Polk Audio LSiM 705
$1,217.50
Polk's exclusive dynamic sonic engine design optimizes the midrange driver and the ring radiator tweeter in separate interior chambers for improved transient response, superior imaging and greater horizontal off-axis response.
Enhanced, re-engineered ring radiator tweeter extends top-end response for incredible details and realistic imaging.
Extended Linear Motion voice coil design allows lots of movement in a limited space, eliminating impedance and extending mid- and high-frequency response.
Description
The LSiM705 fills your world with its wide, dynamic soundstage and its capability to effortlessly achieve truly staggering volume levels. The LSiM705 features the same component complement as the larger LSiM707 loudspeaker, on a slightly smaller scale. It includes a 5 1/4-inch mid-woofer of lightweight super cell aerated polypropylene for smooth blending with its dual 5×7-inch Cassini oval subwoofer radiators enhanced by Polk’s patented PowerPort bass venting. Its 1-inch ring radiator tweeter, a feature usually found only in exotic speakers, reveals pinpoint details for realistic imaging. Use the LSiM705 in midsized rooms where you want the full-on impact of the legendary Polk sound.
Polk’s exclusive dynamic sonic engine design optimizes the midrange driver and the ring radiator tweeter in separate interior chambers for improved transient response, superior imaging and greater horizontal off-axis response.
Enhanced, re-engineered ring radiator tweeter extends top-end response for incredible details and realistic imaging.
Extended Linear Motion voice coil design allows lots of movement in a limited space, eliminating impedance and extending mid- and high-frequency response.
Klippel motor optimization uses laser measurement technology to ensure a consistent excursion path at either end of the driver’s travel for uniform performance at both low and high volumes
Exclusive, patented Roth crossovers increase lower-order power handling and smooth the impedance curve, for more efficiency and better high frequency response.
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