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LED lighting system and device

專利號
US10842000B2
公開日期
2020-11-17
申請人
Nicolae Brebenel
發(fā)明人
Nicolae Brebenel
IPC分類
H05B45/50; H05B45/00; H05B47/11; F21K9/278; H05B45/37; H05B47/175; F21K9/275; F21V15/015; F21V3/02; F21V23/00; F21Y115/10; F21Y103/10; F21V19/00; F21Y105/10
技術(shù)領(lǐng)域
lighting,drv,led,lls,mcc,selector,source,spare,driver,ps
地域: NY NY Glen Head

摘要

A device, system, process, and method of manufacturing provides use of at least two LED lighting sources to provide auxiliary component modules. Embodiments can be used in a variety of industries, including city street lamps, indoor lighting systems, lighting systems in automobiles, train lighting systems, tunnel lighting systems, building lighting systems, networked lighting systems, and other systems that could benefit from flexibility and ease in changing circuit components for time-based, usage-based, or fault-based detected situations.

說明書

Embodiments of the present invention provide for a lighting system, method, and device, having: at least one power source; at least one driver power module, the at least one driver power module including an input selector, at least one driver, and an output selector, wherein the input selector is connected in series to an input of the at least one driver and the output of the at least one driver is connected in series to the output selector; at least one light emitting diode light source, the at least one light emitting diode light source; wherein the power source is connected in series to an input of the input selector of the at least one driver power module, wherein an output of the output selector of the at least one driver power module is connected in series to an input of the at least one light emitting diode light source, wherein the at least one light emitting diode light source is connected to at least one lighting sensor. A microcontroller or processor or connection to a remote processor or microcontroller is provided in the lighting system. The microcontroller or processor is connected with at least one of the different elements of the system, such as the power module, the input selector, the driver, the output selector, the light emitting diode light source, and the light sensor. Each of the different elements of the system such as the power module, the input selector, the driver, the output selector, the light emitting diode light source, and the light sensor, can each be presented as a multiple. For example, one or more power modules can be implemented—the respective power modules being connected to each other in parallel, and the output of the power modules being connected in series to the input of the following circuit element. A microcontroller can be connected (via hard connection, wireless connection, or other means) to the power modules' output. For example, one or more driver power modules can be implemented—the respective driver power modules being connected to each other in parallel, and the output of the driver power modules being connected in series to the input of the following circuit element. A microcontroller can be connected (via hard connection, wireless connection, or other means) to the driver power modules' output. For example, one or more input selectors can be implemented—the respective input selectors being connected to each other in parallel, but the output of the input selectors being connected in series to the input of the following circuit element. A microcontroller can be connected (via hard connection, wireless connection, or other means) to the input selectors' output. For example, one or more drivers can be implemented—the respective drivers being connected to each other in parallel, but the output of the drivers being connected in series to the input of the following circuit element. A microcontroller can be connected (via hard connection, wireless connection, or other means) to the drivers' output. For example, one or more output selectors can be implemented—the respective output selectors being connected to each other in parallel, but the output of the output selectors being connected in series to the input of the following circuit element. A microcontroller can be connected (via hard connection, wireless connection, or other means) to the output selectors' output. For example, one or more light sources can be implemented—the respective light sources being connected to each other in parallel, but the output of the light sources being connected in series to the input of the following circuit element. A microcontroller can be connected (via hard connection, wireless connection, or other means) to the light sources' output. For example, one or more light emitting diode light sources can be implemented—the respective light emitting diode light sources being connected to each other in parallel, but the output of the light emitting diode light sources being connected in series to the input of the following circuit element. A microcontroller can be connected (via hard connection, wireless connection, or other means) to the light emitting diode light sources' output. For example, one or more light sensors can be implemented—the respective light sensors being connected to each other in parallel, but the output of the light sensors being connected in series to the input of the following circuit element. A microcontroller can be connected (via hard connection, wireless connection, or other means) to the light sensors' output. For example, one or more microcontrollers can be implemented—the respective microcontrollers being connected to each other in parallel, but the output of the microcontroller being connected in series to the input of a circuit element. The connection can be a hard connection or connected via a wireless connection, allowing for remote control. Each of the aforementioned examples can be used together or separately in an embodiment to provide lighting systems of the present invention flexibility and reliability.

權(quán)利要求

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