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Simulation and evaluation of the peak temperature in LED light bulb heatsink

  • Lixia Sun
  • , Jianxin Zhu*
  • , H Wong
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Heat dissipation in LED light bulb has been one of the key factors in affecting the efficiency and lifetime of the LED. The commercially available high-power LED light bulbs often come with a bulky heatsink to keep the temperature of the light bulb in a reasonable range. Unfortunately, the heatsink designs of most of the commercial products are not optimized in terms of cooling efficiency, dimension, and material cost Indeed, optimization of the heatsink design is a time-consuming and sophisticated process. It requires a powerful computational fluid dynamics tool to perform computer simulation. With the aid of computer simulation based on a simple heat conduction model together with some measurement results, this work presents a rapid evaluating tool for predicting the peak temperature of a heatsink by using the concept of effective heat conductivity. It provides a simple way to predict the peak temperature change for different designs.
Original languageEnglish
Pages (from-to)140-144
JournalMicroelectronics Reliability
Volume61
Online published22 Dec 2015
DOIs
Publication statusPublished - Jun 2016

Funding

This work is supported by a research fund from the Science and Technology Department of Zhejiang Province Government, China, under project no. 2013C31082.

Research Keywords

  • LED
  • Peak temperature
  • Heatsink
  • Numerical simulation
  • Mathematical modeling
  • Heat distribution
  • EMITTING-DIODES
  • THERMAL-CONDUCTIVITY
  • FAILURE
  • MECHANISMS
  • CONVECTION

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