As one of the key passive components, multilayer ceramic capacitors (MLCC) temporarily charge and remove noise in electronic circuits. They are the most general capacitors available today.
The main body has a structure in which dielectric layers and nickel electrode layers are interlayered. An external electrode (termnation) connects an MLCC to a printed circuit board or a hybrid IC module in a physical and electrical manner.
General Features
Highest capacitance up to 220uF
Excellent DC-Bias characteristics
Free of all RoHS-regulated substances
Monolithic structure for high reliability
Application
HHP, PC, TV, DSC, DVC, LCD, PDA
Memory Module, Game Machine
DC-DC Converter
Why Samsung
Features of Products (Technology)
Ultrasmall- and high-capacitance products are realized through ultrathin / high layering by applying nano dielectric powder and Ni electrode powder.
Owns various of technologies to develop ultrasmall- and ultrahigh-capacitanc
e products
Finer-grain BaTiO3 powder synthesis technology
Nano (<100㎚) fine powder distribution technology
Dielectric ultrathin-film molding technology
High-resolution internal electrode forming technology
Sectional View
Realizes capacitance by layering dielectrics and internal electrodes
As one of the key passive components, multilayer ceramic capacitors (MLCC) temporarily charge and remove noise in electronic circuits. They are the most general capacitors available today.
The main body has a structure in which dielectric layers and nickel electrode layers are interlayered. An external electrode (termnation) connects an MLCC to a printed circuit board or a hybrid IC module in a physical and electrical manner.
General Features
- Highest capacitance up to 220uF
- Excellent DC-Bias characteristics
- Free of all RoHS-regulated substances
- Monolithic structure for high reliability
Application
- HHP, PC, TV, DSC, DVC, LCD, PDA
- Memory Module, Game Machine
- DC-DC Converter
Why Samsung
Features of Products (Technology)
Ultrasmall- and high-capacitance products are realized through ultrathin / high layering by applying nano dielectric powder and Ni electrode powder.
Owns various of technologies to develop ultrasmall- and ultrahigh-capacitance products
- Finer-grain BaTiO3 powder synthesis technology
- Nano (<100㎚) fine powder distribution technology
- Dielectric ultrathin-film molding technology
- High-resolution internal electrode forming technology
Sectional View
Realizes capacitance by layering dielectrics and internal electrodes