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AN3286 датащи(PDF) 28 Page - STMicroelectronics

номер детали AN3286
подробное описание детали  This document describes
PDF  42 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
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AN3286 датащи(HTML) 28 Page - STMicroelectronics

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AN3286
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Doc ID 17998 Rev 1
2.8
Voltage feed-forward function
As briefly explained in Section 2.1, in a quasi-resonant converter the switching frequency
increases with the input voltage.
According with Equation 3, for a fixed value of the maximum peak primary current, IPK_MAX,
the maximum deliverable output power is proportional to the switching frequency.
Equation 3
If a power supply is designed in order to deliver a certain maximum output power at
minimum input voltage, its power capability at maximum input voltage can be twice or more
due to the increase of the switching frequency.
The system may not be able to detect an overload at high line because the load power
demand does not exceed the converter power capability, therefore leading to overheating of
the transformer, power MOSFET, and output diode.
In order to resolve this issue, the VIPer25 is provided with a voltage feed-forward function,
which acts by lowering the maximum drain current as the input voltage increases.
This is realized by connecting a resistor between the auxiliary winding of the transformer
and the ZCD pin (RFF resistor in Figure 35). In fact, during the ON time of the MOSFET, the
auxiliary winding voltage is negative and proportional to the flyback input voltage, therefore,
through the RFF resistor a current almost proportional to the input voltage is sunk by the
ZCD pin. Thanks to the adjustable current limitation VIPer25 function, the maximum peak
drain current is reduced proportionally to the increase of the input voltage value.
Figure 33.
Operating with secondary winding
shorted - restart mode – zoom1
Figure 34.
Operating with secondary winding
shorted - restart mode – zoom2
P
IN TRAFO MAX
1
2
---
L
P
I
PK MAX
2
f
sw
⋅⋅
=



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