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TPS65276VDAPT Datasheet(PDF) 7 Page - Texas Instruments

Part # TPS65276VDAPT
Description  4.5-V TO 18-V INPUT VOLTAGE, 6-A/3.5-A DUAL SYNCHRONOUS STEP-DOWN CONVERTER WITH I2C CONTROLLED VID
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

TPS65276VDAPT Datasheet(HTML) 7 Page - Texas Instruments

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TPS65276V
www.ti.com
SLVSBW0B – FEBRUARY 2013 – REVISED JANUARY 2014
TERMINAL FUNCTIONS
NO.
NO.
NAME
DESCRIPTION
(HTSSOP)
(QFN)
EN1, EN2
1, 2
32, 33
Enable pin. Adjust the input under-voltage lockout with two resistors.
PGND2
3, 4
34, 35, 36
Power ground of Buck 2, place the input capacitor’s ground pin as close
as possible to this pin.
PVIN2
5, 6
1, 2
Power input. Input power supply to the power switches of the power
converter 2.
ADDR
7
3
I2C address configuration pin. Connect this pin to low, high or leave it
open to select different I2C slave address.
MODE
8
4
Operation mode control pin. Connect this pin to ground to choose forced
PWM mode without current sharing; leave the pin open for pulse skipping
mode (PSM) operation at light load condition; connect this pin to V7V to
choose forced PWM mode and current sharing with paralleling two bucks.
V7V
9
5
Internal low-drop linear regulator (LDO) output to power internal driver
and control circuits. Decouple this pin to power ground with a minimum
1-µF ceramic capacitor. Output regulates to typical 6.3 V for optimal
conduction on-resistances of internal power MOSFETs. In PCB design,
the power ground and analog ground should have one-point common
connection at the (-) terminal of V7V bypass capacitor. If VIN is lower
than 6.3 V, V7V will be slightly lower than VIN.
VIN
10
6
Power supply of the internal LDO and controllers
PVIN1
11, 12
7, 8
Power input. Input power supply to the power switches of the power
converter 1.
PGND1
13, 14
9, 10, 11
Power ground of Buck 1, place the input capacitor’s ground pin as close
as possible to this pin.
SDA
15
12
I2C interface data pin
SCL
16
13
I2C interface clock pin
FB1
17
14
Feedback sensing pin for the external feedback resistors in Buck 1.
Before I2C controlled VID selection is enabled, an external resistor divider
connects to this pin to pre-set the output voltage.
VOUT1
18
15
Buck 1 output voltage sensing pin; When I2C controlled VID selection is
enabled, output voltage can be programmed from 0.68 V to 1.95 V with
10-mV steps. In current sharing application, this pin is the output voltage
sensing pin.
BST1
19
16
Add a bootstrap capacitor between BST1 and LX1. The voltage on this
capacitor carries the gate drive voltage for the high-side MOSFET.
LX1
20, 21
17, 18, 19
Switching node of Buck 1
SS1
22, 27
20, 25
Soft-start and voltage tracking in Buck 1. An external capacitor connected
to this pin sets the internal voltage reference rise time. Since the voltage
on this pin overrides the internal reference, it can be used for tracking and
sequencing. In current sharing application, this pin serves as the soft-start
pin.
COMP1
23
21
Error amplifier output and loop compensation pin for Buck 1. Connect
frequency compensation to this pin; In current sharing application, this pin
serves as the compensation pin.
ROSC
24
22
Oscillator frequency programmable pin. Connect an external resistor to
set the switching frequency. When connected to an external clock, the
internal oscillator synchronizes to the external clock.
AGND
25
23
Analog ground of the controllers
COMP2
26
24
Error amplifier output and loop compensation pin for Buck 2. Connect
frequency compensation to this pin. In current sharing application,
connect this pin to ground.
SS2
27
25
Soft-start and voltage tracking in Buck 2. An external capacitor connected
to this pin sets the internal voltage reference rise time. Since the voltage
on this pin overrides the internal reference, it can be used for tracking and
power sequencing. In current sharing application, connect this pin to
ground.
LX2
28, 29
26, 27, 28
Switching nodes
Copyright © 2013–2014, Texas Instruments Incorporated
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