LTC4413EDD#PBF Linear Technology, LTC4413EDD#PBF Datasheet - Page 10

IC IDEAL DIODE DUAL 10-DFN

LTC4413EDD#PBF

Manufacturer Part Number
LTC4413EDD#PBF
Description
IC IDEAL DIODE DUAL 10-DFN
Manufacturer
Linear Technology
Datasheet

Specifications of LTC4413EDD#PBF

Applications
Handheld/Mobile Devices
Fet Type
P-Channel
Number Of Outputs
2
Internal Switch(s)
Yes
Delay Time - On
11µs
Delay Time - Off
2µs
Voltage - Supply
2.5 V ~ 5.5 V
Current - Supply
25µA
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
10-DFN
Input Voltage
5.5V
No. Of Outputs
2
Power Dissipation Pd
1.5W
Supply Voltage Range
2.5V To 5.5V
No. Of Pins
10
Operating Temperature Range
-40°C To +85°C
Msl
MSL 1 - Unlimited
Termination Type
SMD
Rohs Compliant
Yes
Filter Terminals
SMD
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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LTC4413
APPLICATIONS INFORMATION
batteries according to the capacity of each battery. The
higher capacity battery provides proportionally higher
current to the load. When a wall adapter input is applied,
the voltage divider formed by R1 and R2 disables the
LTC4413, causing the STAT pin voltage to fall, turning on
MP1. At this point the load is powered by the wall adapter
and both batteries may be removed without interrupting
the load voltage. When the wall adapter is removed, the
output voltage droops until the voltage divider turns on the
LTC4413, at which point the batteries revert to providing
load power. The status signal can also be used to provide
information as to whether the wall adapter (or BATB) is
supplying the load current.
Automatic PowerPath Control
Figure 4 illustrates an application circuit for microcon-
troller monitoring and control of two power sources. The
10
PRIMARY
POWER
POWER
ADAPTER
1-CELL Li-Ion
1-CELL Li-Ion
AUX
WALL
BATB
BATA
1000k
200k
R1
R2
C
10μF
C
10μF
A
B
3,11
C1:C1206C106K8PAC
C2:C1206C475K8PAC
2
4
1
5
Figure 3
Figure 4
ENBA
ENBB
GND
INA
INB
3,11
LTC4413
IDEAL
IDEAL
MICROCONTROLLER
2
4
1
5
ENBA
ENBB
GND
INA
INB
OUTA
OUTB
STAT
C1
10μF
LTC4413
IDEAL
IDEAL
MP1 FDR8508
9
10
6
OUTB
OUTA
STAT
R
470k
4413 F03
STAT
C2
4.7μF
9
10
6
STAT
R
470k
4413 F04
TO
LOAD
STAT
C1
4.7μF
TO
LOAD
microcontroller’s analog inputs (perhaps with the aid of a
resistor voltage divider) monitors each supply input and
the LTC4413 status, and then commands the LTC4413
through the two ENBA/ENBB control inputs.
Automatic Switchover from a Battery to an Auxiliary
Supply or a Wall Adapter
Figure 5 illustrates an application for implementing the
function of automatic switchover from a battery to either
an auxiliary supply or to a wall adapter using the LTC4413.
The LTC4413 automatically senses the presence of a wall
adapter as the ENBB pin voltage is pulled higher than its
rising turn-off threshold of 550mV through resistive divider
(R2 and R3). This disables the AUX input from powering
the load. If the AUX is not present when a wall adapter is
attached (i.e., the BAT is supplying load current), as the
wall adapter voltage rises, the body diode in MP1 forward
biases, pulling the output voltage above the BAT voltage.
The LTC4413 senses a reverse voltage of as little as 10mV
and turns off the ideal diode between INA and OUTA. This
causes the STAT voltage to fall, turning on MP1. The load
then draws current from the wall adapter, and the battery is
disconnected from the load. If the AUX is not present when
the wall adapter is removed, the load voltage droops until
the BAT voltage exceeds the load voltage. The LTC4413
senses that the BAT voltage is greater, causing the STAT
voltage to rise, disabling MP1; the BAT then provides
power to the load.
ADAPTER
ADAPTER
WALL
AUX
R1
C1
10μF
BAT
R2
1000k
R3
100k
R4
1000k
R5
500k
3,11
Figure 5
4
1
2
5
C1:C0805C106K8PAC
C2:C1206C475K8PAC
ENBB
INA
GND
INB
ENBA
LTC4413
IDEAL
IDEAL
OUTB
OUTA
STAT
MP1 FDR8508
9
10
6
R
470k
4413 F05
STAT
C2
4.7μF
TO
LOAD
4413fc

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