Shunyata ALPHA USB-150 - 1m50

1'739.00 CHF pièce de 1.5 mètres
1'828.00 Sie sparen 89.00
The Shunyata ALPHA USB 150, the internationally patented ΞTRON® technology is perhaps the most compelling of Shunyata Research’s technologies, with its ability to measurably lower dielectric distortion and preserve the original signal’s integrity. ΞTRON® cables have earned a legendary reputation among reviewers, customers and sound professionals for their ability to eclipse the performance of even the most cost prohibitive cables on the market. Caelin Gabriel’s research has evolved a second generation ΞTRON® technology that is making its debut in the Alpha Series interconnects and speaker cables.
SR USB Cable— There are many problems with off-the-shelf USB cables including poor quality conductors and dielectrics and insufficient shielding.  Conventional cables induce high amounts of signal jitter and phase noise degrading sonic performance.

The SR-USB-Cable is an exclusive Shunyata Research product that was designed to achieve the ultimate levels of performance without regard to production cost. It starts with our highest grade of ArNi® wire featuring pure OHNO copper in a VTX™ geometry with fluorocarbon dielectrics.  The power wiring is a completely different type of conductor designed specifically for DC power transfer minimizing any signal transmission interference. Massive silver-plated copper braided shields protect the delicate signals from external RFI/EMI.

SR-USB — There are very few great quality USB connectors so we created our own.  It features an easy to grip, large diameter head-shell that accepts large gauge wiring. It has an exceptional strain-relief system that ensures longterm reliability even with heavy usage.  The contacts are made from high conductivity gold-plated copper assuring minimal signal junction impedance.

PMZ — Shunyata Research digital cables are produced using a ‌Precision Matched Impedancecable geometry. This means that tolerances of the conductor surface, dielectric extrusion, and the precision of the braided shield are held to minute variances. To achieve these tight tolerances, the extrusion and braiding machines must be run at one-quarter speed during the manufacturing process. The result is better performance through a reduction of cable-induced signal jitter.

ArNi® wire was designed by Shunyata Research to be the finest quality wire available. It begins with the highest purity of copper and silver metals available, including Ohno (single crystal), PCOCC silver and OFE C0101 conductors. Fluorocarbon dielectrics, usually only found in aerospace applications that have exceptional electrical characteristics including extremely low dielectric absorption, high dielectric strength and superb heat resistance.  When used in digital wiring it significantly reduces transient energy storage and release which affects phase noise performance.

Kinetic Phase Inversion Processing
Kinetic Phase Inversion Processing was developed by Caelin Gabriel after years of research into the underlying causes of various effects such as burn-in, wire directionality and the effects of cryogenic treatment. He discovered that there was an underlying core principle that burn-in and cryogenics only partially addressed. Once the governing principle was understood it became possible to create a processor that reduces the need for long burn-in periods and eliminates the effects of cryogenic treatment. Four-days of continuous KPIP™ processing dramatically reduces the sonic ups and downs associated with burn-in, delivering a relaxed and natural presentation.

It takes us fifteen days to get your cables to the length you need from Shunyata. Click on "Request Information" above to get an offer. It takes CHF 138.- by 0.25 meter extra to get the length you need.
Cable Type: SR-USB-a
Conductors: ArNi®, Ohno, PMZ, VTX
Dielectric: fluorocarbon
Connectors: SR-USB-Conn
TAP Modules: NA
KPIP Processing: 4-days
Length: 1.50 meters

Safety Assurance:
Continuity and polarity tests – by two technicians
HiPOT tests insulation breakdown @ 1,200 VAC
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