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Balanced signal cable by the metre, G-UPOCC Copper/Graphene conductors. Triple shielding.
Supplied in a single piece of the quantity ordered in multiples of 1 metre or 50cm
The Neotech NEI 3001G modulation cable consists of the latest technological developments incorporating 99.99998% pure Up-OCC copper conductors with Graphene . Recognised for its sound balance, this symmetrical cable with two multi-strand and two solid-strand conductors benefits from a special topology.
The dielectric insulators are a clever alternating mixture of Polyethylene (PE) air tubes. This design minimises capacitance effects. The advantage is immediate with highs and harmonics well integrated into the rest of the audible spectrum. The air conductors and PE tube insulators are thus maintained by a PTFE insulating tape that prevents the transmission of electrical and static discharges created by the dual Mylar aluminium shielding and OCC copper foil. The whole is enclosed in a sheet of paper with cotton fibres for the mechanical resistance of the whole. The result is astonishing: articulation in the bass, a legible and natural soundstage with High Definition in between without auditory fatigue.
What is UP-OCC? The UP OCC process for refining copper was developed and patented by Professor Ohno of the Chiba Institute of Technology in Japan. This manufacturing process is incredibly popular for the production of wires and cables for the audio/video industry. UP OCC stands for Ultra-Pure, Ohno Continuous Casting. In conventional processing, hot molten copper is poured into a cooled die for extrusion, resulting in a multiple, fractional crystal structure. Oxygen-free copper (OFC) has undesirable effects that lead many to use more expensive materials such as silver. The OCC process uses a heated mould for casting and extrusion, with cooling in a separate process. The result is a larger crystal size and higher purity, around 6N, 99.9998%! Looked at another way, traditional copper has oxygen impurities of 200 to 500 parts per million (PPM), whereas in traditional OFC copper this is reduced to less than 10 ppm. With the OCC process, this figure is halved to less than 5 PPM of oxygen and less than 0.25 PPM of hydrogen (compared to 0.5 PPM for OFC). With these results, the OCC process creates an ‘ultra-pure’ copper
Balanced signal cable by the metre, G-UPOCC Copper/Graphene conductors. Triple shielding.
Supplied in a single piece of the quantity ordered in multiples of 1 metre or 50cm
The Neotech NEI 3001G modulation cable consists of the latest technological developments incorporating 99.99998% pure Up-OCC copper conductors with Graphene . Recognised for its sound balance, this symmetrical cable with two multi-strand and two solid-strand conductors benefits from a special topology.
The dielectric insulators are a clever alternating mixture of Polyethylene (PE) air tubes. This design minimises capacitance effects. The advantage is immediate with highs and harmonics well integrated into the rest of the audible spectrum. The air conductors and PE tube insulators are thus maintained by a PTFE insulating tape that prevents the transmission of electrical and static discharges created by the dual Mylar aluminium shielding and OCC copper foil. The whole is enclosed in a sheet of paper with cotton fibres for the mechanical resistance of the whole. The result is astonishing: articulation in the bass, a legible and natural soundstage with High Definition in between without auditory fatigue.
What is UP-OCC? The UP OCC process for refining copper was developed and patented by Professor Ohno of the Chiba Institute of Technology in Japan. This manufacturing process is incredibly popular for the production of wires and cables for the audio/video industry. UP OCC stands for Ultra-Pure, Ohno Continuous Casting. In conventional processing, hot molten copper is poured into a cooled die for extrusion, resulting in a multiple, fractional crystal structure. Oxygen-free copper (OFC) has undesirable effects that lead many to use more expensive materials such as silver. The OCC process uses a heated mould for casting and extrusion, with cooling in a separate process. The result is a larger crystal size and higher purity, around 6N, 99.9998%! Looked at another way, traditional copper has oxygen impurities of 200 to 500 parts per million (PPM), whereas in traditional OFC copper this is reduced to less than 10 ppm. With the OCC process, this figure is halved to less than 5 PPM of oxygen and less than 0.25 PPM of hydrogen (compared to 0.5 PPM for OFC). With these results, the OCC process creates an ‘ultra-pure’ copper