AAT1147 AAT, AAT1147 Datasheet - Page 10

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AAT1147

Manufacturer Part Number
AAT1147
Description
Step-Down Converter
Manufacturer
AAT
Datasheet
Applications Information
Inductor Selection
The step-down converter uses peak current mode
control with slope compensation to maintain stability
for duty cycles greater than 50%. The output induc-
tor value must be selected so the inductor current
down slope meets the internal slope compensation
requirements. The internal slope compensation for
the AAT1147 is 0.24A/µsec. This equates to a slope
compensation that is 75% of the inductor current
down slope for a 1.5V output and 4.7µH inductor.
This is the internal slope compensation. When
externally programming the 0.6V version to 2.5V,
the calculated inductance is 7.5µH.
In this case, a standard 6.8µH value is selected.
Table 1 displays inductor values for the AAT1147.
Manufacturer's specifications list both the inductor
DC current rating, which is a thermal limitation, and
the peak current rating, which is determined by the
saturation characteristics. The inductor should not
show any appreciable saturation under normal load
conditions. Some inductors may meet the peak and
10
L =
0.6V Adjustable With
m =
External Feedback
= 3
Configuration
0.75 ⋅ V
0.75 ⋅ V
μsec
A
m
L
⋅ 2.5V = 7.5μH
O
O
=
=
0.24A
0.75 ⋅ 1.5V
0.75 ⋅ V
4.7μH
μsec
A
O
= 0.24
3
μsec
A
μsec
Table 1: Inductor Values.
Output Voltage
⋅ V
A
O
High Efficiency, Low Noise, Fast Transient
1.5V, 1.8V
2.5V, 3.3V
1V, 1.2V
average current ratings yet result in excessive loss-
es due to a high DCR. Always consider the losses
associated with the DCR and its effect on the total
converter efficiency when selecting an inductor.
The 4.7µH CDRH3D16 series inductor selected
from Sumida has a 105mΩ DCR and a 900mA DC
current rating. At full load, the inductor DC loss is
17mW which gives a 2.8% loss in efficiency for a
400mA, 1.5V output.
Input Capacitor
Select a 4.7µF to 10µF X7R or X5R ceramic capac-
itor for the input. To estimate the required input
capacitor size, determine the acceptable input rip-
ple level (V
value varies with input voltage and is a maximum
when V
Always examine the ceramic capacitor DC voltage
coefficient characteristics when selecting the prop-
er value. For example, the capacitance of a 10µF,
6.3V, X5R ceramic capacitor with 5.0V DC applied
is actually about 6µF.
400mA Step-Down Converter
IN
C
V
V
is double the output voltage.
IN(MIN)
C
IN
O
IN
PP
· 1 -
=
) and solve for C. The calculated
=
V
V
V
I
V
IN
V
O
V
O
PP
I
O
IN
PP
O
· 1 -
- ESR · F
- ESR · 4 · F
=
Inductor
1
4
1
V
V
2.2µH
4.7µH
6.8µH
for V
IN
O
S
IN
= 2 · V
S
1147.2006.05.1.0
O

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