Audience Au24 interconnects 1 meter RCA pair
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Ships from | Seattle, WA, 98101 |
Ships to | United States |
Package dimensions | unspecified |
Shipping carrier | USPS |
Shipping cost | $15.00 |
Average | Research Pricing |
Relisted after buyer did not pay. New lower price! 1 Meter pair of original Audience Au24 interconnects in excellent condition. These flexible, small diameter cables are quiet, pure sounding, low distortion cables that just make music.
Buy with confidence from Audiogoner with 100% positive rating
Excerpts From Wes Phillips review: "Audience’s literature assures us that “the Au24 cables are constructed of
Ohno continuous-cast single-crystal copper conductors with polypropylene
insulation and cross-linked polyethylene jacket material.
In 1986, the Ohno Continuous Casting (OCC) process was developed
by Professor Ohno of the Chiba Institute of Technology in Japan. T h e
process has been patented as the Ultra Pure Copper by Ohno Continuous
Casting Process (UP-OCC). Furutech has a picture of the machine that
produces what it calls “single crystallized copper” through a process
involving heated-mold continuous casting. That machine turns out small
rods of OCC pure copper, from which wire can be drawn with copper grains
over 700’ long.
“This is the key electrical characteristic for good time response. Eddycurrents are created by the magnetic field found around a cable when an
electrical signal is present. This magnetic field builds up and collapses as
the signal varies. When the field collapses it induces an opposing voltage
back into the cable. This opposing voltage causes eddy-currents in the
conductor. If they could be seen, eddy-currents would look like swirling
water in a river. This late arriving, opposing voltage disrupts the original
signal by inducing a time-smearing artifact.”
That doesn’t mean that Audience ignores the effects of capacitance or
inductance, however. In order to properly balance sound reproduction, the
company claims, inductive and capacitive values should be minimized,
while optimizing the ratio of inductance to capacitance (L:C). However,
Audience observes, “by designing for the lowest possible eddy-current
resistance at the correct specific frequency, proper L:C ratio is naturally
arrived at and both of these properties are minimized.”
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