Shunyata Gamma S/PDIF Cable

from £275.00

Shunyata Research's Gamma S/PDIF Cable represents a paradigm shift, leveraging 25 years of science and innovation to redefine price and performance standards. Utilizing ultra-pure Ohno copper and the exclusive PMZ process, the Gamma S/PDIF cable offers unmatched coherence, dynamic punch, and frequency extension. Conditioned with KPIP v2™, it delivers exceptional sound quality, rivaling S/PDIF cables two to three times its cost.

Custom lengths available; please get in contact.

Category Digital Cables
Country USA
Manufacturer Shunyata Research

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Shunyata Research's Gamma S/PDIF Cable represents a paradigm shift, leveraging 25 years of science and innovation to redefine price and performance standards. Utilizing ultra-pure Ohno copper and the exclusive PMZ process, the Gamma S/PDIF cable offers unmatched coherence, dynamic punch, and frequency extension. Conditioned with KPIP v2™, it delivers exceptional sound quality, rivaling S/PDIF cables two to three times its cost.

Custom lengths available; please get in contact.

Category Digital Cables
Country USA
Manufacturer Shunyata Research

Shunyata Research's Gamma S/PDIF Cable represents a paradigm shift, leveraging 25 years of science and innovation to redefine price and performance standards. Utilizing ultra-pure Ohno copper and the exclusive PMZ process, the Gamma S/PDIF cable offers unmatched coherence, dynamic punch, and frequency extension. Conditioned with KPIP v2™, it delivers exceptional sound quality, rivaling S/PDIF cables two to three times its cost.

Custom lengths available; please get in contact.

Category Digital Cables
Country USA
Manufacturer Shunyata Research

 
  • Cable Type
    Coaxial

    Gauge
    18

    Conductors
    OCC copper (Ohno Continuous Cast)

    Shield
    SPC braided shield

    Dielectric
    Fluorocarbon

    Connectors
    Gold plated brass contacts, nickel mirror finish

    Characteristic Impedance
    75 ohms

    KPIP Processing
    4-days

    Standard Length
    1 meter

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

    • Free Delivery within Mainland UK.

    • 60-Day Money-back Guarantee

    • Returns Policy

Technology

Shunyata Research digital cables are produced using a ‌Precision Matched Z (‌‌PMZ) concept. 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’. (Note: Z means impedance)

Ohno wire, also called ‌PCOCC was invented in 1986 by professor Atsumi ‌Ohno of the Chiba Institute of Technology in Japan. Copper wire is created by an extrusion process that pulls a rod of cold copper through a small orifice which creates multiple crystalline boundaries. By contrast, ‌‌Ohno wire is made by a process using heated molds that cast a wire to form a single crystalline structure. ‌‌Ohno wire is well known for its exceptionally pure, grain-free sonic qualities.

Fluorocarbon dielectrics are usually only found in wire used in the aerospace industry, satellites and only the most expensive audiophile cabling. It has special electrical characteristics; very low dielectric absorption, high dielectric strength and exceptional heat resistance.  When used in audio and power cables is reduces the perception of dynamic compression and it improves sonic low-level resolution and clarity.

KPIP v2™ PROCESSING

Shunyata Research’s proprietary Kinetic Phase Inversion Process includes four days of continuous KPIP v2™ processing which refines conductor metals at a molecular level. This dramatically reduces burn-in time and significantly improves sonic performance, delivering a relaxed and life-like presentation. When compared to the original process, KPIP v2™ represents a dramatic performance upgrade on par with a component-level upgrade.

 

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