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TPSM82480MOP Datasheet(PDF) 11 Page - Texas Instruments

No. de pieza TPSM82480MOP
Descripción Electrónicos  5.5-V Input, 6-A, Step-Down Converter with Integrated Inductor
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Fabricante Electrónico  TI1 [Texas Instruments]
Página de inicio  http://www.ti.com
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TPSM82480MOP Datasheet(HTML) 11 Page - Texas Instruments

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TPSM82480
www.ti.com
SLVSDT1 – JULY 2017
Product Folder Links: TPSM82480
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Copyright © 2017, Texas Instruments Incorporated
Device Functional Modes (continued)
There is no limit towards maximum duty cycle. When the input voltage becomes close to the output voltage, the
device enters automatically 100% duty cycle mode and both high-side FETs switch on as long as VOUT remains
below the regulation setpoint. In this case, the voltage drop across the high-side FETs and the inductors
determines the output voltage level. An estimate for the minimum input voltage to maintain output voltage
regulation is:
space
(3)
space
Where the maximum DCR of the inductors is 27mΩ.
In 100% duty cycle mode, the low-side FETs are switched off. The typical quiescent current in 100% mode is
3.5 mA.
7.4.4 Phase Shifted Operation
Using an inherent benefit of the two-phase conversion, the two phases of TPSM82480 run out of phase. For
every switching cycle, the second phase is not allowed to turn on its high-side FET until the master phase has
reached its peak current value. This limits the input RMS current and corresponding switching noise.
7.4.5 Phase Add/Shed and Current Balancing
When the load current is below the internal threshold, only the master phase operates. The second phase
activates, if the load current exceeds the threshold of typically 1.7 A. The second phase powers off with a
hysteresis of about 0.5 A, when the load current decreases.
7.4.6 Current Limit and Short Circuit Protection
Each phase has a separate integrated peak current limit. The dc values are specified in the Electrical
Characteristics. While its minimum value limits the output current of the phase, the maximum number gives the
current that must be considered to flow in some operating case. At the peak current limit, the device provides its
maximum output current.
However, if the current limit situation remains for 512 consecutive switching cycles, the peak current folds back to
about 1/3 of the regular limit. This limits the output power for over current and short circuit events. The foldback
current limit is released to the normal one only if the load current has decreased as far as needed to undercut
the (foldback) peak current limit.


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