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Will the Colorful Dream Balloon Pendant Lamp Generate Serious Heat?

2025-05-09

The temperature control characteristics of the Colorful Dream Balloon Pendant Lamp are determined by the synergy of its optical components and structural design. The light-transmitting medium of the Colorful Dream Balloon Pendant Lamp adopts modified polymer materials, and the free volume parameters of its molecular chain segments help to balance the relationship between light flux and heat energy conversion. The packaging interface of the light source module is designed with a gradient refractive index to convert invalid radiation energy into visible spectrum output, reducing energy dissipation in the non-luminous band.

Colorful Dream Balloon Pendant Lamp

The convection path in the airtight cavity of the Colorful Dream Balloon Pendant Lamp is optimized by fluid mechanics to form a directional heat flow cycle to avoid the formation of local high-temperature areas. The microporous topological structure of the heat dissipation substrate increases the effective surface area and improves the heat exchange efficiency through natural convection. The matching design of the thermal expansion coefficient of the light guide layer and the supporting skeleton eliminates the stress concentration effect of the Colorful Dream Balloon Pendant Lamp caused by the temperature gradient.


The power loss of the light source driving circuit is converted into electromagnetic radiation energy through high-frequency switching regulation technology, rather than the traditional heat dissipation mode. The antistatic coating on the surface of the light-transmitting medium reduces the probability of dust adhesion and maintains the stable heat dissipation performance of the colorful dream balloon pendant lamp.


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