aoz1022di-01 Alpha & Omega Semiconductor, aoz1022di-01 Datasheet - Page 8

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aoz1022di-01

Manufacturer Part Number
aoz1022di-01
Description
Ezbucktm 3a Synchronous Buck Regulator
Manufacturer
Alpha & Omega Semiconductor
Datasheet

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Some standard value of R
voltage values are listed in Table 1.
The combination of R
avoid drawing excessive current from the output, which
will cause power loss.
Since the switch duty cycle can be as high as 100%, the
maximum output voltage can be set as high as the input
voltage minus the voltage drop on upper PMOS and
inductor.
Protection Features
The AOZ1022 has multiple protection features to prevent
system circuit damage under abnormal conditions.
Over Current Protection (OCP)
The sensed inductor current signal is also used for
over current protection. Since the AOZ1022 employs
peak current mode control, the COMP pin voltage is
proportional to the peak inductor current. The COMP pin
voltage is limited to be between 0.4V and 2.5V internally.
The peak inductor current is automatically limited cycle
by cycle.
When the output is shorted to ground under fault
conditions, the inductor current decays very slow during
a switching cycle because of V
strophic failure, a secondary current limit is designed
inside the AOZ1022. The measured inductor current is
compared against a preset voltage which represents the
current limit, between 3.5A and 5.0A. When the output
current is more than current limit, the high side switch will
be turned off. The converter will initiate a soft start once
the over-current condition is resolved.
Power-On Reset (POR)
A power-on reset circuit monitors the input voltage.
When the input voltage exceeds 4.1V, the converter
starts operation. When input voltage falls below 3.7V,
the converter shuts down.
Rev.3.0 November 2011
V
O
0.8
1.2
1.5
1.8
2.5
3.3
5.0
(V)
1
and R
R
1
1
4.99
12.7
21.5
31.1
52.3
1.0
10
, R
(k
2
2
should be large enough to
O
)
and most used output
= 0V. To prevent cata-
R
2
open
11.5
10.2
10
10
10
10
(k
)
www.aosmd.com
Thermal Protection
An internal temperature sensor monitors the junction
temperature. It shuts down the internal control circuit and
high side PMOS if the junction temperature exceeds
150°C. The regulator will restart automatically under the
control of soft-start circuit when the junction temperature
decreases to 100°C.
Application Information
The basic AOZ1022 application circuit is show in
Figure 1. Component selection is explained below.
Input Capacitor
The input capacitor must be connected to the V
PGND pin of AOZ1022 to maintain steady input voltage
and filter out the pulsing input current. The voltage rating
of input capacitor must be greater than maximum input
voltage plus ripple voltage.
The input ripple voltage can be approximated by equa-
tion below:
Since the input current is discontinuous in a buck
converter, the current stress on the input capacitor is
another concern when selecting the capacitor. For a
buck circuit, the RMS value of input capacitor current
can be calculated by:
if we let m equal the conversion ratio:
The relation between the input capacitor RMS current
and voltage conversion ratio is calculated and shown in
Figure 2 on the next page. It can be seen that when V
half of V
worst current stress on C
For reliable operation and best performance, the input
capacitors must have current rating higher than I
at worst operating conditions. Ceramic capacitors are
preferred for input capacitors because of their low ESR
and high current rating. Depending on the application
circuits, other low ESR tantalum capacitor may also be
used. When selecting ceramic capacitors, X5R or X7R
type dielectric ceramic capacitors should be used for
their better temperature and voltage characteristics.
I
V
-------- -
V
CIN_RMS
V
IN
O
IN
=
=
IN
m
, C
---------------- -
f
=
IN
I
O
C
I
is under the worst current stress. The
O
IN
-------- - 1
V
1
V
IN
O
IN
-------- -
V
V
is 0.5 x I
IN
O
-------- -
V
V
IN
O
-------- -
V
V
IN
AOZ1022DI-01
O
O
.
Page 8 of 15
IN
CIN_RMS
pin and
O
is

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