SLQ-2000A Intelligent Three-Phase High Current Generator manufacturer

SLQ-2000A Intelligent Three-Phase High Current Generator manufacturer/price is similar to that of high-voltage current transformers. In essence, it is a double-winding step-down transformer.

Theoretically, the power on the primary and secondary sides is equal, and during operation, the voltage and current on the primary and secondary sides are inversely proportional. As a result, the voltage is reduced while the load current is increased.

The DC high voltage generator product is a new type of equipment, controlled by a chip. It is mainly selected based on your requirements for maximum current and load time.

After the high current generator (current booster) is connected to the working power supply, the output voltage of the voltage regulator is adjusted to obtain the large current required for the test.



SLQ-2000A Intelligent Three-Phase High Current Generator main technical parameters:



 
Model
Rated Capacity (KVA) Rated Input of Current Booster Rated Output of Current Booster Impedance
Voltage %
No-load
Current %
Structure
Form
Voltage Regulator Current Booster Current (A) Voltage (V) Current (KA) Voltage
SLQ-500A 3 3 12 200 0.5 8 ∠8 ∠6 Integrated
SLQ-1000A 5 5 20 200 1 8 ∠8 ∠6 Integrated
SLQ-2000A 7.5 7.5 30 200 2 7 ∠8 ∠6 Integrated
SLQ-3000A 15 15 37.5 400 3 6 ∠8 ∠6 Split
SLQ-4000A 20 20 50 400 4 6 ∠8 ∠6 Split
SLQ-5000A 25 25 62.5 400 5 6 ∠8 ∠6 Split
SLQ-6000A 30 30 75 400 6 6 ∠8 ∠6 Split
SLQ-8000A 45 45 112.5 400 6 6 ∠8 ∠6 Split
SLQ-10000A 45 45 112.5 400 6 6 ∠8 ∠6 Split


SLQ-2000A Intelligent Three-Phase High Current Generator usage method:



1. According to the debugging requirements, connect the current booster and the test object, and connect the power supply.

2. Select the position of the current transfer switch according to the current required by the test object. Since the current transformer is not allowed to open circuit, the current transfer switch can only be set to the "high" or "low" position, and cannot be placed in the middle position.

3. Close the power supply, the green light is on (if the green light is not on, turn the voltage regulator knob counterclockwise to zero until the green light is on), press the start button, the green light goes off and the red light is on, rotate the voltage regulator handle clockwise to increase the current to the required value.

4. Turn the voltage regulator handle counterclockwise to zero, press the stop button, the red light goes off and the green light is on, the test is over.