Sale!

Kimber 8TC High-Fidelity Speaker Cable – Oxygen-Free Copper, Low-Capacitance Design

Price range: $92.01 through $98.36

Quantity
SKU: N/A Category: Brand:

Description

8TC Speaker Cable White/Clear [Per Pair]

The Kimber Kable 8TC is meticulously designed to minimize signal distortion and maximize signal integrity. With its high-purity copper conductors, you can expect an audio signal that’s remarkably clean, transparent, and free from interference, ensuring your music resonates with the artist’s intended brilliance.

KIMBER KABLE 8TC consists of sixteen individual TCSS conductors, eight blue and eight black, arranged in a large format braid. Individual conductors are Hyper-pure copper and utilize KIMBER KABLE’s proven VariStrand™ conductor geometry. The insulating dielectric is a high pressure-low temperature-extruded Teflon®. The aggregate wire size is two 9 awg conductors. By virtue of its full, accurate and dimensional sound, 8TC ranks as one of the best high-end audio values of all time and, without question, is the best sounding moderately priced cable on the market.

Custom lengths and connection options are available on request.

Made to order. On receipt of your order, we aim to dispatch this item within 3 working days.

“For all my listening, I used Kimber’s 8TC speaker cables and a 0.5m pair of Hero interconnects. These wire goods are of the strong, silent, John Wayne type—they just shut up and get the job done.” – Stereophile.

Features

  • Eight clear and eight white braided conductors
  • 2 x 9 AWG / 2.62mm
  • VariStrand ultra-pure copper
  • FEP dielectric

Kimber-8TC-speaker-cable-chart 

Connector options

Kimber Kable connection options

Specifications

  • Parallel capacitance: 346pF @ 20kHz
  • Series inductance: 0.09H @ 20kHz
  • DC loop resistance: 0.008Ω

Explore more from our collection.

Additional information

Length

2.0m, 3.0m, 4.5m

Connection

SBAN, Bare

Reviews

There are no reviews yet.

Be the first to review “Kimber 8TC High-Fidelity Speaker Cable – Oxygen-Free Copper, Low-Capacitance Design”

Your email address will not be published. Required fields are marked *