LTC2954ITS8-2#TRMPBF Linear Technology, LTC2954ITS8-2#TRMPBF Datasheet - Page 12

IC PB ON/OFF CONTROLLER TSOT23-8

LTC2954ITS8-2#TRMPBF

Manufacturer Part Number
LTC2954ITS8-2#TRMPBF
Description
IC PB ON/OFF CONTROLLER TSOT23-8
Manufacturer
Linear Technology
Datasheet

Specifications of LTC2954ITS8-2#TRMPBF

Applications
Push Button, On/Off Controller
Voltage - Supply
2.7 V ~ 26.4 V
Current - Supply
6µA
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
TSOT-23-8, TSOT-8
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Input
-
Other names
LTC2954ITS8-2#TRMPBFTR

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Manufacturer
Quantity
Price
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Part Number:
LTC2954ITS8-2#TRMPBFLTC2954ITS8-2
Manufacturer:
LT
Quantity:
10 000
Company:
Part Number:
LTC2954ITS8-2#TRMPBFLTC2954ITS8-2#TRPBF
0
LTC2954
APPLICATIONS INFORMATION
LTC2954-1, LTC2954-2 Versions
The LTC2954-1 (high true EN) and LTC2954-2 (low true
EN) differ only by the polarity of the high voltage (33V ABS
MAX), enable pin. The LTC2954-1 EN pin is a low leakage
high true open drain output designed to drive the shutdown
pin of DC/DC converters. The LTC2954-2 is a low leakage,
low true open drain enable output designed to drive the
gate of an external PFET. The LTC2954-2 provides a user
manual power path control.
High Voltage Pins
The V
26.4V. PB can, additionally, operate below ground (–6V)
TYPICAL APPLICATIONS
Voltage Monitoring with KILL Input
The KILL pin can be used as a voltage monitor. Figure 5
shows an application where the KILL pin has a dual func-
tion. It is driven by a low leakage open drain output of the
μP . It is also connected to a resistive divider that monitors
battery voltage (V
low the set value, the voltage at the KILL pin falls below
0.6V and the EN pin is quickly pulled low. Note that the
resistor values should be as large as possible, but small
12
0.1μF
C4
V
IN
IN
Figure 5. Input Voltage Monitoring with KILL Input
= 9V
, PB and EN/EN pins can operate at voltages up to
GND ONT
V
PB
IN
806k
100k
1%
1%
R3
R2
LTC2954-1
IN
C
0.033μF
). When the battery voltage falls be-
ONT
*
PDT
KILL
INT
EN
C
1μF
PDT
*
** SHDN INTERNALLY PULLED
V
SHDN**
* OPTIONAL
IN
UP BY THE LT1767-3.3
LT1767-3.3
R1
10k
V
OUT
INT
KILL
(OPEN DRAIN)
μP
2954 F05
3.3V
without latching up the device. PB has an ESD HBM rating
of ±10kV. If the pushbutton switch connected to PB exhib-
its high leakage current, then an external pull-up resistor
to V
switch is physically located far from the LTC2954 PB pin,
parasitic capacitances may couple onto the high imped-
ance PB input. Additionally, parasitic series inductance
may cause unpredictable ringing at the PB pin. Placing
a 5.1k resistor from the PB pin to the pushbutton switch
would mitigate parasitic inductance problems. Placing a
0.1μF capacitor on the PB pin would lessen the impact of
parasitic capacitive coupling.
enough to keep leakage currents from tripping the 0.6V
KILL comparator.
The DC/DC converter shown has an internal pull-up cur-
rent on its SHDN pin. A pull-up resistor on EN is thus not
needed.
Operation Without μP
Figure 6 shows how to connect the KILL pin when there
is no circuitry available to drive it. The minimum pulse
0.1μF
C4
IN
V
IN
is recommended. Furthermore, if the pushbutton
= 9V
GND ONT
V
PB
IN
LTC2954-1
Figure 6. No μP Application
C
0.033μF
ONT
*
PDT
KILL
INT
EN
C
1μF
PDT
*
** SHDN INTERNALLY
* OPTIONAL
PULLED UP BY
THE LT1767-3.3
V
SHDN**
IN
LT1767-3.3
V
OUT
+
R1
100k
2954 F06
C3*
0.01μF
2954fb
3.3V

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