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.