MODEL : CA20
Output Power ( AC 220v / 50Hz +/- 10%. All Channels driven output power, THD=1% ).
8 Ohm Stereo : 2000 Watts x 2.
4 Ohm Stereo : 3200 Watts x 2.
2 Ohm Stereo : 4600 Watts x 2.
8 Ohm Bridge : 6400 Watts.
4 Ohm Bridge : 7200 Watts.
Other Specification :
Frequency Response : 20Hz - 20kHz , +0/-1.5dB.
THD+N : <0.05%.
S/N Rate : >= 85dB.
Damping Factor : > 280.
Input Sensitivity : 0.775v / 1v / 32dB.
Input Impedance ( bal/unbal ) : 20k ohm / 10k ohm.
Voltage Gain : 44.2dB.
Output Circuit : Class I.
Cooling : Air Flow from Front to Rear.
Dimension / Weight.
Product Dimensions ( mm ) : 483 x 506 x 133 ( 3U ).
Packing Dimensions ( mm ) : 620 x 585 x 210 ( 3U ).
G.W : 37 Kg.
SOUNDSTANDARD CA20 New Version
SAE Audio legendary CA series had been improved with a new attractive front panel design and implementing SAE renowned high-efficiency Class I™ technology for an even better sound quality on these mid-range power amplifier series. With and an also enhanced adjustable internal X-Over functionality, the CA series represent an exponent on speakers adaptability to reach the best performance on multi-way bi-amplified sound reinforcement systems
Class I™ SAE Audio patented Class I™ is the most advanced technology on high power audio amplification. The output signal amplified through a Class I™ power module accurately tracks the input signal waveform, achieving a much greater efficiency and sonic quality than on other standard amplifier classes. Class I™ amplification is capable to deliver extremely high power density with an unprecedented audio fidelity.
HS-CMRR Balanced Inputs The best signal quality at an amplifier output can only be achieved with the best signal quality at its input. With the CA series is not a problem to have long signal input cables along with power lines or other induced noise sources. The balanced signal inputs on the CA amplifiers implement a High Sensitivity CMRR (Common Mode Rejection Ratio) design in order to reject even the slightest added distortion on the signal, thus assuring the best possible audio signal at the input.