The aluminum body allows for 359 degree rotation and holds the lenses with clips.
Lighting besa lighting optos wall.
The aluminum body allows for 359 degree rotation and holds the lenses with clips.
Our clear lens held into the aluminum body with clips is a transparent molded borosilicate glass with a parabolic shape designed to carefully refract the light rays in the light source.
The optos wall sconce uses two separate optical effect lenses to produce interesting displays of up down light.
The aluminum body allows for 359 degree rotation and holds the lenses with clips.
The optos vanity is a clean contemporary bath bar featuring two separate optical effect lenses per lampholder to produce interesting displays of up down light.
Our optos wall sconce uses two separate optical effect lenses to produce a stunning display of up down illumination and the lens ring allows for 359 degree rotation.
The optos wall sconce uses two separate optical effect lenses to produce interesting displays of up down light.
Cool dicro top lens our cool dicro lens is a molded borosilicate glass with a technologically advanced dichroic coating outer application in a parabolic shape designed to.
Our clear lens is a transparent molded borosilicate glass with a parabolic shape designed to carefully refract the light rays in the light source.
Low voltage halogen lamping.
The aluminum body allows for 359 degree rotation and holds the lenses with clips.
The optos wall sconce uses two separate domed lenses to create top and bottom illumination.
This accent wall fixture features an aluminum body which securely holds each lens with integrated clips and allows for 359 degree rotation.
The optos wall sconce uses two separate optical effect lenses to produce interesting displays of up down light.
Our cool dicro lens is a molded borosilicate glass with a technologically advanced dichroic coating outer application in a parabolic shape designed to.
Our clear lens is a transparent molded borosilicate glass with a parabolic shape designed to carefully refract the light rays in the light source.