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    • 2. 发明授权
    • Sunlight collecting system
    • 阳光收集系统
    • US08379310B2
    • 2013-02-19
    • US12740612
    • 2008-10-27
    • Nobuyoshi MoriTakuji HatanoSetsuo Tokuhiro
    • Nobuyoshi MoriTakuji HatanoSetsuo Tokuhiro
    • G02B1/10
    • G02B5/0858F24S23/79F24S23/82F24S30/452F24S50/20F24S2023/86F24S2023/87Y02E10/40
    • Provided is a highly reliable solar collecting system. Since a concave minor has a reflection film on a base material on the side opposite to the side of a solar light incoming surface, peeling, breaking and the like are suppressed by protecting the reflection film by the base material, even when a dropping material is brought into contact with the side of the reflection film with impact or accumulated dropped materials are periodically cleaned. As an elliptical mirror has a reflection film on the base material on the side of the solar light incoming surface, even when solar light having large energy enters, the solar light is reflected by the reflection surface before reaching the base material and there is a small possibility of having the base material heated.
    • 提供了一种高度可靠的太阳能收集系统。 由于凹形小型物体在与太阳光入射面侧相反的一侧的基材上具有反射膜,因此即使在滴下材料为...时,通过保护基材的反射膜来抑制剥离,断裂等 与反射膜的一侧接触,碰撞或累积落下的物料被定期清洗。 作为椭圆镜,在太阳光入射面侧的基材上具有反射膜,即使当具有大能量的太阳光进入时,太阳光在到达基底材料之前被反射面反射,并且存在小的 使基材加热的可能性。
    • 8. 发明申请
    • Optical Element, Method for Producing Optical Element, and Method for Manufacturing Electronic Device
    • 光学元件,光学元件的制造方法以及制造电子器件的方法
    • US20110111256A1
    • 2011-05-12
    • US13002826
    • 2009-06-25
    • Akiko HaraSetsuo Tokuhiro
    • Akiko HaraSetsuo Tokuhiro
    • G02B1/11B32B27/06B29C65/02
    • G02B1/113G02B1/041G02B3/0018G02B3/0062G02B13/0085
    • Disclosed is an optical element to be subjected to a reflow process at high temperatures, wherein cracks or wrinkles can be prevented from occurring in an antireflection film. A method for producing the optical element, and a method for manufacturing an electronic device using the optical element are also disclosed. Specifically disclosed is a method for producing an optical element comprising a base, wherein at least one optical surface is composed of a resin material, and a coating formed on the optical surface of the base and composed of an inorganic material, the optical element being mounted on a substrate together with an electronic component by a reflow process at a temperature Ta. The method is characterized in that the coating is formed at a film-forming temperature Tb of not less than (Ta−60° C.), and a material having no glass transition temperature or a glass transition temperature of not less than (Tb−50° C.) is used as the resin material.
    • 公开了在高温下经受回流处理的光学元件,其中可以防止在防反射膜中发生裂纹或褶皱。 光学元件的制造方法以及使用该光学元件的电子器件的制造方法也公开。 具体公开了一种用于制造包括基底的光学元件的方法,其中至少一个光学表面由树脂材料构成,并且在基底的光学表面上形成由无机材料构成的涂层,该光学元件被安装 通过在温度Ta下的回流工艺与电子部件一起在衬底上。 该方法的特征在于,在不低于(Ta-60℃)的成膜温度Tb下形成涂层,并且不具有玻璃化转变温度或玻璃化转变温度不低于(Tb- 50℃)用作树脂材料。