4.1 Review

Status and prospects for phosphor-based white LED packaging

Journal

FRONTIERS OF OPTOELECTRONICS
Volume 2, Issue 2, Pages 119-140

Publisher

HIGHER EDUCATION PRESS
DOI: 10.1007/s12200-009-0011-2

Keywords

light-emitting diode (LED); packaging; phosphor; silicone; optical; thermal; reliability; cost

Funding

  1. National Natural Science Foundation of China [50835005]
  2. Science and Technology Department of Guangdong Province
  3. Guangdong Real Faith Enterprises Group Co., Ltd

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The status and prospects for high-power, phosphor-based white light-emitting diode (LED) packaging have been presented. A system view for packaging design is proposed to address packaging issues. Four aspects of packaging are reviewed: optical control, thermal management, reliability and cost. Phosphor materials play the most important role in light extraction and color control. The conformal coating method improves the spatial color distribution (SCD) of LEDs. High refractive index (RI) encapsulants with high transmittance and modified surface morphology can enhance light extraction. Multi-phosphor-based packaging can realize the control of correlated color temperature (CCT) with high color rendering index (CRI). Effective thermal management can dissipate heat rapidly and reduce thermal stress caused by the mismatch of the coefficient of thermal expansion (CTE). Chip-on-board (CoB) technology with a multilayer ceramic substrate is the most promising method for high-power LED packaging. Low junction temperature will improve the reliability and provide longer life. Advanced processes, precise fabrication and careful operation are essential for high reliability LEDs. Cost is one of the biggest obstacles for the penetration of white LEDs into the market for general illumination products. Mass production in terms of CoB, system in packaging (SiP), 3D packaging and wafer level packaging (WLP) can reduce the cost significantly, especially when chip cost is lowered by using a large wafer size.

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