Modifying aluminoborosilicate glass frit parameters prevents excessive crystallization, maintaining fluidity while ensuring strong substrate adhesion.
A multilayer capacitor uses a titanium-coated metal frame to bond securely to external electrodes while maintaining structural integrity.
A fluorine layer creates a water-repellent barrier between the ceramic base body and conductive resin in multilayer ceramic capacitors.
A self-aligning capacitor electrode assembly uses overlapping planar electrodes to maintain precise capacitance despite manufacturing misalignment.
Stepped internal electrodes increase dielectric area ratio and adhesive force, preventing delamination while minimizing damage to thin dielectric layers.
Thicker lowermost dielectric layer increases distance between metal projections and inner electrode.
Segmented external electrodes with patterned plating layers block humidity permeation paths, improving reliability in harsh automotive conditions.
Limiting glass portion length to 10 μm prevents plating solution permeation, ensuring effective chip sealing for miniaturized multilayer ceramic capacitors.
Dissolving tin into nickel internal electrodes stabilizes the interface with ceramic dielectric layers, resolving insufficient high-temperature load life.
A multilayer ceramic component uses a metal-free resin layer to isolate electrodes and relieve mechanical stress.
Engaged uneven portions at orthogonal cross sections suppress conductor separation under stress, improving mechanical stability.
Ceramide-based dielectric ink forms thin films with high dielectric constants and strong insulation breakdown resistance.
Asymmetric cover layer design with oxide-coated bottommost internal electrode reduces acoustic noise in multilayer ceramic capacitors.
Sheet transfer method creates uniform external electrodes on multilayer ceramic components, preventing plating solution permeation through controlled thickness.
Distinct ridgeline curvatures in a multilayer ceramic capacitor prevent chipping when side margin thickness decreases.