With all the signal processing ability of the SSQ-2F v1.41, the new SSQ-2F v3.22 also includes an input for a Gate modulation signal and an on-board medium power MOSFET RF power amplifier that can provide up to 70 watts of peak carrier power at 3.1 or 3.3 MHz.The RF output of the SSQ-2F v3.22 is sufficient to drive a high-power vacuum tube RF amplifier. When combined with the LC31 coupler, the SSQ-2F v3.22 will drive a moderate size Rife plasma tube without the need for an external RF amplifier. The SSQ-2F v3.22 can be supplied with your choice of either 3.1 MHz or 3.3 MHz carrier frequency oscillators. Complete
technical details and setup information for the SSQ-2F v3.22 is
available in the
Instruction Manual. The price of the SSQ-2F v3.22
assembled and tested is $175.00.
Kit version also available. Ordering information for the SSQ-2F v3.22 is available on the Products page. |
Overview -
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SPECIFICATIONS: DC Power Supply Input:
Input Audio Signal Waveform:
Modulation Modes:
Carrier Frequency:
RF Power Output:
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SSQ-2F Waveforms3.1 MHz RF Carrier Oscillator Lower Trace = 6 KHz audio sine wave input to the SSQ-2F Upper Trace = Modulated 3.1 MHz RF Carrier output, modulated at a 6 KHz rate with a 50% duty cycle square wave. This is the non-frequency doubled mode of operation of the SSQ-2F. Lower Trace = 6 KHz audio sine wave input to the SSQ-2F Upper Trace = Modulated 3.1 MHz RF Carrier output, modulated at a 12 KHz rate with a 50% duty cycle square wave. This is the frequency doubled mode of operation of the SSQ-2F. Lower Trace = 194 KHz audio sine wave input to the SSQ-2F Upper Trace = Modulated 3.1 MHz RF Carrier output, modulated at a 388 KHz rate with a 50% duty cycle square wave. This is the frequency doubled mode of operation of the SSQ-2F. Note that individual cycles of the 3.1 MHz carrier may be seen in the upper trace. Also note the very short rising and falling edges of the modulated 3.1 MHz RF carrier signal. Same as the above picture, but zoomed in to show the very fast edges of the modulated 3.1 MHz RF carrier signal. Lower Trace = 155 KHz audio sine wave input to the SSQ-2F Upper Trace = Modulated 3.1 MHz RF Carrier output, modulated at a 310 KHz rate with a 10% duty cycle square wave. This is the frequency doubled mode of operation of the SSQ-2F. Note that there is only one cycle of the 3.1 MHz carrier present in the output. This illustrates the high accuracy of the modulation circuitry of the SSQ-2F. Top
trace - TP-1 showing 6 KHz audio input
signal. The 3.1 MHz carrier is being
modulated at a 50% duty cycle by a 6000 Hz audio signal. Note the very
fast
rise and fall times of the modulated RF pulses. This is the 100 watt peak
power 3.1 MHz RF carrier output waveform as seen at the RF output
connector of
the SSQ-2F ( TP3 ). This is the 100 watt peak
power 3.1 MHz RF carrier output waveform as seen at the RF output
connector of
the SSQ-2F ( TP3 ). |
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