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    • 1. 发明授权
    • Systems and methods for underwater lighting
    • 水下照明系统和方法
    • US08444283B1
    • 2013-05-21
    • US13655107
    • 2012-10-18
    • Steven MillerRobert Joseph Marques
    • Steven MillerRobert Joseph Marques
    • F21V33/00
    • F21V29/56F21V13/02F21V15/01F21V15/012F21V17/164F21V29/30F21V29/507F21V31/005F21Y2107/40F21Y2115/10Y10T29/49117
    • An underwater dock light having an internal water cooling system formed from primary, secondary, tertiary, and quaternary mounting surfaces forming a chamber. Each of the mounting surfaces are each in thermal communication with a light emitting unit generating heat. LED circuit boards are mounted at an angle to produce a large diameter of light in the surrounding water. A light bifurcating structure causes a central portion of light to be a different color than the perimeter. The transparent lens has an opening and a latching structure configured to connect the transparent lens to the end of the transparent cover. A tire valve stem is located on the underwater light and is capable of removing or filling the underwater light with a gas. Antifouling circuitry automatically cycles the underwater light on and off multiple times during periods of non-use. Smart circuitry communicates and accepts commands by a user.
    • 一种水下码头灯,具有由初级,次级,三级和四级安装表面形成的内部水冷却系统,形成一个室。 每个安装表面各自与产生热量的发光单元热连通。 LED电路板以一定角度安装,以在周围的水中产生大直径的光。 轻的分叉结构导致光的中心部分与周边不同的颜色。 透明透镜具有开口和锁定结构,该结构构造成将透明透镜连接到透明盖的端部。 轮胎阀杆位于水下的灯光下,能够用气体去除或填充水下的光线。 防污电路在不使用期间自动循环水下灯多次。 智能电路通信并接受用户的命令。