The Dayton Audio MX6-22 is a 6-1/2" high excursion subwoofer driver engineered to produce impactful bass in space-limited enclosures. Combining rugged construction with a sleek, modern look, this compact driver offers premium performance for serious DIY audio projects and low-profile installations.
Highlights of the Dayton Audio MX6-22
- Long-throw motor design enables deep bass in compact enclosures
- Dual 2-ohm voice coils provide wiring flexibility for various amplifier setups
- Concave dust cap adds stiffness and a seamless visual finish
- Airflow-optimized motor reduces thermal buildup and compression
Product details Dayton Audio MX6-22
Dayton Audio MX6-22 High Excursion DVC Subwoofer Driver
The MX6-22 is designed for audio enthusiasts looking to deliver big sound in tight spaces. Its high-excursion capability makes it ideal for compact sealed or ported subwoofer systems where maximizing low-end output is essential. Whether for home theater, vehicle installs, or custom desktop audio builds, this sub delivers clean, tight bass without the bulk of traditional large-format drivers.
Carefully engineered from the inside out, the MX6-22 features a full-coverage dust cap that improves structural rigidity while giving the cone a smooth, uninterrupted profile. The precision-tooled steel frame not only supports generous cone travel but also maintains affordability, making this an excellent value for performance-focused builders.
Incorporating airflow-focused design elements, the motor structure helps maintain cooler coil temperatures during extended use. This results in lower dynamic compression and more consistent output during demanding playback sessions—ideal for modern music, movies, and immersive gaming experiences.
The MX6-22 combines design flexibility with sonic authority. Its dual voice coil configuration lets builders easily match amplifier requirements, while its compact size fits into tight enclosures without sacrificing output. Whether used on its own or in multi-driver bass arrays, it delivers powerful performance with minimal space requirements.
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