Engineering
Electric Potential
100%
Thin Films
100%
Reliability
100%
Titanate
100%
Temperature
100%
Characteristics
100%
Niobium
100%
Polarity
50%
Activation Energy
50%
Temperature Dependence
50%
Applied Voltage
50%
Mechanisms
50%
Applications
50%
Defects
50%
Requirements
50%
Decoupling Capacitor
50%
Mean Time to Failure
50%
Resistance Degradation
50%
INIS
capacitors
100%
reliability
100%
thin films
100%
leakage
100%
lead zirconate titanate
100%
films
80%
leakage current
80%
voltage
60%
doped materials
40%
lifetime
40%
niobium
40%
chemistry
20%
applications
20%
power
20%
values
20%
failures
20%
decoupling
20%
steady-state conditions
20%
activation energy
20%
temperature dependence
20%
point defects
20%
Physics
Thin Films
100%
Lead Zirconate Titanate
100%
Reliability
100%
Electric Potential
60%
Niobium
40%
Temperature
40%
Shapes
40%
Steady State
20%
Temperature Dependence
20%
Utilization
20%
Value
20%
Failure
20%
Material Science
Thin Films
100%
Lead Zirconate Titanate
100%
Capacitor
100%
Temperature
60%
Decoupling
20%
Film
20%
Activation Energy
20%