Date of download: 10/22/2017 Copyright © ASME. All rights reserved. From: Numerical Thermal Simulation of Cryogenic Power Modules Under Liquid Nitrogen Cooling J. Electron. Packag. 2005;128(3):267-272. doi:10.1115/1.2229226 Figure Legend: Schematic of integrated power module
Date of download: 10/22/2017 Copyright © ASME. All rights reserved. From: Numerical Thermal Simulation of Cryogenic Power Modules Under Liquid Nitrogen Cooling J. Electron. Packag. 2005;128(3):267-272. doi:10.1115/1.2229226 Figure Legend: Schematic of discrete power module
Date of download: 10/22/2017 Copyright © ASME. All rights reserved. From: Numerical Thermal Simulation of Cryogenic Power Modules Under Liquid Nitrogen Cooling J. Electron. Packag. 2005;128(3):267-272. doi:10.1115/1.2229226 Figure Legend: Pool boiling curve for water at atmospheric pressure (after Collier )
Date of download: 10/22/2017 Copyright © ASME. All rights reserved. From: Numerical Thermal Simulation of Cryogenic Power Modules Under Liquid Nitrogen Cooling J. Electron. Packag. 2005;128(3):267-272. doi:10.1115/1.2229226 Figure Legend: Heat flux curve versus heater temperature in liquid nitrogen pool boiling at 1atm (after Nguyen )
Date of download: 10/22/2017 Copyright © ASME. All rights reserved. From: Numerical Thermal Simulation of Cryogenic Power Modules Under Liquid Nitrogen Cooling J. Electron. Packag. 2005;128(3):267-272. doi:10.1115/1.2229226 Figure Legend: Thermal conductivity versus temperature for silicon and packaging materials (from )
Date of download: 10/22/2017 Copyright © ASME. All rights reserved. From: Numerical Thermal Simulation of Cryogenic Power Modules Under Liquid Nitrogen Cooling J. Electron. Packag. 2005;128(3):267-272. doi:10.1115/1.2229226 Figure Legend: Temperature distribution across the center of discrete module at power dissipation level of 72W