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R5973D Datasheet(PDF) 19 Page - STMicroelectronics

Part # R5973D
Description  Up to 2 A step-down switching regulator for aerospace applications
PDF  39 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

R5973D Datasheet(HTML) 19 Page - STMicroelectronics

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19/39
R5973D
Closing the loop
39
Similarly for ALC the poles can usually be defined as a double pole whose value is:
Equation 11
7.3
PWM comparator
The PWM gain is given by the following formula:
Equation 12
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 by generating a sawtooth waveform directly proportional to the input voltage VCC.
Equation 13
Where K is equal to 0.076. Therefore the PWM gain is also equal to:
Equation 14
This means that even if the input voltage changes, the error amplifier does not change its
value to keep the loop in regulation, thus ensuring a better line regulation and line transient
response.
In summary, the open loop gain can be expressed as:
Equation 15
Example 1
Considering RC = 2.7 k, CC = 22 nF and CP = 220 pF, the poles and zeroes of A0 are:
FP1 = 9 Hz
FP2 = 256 kHz
FZ1 = 2.68 kHz
If L = 22 µH, COUT = 100 µF and ESR = 80 m, the poles and zeroes of ALC become:
FPLC = 3.39 kHz
F0 = 19.89 kHz
Finally R1 = 5.6 k and R2 = 3.3 k.
FPLC
1
2
LCOUT
----------------------------------------------
=
GPWM s

Vcc
VOSCMAX VOSCMIN
–

-------------------------------------------------------------
=
VOSCMAX VOSCMIN
–
KVCC
=
GPWM s

1
K
----
const
==
Gs

GPWM s

R2
R1 R2
+
--------------------
AO s

ALC
s

=



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