34 research outputs found
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Advanced Thermal Interface Materials (TIMs) for Power Electronics
This presentation describes our progress in the area of thermal interface materials for power electronics applications
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Advanced Thermal Interface Materials for Power Electronics
Advancing thermal interface materials for power electronics is a critical factor in power electronics equipment. NREL aims to improve thermal interface materials for power electronics technologies
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Light-Weight, Single-Phase, Liquid-Cooled Cold Plate
This presentation, 'Light-Weight, Low-Cost, Single-Phase Liquid-Cooled Cold Plate,' directly addresses program goals of increased power density, specific power, and lower cost of power electronics components through improved thermal management
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Thermal Interface Materials for Power Electronics Applications: Preprint
The thermal resistance of the thermal interface material layer greatly affects the maximum temperature of the power electronics
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Two-Phase Spray Cooling of Hybrid Vehicle Electronics: Preprint
Spray cooling is a feasible cooling technology for hybrid vehicle electronics; HFE 7100 is a promising coolant
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Numerical Simulations of Boiling Jet Impingement Cooling in Power Electronics
This paper explores turbulent boiling jet impingement for cooling power electronic components in hybrid electric vehicles
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Single-Phase Self-Oscillating Jets for Enhanced Heat Transfer: Preprint
Self-oscillating jets have potential to cool insulated gate bipolar transistors in vehicle power electronics modules
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Assessment of Thermal Control Technologies for Cooling Electric Vehicle Power Electronics
NREL is assessing thermal control technologies to improve the thermal performance of power electronics devices for electric vehicles, while reducing the cost, weight, and volume of the system
Simple negotiation schemes for agents with simple preferences: sufficiency, necessity and maximality
Recommended from our members
Light-Weight, Low-Cost, Single-Phase, Liquid-Cooled Cold Plate
This presentation, 'Light-Weight, Low-Cost, Single-Phase Liquid-Cooled Cold Plate,' directly addresses program goals of increased power density, specific power, and lower cost of power electronics components through improved thermal management