A REVOLUTIONARY CHANGE
Geometry and alloy advancements contribute to the new FIDELIUM cable’s 330% performance improvement over our previous top-of-the-line PALLADIUM, yet FIDELIUM is only 1/10 the price. It is also less than half the price of our original SILVER speaker cable line.
AN EVOLUTIONARY BREAKTHROUGH
Derived exclusively from electro-magnetic wave equations, Silversmith Audio’s FIDELIUM speaker cables reflect our design philosophy in its purest form: A single, ultra-thin ribbon conductor per polarity; seamless from end to end and without traditional, sound-degrading soldered, welded, or crimped connectors; and individually laminated in an extremely thin, yet rugged, polyimide film in order to achieve a geometry with a primary air dielectric.
The skin-effect characteristics of our state-of-the-art FIDELIUM alloy are up to 33 times superior to those of copper or silver. The FIDELIUM speaker cable, already at less than a thousandth of an inch thick, performs as if it were 5.5 times thinner, thus experiencing less frequency-dependent attenuation and phase distortion than even a .00018 inch thick copper or silver ribbon or 64 gauge wire.
MORE INFORMATION?
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For orders and other inquiries, give us a call or email/send us a message using the contact form at the bottom of this page.
Fidelium Speaker Cables
Ultra-thin ribbon alloy conductor
DESCRIPTION
Derived exclusively from electro-magnetic wave equations, Silversmith Audio’s FIDELIUM speaker cables reflect their design philosophy in its purest form: A single, ultra-thin ribbon conductor per polarity; seamless from end to end and without traditional, sound-degrading soldered, welded, or crimped connectors; and individually laminated in an extremely thin, yet rugged, polyimide film in order to achieve a geometry with a primary air dielectric.
The skin-effect characteristics of the state-of-the-art FIDELIUM alloy are up to 33 times superior to those of copper or silver. The FIDELIUM speaker cable, already at less than a thousandth of an inch thick, performs as if it were 5.5 times thinner, thus experiencing less frequency-dependent attenuation and phase distortion than even a .00018 inch thick copper or silver ribbon or 64 gauge wire.
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