An intermediate plate prevents elastic deflection of a holding jig, ensuring uniform protrusion distances and consistent conductive paste thickness.
A multilayer ceramic capacitor uses a core-shell dielectric structure to enhance electrical conductivity and thermal stability.
A polyetherimide film uses a cooling roll with specific roughness to transfer minute bosses onto the surface.
A multilayer ceramic capacitor uses a composite external electrode with an exposed metal particle resin layer to enhance plating adhesion.
Alternating polymer layers delocalize charge build-up at interfaces to increase breakdown strength and energy storage capacity beyond single-material limits.
Distinct polarization regions in a relaxor-ferroelectric material respond to AC sweeping, maintaining high permittivity under high electric fields.
Variable external electrode thickness prevents plating solution infiltration and preserves reliability in miniaturized multi-layer ceramic capacitors.
Silane-coated ceramic nanoparticles enhance polymer dielectric permittivity, reducing capacitor volume and cooling energy in modular power converters.
Rapid heating at 40°C/s sinters ultra-thin Ni electrodes without disconnection, maintaining dielectric constant.
A multi-layer ceramic component uses a convex rounded ridge to prevent chipping defects during handling.
A woven glass fiber interposer absorbs vibration energy from multilayer ceramic capacitors to suppress acoustic noise generation.
Segmented external electrodes with controlled tip angles relax mechanical stress via conductive resin layers, preventing ceramic component cracking.
A dielectric ceramic composition with controlled heterogeneous-phase grains maintains reliability under high electric fields.
A nickel diffusion barrier prevents copper leaching and fragile compound growth during direct lead-free soldering of ceramic components.
Doping Bi0.5Na0.5TiO3 with donor ions creates a core/shell microstructure that maintains high dielectric constant at 300°C.
A dielectric composite integrates two-dimensional layered materials into the grain boundary insulation layer to enhance capacitance.
Incorporating a crystalline oxide with magnesium and lithium prevents cracks during rapid temperature changes while maintaining dielectric characteristics.
Barium titanate crystal grains with optimized calcium and rare-earth element distributions enhance insulation resistance without reoxidation treatment.
A microwave dielectric ceramic composite enables low-temperature sintering with silver or copper electrodes.
Crack mitigation voids channel flex cracks away from conductive electrodes, preventing insulation failures and short circuits.
A multi-terminal condenser structure on a multi-layered PCB bypasses high voltage electric fields to ground.
A controllable capacitor uses an additional electrode to excite a dielectric layer at resonance frequency, enhancing energy density.
Controlled beta-form content in cast raw sheets balances surface roughness for processing suitability against voltage resistance reliability.
Vision-guided suction turning replaces elastic members to resolve manufacturing precision trade-offs, enabling reliable paste application on small-sized chips.
A laminated ceramic capacitor uses a specific dielectric ceramic composition to reduce grain diameter variation.