Reinforced Metallization
Increased metallization means a deliberately thicker metal layer on the insulation film. The resistance of the electrode tracks decreases and the conductivity increases significantly. This reduces voltage drops and local heating along the electrode; field gradients are flattened. Under dynamic load, greater energy reserves are available in the event of pulses and high current peaks, without the electrodes themselves becoming a limiting factor.
At the same time, reinforced metallization also has an important microlevel in terms of sound: When electrodes are very thin, local effects can be stronger under changing current and field conditions — for example due to selective heating, small fluctuations in resistance and signal-related modulations in the metal grid. A thicker, more conductive electrode works more confidently here: The current is distributed more stably, the transitions appear smoother, and the transmission behavior remains less distorted and reproducible, even when loaded.
The increased metallization is therefore a significant contribution to high current-carrying capacity, load capacity and constant parameter settings in real music mode — especially where impulses, level peaks and rapid dynamic changes require the capacitor.
Tonal effects
- Even at high levels and sharp dynamic jumps, playback remains controlled, powerful and clear.
- Bass pulses, drum strokes and rapid level changes come with authority and clean drawing — energy and control at the same time.
- The sound image remains stable and clean; electrode-side “unrest” or flickering is significantly reduced.
- More silence in the background with high performance: complex passages remain organized instead of hardening.
- Transients appear more complete and less compressed because the electrode does not become the limiting factor.
- More reproducible behavior: Sound and dynamics remain more consistent over load and time.
