发明名称 Light-emitting device and image display apparatus
摘要 A light-emitting device includes: a light guiding member; a plurality of light-emitting elements; and a reflection member. A light reflection/exit surface of the light guiding member has a concave-convex pattern including a plurality of convex portions reflecting light emitted from the light-emitting elements inward. On the assumption that L is a distance between the light-emitting elements, t is a thickness of the light guiding member, an incident angle φ of the light on the light reflection/exit surface is an angle between a line segment obtained by projecting a light path from the light-emitting element to the light reflection/exit surface and a line segment extending from a central point of the light-emitting element to the light reflection/exit surface, and θ is a maximum angle range of reflected light, a value of the angle range θ decreases as a value of the incident angle φ increases in a range of 0<φ<tan−1 (L/t).
申请公布号 US9140846(B2) 申请公布日期 2015.09.22
申请号 US201314076356 申请日期 2013.11.11
申请人 Sony Corporation 发明人 Ohkawa Shingo
分类号 F21V7/04;F21V8/00;G02F1/1335 主分类号 F21V7/04
代理机构 Lerner, David, Littenberg, Krumholz & Mentlik, LLP 代理人 Lerner, David, Littenberg, Krumholz & Mentlik, LLP
主权项 1. A device comprising: a plate-shaped light guiding member of which one surface in a thickness direction of the light guiding member is formed as a light reflection and exit surface reflecting light inward and exiting the light and of which at least one side surface in a direction perpendicular to the thickness direction is formed as a light-incident surface on which the light is incident; and a reflection member which is disposed so as to face an opposite surface of the light reflection and exit surface of the light guiding member and which reflects the light reflected inward from the light reflection and exit surface and passing through the light guiding member and makes the light incident from the opposite surface of the light guiding member, wherein the light reflection and exit surface of the light guiding member has a concave-convex pattern including a plurality of convex portions which are formed in a first direction perpendicular to the thickness direction on the light reflection and exit surface of the light guiding member, extends in a second direction perpendicular to the thickness direction and the first direction, and reflects the light emitted from the light-emitting elements inward, and wherein, when a plurality of light-emitting elements are disposed on the at least one light-incident surface of the light guiding member spaced in the first direction, if L is a distance between the light-emitting elements, t is a thickness of the light guiding member, an incident angle φ of the light on the light reflection and exit surface is an angle between a line segment, which is obtained by projecting a light path from the light-emitting element to the light reflection and exit surface on a surface parallel to the light-incident surface, and a line segment, which extends from a central point of the light-emitting element to the light reflection and exit surface in the thickness direction, θ is a maximum angle range of reflected light when light incident at the incident angle φ is reflected inward from the light reflection and exit surface, and ranges close to and distant from the light-emitting element emitting the light with respect to a line segment extending in the thickness direction in the angle range θ are negative and positive ranges, respectively, a value of the angle range θ decreases as a value of the incident angle φ increases in a range of 0<φ<tan−1 (L/t) and the angle range θ covers both of the positive and negative ranges.
地址 JP