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TPS5410-EP Fiches technique(PDF) 9 Page - Texas Instruments

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No de pièce TPS5410-EP
Description  1-A, Wide Input Range, Step-Down Converter
Download  30 Pages
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Fabricant  TI1 [Texas Instruments]
Site Internet  http://www.ti.com
Logo TI1 - Texas Instruments

TPS5410-EP Fiches technique(HTML) 9 Page - Texas Instruments

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FeedForwardGain=
VIN
Ramppk-pk
TPS5410
www.ti.com
SLVS675D – AUGUST 2006 – REVISED DECEMBER 2014
7.3 Feature Description
7.3.1 Oscillator Frequency
The internal free running oscillator sets the PWM switching frequency at 500 kHz. The 500-kHz switching
frequency allows less output inductance for the same output ripple requirement resulting in a smaller output
inductor.
7.3.2 Voltage Reference
The voltage reference system produces a precision reference signal by scaling the output of a temperature
stable bandgap circuit. The bandgap and scaling circuits are trimmed during production testing to an output of
1.221 V at room temperature.
7.3.3 Enable (ENA) and Internal Slow-Start
The ENA pin provides electrical on/off control of the regulator. Once the ENA pin voltage exceeds the threshold
voltage, the regulator starts operation and the internal slow-start begins to ramp. If the ENA pin voltage is pulled
below the threshold voltage, the regulator stops switching and the internal slow-start resets. Connecting the pin
to ground or to any voltage less than 0.5 V disables the regulator and activate the shutdown mode. The
quiescent current of the TPS5410 in shutdown mode is typically 18
μA.
The ENA pin has an internal pullup current source, allowing the user to float the ENA pin. If an application
requires controlling the ENA pin, use open drain or open collector output logic to interface with the pin. To limit
the start-up inrush current, an internal slow-start circuit is used to ramp up the reference voltage from 0 V to its
final value linearly. The internal slow-start time is 8 ms typically.
7.3.4 Undervoltage Lockout (UVLO)
The TPS5410 incorporates an undervoltage lockout circuit to keep the device disabled when VIN (the input
voltage) is below the UVLO start voltage threshold. During power up, internal circuits are held inactive and the
internal slow-start is grounded until VIN exceeds the UVLO start threshold voltage. Once the UVLO start
threshold voltage is reached, the internal slow-start is released and device start-up begins. The device operates
until VIN falls below the UVLO stop threshold voltage. The typical hysteresis in the UVLO comparator is 330 mV.
7.3.5 Boost Capacitor (BOOT)
Connect a 0.01-
μF low-ESR ceramic capacitor between the BOOT pin and PH pin. This capacitor provides the
gate drive voltage for the high-side MOSFET. X7R or X5R grade dielectrics are recommended due to their stable
values over temperature.
7.3.6 Output Feedback (VSENSE)
The output voltage of the regulator is set by feeding back the center point voltage of an external resistor divider
network to the VSENSE pin. In steady-state operation, the VSENSE pin voltage should be equal to the voltage
reference 1.221 V.
7.3.7 Internal Compensation
The TPS5410 implements internal compensation to simplify the regulator design. Since the TPS5410 uses
voltage mode control, a type 3 compensation network has been designed on chip to provide a high crossover
frequency and a high phase margin for good stability. See the Internal Compensation Network in the Applications
section for more details.
7.3.8 Voltage Feed-Forward
The internal voltage feed-forward provides a constant DC power stage gain despite any variations with the input
voltage. This greatly simplifies the stability analysis and improves the transient response. Voltage feed-forward
varies the peak ramp voltage inversely with the input voltage so that the modulator and power stage gain are
constant at the feed-forward gain, for example:
(1)
The typical feed-forward gain of TPS5410 is 25.
Copyright © 2006–2014, Texas Instruments Incorporated
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