LM2773
www.ti.com
SNVS554A –JANUARY 2008–REVISED MAY 2013
LM2773 Low-Ripple 1.8V/1.6V Spread-Spectrum Switched Capacitor Step-Down Regulator
Check for Samples: LM2773
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FEATURES
DESCRIPTION
The LM2773 is a switched capacitor step-down
regulator that produces a selectable 1.8V or 1.6V
output. It is capable of supplying loads up to 300mA.
The LM2773 operates with an input voltage from 2.5V
to 5.5V, accommodating 1-cell Li-Ion batteries and
chargers.
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Low-Noise Spread Spectrum Operation
1.8V/1.6V Selectable Output Voltage
2% Output Voltage Regulation
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> 75% Efficiency in 1.8V Mode
Very Low Output Ripple: 10mV @ 300mA
Output Currents up to 300mA
The LM2773 utilizes a regulated charge pump with
gains of 2/3x and 1x. It has very low ripple and noise
on both the input and output due to its pre-regulated
1.15MHz (typ.) switching frequency and spread
spectrum operation. When output currents are low,
the LM2773 automatically switches to a low-ripple
PFM regulation mode to maintain high efficiency over
the entire load range.
2.5V to 5.5V Input Voltage Range
Shutdown Disconnects Load from VIN
1.15MHz Switching Frequency
No Inductors…Small Solution Size
Short Circuit and Thermal Protection
0.5mm pitch, DSBGA-9 (1.511 × 1.511mm ×
0.6mm)
The LM2773 is available in TI's 0.5mm pitch 9-bump
DSBGA.
APPLICATIONS
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Power Supply for DSP's, Memory, and
Microprocessors
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Mobile Phones and Pagers
Digital Cameras, Portable Music Players, and
Other Portable Electronic Devices
Typical Application Circuit
V
I
: 1.8V or 1.6V
up to 300 mA
V
IN
= 2.5V to
5.5V
OUT
OUT
V
V
OUT
IN
C
IN
C
OUT
4.7 mF
1 mF
GND
LM2773
C2+
C1+
C2
1 mF
C1
1 mF
C2-
C1-
EN
SEL
Capacitors: 1 mF - C1005 (0402), X5R, 6.3V
4.7 mF - C1608 (0603), X5R, 6.3V
or equivalent
Figure 1.
Figure 2. LM2773 Efficiency vs.
Low-Dropout Linear Regulator (LDO) Efficiency
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PRODUCTION DATA information is current as of publication date.
Products conform to specifications per the terms of the Texas
Instruments standard warranty. Production processing does not
necessarily include testing of all parameters.
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