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Yankkios
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DC Boost Converter Board 6A 8A Step Up Adjustable Power Supply Module Non-isolated 5A MPPT Buck Module Solar Battery Charger
6A booster board
Specification:
Type:Non-isolated step up module(boost)
Input voltage: 4.5V-32V
Input current: 0A-6A
Output voltage: 5V-42V
Output current: 0A-6A
size: 60x60x20mm
Short circuit protection: Yes
Input reverse protection: NO
Working temperature:-40~+85
Working frequency: 180KHz
Transfer efficiency: 94%(max)
Over temperature protection: Yes
Note:
Please make sure the voltage and the connector if fits for your standard!
Package Included:
1 x DC Step Up Boost 4.5V-32V to 5-42V 6A power apply board
8A 70W booster board
Specification:
Power :70W
Isolation booster module
Input voltage:6~32max 35V
Working frequency: 150KHz
Output voltage: 6~42max 52V
Maximum input current: 8A
maximum current output: 5A
Static working current: 15mA
Highest conversion efficiency:96%
To adapt to the environment:-40~+85°
5A single/dual display
Explanation:
5A step-down constant voltage and constant current module, with MPPT function, charging the battery with solar panel can increase the charging current by more than double, effectively shorten the charging time and reduce the volume of the solar panel. It can charge batteries, lithium batteries, etc., with turn light control, which is convenient to observe the charging status. It can be equped with a multi-function voltmeter, and the input voltage, output voltage, output current, and output power can be visually displayed, and can be used without a multimeter. Can be used as a high-power LED driver module.
Specification:
Type: 5A step-down constant voltage and constant current MPPT
Input voltage: 6-36V
Working frequency: 180KHz
MPPT voltage setting range: 6-36V
Working temperature: -40~+85 degrees
Properties: Non-isolated Buck Module (BUCK)
Output voltage: 1.25-32V continuously adjustable, (default output 5V)
Short circuit protection: yes (limit current is set constant current value)
Over-temperature protection: yes (automatically turn off the output after over-temperature)
Input reverse connection protection: no, (if neceary, please connect a diode in series with the input)
Conversion efficiency: up to 95% (efficiency is related to input, output voltage, current, and voltage difference)
Output constant current range: 0.05-5A long-term working current is recommended to be within 3A (default output constant current is 3A)
Output turn light range: 0.01-5A (default turn light current is 0.3A) There will be a little error in the current range due to the difference in part parameters.
Output anti-reverse irrigation protection: none, be sure to add anti-reverse diode when the output is connected to the battery, otherwise the module will be burned out! Remember! (There is a reserved anti-backflow diode position, you can add it yourself if you need it.)
Charging instructions:
Red light when charging, green light when fully charged. The light detection method is current. When using solar panels for power supply, the charging current during the solar hour is also very small, lower than the current of the turn light, and the green light will also turn on, but it is not fully charged at this time, please pay attention to the distinction. With a charged meter, you will see the charging current more directly.
Installation method: 4pcs 3mm screw
Wiring method: terminal (when equped with shell, it is welding wire output) IN is input, OUT is output
Module size: length 60mm width 31mm height 22mm (excluding header)
Note: The current detection of the module is low-end detection, please do not directly short-circuit the negative pole of the input and the negative pole of the output with a wire!
Application:
1. Power your electronic devices.
2. Drive high-power LEDs, which can be freely combined in series and parallel,
3. As a car power supply, power supply for your mobile phone or various digital products.
4. DIY a regulated power supply with constant current function, not afraid of short circuit during use, which can protect the load.
5. Charge all kinds of batteries, set the charging voltage and charging current according to the batteries of different voltages and capacities, with a charging indication function, which is convenient to observe the charging status.
6. Use solar panel power supply to charge various batteries, with MPPT function, which can increase the charging current more than double. With constant current function, it can prevent the battery from overcharging and effectively protect the battery.
How to set voltage, current and turn lights (If the module has no output voltage, please turn the MPPT setting potentiometer clockwise to have voltage output.):
1. Set the output voltage: According to the float voltage value of the battery you want to charge, or the voltage value of the LED after series or parallel connection, adjust the constant voltage potentiometer (CV), and set the output voltage to the required voltage. (without load)
2. Set the current indicator of the turn light: After setting the output voltage, turn the CC potentiometer counterclockwise about 20 turns, short-circuit the output with the 20A current gear of the multimeter, adjust the CC potentiometer to the current you need to turn the light, and then adjust the turn Turn the light potentiometer to the point where the green light is just on.
3. Set the constant current value: After adjusting the light current, the 20A current file of the multimeter is still short-circuit output, (the direct wire with voltage and ammeter can be short-circuit output), adjust the CC potentiometer to the current value you need to set. (When the output current is set by the short-circuit method, the actual charging current will be smaller than the short-circuit setting current, and the battery should have residual voltage. If you want to set an accurate charging current, please connect the discharged battery to the output Then set the output current.)
Note: When setting constant current, the voltage should be higher than 1.25V, otherwise the constant current function will fail.
4. Set the MPPT voltage value:
A. The method of setting with an adjustable regulated power supply: adjust the adjustable regulated power supply to the voltage value to be set (such as 18V), and the output is not connected to the load. When the module has an output voltage, adjust the MPPT counterclockwise. Set the potentiometer to the critical point where the output voltage is just reduced.
B. The method of setting directly with the solar panel: the input is directly connected to the solar panel, the output voltage is set according to the load, part of the light shining on the solar panel is blocked, and the output is connected to the load. Use a multimeter to measure the output voltage of the solar panel (switch to the input voltage display with a voltmeter), and adjust the MPPT potentiometer until the voltage of the solar panel reaches the maximum power point voltage. (The actual maximum power point voltage of the solar panel will be lower than the nominal voltage, such as 18V solar panel, the maximum power point will be around 17.5V.) You can also adjust the MPPT value by measuring the output current, and connect the current gear of the multimeter in series. Between the output and the load (the one with the meter can be switched to the current display), the MPPT potentiometer can be adjusted back and forth until the output current reaches the maximum value.
Note: When using the solar panel to directly adjust the MPPT value, when the power emitted by the solar panel is greater than the load power, please block part of the light shining on the solar panel first to reduce the power of the solar panel, so that the MPPT value can be adjusted.
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