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Low-temperature silver sintering technology, which has been proven to be a promising die-attach solution, was extended to bonding large substrates. Strong bonding strengths for substrates greater than 25 mm × 50 mm were achieved by sintering a nanosilver paste at temperatures below 270°C with less than 5 MPa pressure. To characterize thermal performance of the substrate-attach interface, we applied...
In this paper, the effects of eutectic voids in bonding area on the thermal resistance and light output power of flip-chip ultraviolet light-emitting diode (UV-LED) devices have been studied by experiments in detail. It has been demonstrated that the eutectic voids effectively influenced the thermal resistance, the junction temperature, and the light output power of the UV-LEDs. The UV-LEDs with lower...
Recently, different die-attachment technologies for power modules such as electrically conductive gluing, silver sintering and transient liquid phase bonding have been investigated as alternatives to soldering. In this paper a comparison of these three die-attach technologies is given. For each an overview of the manufacturing process, as well as key performance parameters like thermal resistance...
In the year 2006 a ban of lead containing solders in the EU required the qualification of lead-free solder alloys. However, these do not provide the same characteristics as lead containing solders do. Also their costs are higher due to expensive machinery use and increased tin and silver contents. The aim of our research is to develop assemblies based on electrically conductive adhesives that have...
High-power operation of AlGaN/GaN high-electron-mobility transistors (HEMTs) requires efficient heat removal through the substrate. GaN composite substrates, including the high-thermal-conductivity diamond, are promising, but high thermal resistances at the interfaces between the GaN and diamond can offset the benefit of a diamond substrate. We report on measurements of thermal resistances at GaN–diamond...
The present work aims at studying the cooling performance of a thermoelectric device that integrated with integrated heat spreader (IHS) on a flip-chip plastic ball grid array (FC-PBGA) package. The new thermoelectric device herein is fabricated on the metal substrates by flip-chip assembly process. Thermal performance of the new package was comprehensive studied. The thermal resistances of IHS with/without...
In this study, we fabricated in-plane thermoelectric micro-generators (4 mm times 4 mm) based on bismuth telluride thin films by using flash evaporation method. The thermoelectric properties of as-grown thin films are lower than those of bulk materials. Therefore the as-grown thin films were annealed in hydrogen at atmospheric pressure for 1 hour in a temperature range of 200 degC. to 400degC. By...
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