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High Fidelity Audio

RBC-1 / RBC-3 Balance Cable

Soulnote · Accessories

RBC-1 / RBC-3 Balance Cable

Non-shielded balance cables engineered for natural and vivid sonic transmission.

These balanced cables serve as the vital link in a high-fidelity system, engineered to match the performance standards of Soulnote electronics. The design eschews traditional shielding in favour of a lightweight, resonance-managed construction that prevents the signal degradation often caused by high line capacitance. Each cable utilises a high-purity single copper wire coated in a specialised foamed Teflon film. This carefully selected combination of materials ensures that musical transients remain vivid and uncompressed, providing a direct connection to the source. In use, the RBC series is noted for a sound that is transparent and exceptionally rhythmic. By maintaining the integrity of the waveform, these cables allow for a wide, stable soundstage and a level of micro-detail that feels organic rather than analytical.

Key Features

01

Non-shielded architecture

Designed to eliminate the negative sonic impact of line capacitance for a more natural and fluid sound.

02

Foamed Teflon insulation

Advanced dielectric material chosen for its lightweight properties and ability to preserve signal transients.

03

Channel identification

Connectors feature precision engravings with distinct logos to ensure effortless identification of left and right channels.

Chapter 01

Engineering Intent

The RBC series was created to function as an ideal reference for Soulnote systems. The focus is on the time axis, ensuring that the signal path does not introduce energy storage or timing errors that can soften the musical impact.

Chapter 02

Sonic Character

Expect a sound that is transparent, vivid, and rhythmically precise. By removing the constraints of traditional shielded cables, these interconnects allow the connected equipment to operate with greater openness and spatial accuracy.

Specifications

Length RBC-11.5m
Length RBC-33m
Quantity1 pair (L/R)