150W Inverter Boost Circuit Board DC12V to 110V AC220V Booster Transformer

150W Inverter Boost Circuit Board DC12V to 110V AC220V Booster Transformer

brand: DIYTECH SKU:DT2866
Regular price $5.99

Power: 150W
Input voltage: DC12V
Output voltage: AC 0-110V-172V-200V-220V
Quiescent current: about 0.05A
Output waveform: high frequency square wave
Output frequency: about 20KHZ
Protection: NoneNote:
1. This board is a high-frequency square wave AC output, so general inductive appliances cannot be carried! ! "Such as: electric motors, electric fans, coil transformers, etc. can not be carried."
Another: simple resistance-capacitance step-down small appliances, cheap resistance-capacitance step-down LED lamps, etc. may not be used
2. When the load is connected to electronic products (LED lights, mobile phone chargers, DVD set-top boxes, WIFA, etc.), a fast recovery diode or a low-voltage gear should be connected in series at the output end, such as: 110V 172V
3. It is recommended to increase the heat sink or add a fan to strengthen the heat dissipation when working for a long time under heavy load! !
4. The positive and negative poles of the input power supply cannot be reversed. In addition, the power supply and the power cord should have sufficient current
5. Because there is no protection output, do not overload and do not short circuit.
6. Because the output is a high frequency square wave AC voltage, many general multimeters cannot measure or the measured display value is low or high (it is incorrect, not the actual voltage. You can use it with confidence)Special reminder: The load is an electronic product. It is recommended to string a high-frequency diode on our board to rectify it into a DC output, because the rectifier part of many electronic products such as switching power supplies uses ordinary rectifier tubes to save costs. In the "high frequency AC output", the rectifier diodes in the electrical appliances will rapidly heat up and damage the breakdown short circuit. Eventually, the inverter board will burn out.

The output wiring voltage is as follows:
V0-V2 = 110V
V0-V3 = 175V
V0-V4 = 200V
V0-V5 = 220V
V5-V4 = 20V
V5-V3 = 45V
V5-V2 = 110V
V4-V3 = 28V
V4-V2 = 90V
V3-V2 = 62V
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Power: 150W
Input voltage: DC12V
Output voltage: AC 0-110V-172V-200V-220V
Quiescent current: about 0.05A
Output waveform: high frequency square wave
Output frequency: about 20KHZ
Protection: NoneNote:
1. This board is a high-frequency square wave AC output, so general inductive appliances cannot be carried! ! "Such as: electric motors, electric fans, coil transformers, etc. can not be carried."
Another: simple resistance-capacitance step-down small appliances, cheap resistance-capacitance step-down LED lamps, etc. may not be used
2. When the load is connected to electronic products (LED lights, mobile phone chargers, DVD set-top boxes, WIFA, etc.), a fast recovery diode or a low-voltage gear should be connected in series at the output end, such as: 110V 172V
3. It is recommended to increase the heat sink or add a fan to strengthen the heat dissipation when working for a long time under heavy load! !
4. The positive and negative poles of the input power supply cannot be reversed. In addition, the power supply and the power cord should have sufficient current
5. Because there is no protection output, do not overload and do not short circuit.
6. Because the output is a high frequency square wave AC voltage, many general multimeters cannot measure or the measured display value is low or high (it is incorrect, not the actual voltage. You can use it with confidence)Special reminder: The load is an electronic product. It is recommended to string a high-frequency diode on our board to rectify it into a DC output, because the rectifier part of many electronic products such as switching power supplies uses ordinary rectifier tubes to save costs. In the "high frequency AC output", the rectifier diodes in the electrical appliances will rapidly heat up and damage the breakdown short circuit. Eventually, the inverter board will burn out.

The output wiring voltage is as follows:
V0-V2 = 110V
V0-V3 = 175V
V0-V4 = 200V
V0-V5 = 220V
V5-V4 = 20V
V5-V3 = 45V
V5-V2 = 110V
V4-V3 = 28V
V4-V2 = 90V
V3-V2 = 62V