Abstract:
The light emitting apparatus according to the present invention includes: a first substrate; a light emitting element supported on a surface of the first substrate; a second substrate spaced from and facing the surface of the first substrate; an adjusting layer supported on a surface of the second substrate facing the light emitting element; a barrier member provided between the first substrate and the second substrate so as to surround the light emitting element and the adjusting layer; and a sealing member filling a space surrounded by the first substrate, the second substrate, and the barrier member. The adjusting layer includes a surface which faces the first substrate and includes an adjusting surface. The adjusting layer is formed so that a distance between the adjusting surface and the first substrate becomes greater towards an outer edge of the adjusting layer than at a center part of the adjusting layer.
Abstract:
A method includes acquiring weather information relating to at least one of physical quantities including insolation, cloudiness, and humidity; performing a rating scale assessment of the weather information based on a predetermined threshold value; predicting an electrical output of a solar generator; performing a rating scale assessment of the electrical output of the solar generator based on a standard electrical output of the solar generator; and generating information indicating an assessment value obtained in the performing of the rating scale assessment of the weather information, and an assessment value obtained in the performing of the rating scale assessment of the electrical output.
Abstract:
A functional water concentration sensor includes: a container used to contain functional water; a light source that emits ultraviolet light; a phosphor that emits fluorescence when excited by ultraviolet light emitted from the light source and transmitted through the container; and a light-receiving element that receives the fluorescence, wherein a peak wavelength of the ultraviolet light emitted from the light source is in a predetermined range that includes an absorption peak specific to the functional water.
Abstract:
The disclosure relates to an organic electroluminescence element including: a first substrate on a light extraction side thereof; a second substrate opposite the first substrate; and an organic light-emitting laminate between the first substrate and the second substrate. The first substrate includes a doped region in a surface close to the organic light-emitting laminate, the doped region being doped with a dopant for causing change in a refractive index of the first substrate to enhance a light-outcoupling efficiency.
Abstract:
A light emitting module includes: a first substrate including a resin having insulation properties, and a copper component embedded in the resin; a second substrate placed above the copper component of the first substrate, and soldered to the copper component; a mounting electrode formed above the second substrate; and an LED placed above the second substrate, and gold-tin soldered to the mounting electrode.