The Mundorf MLHC80-22000 is a high-current MLytic HC power capacitor featuring 22000 µF capacitance and a 80 V DC rating, developed for demanding high-power audio applications where maximum current delivery and low internal resistance are essential.
Highlights of the Mundorf MLHC80-22000
- 22000 µF capacitance with ±20 % tolerance for massive energy storage capacity
- High dielectric strength rated to 80 V DC
- High-current design capable of handling hundreds of amperes and extreme pulse currents
- Optimised for heatsink mounting with robust screw terminal connections
Product details Mundorf MLHC80-22000
Mundorf MLHC80-22000 MLytic HC Power Capacitor
The Mundorf MLHC80-22000 MLytic HC is engineered for high-current power supply filtering in powerful audio amplifiers and high-end sound systems. With a capacitance of 22000 µF and a tolerance of ±20 %, it provides an exceptionally large energy reservoir that stabilises voltage rails during demanding musical passages. The 80 V DC rating ensures reliable operation in appropriately specified medium-voltage amplifier designs.
Originally developed for use in locomotives, these capacitors are designed to withstand extremely demanding electrical conditions. This robust platform has been optimised for audio applications and configured for heatsink mounting to support effective thermal management. The construction allows the capacitor to handle hundreds of amperes and deliver extreme pulse currents without compression.
This capability translates into powerful and authentic bass reproduction, even during massive dynamic peaks. Its exceptional speed supports highly dynamic and accurate low-frequency performance while maintaining a revealing, open and vivid presentation in the mid and high frequency range.
With its rugged aluminium housing and secure screw terminal connections, the MLHC80-22000 ensures low-resistance electrical contact and dependable long-term stability. It is an excellent choice for serious DIY builders and professional audio manufacturers who demand uncompromising current capability and sonic precision.
Show more
Show less