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TPS54331 Fiches technique(PDF) 11 Page - Texas Instruments

No de pièce TPS54331
Description  3A, 28V INPUT, STEP DOWN SWIFTM DC/DC CONVERTER WITH ECO-MODTM
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Fabricant  TI [Texas Instruments]
Site Internet  http://www.ti.com
Logo TI - Texas Instruments

TPS54331 Fiches technique(HTML) 11 Page - Texas Instruments

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OUTPUT VOLTAGE SET POINT
REF
OUT
REF
R5
V
R6 =
V
V
´
-
(4)
OUT
REF
R5
V
= V
+1
R6
é
ù
´ ê
ú
ë
û
(5)
INPUT CAPACITORS
(
)
OUT(MAX)
IN
OUT(MAX)
MAX
BULK
SW
I
0.25
V
=
+ I
ESR
C
f
´
D
´
´
(6)
2
OUT(MAX)
CIN
I
I
=
(7)
OUTPUT FILTER COMPONENTS
Inductor Selection
TPS54331
www.ti.com ...................................................................................................................................................... SLVS839B – JULY 2008 – REVISED OCTOBER 2008
The output voltage of the TPS54331 is externally adjustable using a resistor divider network. In the application
circuit of Figure 13, this divider network is comprised of R5 and R6. The relationship of the output voltage to the
resistor divider is given by Equation 4 and Equation 5:
Choose R5 to be approximately 10.0 k
Ω. Slightly increasing or decreasing R5 can result in closer output voltage
matching when using standard value resistors. In this design, R4 = 10.2 k
Ω and R = 3.24 kΩ, resulting in a 3.31
V output voltage. The zero ohm resistor R4 is provided as a convenient place to break the control loop for
stability testing.
The TPS54331 requires an input decoupling capacitor and depending on the application, a bulk input capacitor.
The typical recommended value for the decoupling capacitor is 10
µF. A high-quality ceramic type X5R or X7R is
recommended. The voltage rating should be greater than the maximum input voltage. A smaller value may be
used as long as all other requirements are met; however 10
µF has been shown to work well in a wide variety of
circuits. Additionally, some bulk capacitance may be needed, especially if the TPS54331 circuit is not located
within about 2 inches from the input voltage source. The value for this capacitor is not critical but should be rated
to handle the maximum input voltage including ripple voltage, and should filter the output so that input ripple
voltage is acceptable. For this design two 4.7
µF capacitors are used for the input decoupling capacitor. They are
X7R dielectric rated for 50 V. The equivalent series resistance (ESR) is approximately 2m
Ω, and the current
rating is 3 A. Additionally, a small 0.01
µF capacitor is included for high frequency filtering.
This input ripple voltage can be approximated by Equation 6
Where IOUT(MAX) is the maximum load current, fSW is the switching frequency, CBULK is the bulk capacitor value
and ESRMAX is the maximum series resistance of the bulk capacitor.
The maximum RMS ripple current also needs to be checked. For worst case conditions, this can be
approximated by Equation 7
In this case, the input ripple voltage would be 143 mV and the RMS ripple current would be 1.5 A. It is also
important to note that the actual input voltage ripple will be greatly affected by parasitics associated with the
layout and the output impedance of the voltage source. The actual input voltage ripple for this circuit is shown in
Design Parameters and is larger than the calculated value. This measured value is still below the specified input
limit of 300 mV. The maximum voltage across the input capacitors would be VIN max plus
ΔVIN/2. The chosen
bulk and bypass capacitors are each rated for 50 V and the ripple current capacity is greater than 3 A, both
providing ample margin. It is very important that the maximum ratings for voltage and current are not exceeded
under any circumstance.
Two components need to be selected for the output filter, L1 and C2. Since the TPS54331 is an externally
compensated device, a wide range of filter component types and values can be supported.
To calculate the minimum value of the output inductor, use Equation 8
Copyright © 2008, Texas Instruments Incorporated
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