All Categories
Bundle includes: 2 Focal JMLARIA926PRVN Aria Noyer 6.5" 3-Way Floor Standing Speaker
JMLARIA926PRVN - Frequency Response: 45Hz - 28kHz
JMLARIA926PRVN - Sensitivity: 91.5dB
JMLARIA926PRVN - Nominal Impedance: 8 Ohms
JMLARIA926PRVN - Recommended Amplifier Power: 40 - 250W
Focal JMLARIA926PRVN Aria Noyer 6.5" 3-Way Floor Standing Speaker (PAIR) - This bundle includes: 2 Focal JMLARIA926PRVN Aria Noyer 6.5" 3-Way Floor Standing Speakers and a Creative Audio coaster set. Focal JMLARIA926PRVN Aria Noyer 6.5" 3-Way Floor Standing Speaker The Aria 926 embodies the home 3-way floor standing loudspeaker. This musical and expressive loudspeaker is easy to install. All kinds of music lovers will be thrilled with its acoustic qualities. The Aria 926 is by definition and affordable audiophile loudspeaker. The intention was a return to the very essence of acoustics for those who are passionate about music. Flax cone are characterized by their natural sound, with low coloration, their richness of reproduction in the midrange register and their tighter bass. The result is a more homogenous sound, improved dynamics. Aria offers a classic and modern design. For the TNF tweeter, we have brought two major evolutions to our aluminum/magnesium tweeter. The suspension between the dome and its bracket uses Poron, a material with shape memory. This suspension method is directly derived from the famous Utopia Berylium tweeter, making it possible to reduce distortion by a factor of three in the 2-3kHz ranger, where the human ear has very great sensitivity. The inverted dome's spatial characteristics and very low directivity already make it greatly superior to the conventional domes used by our competitors. This guarantees an incredibly stable sound stage which makes the listening position much less critical. The lightness of the fiber satisfies the criteria of high internal damping, high velocity and high flexural rigidity. Flax is twice as light as fiberglass, because the fiber is hollow. It also has very low elasticity which makes it ideal to increase the flexural rigidity of a sandwich structure.