FULL AUTOMATIC SERVO DYNAMIC VOLTAGE REGULATOR 1kVA - 50 kVA
FULL AUTOMATIC SERVO
DYNAMIC
VOLTAGE REGULATOR
VOLTAGE REGULATOR
GVN AVR DVR-M1 SERIES
1kVA - 50 kVA
GÜVENİŞ Voltage
regulators are the machines that provide the constant voltage that you need by
correcting the falling and rising of the mains voltage in the internal
structure.
Our
DVR-M1
voltage regulators operate fully automatically for voltage regulation without
any user intervention.
Once
the regulators are switched on, your mains voltage is continuously measured and
the necessary up / down operations are performed automatically, giving your
system the constant voltage required for a healthy operation.
Servo
regulators consist of variac,
servo motor which controls variac,
electronic multimeter card
which controls this motor and booster transformer.
The
start torque can quickly correct even very small voltage changes thanks to the
high DC servo motor and the control system that can respond quickly to voltage
changes.
When
the regulation is completed, the servo motor is de-energized with the aid of
the electronic braking circuit. It has high efficiency.
Pollution,
parasitic, etc. at output voltage. do not corrupt.
You
can safely use any area with regular electricity needs without any problems.
The
DVR-M1
Regulator provides the following:
•Undisturbed
pure sinus voltage regulation.
•AC
voltage balancing with extremely high accuracy.
•Producing
intensely, keeping the output voltage stable within ± 0.4% (219.2v - 220.8v)
while the input voltage is between 65v ... 310v.
•Run
smoothly on all loads from 0% to 100%.
•Long-term
overload protection and short-term protection.
•When
protections are activated, record the number of protection trips and the reason
for each parameter separately.
•Record
mains input voltage limits and load current values.
•Protection
of the user from negative voltages.
•Protection
of the user and the device from excessive current.
•Static,
not gradual, dynamically correct output voltage too quickly without user
notice.
Display
all values against the probabilities in the bypass


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