Downstream Voltage Reduction Module Efficiency 96% Model High-Power Antihypertensive Board Low Ripple 5V

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Delivery: Standard (£5.59) | Sat 4th - Fri 10th Jul

Sold by: CollBea

Returns: 30 days

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Description & Details

Summary

  • 1.The input voltage of the product should be greater than the output voltage, and it is best to maintain a voltage difference of 1V or more. The input should not be reversed, but connected to a reverse burning board.
  • 2.It is best to disconnect the power supply when wiring, otherwise when the voltage is high, it is easy to spark, which may pose a certain risk of chip damage and breakdown.
  • 3.The wiring should not be too thin to ensure that the wires can withstand the corresponding current.Protect the inductive load to avoid excessive reverse electromotive force exceeding the chip's bearing range. The higher the power used by the module, the closer the current is to the maximum current. The heat will increase, so pay attention to heat dissipation when using.
  • 4.When there is no external heat dissipation, it is recommended to keep the current below 4.55A for continuous use. If it exceeds 4.5A, additional heat dissipation is required, otherwise it will overheat and protect the output.
  • 5.It is recommended to use a voltage below 26V. If the supply voltage is not very stable and the peak voltage exceeds 27V, it will trigger the internal overvoltage protection of the chip. To ensure stable operation, leave some margin appropriately.

Downstream Voltage Reduction Module Efficiency 96% Model High-Power Antihypertensive Board Low Ripple 5V Description

1.The input voltage of the product should be greater than the output voltage, and it is best to maintain a voltage difference of 1V or more. The input should not be reversed, but connected to a reverse burning board.
2.It is best to disconnect the power supply when wiring, otherwise when the voltage is high, it is easy to spark, which may pose a certain risk of chip damage and breakdown.
3.The wiring should not be too thin to ensure that the wires can withstand the corresponding current.Protect the inductive load to avoid excessive reverse electromotive force exceeding the chip's bearing range. The higher the power used by the module, the closer the current is to the maximum current. The heat will increase, so pay attention to heat dissipation when using.
4.When there is no external heat dissipation, it is recommended to keep the current below 4.55A for continuous use. If it exceeds 4.5A, additional heat dissipation is required, otherwise it will overheat and protect the output.
5.It is recommended to use a voltage below 26V. If the supply voltage is not very stable and the voltage exceeds 27V, it will trigger the internal overvoltage protection of the chip. To ensure stable operation, leave some margin appropriately.

Module interface:VIN+: input positive pole 6V-27V (needs to be 1V higher than the output).
GND: input negative pole, connected to the output negative pole.
+(OUT+): output positive pole.
-(GND): output negative pole, connected to the input negative pole.
Specification: 5V
Due to different batches, there may be differences in product appearance and printed text, which will not affect use
Colour:As Shown
Material:PCB+Plastic+Metal

Package Contents:
1 x Antihypertensive board

Details

OPC PRYMMWQ
Codes 4711755335212 (EAN)

Product Images

Downstream Voltage Reduction Module Efficiency 96% Model High-Power Antihypertensive Board Low Ripple 5V 1
Downstream Voltage Reduction Module Efficiency 96% Model High-Power Antihypertensive Board Low Ripple 5V 2
Downstream Voltage Reduction Module Efficiency 96% Model High-Power Antihypertensive Board Low Ripple 5V

Product Data

Height2cm
Width3cm
Length4cm
Weight0.015kg
ColourAs Shown
Size5V
MaterialPCB+Plastic+Metal

Compare Sellers for Downstream Voltage Reduction Module Efficiency 96% Model High-Power Antihypertensive Board Low Ripple 5V

  • New from £10.37
Seller Ratings Warranty Returns Price Delivery Total Quantity
Dispatched from: China
(187 reviews)
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30 Days
Free Returns No
£4.78
+£5.59 Delivery
Est. Delivery: 4th-10th Jul
£10.37
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