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LM27341 Datasheet(PDF) 15 Page - Texas Instruments

Part # LM27341
Description  LM27341/LM27342/LM27341-Q1/LM27342-Q1 2 MHz 1.5A/2A Wide Input Range Step-Down DC-DC Regulator with Frequency Synchronization
PDF  44 Pages
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

LM27341 Datasheet(HTML) 15 Page - Texas Instruments

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L =
VOUT + VD1
IOUT x r x fSW
x (1-DMIN)
D =
VOUT + VD1
VIN + VD1 - VDS
D =
VOUT
VIN
LM27341, LM27342, LM27341-Q1, LM27342-Q1
www.ti.com
SNVS497E – NOVEMBER 2008 – REVISED APRIL 2013
Figure 36. Recommended Ripple Ratio Vs. Duty Cycle
The Duty Cycle (D) can be approximated quickly using the ratio of output voltage (VOUT) to input voltage (VIN):
(10)
The application's lowest input voltage should be used to calculate the ripple ratio. The catch diode forward
voltage drop (VD1) and the voltage drop across the internal NFET (VDS) must be included to calculate a more
accurate duty cycle. Calculate D by using the following formula:
(11)
VDS can be approximated by:
VDS = IOUT x RDS(ON)
(12)
The diode forward drop (VD1) can range from 0.3V to 0.5V depending on the quality of the diode. The lower VD1
is, the higher the operating efficiency of the converter.
Now that the ripple current or ripple ratio is determined, the required inductance is calculated by:
where
DMIN is the duty cycle calculated with the maximum input voltage
fsw is the switching frequency
IOUT is the maximum output current of 2A
(13)
Using IOUT = 2A will minimize the inductor's physical size.
INDUCTOR CALCULATION EXAMPLE
Operating conditions for the LM27342 are:
VIN = 7 - 16V
VOUT = 3.3V
IOUT = 2A
fSW = 2 MHz
VD1 = 0.5V
Copyright © 2008–2013, Texas Instruments Incorporated
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Product Folder Links: LM27341 LM27342 LM27341-Q1 LM27342-Q1



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