High performance capacitors using nano-structure multilayer materials fabrication
- Livermore, CA
A high performance capacitor fabricated from nano-structure multilayer materials, such as by controlled, reactive sputtering, and having very high energy-density, high specific energy and high voltage breakdown. The multilayer capacitors, for example, may be fabricated in a "notepad" configuration composed of 200-300 alternating layers of conductive and dielectric materials so as to have a thickness of 1 mm, width of 200 mm, and length of 300 mm, with terminals at each end of the layers suitable for brazing, thereby guaranteeing low contact resistance and high durability. The "notepad" capacitors may be stacked in single or multiple rows (series-parallel banks) to increase the voltage and energy density.
- Research Organization:
- Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)
- DOE Contract Number:
- W-7405-ENG-48
- Assignee:
- Regents of University of California (Oakland, CA)
- Patent Number(s):
- US 5414588
- OSTI ID:
- 869882
- Country of Publication:
- United States
- Language:
- English
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High performance capacitors using nano-structure multilayer materials fabrication
High performance capacitors using nano-structure multilayer materials fabrication
Related Subjects
capacitors
nano-structure
multilayer
materials
fabrication
capacitor
fabricated
controlled
reactive
sputtering
energy-density
specific
energy
voltage
breakdown
example
notepad
configuration
composed
200-300
alternating
layers
conductive
dielectric
thickness
width
200
length
300
terminals
suitable
brazing
guaranteeing
contact
resistance
durability
stacked
single
multiple
rows
series-parallel
banks
increase
density
reactive sputtering
layer capacitors
energy density
dielectric materials
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alternating layers
dielectric material
contact resistance
voltage breakdown
multilayer capacitors
specific energy
nano-structure multilayer
multilayer materials
layer material
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performance capacitors
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materials fabrication
layer materials
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