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Integration of power electronics into crystalline silicon solar cells
D.A. van Nijen
Photovoltaic Materials and Devices
Research output
:
Thesis
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Dissertation (TU Delft)
26
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INIS
air
4%
aluminium
4%
architecture
9%
capacitance
18%
capacitors
13%
computer-aided design
4%
concentration
9%
conversion
9%
cost
4%
data
4%
design
9%
devices
13%
doped materials
9%
efficiency
4%
fabrication
9%
frequency dependence
4%
gain
4%
geometry
4%
heterojunctions
4%
homojunctions
4%
illumination
13%
impedance
36%
inductance
18%
inductors
31%
installation
4%
junctions
36%
leakage current
9%
levels
4%
management
4%
metals
4%
mhz range
4%
mosfet
27%
noise
4%
optimization
4%
oxides
9%
performance
4%
photovoltaic cells
18%
physics
4%
power
100%
power losses
4%
processing
4%
range
9%
relaxation
4%
reliability
4%
resistors
4%
silicon
9%
silicon solar cells
100%
simulation
9%
size
4%
solar cells
50%
substrates
9%
surfaces
4%
thin films
4%
topology
4%
tracks
9%
transistors
9%
values
9%
voltage
9%
volume
4%
weight
4%
width
4%
yields
9%
Material Science
Air
8%
Aluminum
8%
Capacitance
33%
Capacitor
25%
Characterization
8%
Coil
16%
Crystalline Silicon Solar Cell
100%
Devices
25%
Diode
8%
Doping (Additives)
16%
Electronic Circuit
8%
Electronic Component
25%
Heterojunction
8%
Integrated Design
8%
Laminate
8%
Metal
8%
Metal-Oxide-Semiconductor Field-Effect Transistor
50%
Oxide Compound
16%
Photovoltaic Modules
25%
Photovoltaics
50%
Silicon
8%
Silicon Solar Cell
8%
Solar Cell
100%
Solar Cell Types
25%
Temperature
8%
Thin Films
8%
Transistor
16%
Keyphrases
Aluminum Back Surface Field
10%
High Areal Capacitance
10%
Inductor Integration
10%
Input Capacitor
10%
Junction Box
10%
Passive Component Integration
10%
Photovoltaic Support
10%
Planar Inductor
10%
Resistor-capacitor Circuit
10%
Engineering
Input Capacitor
8%
Solar Cell String
8%