FUJI APR-D Series (3-phase) AC Power Regulator Power Supply and Voltage Control

  • Product Code :
  • FJ/RPDW4045-T

In Stock

Description

AC Power Regulators
APR-D series

3-phase AC power regulators APR-D series
Description
The three-phase APR-D series products are successors of
APR-L.
Whereas their functions and performance have been largely
improved due to incorporation of a CPU, space saving, less
wiring, and inexpensive cost have been achieved.
Features
• Adopting the thyristor normal/reverse parallel method (6
arms).
• The output range is 0 to 100% of the main-circuit line voltage.
Where the voltage drop portion due to thyristor-specific resistance
is excluded.
• You can also switch the waveform control method among
phase control, cycle control, and phase angle proportion control.

• The main-circuit terminal block has a cover attached.
• The mounting pitch is the same as for APR-L.
Where 400 V, 45/60 A products are excluded.
• Output regarding individual settings represents linear characteristics
of RMS values.

 

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FUJI APR-D Series (3-phase)  AC Power Regulator Power Supply and Voltage Control
1 year

Shipping Details
  • Location

  • Standard Delivery:

    AED 32.00

  • Estimated delivery time:

    2 days


Highlights
  • Important notes for selections • Allowed load current/ ambient temperature characteristics The standard rated current value is the one at an ambient temperature of 40°C. When it exceeds 40°C, reduce the load current. • Options of the main unit After delivery, addition and alternation are not allowed for the type (product code). Please remember this when making an order. • Rapid fuse The main circuit does not contain a fuse. Use a Rapid fuse depending on the capacity. • Important notes for power cycle life expectancy If run and stop are repeated at short-period cycles (for example, 30-minute run and 30-minute stop), a large difference in temperature occurs in the thyristor element, significantly shorting its life expectancy through thermal fatigue. If such operations need to be performed, try to minimize the temperature fluctuation. Specifically, reduce the use rate of rated current to less than 80%. Or, choose an APR whose rated current is one level higher, so that the use rate of rated current is less than 80%.

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