AAT4625IAS-T1 Advanced Analog Technology, Inc., AAT4625IAS-T1 Datasheet - Page 10

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AAT4625IAS-T1

Manufacturer Part Number
AAT4625IAS-T1
Description
USB Single-Channel Power Switch
Manufacturer
Advanced Analog Technology, Inc.
Datasheet

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Reverse Voltage
The AAT4625 is designed to control current flowing
from IN to OUT. If a voltage is applied to OUT
which is greater than that on IN, a large reverse
current may flow, potentially damaging the device.
Under-Voltage Lockout
The AAT4625 has been designed with an under-volt-
age lockout control circuit. The under-voltage lock-
out prevents the output MOSFET device from turn-
ing on until V
of 2.3V. During operation, the device will automati-
cally shut down if V
and the fault flag will be toggled.
10
PCB Layout Information
In order to obtain maximum performance from the
AAT4625, very careful consideration must be given
to the printed circuit board layout. In most port
power switch and port protection applications, high
IN
Receptacle
exceeds the typical UVLO threshold
Hot-Plug
IN
V
GND
falls below the UVLO threshold
BUS
Cable / Connector
to Hot-Plug Port
Figure 2: AAT4625 Inrush Current Protected Application.
v+
GND
0.1μF
Inrush Current Protected
Application Card
1
2
3
4
EN
FLG
GND
NC
AAT4625
USB Single-Channel Power Switch
Hot-Plug Applications
Application circuit cards with a high inrush current
potential can be limited by use of the AAT4625.
The AAT4625 has both slew rate limited turn-on
characteristics and a current limit controlled output
which make it ideally suited for power port hot-plug
applications. A host power back plane or hot-plug
receptacle may be sensitive to short duration, high
power surges. The AAT4625 will turn on in a linear
ramping fashion and regulate the inrush current
within the specified current limit for the device. The
error flag usually will not be affected during appli-
cation turn-on, since the 10ms flag blanking time is
intended for these types of events. If an application
turn-on current surge exceeds 10ms, an RC delay
filter may be added to the flag output to prevent the
system from receiving an error during the start-up
sequence (see Figure 2).
voltage and current transient events will occur.
Proper PCB layout can help reduce the effects of
transient events. PCB trace resistance will affect
overall circuit transient response; in addition, small
voltage drops will be incurred.
OUT
OUT
NC
IN
8
7
6
5
(120μF)
C
BULK
Application
Circuit
Card
AAT4625
4625.2006.04.1.2

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