DocumentCode :
227722
Title :
A corrosion and erosion protection coating for complex microchannel coolers used in high power laser diodes
Author :
Desai, Tapan G. ; Flannery, Matthew ; Fan, Angie ; Weyant, Jens ; Eppich, Henry ; Lang, Klaus-Dieter ; Chin, Richard ; Chin, Alvin
Author_Institution :
Adv. Cooling Technol., Inc., Lancaster, PA, USA
fYear :
2014
fDate :
27-30 May 2014
Firstpage :
64
Lastpage :
71
Abstract :
With efficiencies in the range of 50-75%, significant amount of waste heat is generated during the operation of high power laser diodes. In order to maintain consistent optical performance, the temperature of the laser diode needs to be managed effectively. Single phase copper microchannel coolers (MCC) with high purity and low electrical conductivity de-ionized water (DIW) at high velocities are used to dissipate the heat. Though thermally beneficial, the high velocity, high purity DIW coolant exposes the copper MCC to erosion and corrosion damage [1]. This substantially decreases the thermal performance of MCC and requires costly replacement within a short duration. This paper presents the experimental validation of a new vapor deposition coating, developed by Advanced Cooling Technologies, Inc., (ACT) for enhanced protection of MCCs in high power laser diode systems. MCC samples with coating were exposed to accelerated erosion and corrosion testing in high velocity, high purity water that simulates laser diode operating conditions. Evaluation of thermal resistance, pressure drop, and optical properties of MCC stacks demonstrated significant improvements in erosion/corrosion protection provided by the coating without impeding the cooling performance of the MCCs. Hence, the coating will increase the lifetime of MCCs and reduce costly maintenance intervals.
Keywords :
cooling; copper; corrosion protective coatings; micromechanical devices; semiconductor lasers; thermal resistance; wear resistant coatings; Cu; complex microchannel coolers; corrosion protection coating; corrosion testing; de-ionized water; erosion protection coating; high power laser diodes; optical properties; pressure drop; single phase copper microchannel coolers; thermal resistance; vapor deposition coating; Coatings; Copper; Corrosion; Diode lasers; Gold; Thermal resistance; electrochemical impedance spectroscopy analysis; erosion and corrosion testing; laser diode thermal management; liquid cooling; nanoscale coating;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermal and Thermomechanical Phenomena in Electronic Systems (ITherm), 2014 IEEE Intersociety Conference on
Conference_Location :
Orlando, FL
ISSN :
1087-9870
Type :
conf
DOI :
10.1109/ITHERM.2014.6892265
Filename :
6892265
Link To Document :
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