Abstract:
A diffractive optical element includes a base having, on a surface, a first region with a diffraction grating and a second region located on an outer side of the first region, and an optical adjustment layer provided on the surface to be in contact with the first region and at least a part of the second region. A thin film portion having a film thickness smaller than a maximum film thickness of a portion of the optical adjustment layer in contact with the second region is provided in at least a part of the portion of the optical adjustment layer in contact with the second region.
Abstract:
A light emitting device includes a substrate with a circuit incorporated in the substrate, an interposer having a circuit connected to the circuit of the substrate, a light emitting element disposed on the interposer, a transmissive component disposed positioned to the light emitting element, and a frame body having an opening in which the transmissive component is disposed. The light emitting device further includes a ring-shaped body that encompasses the frame body on the substrate, and a sealant making the substrate and the ring-shaped body tightly contact one another. The frame body is disposed so as to encompass the light emitting element on the substrate. This provides the light emitting device with waterproof function.
Abstract:
An ultraviolet light emitting device of the present invention includes a light emitting element provided on a substrate, an optical system provided at a position facing the light emitting element, a metal cylinder holding the optical system, and a holding component holding the metal cylinder on a substrate. Light the emitting element is disposed in an area of the substrate, the area surrounded by one end of the metal cylinder closer to the substrate. This provides the ultraviolet light emitting device that prevents the distortion of the optical system as well as the influence of ultraviolet light on the holding component.