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    • 9. 发明申请
    • HEATED LENS LIGHTING ARRANGEMENT
    • 加热镜头照明安装
    • US20160209022A1
    • 2016-07-21
    • US14915468
    • 2014-08-29
    • UNIVERSITY OF KANSAS
    • Hongyi CAISteven D. SCHROCKEric FITZSIMMONS
    • F21V29/89G02B6/04F21V8/00F21V29/70
    • F21V29/70F21S8/08F21V29/90F21V2200/10F21V2200/17F21W2111/02F21W2131/10F21Y2115/10G02B6/0008G02B6/04G08G1/095
    • According to aspects of the embodiments, a lighting fixture is designed to help prevent the accumulation of snow or ice on the light emitting face {e.g., lens) of the lighting fixture. The lighting fixture harvests both the light and heat generated by at least one light source, such as but not limited to at least one LED light source. The lighting fixture adopts a flip-mount light source mounting design in which one side of a passive heat exchanger is mounted or secured closely adjacent or proximate to the lens, and the light source is mounted or secured to another side of the passive heat exchanger. The heat generated by the light source is conducted by the passive heat exchanger to heat the lens. Additionally, the light emitted from the light source is redirected back through the passive heat exchanger and to the lens using a bundle of light fiber cables.
    • 根据实施例的方面,照明器具被设计成有助于防止雪或冰积聚在照明器材的发光面(例如,透镜)上。 照明装置收集由至少一个光源产生的光和热,例如但不限于至少一个LED光源。 照明器具采用倒装式光源安装设计,其中被动热交换器的一侧安装或紧固在透镜附近或靠近透镜,并且光源被安装或固定到被动热交换器的另一侧。 由光源产生的热量由被动热交换器进行,以加热透镜。 此外,从光源发射的光被重新引导回通过被动热交换器并且使用一束光纤电缆到达透镜。
    • 10. 发明申请
    • LED HEATER SYSTEM AND METHOD
    • LED加热器系统及方法
    • US20150204533A1
    • 2015-07-23
    • US14592823
    • 2015-01-08
    • VITEC VIDEOCOM INC.
    • Richard Allen RosenJoshua Alexander Forbes
    • F21V29/54F21V29/67F21K99/00F21V5/04F21V29/74F21V29/90
    • F21V29/54F21K9/20F21V5/045F21V29/006F21V29/02F21V29/677F21V29/74F21V29/90F21W2131/406F21W2131/407F21Y2115/10
    • The present disclosure includes an apparatus and method relating to LED fixtures having an LED module capable of operating at a temperature. The LED module is also capable of being operated within a desired temperature range having an upper limit and a lower limit. A fan is operable for cooling the LED module when the temperature of the LED module approaches the upper limit. A heater is operable for heating the LED module when the temperature of the LED module approaches the lower limit. A heat sink may be in thermal communication with the LED module such that the fan may cool and the heater may heat the heat sink. The controller may also be configured to selectively activate the heater and the fan. The controller may also be in electrical communication with a temperature sensor which is in thermal communication with the LED module such that the controller may read the temperature of the LED module. The controller may activate the fan and/or the heater depending on the temperature of the LED module.
    • 本公开包括与具有能够在温度下操作的LED模块的LED灯具相关的装置和方法。 LED模块还能够在具有上限和下限的所需温度范围内操作。 当LED模块的温度接近上限时,风扇可操作用于冷却LED模块。 当LED模块的温度接近下限时,加热器可操作用于加热LED模块。 散热器可以与LED模块热连通,使得风扇可以冷却,并且加热器可以加热散热器。 控制器还可以被配置为选择性地激活加热器和风扇。 控制器还可以与与LED模块热连通的温度传感器电连通,使得控制器可以读取LED模块的温度。 控制器可以根据LED模块的温度激活风扇和/或加热器。