Update -- Five years later I did take apart this voltage regulator, mostly to inspect electrolytic capacitors health and now I know much more about this treasure.
The most popular name for this technology is:
AC Power Control Using SCR (silicon-controlled rectifier)
Thyristor No1, this is in control of the positive wave of sinusoidal.
Thyristor No2, this is in control of the negative wave of sinusoidal.
AC voltage output this is adjustable by potentiometer.
Voltage active stabilization this deliver almost five digits of stability = 220.00 V AC +/- 10 counts
Actual measurement example of output:
220.08 V
219.98 V
By adjusting the output at 220V ( with 235V as Input from Mains / Grid),
overall consumption of this power source came down to 500mA.Power consumption this is always correlated with switching noise caused due the two thyristor.
By adjusting it at 220V output, the switching noise was reduced down to minimum and its now much less annoying.
Voltage stabilization this in now effective down to 180V AC of input voltage.
Details of Parts list:All transistors at the control circuit are from Motorola.
Thyristor : Two 10RIA120 (Made in Italy)
Motor start capacitors (two of them): (Made in Italy)
All capacitors at the control circuit are made by Philips.
Large size transformer = output filter
Medium size transformer (three) these carry different AC voltages at several frequencies ( 50Hz up to 150Hz as highest)
I did take several pictures of the PCB, that I will keep fro personal use.
The specific product design and circuit this is nowhere to be found over the internet, and I do not plan helping others about giving them a chance for reverse engineering.
In summary: AC Power Control Using SCR = full AC wave control circuit = phase control method due two anti-parallel SCR's.
The number of degrees from the beginning of the cycle when SCR is switched on, this is firing angle.
And or ....
Firing angle = control of SCR/Thyristor due applied gate pulse for adjustment of phase degrees.
The earlier in the cycle the SCR is gated ON, the greater will be the voltage applied to the load.
Basic electrical specifications The switching technique used in SCR supplies results in an efficiency of 50~60% at no-load up to 80~90% at full load.
SCR (thyristor) this is limited to operation at the line frequency (50 ~ 60 Hz).
SCR regulators cost per Watt was high in comparison to modern MOSFET ... MOSFET operation this is not limited at the line frequency.
SCR Output voltage control range: 0 to 97% of input voltage
Output voltage characteristics: Linear output by voltage feedback
Degree of output stability: Output fluctuation ±2% maximum as against input fluctuation ±10%
Therefore this is
a Power source of highly stabilized power output that are ideal for the product development and verification even of AC to DC switching power supply.
Its also ideal source for electrical power efficiency measurements, when AC power meter this get connected between the source and the PSU / DUT (Device under test).
Modern AC Power Sources (of our times) they are programmable, they can vary voltage output along frequency, and they also include a fancy measuring panel meter.
Price per Watt, this is also very high today, because nowadays the software and features (large combination of select-able testing conditions) these are of what you are paying for.