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Illuminating and landscaping integrated lamp system

An integrated and landscape technology, applied in the field of lighting, can solve problems such as chip temperature rise, burnout, and LED chip efficiency reduction, and achieve low energy loss and good energy-saving effects

Inactive Publication Date: 2015-03-11
SOUTHWEAT UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in LED lighting, about 60-70% of the energy in the input power is converted into heat. If the heat is not taken away in time, the temperature of the chip will rise, and too high temperature will cause the efficiency of the LED chip to decrease or even burn out. Therefore, high efficiency is required. Cooling technology dissipates this heat in vain into the air

Method used

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  • Illuminating and landscaping integrated lamp system
  • Illuminating and landscaping integrated lamp system

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Embodiment Construction

[0010] The present invention will be further described below in conjunction with specific embodiments. Such as figure 1 , figure 2 , an integrated lighting system for lighting and landscape, including a lampshade 1, a high-power LED lamp board 2 placed inside the lampshade 1, a semiconductor thermoelectric power generation sheet 3, a vacuum chamber soaking plate 4, and a power supply board 5 placed outside the lampshade, lighting Control conversion circuit board 6, light-emitting component 7 and optical fiber 8. The lampshade is sealed and connected with the vacuum chamber soaking plate 4 through the sealing ring 10 to form a sealed cavity. The vacuum chamber soaking plate 4 is glued by heat conduction A semiconductor thermoelectric power generation sheet 3 is affixed, and a high-power LED lamp 1 is pasted on the semiconductor thermoelectric power generation sheet 3 through a heat-conducting adhesive, and a power supply board 5 is used to supply power to the high-power LED l...

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Abstract

The invention discloses an illuminating and landscaping integrated lamp system, and belongs to the field of illumination, The system adopts a vapor chamber soaking plate technology and a semiconductor thermoelectric power generation technology to effectively recycle waste heat of a high-power LED illuminating device and utilize the waste heat for power generation, so as to achieve the purposes that the illumination of the high-power LED illuminating lamp is not influenced, while the waste heat is recycled to generate power to drive a laser device to generate laser to enable the laser to enter a side-glowing optical fiber for realizing landscape illuminating. In the illuminating and landscaping integrated lamp system, the illuminating and landscaping requirements are synchronous, so that the electric energy generated by waste heat recovery is not needed to be stored; besides, the system is compact in structure, does not adopt moving components, is energy-saving, efficient and environment-friendly, can be used for illuminating and landscaping places, and has a wide market prospect.

Description

technical field [0001] The invention relates to an integrated lighting system for landscape lighting and belongs to the technical field of lighting. Background technique [0002] With the advancement of social science and technology, people's demand for energy is increasing. Among them, lighting has gradually become a very important aspect of energy consumption. According to statistics: 1 / 6 of the existing electric energy production is used for lighting. In order to reduce lighting power consumption, high-power LED lamps are widely used, which have the advantages of large illumination, energy saving, environmental protection and long life. However, in LED lighting, about 60-70% of the energy in the input power is converted into heat. If the heat is not taken away in time, the temperature of the chip will rise, and too high temperature will cause the efficiency of the LED chip to decrease or even burn out. Therefore, high efficiency is required. Cooling technology dissipat...

Claims

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Application Information

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IPC IPC(8): F21S9/04F21V29/51F21V23/00F21V17/10F21W121/00F21Y101/02
CPCF21S9/04F21V17/101F21V23/002F21W2121/00
Inventor 刘东崔勇利韩如冰
Owner SOUTHWEAT UNIV OF SCI & TECH
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