or convex, shape converging or diverging light rays differently to form real or virtual images; focal length, curvature and distance all affect image formation in spherical mirror applications.
Spherical mirrors, either concave or convex, shape converging or diverging light rays differently to form real or virtual images; focal length, curvature and distance all affect image formation in spherical mirror applications.
PICs, or optical ICs, use photons to power highly sensitive biosensors and revolutionize medical diagnostics.
FLIM merges medical microscopy and imaging techniques to study biological processes at a molecular level, vital for biomedical research.
Achromatic lenses correct chromatic aberration, ensuring high image quality across a wide spectral range in various optical systems.
Optimize production with microlens arrays and learn how Avantier encourages clients to articulate specific needs, empowering our teams to seamlessly adapt and drive innovative solutions.
Learn how aspheric lenses revolutionize optical systems by reducing aberrations and enhancing performance, replacing spherical lenses.
Spherical mirrors, including concave and convex mirrors, create real and virtual images by directing parallel rays to or from a focal point.
The small microscope objective lens is widely used in medical optical systems, particularly in oral cavity examinations, dentistry examinations, and dental nerve diagnostics.
The 25X objective lens is used in Isotope Ratio Mass Spectrometer (IRMS) systems and significantly impact diverse fields such as earth science, environmental science, metallurgy, semiconductors, and materials science.
In cellular biology, live-cell imaging utilizes advanced microscopes and illumination techniques to observe cellular behavior in real-time.