Description
McIntosh PS2K Powered Subwoofer - Unmatched Deep Bass Precision
The McIntosh PS2K Powered Subwoofer is the pinnacle of audio engineering, delivering unparalleled low-frequency performance for the most discerning audiophiles. Designed to complement McIntosh's legendary line of audio components, the PS2K is a powerhouse of bass reproduction that brings your music and movies to life with deep, articulate bass that you can feel.
Features:
- 1000W of power for room-shaking bass
- 12-inch long-throw woofer for precise and powerful bass response
- Advanced DSP technology for optimized bass performance in any room
- Custom-made high-current amplifier for distortion-free bass reproduction
- Stylish design with McIntosh signature black glass top and aluminum accents
Technical Specifications:
Power Output: | 1000W |
Driver: | 12-inch long-throw woofer |
Frequency Response: | 20Hz - 150Hz |
Signal-to-Noise Ratio: | Greater than 100dB |
Dimensions (W x H x D): | 16-1/2" x 16-1/4" x 18" |
Equipped with 1000 watts of power, the PS2K ensures that every low-frequency note is reproduced with precision and impact. The 12-inch long-throw woofer is designed to move large amounts of air, delivering deep bass that fills the room with immersive sound. Thanks to advanced DSP technology, the PS2K can be fine-tuned to perform optimally in any listening environment, ensuring consistent bass quality regardless of room acoustics.
The custom-made high-current amplifier in the PS2K is engineered to deliver distortion-free bass at any volume level, providing a clean and dynamic bass experience. The subwoofer's sleek design with McIntosh's signature black glass top and aluminum accents not only enhances its aesthetic appeal but also reflects the premium quality of McIntosh audio products.
Whether you are a music enthusiast or a home theater aficionado, the McIntosh PS2K Powered Subwoofer will elevate your listening experience to new heights, allowing you to enjoy your favorite music and movies with unparalleled depth and clarity in the low frequencies.