A neutral pH electrolyte maintains electrical conductivity in wet capacitors.
Through-pore current collectors in a lithium ion capacitor allow simultaneous lithium ion supply, preventing metal deposition and ensuring uniform distribution.
An oxyhydroxide protective layer and conductive anchor coat reduce internal resistance while preventing corrosion of the current collector.
An aluminum clad base sealed with low-melting-point glass prevents metal contamination of the electrolyte, extending capacitor life.
Controlled anodic oxidation forms a low crystalline dielectric layer on a sintered porous pellet, reducing leakage current in implantable medical devices.
Metal-coated carbon particles in the cathode reduce specific and contact resistance to lower equivalent series resistance at high frequencies.
Clad-bonding a nickel termination pad to a titanium base layer prevents brittle intermetallic formation during welding.
Doped Nb1-xTaxO powders stabilize capacitor anode dielectric layers, suppressing DC leakage at elevated voltages.