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  • Q What is PFC?

    A Power Factor Correction or PFC is to improve the ratio of apparent power to real power. The power factor is around 0.4~0.6 in non-PFC models. In models with PFC circuit, the power factor can reach above 0.95. The calculation formulas are as follows: Apparent Power=Input Voltage x Input Current (VA), Real Power= Input Voltage x Input Current x Power Factor (W).
    From the point of view of environment friendly, the power plant needs to generate a power which is higher than apparent power in order to steadily provide electricity. The real usage of electricity is defined by real power. Assuming the power factor is 0.5, the power plant needs to produce more than 2WVA to satisfy 1W real power usage. On the contrary, if the power factor is 0.95, the power plant only needs to generate more than 1.06VA to provide 1W real power, It will be more effective in energy saving with PFC function.
    Active PFC topologies can be divided into single-stage active PFC and two-stage active PFC, the difference is show as in the table below.

    PFC topology Advantage Disadvantage Limitation
     Single-stage
     active PFC
     Low cost
     Simple schematic
     High efficiency in 
     small 
     watt application
     Huge Ripple
     complex feedback 
     control
     1.Zero “hold up time”. The output is
        affected by the AC input directly.
     2.Huge ripple current results in lower LED life
        cycle.(drive the LED directly)
     3.Low dynamic responds, easily affected by
        load.
     Two-stage active
     PFC
     High efficiency
     Higher PF
     Easy feedback control
     High adoptive against 
     load condition
     Higher cost
     Complex schematic
     Suitable for all kinds use

  • Q What is "Inrush Current"? What will we notice?

    A At input side, there will be (1/2 ~1 cycle, ex. 1/120 ~ 1/60 seconds for 60 Hz AC source) large pulse current (20~100A based on the design of S.P.S.) at the moment of power on and then back to normal rating. This "Inrush Current" will appear every time you turn on the power. Although it will not damage the power supply, we suggest not turning the power supply ON/OFF very quickly within a short time. Besides, if there are several power supplies turning on at the same time, the dispatching system of AC source may shut off and go into protection mode because of the huge inrush current. It is suggested that these power supplies start up one by one or use the remote control function of S.P.S. to turn them on/off.
  • Q What is the control mechanism for cooling fans?

    A Cooling fans have a relatively shorter lifetime (typical MTTF, Mean Time To Failure, of around 5000-100000 hours) compared with other components of power supply. As a result, changing operating method of the fans can extend the operation hours. The most common control schemes are shown as below:
    1. Temperature control: if the internal temperature of a power supply, detected by a temperature sensor, is over the threshold, the fan will start working at full speed, whereas, if the internal temperature is less than the set threshold, the fan will stop working or run at half speed. In addition, cooling fans in some power supplies are controlled by a non-linear control method whereby fan speed can be changed with different internal temperatures synchronously.
    2. Load control: if the loading of a power supply is over the threshold, the fan will start working at full speed, whereas, if the loading is less than the set threshold, the fan will stop working or run at half speed.

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