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PDF LM20125 Data sheet ( Hoja de datos )

Número de pieza LM20125
Descripción Synchronous Buck Regulator
Fabricantes National Semiconductor 
Logotipo National Semiconductor Logotipo



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No Preview Available ! LM20125 Hoja de datos, Descripción, Manual

www.DataSheet4U.com
January 16, 2008
LM20125
5A, 500kHz PowerWise® Synchronous Buck Regulator
General Description
The LM20125 is a full featured 500 kHz synchronous buck
regulator capable of delivering up to 5A of continuous output
current. The current mode control loop can be compensated
to be stable with virtually any type of output capacitor. For
most cases, compensating the device only requires two ex-
ternal components, providing maximum flexibility and ease of
use. The device is optimized to work over the input voltage
range of 2.95V to 5.5V making it suited for a wide variety of
low voltage systems.
The device features internal over voltage protection (OVP)
and over current protection (OCP) circuits for increased sys-
tem reliability. A precision enable pin and integrated UVLO
allows the turn-on of the device to be tightly controlled and
sequenced. Start-up inrush currents are limited by both an
internally fixed and externally adjustable Soft-Start circuit.
Fault detection and supply sequencing is possible with the
integrated power good circuit.
The LM20125 is designed to work well in multi-rail power
supply architectures. The output voltage of the device can be
configured to track a higher voltage rail using the SS/TRK pin.
If the output of the LM20125 is pre-biased at startup it will not
sink current to pull the output low until the internal soft-start
ramp exceeds the voltage at the feedback pin.
The LM20125 is offered in a 16-pin eTSSOP package with an
exposed pad that can be soldered to the PCB, eliminating the
need for bulky heatsinks.
Features
Input voltage range 2.95V to 5.5V
Accurate current limit minimizes inductor size
97% efficiency with 500 kHz switching frequency
32 mintegrated FET switches
Starts up into pre-biased loads
Output voltage tracking
Peak current mode control
Adjustable output voltage down to 0.8V
Adjustable Soft-Start with external capacitor
Precision enable pin with hysteresis
Integrated OVP, UVLO, power good and thermal
shutdown
eTSSOP-16 exposed pad package
Applications
Simple to design, high efficiency point of load regulation
from a 5V or 3.3V bus
High Performance DSPs, FPGAs, ASICs and
microprocessors
Broadband, Networking and Optical Communications
Infrastructure
Typical Application Circuit
PowerWise® is a registered trademark of National Semiconductor Corporation.
© 2008 National Semiconductor Corporation 300302
30030201
www.national.com

1 page




LM20125 pdf
www.DataSheetE4rUr.ocromAmplifier Gain vs. Frequency
Line Regulation
Load Regulation
30030236
30030237
Feedback Voltage vs. Temperature
30030238
Switching Frequency vs. Temperature
30030251
Quiescent Current vs. VIN (Not Switching)
30030239
5
30030240
www.national.com

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LM20125 arduino
ter the junction cools to approximately 150°C, the part starts
wwuwp .uDsaintagSthheeent4oUrm.caolmstart up routine. This feature is provided
to prevent catastrophic failures from accidental device over-
heating.
LIGHT LOAD OPERATION
The LM20125 offers increased efficiency when operating at
light loads. Whenever the load current is reduced to a point
where the peak to peak inductor ripple current is greater than
two times the load current, the part will enter the diode emu-
lation mode preventing significant negative inductor current.
The point at which this occurs is the critical conduction bound-
ary and can be calculated by the following equation:
Several diagrams are shown in Figure 1 illustrating continu-
ous conduction mode (CCM), discontinuous conduction
mode, and the boundary condition.
It can be seen that in diode emulation mode, whenever the
inductor current reaches zero the SW node will become high
impedance. Ringing will occur on this pin as a result of the LC
tank circuit formed by the inductor and the parasitic capaci-
tance at the node. If this ringing is of concern an additional
RC snubber circuit can be added from the switch node to
ground.
At very light loads, usually below 100 mA, several pulses may
be skipped in between switching cycles, effectively reducing
the switching frequency and further improving light-load effi-
ciency.
FIGURE 1. Modes of Operation for LM20125
30030205
11
www.national.com

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