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TPS65258 Datasheet(PDF) 1 Page - Texas Instruments

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No. de pieza TPS65258
Descripción Electrónicos  4.5-V TO 16-V INPUT, HIGH CURRENT, SYNCHRONOUS STEP DOWN THREE DC-DC CONVERTERS WITH INTEGRATED FET AND 2 USB SWITCHES
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Fabricante Electrónico  TI1 [Texas Instruments]
Página de inicio  http://www.ti.com
Logo TI1 - Texas Instruments

TPS65258 Datasheet(HTML) 1 Page - Texas Instruments

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TPS65258
www.ti.com
SLVSAB31
– SEPTEMBER 2011
4.5-V TO 16-V INPUT, HIGH CURRENT, SYNCHRONOUS STEP DOWN THREE DC-DC
CONVERTERS WITH INTEGRATED FET AND 2 USB SWITCHES
Check for Samples: TPS65258
1
FEATURES
by External Resistor
Current-Mode Control With Simple
Wide Input Supply Voltage Range:
Compensation Circuit
4.5 V - 16 V
Automatic Low Pulse Skipping (PSM) Power
0.8-V, 1% Accuracy Reference
Mode, Allowing for an Output Ripple Better
Continuous Loading:
than 2%
3 A (Buck1), 2 A (Buck2 and 3)
Forced PWM Mode
Maximum Current:
Support Pre-Biased Outputs
3.5 A (Buck 1), 2.5 A (Buck2 and 3)
Power Good Supervisor and Reset Generator
Synchronous Operation, 300-kHz
– 2.2-MHz
Switching Frequency Set By External Resistor
1-A, 2 USB Power Switches With Overcurrent
and Thermal Protection
External Enable Pins With Built-In Current
Source for Easy Sequencing
Small, Thermally Efficient 40-Pin 6-mm x 6-mm
RHA (QFN) package
External Soft Start Pins
-40
°C to 125°C Junction Temperature Range
Adjustable Cycle-by-Cycle Current Limit Set
DESCRIPTION/ORDERING INFORMATION
TPS65258 is a power management IC with three step-down buck converters. Both high-side and low-side
MOSFETs are integrated to provide fully synchronous conversion with higher efficiency. The converters are
designed to simplify its application while giving the designer the option to optimize their usage according to the
target application.
The converters can operate in 5-, 9-, 12- or 15-V systems. The output voltage can be set externally using a
resistor divider to any value between 0.8 V and the input supply minus the resistive drops on the converter path.
Each converter features enable pin that allows a delayed start-up for sequencing purposes, soft start pin that
allows adjustable soft-start time by choosing the soft-start capacitor, and a current limit (RLIM) pin that enables
designer to adjust current limit by selecting an external resistor and optimize the choice of inductor. All converters
operate in
‘hiccup mode’: Once an over-current lasting more than 10 ms is sensed in any of the converters, they
will shut down for 10 ms and then the start-up sequencing will be tried again. If the overload has been removed,
the converter will ramp up and operate normally. If this is not the case the converter will see another over-current
event and shuts down again repeating the cycle (hiccup) until the failure is cleared. If an overload condition lasts
for less than 10 ms, only the relevant converter affected will shut-down and re-start and no global hiccup mode
will occur.
The switching frequency of the converters is set by an external resistor connected to ROSC pin. The switching
regulators are designed to operate from 300 kHz to 2.2 MHz. The converters operate with 180
° phase between
then to minimize the input filter requirements. All converters have peak current mode control which simplifies
external frequency compensation.
The device has a built-in slope compensation ramp to prevent sub harmonic oscillations in peak current mode
control. A traditional type II compensation network can stabilize the system and achieve fast transient response.
Moreover, an optional capacitor in parallel with the upper resistor of the feedback divider provides one more zero
and makes the crossover frequency over 100 kHz.
All converters feature an automatic low power pulse PFM skipping mode which improves efficiency during light
loads and standby operation, while guaranteeing a very low output ripple, allowing for a value of less than 2% at
low output voltages.
1
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas
Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
PRODUCTION DATA information is current as of publication date.
Copyright
© 2011, Texas Instruments Incorporated
Products conform to specifications per the terms of the Texas
Instruments standard warranty. Production processing does not
necessarily include testing of all parameters.


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