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High Frequency Inverter-carrie001
High Frequency Inverter-carrie001

Why You Choose to Buy a High Frequency Inverter?

Different Topology Between High Frequency Inverter and Power Frequency Inverter

High frequency inverter first through high frequency DC/DC conversion technology, low voltage DC inverter to high frequency low voltage AC; Then through the high-frequency transformer voltage boost, and then through the high-frequency rectifier filter circuit rectifier is usually more than 300V high voltage DC, and finally through the power frequency inverter circuit to get power frequency AC power for load use.

The power-frequency inverter first inverts the DC into power-frequency low-voltage AC, and then boosts it into AC for the load through the power-frequency transformer. Its advantages are simple structure and various protection functions can be realized at lower voltage. Because there is a power-frequency transformer between the inverter power supply and the load, the inverter runs stably, reliably, has strong overload capacity and impact resistance, and can suppress the high harmonic components in the waveform. Komabe, the power-frequency transformer also has the problem of heavy and high price, and its efficiency is relatively low.

 

Advantages of High Frequency Inverter

The power-frequency inverter of the same power is much heavier than the high-frequency inverter. The high frequency inverter has small volume, kulemera kopepuka, high efficiency and low no-load load, but it cannot connect with the inductive load of full load and has poor overload capacity.

Because the multifarious hardware analog circuit is burned in the microprocessor, the way of software program to control the operation of the inverter. High frequency inverter in addition to greatly reduced volume, its conversion efficiency is also improved.

 

Which Model In Your Shop Is High Frequency Inverter?

BWT-DT1000, it is a high frequency inverter, dedicated sine wave inverter is especially designed and produced for the enterprises in electrical power system and post and telecommunication industries according to their actual requirements under the condition of not only considering the spatial installation size and the automation and networking requirements for the inverter management in IT age, but also considering the influence of the noise on the personnel in offices or in machine rooms.

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