Engineering
Foam
100%
Microelectromechanical System
100%
Thermal Characterization
100%
Carbon Nanotube
100%
Surface
40%
Hot Spot
40%
Microelectronics
40%
Heat Transfer
40%
High Surface Area
20%
Heat Losses
20%
Natural Convection
20%
Temperature Dependency
20%
Convective
20%
Radiative Heat Transfer
20%
High Aspect Ratio
20%
Convective Heat Transfer Coefficient
20%
Mechanisms
20%
Characterization Method
20%
Volume Ratio
20%
Enhancement
20%
Performance
20%
Supplied Power
20%
High Resolution
20%
Significant Reduction
20%
Temperature
20%
Thermal Sensor
20%
Surrounding Environment
20%
Keyphrases
Carbon Nanotube Foams
100%
Micro-hotplate
100%
Thermographic Analysis
100%
Nanofoam
50%
Micro-pin
50%
Heat Transfer Performance
25%
Porous Material Characterization
25%
Thermal Material Properties
25%
Natural Convection
25%
High Surface Area
25%
Foam-like
25%
Hot Temperature
25%
Heat Transfer Mechanism
25%
Integrated Temperature Sensor
25%
Porous Nature
25%
Thermograph
25%
Convective Heat Transfer Coefficient
25%
Directly Grown
25%
Radiative Heat Transfer
25%
Non-destructive Characterization
25%
Microelectronic Systems
25%
Thermal Management of Microelectronics
25%
In Situ Characterization
25%
INIS
foams
100%
carbon nanotubes
100%
heat transfer
80%
surfaces
40%
hot spots
40%
management
40%
porous materials
40%
microelectronics
40%
aspect ratio
20%
power
20%
surface area
20%
resolution
20%
morphology
20%
natural convection
20%
reduction
20%
heat losses
20%
volume
20%
performance
20%
sensors
20%
microscopy
20%
environment
20%
Material Science
Microelectromechanical System
100%
Carbon Nanotube
100%
Foam
100%
Characterization
100%
Temperature
60%
Surface
40%
Materials
20%
Materials Property
20%
Microscopy
20%
Surface Area
20%
Porous Material Characterization
20%
Natural Convection
20%
Morphology
20%