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AN1723 Datasheet(PDF) 13 Page - STMicroelectronics

Part # AN1723
Description  Designing with the L5973AD high efficiency DC-DC converter
PDF  24 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN1723 Datasheet(HTML) 13 Page - STMicroelectronics

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AN1723
Closing the loop
Doc ID 9553 Rev 4
13/24
where RLOAD is defined as the ratio between VOUT and IOUT.
If RLOAD>>ESR, the previous expression of ALC can be simplified and becomes:
Equation 11
The zero of this transfer function is given by:
Equation 12
F0 is the zero introduced by the ESR of the output capacitor and is very important to
increase the phase margin of the loop.
The poles of the transfer function can be calculated through the following expression:
Equation 13
In the denominator of ALC, the typical second order system equation can be recognized:
Equation 14
If the damping coefficient
δ is very close to zero, the roots of the equation become a double
root whose value is
ωn.
Similarly for ALC, the poles can usually be defined as a double pole whose value is:
Equation 15
5.3
PWM comparator
The PWM gain is given by the following formula:
Equation 16
where VOSCMAX is the maximum value of a sawtooth waveform, and VOSCMIN is the
minimum value. A voltage feed-forward is implemented to ensure a constant GPWM. This is
obtained generating a sawtooth waveform directly proportional to the input voltage VCC.
A
LC
s
()
1
ESR
C
OUT
s
⋅⋅
+
LC
OUT
s
2
ESR
C
OUT
s1
+
⋅⋅
+
⋅⋅
---------------------------------------------------------------------------------------------------------------------
=
F
0
1
2
π
ESR
C
OUT
⋅⋅
------------------------------------------------------------------
=
F
PLC1 2
,
ESR
C
OUT
ESR
C
OUT
()
2
4L
C
OUT
⋅⋅
()
±
()
2LC
OUT
⋅⋅
-----------------------------------------------------------------------------------------------------------------------------------------------------------------------
=
s
2
2
δω
n
s
ω
2
n
+
⋅⋅
+
F
PLC
1
2
π
LC
OUT
⋅⋅
----------------------------------------------------------
=
G
PWM
s
()
V
CC
V
OSCMAX
V
OSCMIN
()
------------------------------------------------------------------------
=



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