DC-HVDC Converter: Full Load & No Load Characteristics

In summary, the output voltage of a power supply decreases with load due to voltage drops and capacitor discharge. Regulated power supplies use a series regulator to compensate for this, but may still experience some voltage drop with increased current.
  • #1
nitsan
5
0
Hi

I have been using a DC HVDC converter for a project. I am a little confused with the full load and no load characteristics for this kind of converter.The user manual states that at full load "X" Volts of input gives "Y1" volts output and for no load that same input voltage gives "Y2" volts output with Y2>Y1 by a couple of %. Why does this happen?

thanks
 
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  • #2
Do you mean: "why is the output lower on load than on no-load"? This is just a measure of how good the regulation of the power supply is.

The output voltage of almost all power supplies drops with load because the extra current causes voltage drops inside the power supply.
Regulated power supplies correct for this by monitoring the output and reducing the resistance of a series regulator in the power supply to increase the output voltage when an increased load would otherwise cause the voltage to drop.

Even these power supplies can have some voltage drop with increasing current.

In unregulated power supplies, the drop in voltage is partly due to the capacitor being partly discharged between charging pulses from the rectifier.
 

1. What is a DC-HVDC converter?

A DC-HVDC converter is a device that converts direct current (DC) electricity into high voltage direct current (HVDC) electricity. It is commonly used in power transmission systems to transmit electricity over long distances with minimal power loss.

2. How does a DC-HVDC converter work?

A DC-HVDC converter works by using a series of switches and transformers to convert the input DC voltage into a high frequency AC voltage, which is then converted back into a DC voltage at a higher level. This conversion process allows for efficient transmission of electricity over long distances.

3. What are the characteristics of a DC-HVDC converter at full load?

At full load, a DC-HVDC converter should have a high efficiency, low voltage drop, and high power transfer capability. It should also be able to maintain a stable output voltage and current even under varying load conditions.

4. What are the characteristics of a DC-HVDC converter at no load?

At no load, a DC-HVDC converter should have a low standby power consumption, high voltage regulation, and low ripple voltage. It should also be able to maintain its rated voltage and frequency without fluctuations.

5. What factors affect the full load and no load characteristics of a DC-HVDC converter?

The full load and no load characteristics of a DC-HVDC converter can be affected by factors such as the design of the converter, the type of switches and transformers used, the quality of the components, and the operating temperature. Other external factors such as the input voltage and load conditions can also impact the converter's performance.

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