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L7985 датащи(PDF) 20 Page - STMicroelectronics

номер детали L7985
подробное описание детали  Voltage feed-forward
PDF  42 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
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L7985 датащи(HTML) 20 Page - STMicroelectronics

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Application information
L7985
20/42
DocID022446 Rev 7
As seen in Section 5.3 on page 11, two different kinds of network can compensate the loop.
In the following two paragraphs the guidelines to select the type II and type III compensation
network are illustrated.
6.4.1
Type III compensation network
The methodology to stabilize the loop consists of placing two zeroes to compensate the
effect of the LC double pole, therefore increasing phase margin; then, to place one pole in
the origin to minimize the DC error on regulated output voltage; and finally, to place other
poles far from the zero dB frequency.
If the equivalent series resistance (ESR) of the output capacitor introduces a zero with
a frequency higher than the desired bandwidth (that is: 2
ESR COUT < 1 / BW), the type
III compensation network is needed. Multi-layer ceramic capacitors (MLCC) have very low
ESR (< 1 m
), with very high frequency zero, so a type III network is adopted to
compensate the loop.
In Figure 10 the type III compensation network is shown. This network introduces two
zeroes (fZ1, fZ2) and three poles (fP0, fP1, fP2). They are expressed as:
Equation 22
Equation 23
Figure 10. Type III compensation network
In Figure 11 the Bode diagram of the PWM and LC filter transfer function (GPW0 · GLC(f))
and the open-loop gain (GLOOP(f) = GPW0 · GLC(f) · GTYPEIII(f)) are shown.
fZ1
1
2
 C
3
R1 R3
+


------------------------------------------------
=
fZ2
1
2
 R
4 C4

------------------------------
=
fP0 0
=
fP1
1
2
 R
3 C3

------------------------------
=
fP2
1
2
 R
4
C4 C5
C4 C5
+
--------------------

--------------------------------------------
=




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