R448 3 Phase Leroy Somer AVR Generator Voltage Regulator

Model NO.: R448
Output Voltage: Max 120V AC
Max Input Current: 0.33A
Test.Temperature: 75 Degree
Set Point: 75VDC
Trademark: OEM/HEYI
Specification: Rosh package
Origin: Zhejiang Yueqing
Model NO.: R448
Output Voltage: Max 120V AC
Max Input Current: 0.33A
Test.Temperature: 75 Degree
Set Point: 75VDC
Trademark: OEM/HEYI
Specification: Rosh package
Origin: Zhejiang Yueqing

R448 3 phase Leroy Somer avr generator voltage regulator
The circuitry of the R448 Automatic Voltage Regulator (AVR) provides closed loop control of the alternator output voltage by regulating the exciter field current. The primary winding has a voltage in ratio to that of the alternator (characteristic shunt), the next has a voltage in proportion to the stator current (compound characteristic: booster effect). Which is powered by two auxiliary windings which are independent of the voltage equal circuit. The power supply voltage is rectified and filtered before being used by the AVR monitoring transistor. With PMG excitatioin, a permanent magnet generator (PMG) added to the alternator supplies the AVR with voltage which is free of the main alternator winding. This is built-in at the rear of the machine and connected to the R448 AVR, and the ST9 jumper must be disconnected.    
*Quadrature droop adjustment
*AVR Voltage adjustment
*Stability adjustment
*LAM Threshold (underspeed) adjustment
*Excitation ceiling adjustment
*Selection of single phase or three phase*
*voltage sensing
*Selection of normal or rapid response time
*50 Hz or 60 Hz frequency option
*Remote voltage adjustment option
*LAM enable/disable option
*Alternator frame selection
*Excitation system selection
Specificaion
Input voltage: 70-140V AC, (PMG, or auxiliary 
winding, single, three phases)
Reaction is measured : 90-480V AC
MAX. output :DC 10A 125V
Function: Built-in low-speed , over excitation
LAM, 
REGULATION: +/-0.5%

 Voltage regulation
 ± 0.5%
 Remote voltage adjustment range  ± 5%
 Short circuit capability  3 x Irated for 10 seconds
 Voltage sensing  95 to 140 volts (50/60 Hz)
 170 to 260 volts (50/60 Hz)
 340 to 520 volts (50/60 Hz)
 Response time  Normal (1 sec) for ± 20% voltage variation
 Rapid (0.3 sec) for ± 20% voltage variation


R448 3 phase Leroy Somer avr generator voltage regulator
The circuitry of the R448 Automatic Voltage Regulator (AVR) provides closed loop control of the alternator output voltage by regulating the exciter field current. The primary winding has a voltage in ratio to that of the alternator (characteristic shunt), the next has a voltage in proportion to the stator current (compound characteristic: booster effect). Which is powered by two auxiliary windings which are independent of the voltage equal circuit. The power supply voltage is rectified and filtered before being used by the AVR monitoring transistor. With PMG excitatioin, a permanent magnet generator (PMG) added to the alternator supplies the AVR with voltage which is free of the main alternator winding. This is built-in at the rear of the machine and connected to the R448 AVR, and the ST9 jumper must be disconnected.    
*Quadrature droop adjustment
*AVR Voltage adjustment
*Stability adjustment
*LAM Threshold (underspeed) adjustment
*Excitation ceiling adjustment
*Selection of single phase or three phase*
*voltage sensing
*Selection of normal or rapid response time
*50 Hz or 60 Hz frequency option
*Remote voltage adjustment option
*LAM enable/disable option
*Alternator frame selection
*Excitation system selection
Specificaion
Input voltage: 70-140V AC, (PMG, or auxiliary 
winding, single, three phases)
Reaction is measured : 90-480V AC
MAX. output :DC 10A 125V
Function: Built-in low-speed , over excitation
LAM, 
REGULATION: +/-0.5%

 Voltage regulation
 ± 0.5%
 Remote voltage adjustment range  ± 5%
 Short circuit capability  3 x Irated for 10 seconds
 Voltage sensing  95 to 140 volts (50/60 Hz)
 170 to 260 volts (50/60 Hz)
 340 to 520 volts (50/60 Hz)
 Response time  Normal (1 sec) for ± 20% voltage variation
 Rapid (0.3 sec) for ± 20% voltage variation

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