Category: Product Tutorial

How Can You Design Solar Lights With Optimal Heat Dissipation?

Effective heat dissipation is crucial for solar light performance and longevity. The article explores essential aspects including material selection (copper, aluminum), heat sink design, and modern cooling technologies. Operating temperatures above 85°C can reduce LED lifespan by 60%. Proper thermal management through advanced design techniques ensures optimal performance and 50,000-hour potential lifespan.

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Choosing the Right Solar Charge Controller for Optimal Battery Performance

Selecting the right solar charge controller is crucial for optimizing the performance and lifespan of solar-powered systems. This article explores the functions of solar charge controllers, compares Pulse Width Modulation (PWM) and Maximum Power Point Tracking (MPPT) technologies, and provides guidance on choosing the most suitable controller for your specific application.

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Blog
Alvin Kwong

How to Choose Light Distribution Types

This article explores various LED light distribution patterns, their impact on effective lighting, and practical applications. It covers Type I to Type V distributions, explains photometric curves, and provides insights on selecting and installing lighting fixtures to optimize illumination.

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Blog
Alvin Kwong

What process is used for high-quality solar light surface treatment?

The article discusses the high-temperature spray curing process used for solar light surface treatment, emphasizing its stages: pre-treatment, electrostatic spraying, and curing. It highlights the use of AkzoNobel’s premium powder coatings, known for durability and environmental safety, which enhance the solar lights’ resistance to wear, corrosion, and environmental factors.

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Blog
Alvin Kwong

How to Choose the Arrangement Type for Road Street Light Installations

Learn how to optimize streetlight arrangements for real-world installations using DIALux simulations. Understand the benefits and applications of lower single-sided, upper single-sided, double-sided, and staggered double-sided arrangements. Ensure adequate illumination, uniformity, and safety for different road types and traffic volumes, enhancing overall road lighting effectiveness and energy efficiency.

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