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LMR14206XMKX Datasheet(PDF) 7 Page - Texas Instruments

No. de pieza LMR14206XMKX
Descripción Electrónicos  LMR14206 SIMPLE SWITCHER 42Vin, 0.6A Step-Down Voltage Regulator in SOT-23
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LMR14206XMKX Datasheet(HTML) 7 Page - Texas Instruments

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L =
(VIN - VOUT)VOUT
VIN x IRIPPLE x fSW
LMR14206
www.ti.com
SNVS733D – OCTOBER 2011 – REVISED APRIL 2013
APPLICATION INFORMATION
PROTECTION
The LMR14206 has dedicated protection circuitry running during normal operation to protect the IC. The thermal
shutdown circuitry turns off the power device when the die temperature reaches excessive levels. The UVLO
comparator protects the power device during supply power startup and shutdown to prevent operation at
voltages less than the minimum input voltage. A gate drive (CB) under-voltage lockout is included to ensured that
there is enough gate drive voltage to drive the MOSFET before the device tries to start switching. The
LMR14206 also features a shutdown mode decreasing the supply current to approximately 16 µA.
CONTINUOUS CONDUCTION MODE
The LMR14206 contains a current-mode, PWM buck regulator. A buck regulator steps the input voltage down to
a lower output voltage. In continuous conduction mode (when the inductor current never reaches zero at steady
state), the buck regulator operates in two cycles. The power switch is connected between VIN and SW. In the first
cycle of operation the transistor is closed and the diode is reverse biased. Energy is collected in the inductor and
the load current is supplied by COUT and the rising current through the inductor. During the second cycle the
transistor is open and the diode is forward biased due to the fact that the inductor current cannot instantaneously
change direction. The energy stored in the inductor is transferred to the load and output capacitor. The ratio of
these two cycles determines the output voltage. The output voltage is defined approximately as:
D=VOUT/VIN and D’ = (1-D)
where
D is the duty cycle of the switch.
(1)
D and D' will be required for design calculations.
DESIGN PROCEDURE
This section presents guidelines for selecting external components.
SETTING THE OUTPUT VOLTAGE
The output voltage is set using the feedback pin and a resistor divider connected to the output as shown on the
front page schematic, Figure 1. The feedback pin voltage is 0.765V, so the ratio of the feedback resistors sets
the output voltage according to the following equation:
VOUT=0.765V(1+(R1/R2))
(2)
Typically R2 will be given as 100
Ω-10 kΩ for a starting value. To solve for R1 given R2 and VOUT, use:
R1=R2((VOUT/0.765V)-1).
(3)
INPUT CAPACITOR
A low ESR ceramic capacitor (CIN) is needed between the VIN pin and GND pin. This capacitor prevents large
voltage transients from appearing at the input. Use a 2.2 µF-10 µF value with X5R or X7R dielectric. Depending
on construction, a ceramic capacitor’s value can decrease up to 50% of its nominal value when rated voltage is
applied. Consult with the capacitor manufacturer's data sheet for information on capacitor derating over voltage
and temperature.
INDUCTOR SELECTION
The most critical parameters for the inductor are the inductance, peak current, and the DC resistance. The
inductance is related to the peak-to-peak inductor ripple current, the input and the output voltages.
(4)
Copyright © 2011–2013, Texas Instruments Incorporated
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