Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Makes refractions easier than ever by producing one of the brightest, sharpest, and cleanest streaks available. Provides 2.8x the brightness of Welch Allyn standard retinoscopes. Superior streak quality enables easier and quicker refractions-even in
Makes refractions easier than ever by producing one of the brightest, sharpest, and cleanest streaks available. Provides 2.8x the brightness of Welch Allyn standard retinoscopes. Superior streak quality enables easier and quicker refractions-even in
Halogen light for true tissue color and consistent, long lasting illumination. Five aperture selections. 48 lenses for better resolution. Polarized filter to reduce corneal reflection. Compact size fits in pocket., Accessories: Soft Case (US Only)
Halogen light for true tissue color and consistent, long lasting illumination. Five aperture selections. 48 lenses for better resolution. Polarized filter to reduce corneal reflection. Compact size fits in pocket., Accessories: Soft Case (US Only)
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the
Patented new Axial PointScource Optics. Illumination system converges the light to a point at the cornea, allowing easy entry into small, undilated pupils. The illumination pathway then diverges to the retina, illuminating a very wide area of the