Voltage stabilizers and automatic voltage regulators
What an AVR does, the types that exist, and how to select one for a load.
The problem
Supply voltage moves. Where it moves beyond the tolerance of the connected equipment, the equipment either protects itself by shutting down, or degrades. Motors overheat on low voltage, electronics fail on high voltage, and both fail faster than they would at nominal.
Types
Servo-motor (SBW) regulators — a motorized variac corrects the voltage continuously; used for larger industrial loads with a wide correction range.
Static or electronic regulators — solid-state correction, faster and with no moving parts, but a narrower correction range and lower power ratings.
SVC-type regulators — electronic correction for smaller and commercial loads.
Ferroresonant and tap-changing designs — used in specific applications.
Selection inputs
Connected load and its starting characteristic
The actual input voltage range at the site, measured over time — not the nominal figure
The output accuracy the equipment requires
Single-phase or three-phase
Whether the load is balanced across phases
Ambient conditions and the space available
What trips people up
Sizing a stabilizer on nominal voltage when the site actually swings much wider.
Forgetting that the regulator must also pass the starting current of motors.
Installing a three-phase unit on an unbalanced load without checking the effect.
Ignoring the efficiency loss at very low input voltage, which reduces the available output.
Need help with a specification?
Call 09678 566 000 or email info@impress.com.bd and we will work through the requirement with you.