A mixed EDOT and dialkoxythiophene conductive polymer improves dielectric coverage to raise capacitance while limiting tan δ and ESR drift at high temperature.
A polyol post-impregnation step restores dielectric film defects after conductive polymer treatment, suppressing leakage current in electrolytic capacitors.
A metal-sealed glass cover and resin-filled via structure suppress moisture ingress while easing thermal stress in humidity-sensitive components.
An ionic-liquid electrolyte deposits a higher-quality dielectric oxide that boosts capacitance and breakdown voltage while keeping ESR and leakage low.
A phase-changing electrolyte lets ions move only during programming, then locks conductance states to cut leakage-driven analog memory loss.
An electrolytic capacitor uses a specific volume ratio between its solid electrolyte layer and impregnated solution to optimize electrical characteristics.
A solid electrolyte layer uses a hydroxy compound with three or more hydroxyl groups and a melting point above 170°C.
A bismaleimide oligomer composition reacts monomers with barbituric acid to form a hyper branched structure.
Dual conductive polymer layers with silane and basic compounds improve withstand voltage characteristics by strengthening interfacial adhesion.
Coagulating a conductive polymer in a residual solvent reduces equivalent series resistance while maintaining high electrostatic capacity.
Impregnating a capacitor element with a swelling agent while solvent remains improves dielectric layer quality and suppresses leakage current.
Concentric porous layers with varying void ratios enable solid electrolyte impregnation while maintaining high capacitance and low leakage current.
A solid electrolytic capacitor uses a differential dielectric thickness and pre-polymerized conductive polymer particles.
Composite electrolyte mixture improves capacitor reliability by reducing leakage current and equivalent series resistance through enhanced film quality.
An intermediate layer with specific cation and anion agents enhances conductive polymer formability on the dielectric surface.
Composite alkyl-substituted monomers enhance thermal stability and conductivity, reducing ESR in hot conditions.
A conductive polymer layer incorporates a copolymer dopant with sulfonate and phosphorus-containing groups to improve electrical conductivity.
A capacitor element receives a conductive polymer layer followed by an electrolyte solution to permeate the dielectric layer.
Stabilizing conductive polymer solution before deposition forms a uniform solid electrolyte layer that reduces equivalent series resistance.
A pi-conjugated polymer composition dissolves polyaniline in a solvent with acidic substances and phenolic compounds.
Hydration treatment guides chemical formation to reduce void density and improve water resistance.