Ga direct naar productinformatie
1 van 1

AudioQuest

Black Lab

Black Lab

Normale prijs €56,95 EUR
Normale prijs Aanbiedingsprijs €56,95 EUR
Aanbieding Uitverkocht
Belastingen inbegrepen. Verzendkosten worden berekend bij de checkout.

✅Promokodu izmanto pie pasūtījumā noformēšanas

✅Gebruik promocode bij het afrekenen

✅Промокод используй при оформлении заказа

Style
Size

📞 Jauta par Black Lab esamību pirms pasūtījumā veikšanas

📞 Vraag naar de Black Lab beschikbaarheid voordat u een bestelling plaatst

📞 Zorg ervoor dat u zich thuis voelt Black Lab перед оформлением заказа

📞 Premium HIFI-contacten

PremiumHIFI favicon

+37129541259

arkadijs.zenins@outlook.com

Demoruimte: Augusta Dombrovska 13-34, Riga (bel voor bezoek)

PremiumHIFI

Verzend voorwaarden

  • Verzendmethode: Standaard
    Verzendkosten:
  • € 20,-
  • LT, EST 5 €
  • LV 2 €
  • RU, VS 200 €
  • Andere landen 200
  • Verzending doorgaans 2 - 5 werkdagen na plaatsing van de bestelling
  • Soms, verzonden tot 20 werkdagen, zullen we u na het plaatsen van de bestelling extra informeren.

https://premiumhifi.lv/policies/shipping-policy

Black Lab RCA

Low-Frequency Subwoofer Audio Interconnect

Connect amplifiers, receivers, soundbars, and AVRs to a broad range of subwoofers with this AudioQuest Black Lab RCA subwoofer cable. Solid Long-Grain Copper
(LGC) conductors minimize distortion, Foamed-Polyethylene preserves dynamic contrasts, and a Metal-Layer Noise-Dissipation efficiently dissipates high-frequency noise. The result is clearer, naturally beautiful music, intelligible dialog, and thrilling sound effects.

Specifications
Specifications for product Black Lab RCA
Metal
Solid Long-Grain Copper (LGC)
Noise Dissipation
Metal-Layer
Geometry
Symmetrical Coax
Terminations
Cold-Welded, Gold-Plated
Signal Type
Analog
Cable Length
2 m = 6 ft 6 in
Jacket
Black PVC with White Stripes CL3/FT4
Sold As
Single Cable
Weight
0.4 lb
Description
Solid Long-Grain Copper (LGC) Conductors
Solid Long-Grain Copper (LGC) allows a smoother and clearer sound than cables using regular OFHC (Oxygen-Free High-Conductivity) copper. Solid conductors prevent strand interaction, a major source of distortion. The surface quality is critical because a conductor can be considered as a rail-guide for both the electric fields within a conductor, and for the magnetic fields outside the conductor. LGC has fewer oxides within the conducting material, less impurities, less grain boundaries, and definitively better performance.

Metal-Layer Noise-Dissipation
It's easy to accomplish 100% shield coverage. Preventing captured radio-frequency interference (RFI) from modulating the equipment's ground reference requires AQ's Noise-Dissipation. Traditional shield systems typically absorb and then drain noise/RF energy to component ground, modulating and distorting the critical "reference" ground plane, which in turn causes a distortion of the signal. Noise-Dissipation "shields the shield," absorbing and reflecting most of this noise/RF energy before it reaches the layer attached to ground.

Foamed-Polyethylene Insulation
Any solid material adjacent to a conductor is actually part of an imperfect circuit. Wire insulation and circuit board materials all absorb energy. Some of this energy is stored and then released as distortion. Because air absorbs next to no energy and Polyethylene is low-loss and has a benign distortion profile, Foamed-PE, with its high air content, causes much less of the out-of-focus effect common to other materials.

Symmetrical Coax Geometry
Identical positive (+) and negative (-) conductors prevent the shield from being used as an inferior audio conductor.

Cold-Welded, Gold-Plated Terminations
This plug design allows for a connection devoid of solder, which is a common source of distortion. Instead of solder, the process employs a high-pressure technique. Because the ground shells are stamped instead of machined, the metal used can be chosen for low distortion instead of machinability.

Alle details bekijken

Customer Reviews

Be the first to write a review
0%
(0)
0%
(0)
0%
(0)
0%
(0)
0%
(0)