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TPS53353 Datenblatt(PDF) 25 Page - Texas Instruments

Teilenummer TPS53353
Bauteilbeschribung  TPS53353 High-Efficiency 20-A Synchronous Buck Converter With Eco-mode?
PDF  37 Pages
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Hersteller  TI [Texas Instruments]
Direct Link  http://www.ti.com
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TPS53353 Datenblatt(HTML) 25 Page - Texas Instruments

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-
=
´
OUT
VFB
VFB
V
V
R1
R2
V
+
=
+
INJ _ SW
INJ _ OUT
VFB
V
V
V
0.6
2
(
)
(
)
=
´
+
´
´
IND ripple
INJ _ OUT
IND ripple
OUT
SW
I
V
ESR I
8 C
f
-
=
´
´
IN
OUT
INJ _ SW
SW
V
V
D
V
R7 C1
f
´
>
´
´
OUT
ON
L
C
t
N
R7
C1
2
TPS53353
www.ti.com
SLUSAK2B – AUGUST 2011 – REVISED FEBRUARY 2015
where
N is the coefficient to account for L and COUT variation.
(16)
N is also used to provide enough margin for stability. It is recommended N = 2 for VOUT ≤ 1.8 V and N = 4 for
VOUT ≥ 3.3 V or when L ≤ 250 nH. The higher VOUT needs a higher N value because the effective output
capacitance is reduced significantly with higher DC bias. For example, a 6.3-V, 22-µF ceramic capacitor may
have only 8 µF of effective capacitance when biased at 5 V.
Because the VFB pin voltage is regulated at the valley, the increased ripple on the VFB pin causes the increase
of the VFB DC value. The AC ripple coupled to the VFB pin has two components, one coupled from SW node
and the other coupled from the VOUT pin and they can be calculated using Equation 17 and Equation 18 when
neglecting the output voltage ripple caused by equivalent series inductance (ESL).
(17)
(18)
It is recommended that VINJ_SW to be less than 50 mV. If the calculated VINJ_SW is higher than 50 mV, then other
parameters must be adjusted to reduce it. For example, COUT can be increased to satisfy Equation 16 with a
higher R7 value, thereby reducing VINJ_SW.
The DC voltage at the VFB pin can be calculated by Equation 19:
(19)
And the resistor divider value can be determined by Equation 20:
(20)
8.2.2.3 Application Curves
Figure 42. Enable Turnon
Figure 43. Enable Turnoff
Copyright © 2011–2015, Texas Instruments Incorporated
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