Thermographic, Electric, and Spectral Measurements for Analysis of High-Power LEDs

Author:

Anke Simon H.1,Ziegeler Nils J.1,Nolte Peter W.2,Schweizer Stefan1

Affiliation:

1. South Westphalia University of Applied Sciences,Faculty of Electrical Engineering,Soest,Germany,59494

2. Branch Lab of Fraunhofer Institute for Microstructure of Materials and Systems IMWS,Fraunhofer Application Center for Inorganic Phosphors,Soest,Germany,59494

Publisher

IEEE

Reference12 articles.

1. Thermographic network identification for transient thermal heat path analysis;ziegeler;Quantitative InfraRed Thermography Journal,2022

2. Heat dissipation performance of a high-brightness LED package assembly using high-thermal conductivity filler

3. Heat Generation by the Phosphor Layer of High-Power White LED Emitters

4. Implementation of the electrical test method for the measurement of real thermal resistance and impedance of light-emitting diodes with exposed cooling (JESD51-51);JEDEC Solid state Technology Association,2012

5. A noncontact method for determining junction temperature of phosphor-converted white LEDs

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