Faital Pro 6PR122-8 6-inch Midrange Loudspeaker 8-Ohms PA Speaker Systems Professional Audio Applications 120-Watt Rms 240-Watt Max
R 5,146
or 4 x payments of R1,286.50 with
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Faital Pro 6PR122-8 6-inch Midrange Loudspeaker 8-Ohms PA Speaker Systems Professional Audio Applications 120-Watt Rms 240-Watt Max
NOMINAL SPECIFICATIONS || Nominal Diameter : 160 mm (6 in) || Overall Diameter : 186.5/162 mm (7.34/6.37 in) || Bolt Circle Diameter : 172 mm (6.77 in) || Baffle Cutout Diameter : 147 mm (5.79 in) || Depth : 78 mm (3.07 in) || Flange and Gasket Thickness : 9.5 mm (0.37 in) || Net Weight : 1.3 kg (2.8 lb) || Shipping Box (Single Carton Box) : 190 x 185 x 103 mm (7.5 x 7.3 x 4.1 in) || Shipping Weight : 1.5 kg (3.2 lb) ||
TECHNICAL PARAMETERS || Nominal Impedance : 8 Ohm || Minimum Impedance : 6.8 Ohm || AES Power Handling (1) : 120 W || Maximum Power Handling (2) : 240 W || Sensitivity (1W/1m) : 97 dB || Frequency Range : 125÷10000 Hz || Voice Coil Diameter : 37 mm (1.46 in) || Winding Material : Al || Former Material : Kapton ||
TECHNICAL PARAMETERS || Winding Depth : 7.5 mm (0.30 in) || Magnetic Gap Depth : 6 mm (0.24 in) || Flux Density : 1.6 T || Magnet : Neodymium Ring || Basket Material : Aluminum || Demodulation : Aluminum Ring || Cone Surround (3) : Half Roll || NET Air Volume filled by Loudspeaker : 0.38 dm^3 (0.013 ft^3) || Spider Profile : 1x constant height waves ||
THIELE AND SMALL PARAMETERS || Fs : 110 Hz || Re : 6 Ohm || Qes : 0.44 || Qms : 3.3 || Qts : 0.39 || Vas : 4.7 dm^3 (0.17 ft^3) || Sd : 137.3 cm^2 (21.28 in^2) || Xmax (4) : 2.75 mm || Xdamage (5) : 11.6 mm || Mms : 11.7 g || Bl : 10.5 N/A || Le : 0.15 mH || Mmd : 9.9 g || Cms : 0.18 mm/N || Rms : 2.4 kg/s || Eta Zero : 1.38 % || EBP : 250 Hz ||
Brand : FAITAL PRO || Model Number : 6PR122-8 | 6PR122 || UPC : 810130951376 || PART NUMBER (P/N) Faston Terminals - 8 Ohm Version : 01604160 || NOTES || (1) 2 Hours Test According to AES 2-1984 Rev. 2003 || (2) Maximum power is defined as 3dB greater than nominal power || (3) Treated Polycotton || (4) Xmax= [(winding depth - magnetic gap depth)/2] + (magnetic gap depth/3) || (5) Maximum excursion before permanent damage