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Yankkios
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1: 600W high power boost constant current
2: Overcurrent protection: Yes (The input exceeds 17A, the output voltage will be automatically reduced, and there is a certain range of error.)
3: Short circuit protection: Yes (input 20A fuse) double short circuit protection, safer to use.
4: Output anti-reverse irrigation: yes, no need to add anti-reverse diode when charging.
5: Easy to install and use
600W boost module, 12-60V wide input voltage, 12-80V adjustable wide output voltage, ultra-low input and output voltage difference.
Module parameters:
Module name: 600W boost constant current module
Module nature: non-isolated boost module (BOOST)
Input Voltage: Two input voltage ranges are optional, (selected by jumpers on the board)
1. 8-16V input (for three-series lithium battery and 12V battery application) in this input state, please do not overvoltage input
Otherwise it will burn the module!!!
2. 12-60V input factory default range (for wide input voltage range applications)
Input current: 16A (MAX) more than 10A, please strengthen heat diation
Static working current: 15mA (when 12V rises to 20V, the higher the output voltage, the higher the static current will increase)
Output voltage: 12-80V continuously adjustable (default output is 19V, if you need other voltages, please explain to the shopkeeper.)
12-80V fixed output (for bulk customers)
Output current: 12A MAX, if it exceeds 10A, please strengthen the heat diation (related to the input and output preure difference, the larger the preure difference, the smaller the output current)
Constant current range: 0.1-12A
Output power: = input voltage*10A, such as: input 12V*10A=120W, input 24V*10A=240W,
Input 36V*10A=360W, input 48V*10A=480W, input 60V*10A=600W
If more power is required, two modules can be used in parallel. For example, if the output is 15A, two modules can be used in parallel.
Adjust the current of each module to 8A.
Working temperature: -40~+85 degrees (please strengthen the heat diation when the ambient temperature is too high)
Working frequency: 150KHz
Conversion efficiency: up to 95% (efficiency is related to input, output voltage, current, and voltage difference)
Overcurrent protection: Yes (The input exceeds 17A, the output voltage will be automatically reduced, and there is a certain range error.)
Short circuit protection: Yes (input 20A fuse) double short circuit protection, safer to use.
Input reverse connection protection: no, (if neceary, please connect a diode in series with the input)
Output anti-reverse irrigation: Yes, no need to add anti-reverse diode when charging.
Installation method: 2 3mm screws
Wiring method: terminals free of welding output
Module size: length 76mm width 60mm height 56mm
Module unit weight: 210 grams
Application range:
1. DIY a regulated power supply, the input is 12V, and the output can be adjusted from 12-80V.
2. Power supply for your electronic equment, you can set the output value according to your system voltage.
3. As a car power supply, power supply for your notebook computer, PDA or various digital products.
4. DIY a high-power notebook mobile power supply: equped with a large-capacity 12V lithium battery pack, so that your notebook can be illuminated wherever you go
5. Solar panel voltage stabilization.
6. Charge batteries, lithium batteries, etc.
7. Drive high-power LED lights.
Instructions:
1. Input voltage range selection: The factory default is 12-60V input. When you use a 12V battery or three or four series lithium batteries, you can short the jumper shown above with a jumper cap to select 9-16V input.
Second, the output current adjustment method:
1. Adjust the CV potentiometer and set the output voltage to the voltage value you need according to your battery or LED. For example, the voltage of 10 strings of LEDs is adjusted to 37V, and the voltage of four strings of batteries is adjusted to 55V.
2. Set the CC potentiometer counterclockwise for about 30 turns, set the output current to the minimum, connect the LED, and adjust the CC potentiometer to the current you need. For battery charging, after the battery is fully discharged, connect to the output and adjust the CC to the current you need. The more the charging current is, the smaller the charging current will be.) Please do not adjust the current in a short-circuit manner, and the circuit structure of the booster module cannot be adjusted in a short-circuit manner.
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1*Boost Module
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