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Researchers develop LED covering full visible light spectrum

Summary of Researchers develop LED covering full visible light spectrum


AIST and Nichia Corporation developed the first standard LED covering the full visible light spectrum for accurate solid-state lighting (SSL) spectral measurement. By combining multiple LED dies with different central wavelengths and fluorescent substances, this device provides sufficient intensity across all visible wavelengths. This innovation enables precise evaluation of luminous flux and color, helping manufacturers accelerate product development and ensure correct performance reporting for energy-efficient SSL technologies replacing traditional lighting.

Parts used in the Standard Full Visible Light LED:

  • Multiple LED dies with different central wavelengths
  • Multiple fluorescent substances
Researchers have developed the first standard LED covering the full visible light, in collaboration with Nichia Corporation.

LED and OLED lighting, which is generally called solid-state lighting (SSL), is becoming more common as the next generation lighting. Evaluations of total luminous flux (a performance index for lighting) and color are important for SSL, and to evaluate those values, it is indispensable to measure the light intensity of each wavelength accurately based on spectral measurement. For accurate spectral measurement, the light source under test shall be compared to a standard light source as the reference standard. However, there has not been any standard light source covering the full visible light that suitable for high accuracy spectral measurement of SSL.

AIST and Nichia developed a standard LED having sufficient light intensity over the full visible light by introducing multiple LED dies with different central wavelengths in combination with multiple fluorescent substances. By using this standard LED, LED manufacturers and developers will be able to evaluate SSL characteristics more accurately, which is expected to help accelerate product development and enhance performance.

Details of the technology will be presented at the FY2015 National Metrology Institute of Japan research achievement meeting held on February 10, 2016, at AIST Tsukuba (Tsukuba, Ibaraki).

Lighting accounts for about one-sixth of residential energy consumption. LED and other forms of SSL consume less energy and are increasingly replacing traditional lighting such as incandescent and fluorescent lamps in order to conserve energy. For that reason, lighting manufacturers around the world are competing fiercely to research and develop SSL. Therefore it is important to inform users of correct performance of each product.

Energy efficiency and color are indices of the lighting product performance and are evaluated by a spectrum derived from spectral measurement. SSL, however, has different characteristics from those of traditional lighting. For example, radiation of SSL is emitted to the forward direction only and spectral distributions of SSL are rich in variety. Because of these differences, there have been no standard light sources suitable for spectral measurement of SSL, making it challenging to measure precisely.

Read more: Researchers develop LED covering full visible light spectrum

Quick Solutions to Questions related to Standard Full Visible Light LED:

  • Who developed the first standard LED covering the full visible light?
    AIST and Nichia Corporation collaborated to develop this standard LED.
  • What is the main purpose of this new standard LED?
    It is designed for high accuracy spectral measurement of solid-state lighting (SSL).
  • How does the standard LED achieve coverage over the full visible light?
    It uses a combination of multiple LED dies with different central wavelengths and multiple fluorescent substances.
  • Why was there no suitable standard light source for SSL before this development?
    SSL has unique characteristics like forward-only radiation and varied spectral distributions that existing sources could not cover accurately.
  • How will this technology help LED manufacturers?
    It allows them to evaluate SSL characteristics more accurately, accelerating product development and enhancing performance.
  • What are the key indices evaluated by spectral measurement for SSL products?
    The key indices are energy efficiency and color.
  • When were the details of this technology presented?
    Details were presented at the FY2015 National Metrology Institute of Japan research achievement meeting on February 10, 2016.
  • Does this standard LED address the issue of residential energy consumption?
    Yes, it supports the accurate evaluation of SSL which consumes less energy than traditional lighting like incandescent lamps.

About The Author

Ibrar Ayyub

I am an experienced technical writer holding a Master's degree in computer science from BZU Multan, Pakistan University. With a background spanning various industries, particularly in home automation and engineering, I have honed my skills in crafting clear and concise content. Proficient in leveraging infographics and diagrams, I strive to simplify complex concepts for readers. My strength lies in thorough research and presenting information in a structured and logical format.

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