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1500W 30A Step up DC Boost Converter Power Module In10~60V Out 12~90V

SKU: ML2278
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1500W 30A Step up DC Boost Converter Power Module

රු5,950.00

or 3 X රු1,983.33 with Koko

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Specifications:Type: Non-isolated step-up module

Input Voltage: DC10V to 60V

Maximum. Input Current: 30A(input voltage 10V to 30V), 25A(input voltage 31V to 60V)

Quiescent Current: 15mA, Output Voltage: 12V to 90V

Maximum. Output Current: 20A (related to the input and output voltage difference, the greater the voltage difference is, the smaller the output current will be. Please enhance heat dissipation when the current is over 15A)

Constant Current Range: 0.8A to 20A(+/-0.3A)

Reverse Input: Yes (150A MOS)

Lower Voltage : Yes (V8 to 50V adjustable, self-recovery)

Operating Temperature: – 40℃ to +85℃(if temperature is too high, please enhance heat dissipation)

Frequency: 150KHz

Conversion Efficiency: 92% to 97%

Input Over-current: Yes )

Short Circuit : Yes(input 30A fuse)

Wiring Method: Terminals

Maximum. Output Power = Input Voltage Maximum Current (If input 12V, the maximum output power=12V*30A = 360W)

Instruction: Voltage Adjustment: Power on the module while not connected to load, then adjust the “V-ADJ” potentiometer clockwise to increase, and counterclockwise to decrease.

Current Adjustment: Adjust the “CC A-ADJ” potentiometer counterclockwise about 30 circles to minimize the output current before connecting to the load. Then adjust “CC A-ADJ” clockwise to the current value you need. If you use the module for battery charging, connect to the output after the battery is discharged. Because if more energy is left in the battery, the less charging current will be.

Low Input Voltage Adjustment: If we set a low input voltage for a 12V battery, connect the input to a 10V voltage, then adjust RV1(clockwise to increase, counterclockwise to decrease) till UVLO lights up. Now the voltage is 10V, that is to say, when the battery voltage drops to 10V, the module won’t step up the voltage and the output voltage will be the same as the input voltage.

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