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- 500 Watt High Efficiency Class D Design
- 2-OHM Stable Mono Block Amplifier
- Ultra Low Current Draw
- Conformal Coated PC Board
- Digital Sound Optimization Circuitry
- High Damping Control Circuit
- Variable Subsonic Filter
- High Current Voltage Ripple Rejection Circuitry
- Variable Low Pass Electronic Crossover
- Variable 12dB Bass Boost EQ
- Variable Gain Control
- Wired Secondary Remote Gain Control Included
- Protection Circuit: Impedance Over-load, Speaker Short, Circuit, Thermal Overheating, and DC Output.
- 600W High Efficiency Full Range Class D Design
- 2-OHM Stereo Stable Amplifier
- Ultra Low Current Draw
- Conformal Coated PC Board
- Digital Sound Optimization Circuitry
- High Damping Control Circuit
- High Current Voltage Ripple Rejection Circuitry
- Selectable Crossover Network HPF, LPF, OFF
- Variable Low Pass Electronic Crossover
- Variable High Pass Electronic Crossover
- Variable Gain Control
- Protection Circuit: Impedance Over-load, Speaker Short, Circuit, Thermal Overheating, and DC Output.
- 360W High Efficiency Full Range Class D Design
- 2-OHM Stereo Stable Amplifier
- Ultra Low Current Draw
- Conformal Coated PC Board
- Digital Sound Optimization Circuitry
- High Damping Control Circuit
- High Current Voltage Ripple Rejection Circuitry
- Selectable Crossover Network HPF, LPF, OFF
- Variable Low Pass Electronic Crossover
- Variable High Pass Electronic Crossover
- Variable Gain Control
- Protection Circuit: Impedance Over-load, Speaker Short, Circuit, Thermal Overheating, and DC Output.
- 300W High Efficiency Full Range Class D Design
- 2-OHM Stereo Stable Amplifier
- Ultra Low Current Draw
- Conformal Coated PC Board
- Digital Sound Optimization Circuitry
- High Damping Control Circuit
- High Current Voltage Ripple Rejection Circuitry
- Selectable Crossover Network HPF, LPF, OFF
- Variable Low Pass Electronic Crossover
- Variable High Pass Electronic Crossover
- Variable Gain Control
- Variable Gain Control
- Wired Secondary Remote Gain Control Included
- Protection Circuit: Impedance Over-load, Speaker Short, Circuit, Thermal Overheating, and DC Output.


















