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    • 1. 发明申请
    • ENERGY CONCENTRATION DEVICE OF UNITED REFLECTION WITH MULTILEVEL SOLAR CELL ARRAY
    • 具有多个太阳能电池阵列的联合反射能量浓度装置
    • US20110030762A1
    • 2011-02-10
    • US12536416
    • 2009-08-05
    • Young Hun Kim
    • Young Hun Kim
    • H01L31/052
    • H01L31/0543H01L31/0547Y02E10/52
    • The present invention relates to an energy concentration device of united reflection with multilevel solar cell array comprising: a housing and solar cell parts, which are multilevel arrayed inside or outside the housing in such a way that the part of collected sunlight is absorbed in each level and then the rest of unabsorbed sunlight is absorbed overall from multilevel of solar cells in the iterating process of reflecting sunlight on the surfaces of solar cell parts.By the present invention, if an energy concentration device of united reflection with multilevel solar cell array is attached to the solar concentration device and so on, it is possible to attach to both fixed type and movable type. In the process of reflecting and absorbing sunlight continuously to maximise sunlight availability, solar cell parts are arrayed multilevel to improve the collecting efficiency. Furthermore, they can improve the effectiveness of the reflection of the collecting sunlight which is reflecting on the installed reflectors on the sides of the third solar cell part which is firstly collecting sunlight.
    • 本发明涉及一种具有多层太阳能电池阵列的联合反射能量集中装置,包括:外壳和太阳能电池部件,其多层排列在壳体的内部或外部,使得收集的太阳光的一部分被吸收在每个等级 然后在反射太阳光在太阳能电池部件表面的迭代过程中,剩余的未吸收的阳光从多层太阳能电池中吸收。 通过本发明,如果将具有多层太阳能电池阵列的联合反射的能量集中装置附接到太阳能集中装置等,则可以连接固定型和可移动型。 在连续反射和吸收阳光以使阳光可用性最大化的过程中,太阳能电池部件被排列成多级,以提高收集效率。 此外,它们可以提高反射在首先收集太阳光的第三太阳能电池部分的侧面上的安装的反射器上的收集太阳光的反射的有效性。
    • 2. 发明申请
    • UNITED REFLECTION LIGHTS WITH LIGHT-EMITTING DIODE
    • US20110032698A1
    • 2011-02-10
    • US12536415
    • 2009-08-05
    • Young Hun Kim
    • Young Hun Kim
    • F21V5/00
    • F21V7/0008F21Y2115/10
    • The present invention relates to a United Reflection Lights with Light-Emitting Diode (LED). In accordance with the present invention, the United Reflection Lights with LED consists of a housing; LED light sources which are installed with an inclination angle to the opposite inside wall of the housing and emit rays in forms of dots to the inside of the housing; and a reflecting plate which, placed in the bottom of the housing, reflect asymmetrically the incident rays originated from the above LED light sources with a number of triangle-shaped projecting parts and act as an indirect lighting device as it lets each of the above mentioned asymmetrically reflected rays combine and go to an intended direction in the form of a plane light source. The surface of the reflecting plate is covered with high polished synthetic resin. The reflecting plates vary according to at least one of the factors, whereby the plates become inter-changeable, such as the number or size of the projecting parts, the forming angle and the space between each projecting part.In accordance with the present invention, the United Reflection Lights with LED enhances the efficiency of lighting and minimizes the energy consumption because all the rays, originally in forms of dots, are asymmetrically reflected on the reflecting plate and combined to emit in a formation of a plane light. The United Reflection Lights with LED can be adapted to indoor lamps such as fluorescent lamps and to all the outdoor lamps such as street lamps because it needs only a few LEDs whereby its structure can be simple and the cost decreases and also because its indirect lighting method minimizes the radiance. It can enhance the diffuse-ability of rays to the arrangement or longitudinal direction of a projecting part of the reflecting plate by controlling the angle of LED arrangement or forming the projecting part. Also it prevents the LEDs from the damage caused from heat by cooling the rising temperature of the circuit board with the reflecting plate functioning as a radiator.