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PDF APS1056 Data sheet ( Hoja de datos )

Número de pieza APS1056
Descripción Fast Transient 600mA Step-Down Converter
Fabricantes Advanced Analogic Technologies 
Logotipo Advanced Analogic Technologies Logotipo



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APS1056
Fast Transient 600mA Step-Down Converter
General Description
The APS1056 SwitchReg is a member of
AnalogicTech's Total Power Management IC™
(TPMIC™) product family. It is a 1.4MHz step-
down converter with an input voltage range of 2.7V
to 5.5V and output voltage as low as 0.6V. It is opti-
mized to react quickly to a load variation.
The APS1056 is available in fixed voltage versions
with internal feedback and a programmable ver-
sion with external feedback resistors. It can deliver
600mA of load current while maintaining a low
27µA no load quiescent current. The 1.4MHz
switching frequency minimizes the size of external
components while keeping switching losses low.
The APS1056 is designed to maintain high effi-
ciency throughout the operating range, which is
critical for portable applications.
The APS1056 is available in a Pb-free SOT23-5
package and is rated over the -40°C to +85°C tem-
perature range.
Features
SwitchReg
• VIN Range: 2.7V to 5.5V
• VOUT Fixed or Adjustable from 0.6V to VIN
• 27µA No Load Quiescent Current
• Up to 98% Efficiency
• 600mA Max Output Current
• 1.4MHz Switching Frequency
• 120µs Soft Start
• Fast Load Transient
• Over-Temperature Protection
• Current Limit Protection
• 100% Duty Cycle Low-Dropout Operation
• <1µA Shutdown Current
• SOT23-5 Package
• Temperature Range: -40°C to +85°C
Applications
• Cellular Phones
• Digital Cameras
• Handheld Instruments
• Microprocessor / DSP Core / IO Power
• PDAs and Handheld Computers
• USB Devices
www.DataShTeeyt4pU.iccomal Application (Fixed Output Voltage)
VIN
C2
4.7µF
U1
APS1056
VIN LX
EN
GND
OUT
L1
4.7µH
VO
C1
4.7µF
APS1056.2007.04.0.9 (PRELIMINARY INFORMATION)
1

1 page




APS1056 pdf
APS1056
Fast Transient 600mA Step-Down Converter
Typical Characteristics
Efficiency vs. Load
(VOUT = 1.8V; L = 4.7µH)
100
VIN = 2.7V
90
80 VIN = 3.6V VIN = 4.2V
70
60
50
0.1
1 10 100
Output Current (mA)
1000
1.0
0.5
0.0
-0.5
-1.0
0.1
DC Regulation
(VOUT = 1.8V)
VIN = 4.2V
VIN = 3.6V
VIN = 2.7V
1 10 100 1000
Output Current (mA)
Efficiency vs. Load
(VOUT = 2.5V; L = 6.8µH)
100
VIN = 2.7V
90
80 VIN = 5.0V
VIN = 4.2V
70 VIN = 3.6V
60
50
0.1
www.DataSheet4U.com
1 10 100
Output Current (mA)
1000
1.0
0.5
0.0
-0.5
-1.0
0.1
DC Regulation
(VOUT = 2.5V)
VIN = 4.2V
VIN = 5.0V
VIN = 3.6V
VIN = 3.0V
1 10 100
Output Current (mA)
1000
Efficiency vs. Load
(VOUT = 3.3V; L = 6.8µH)
100
VIN = 3.6V
90
VIN = 4.2V
80
VIN = 5.0V
70
60
1.0
0.5
0.0
-0.5
50
0.1
-1.0
1 10 100 1000
0.1
Output Current (mA)
DC Regulation
(VOUT = 3.3V; L = 6.8µH)
VIN = 5.0V
VIN = 4.2V
VIN = 3.6V
1 10 100
Output Current (mA)
1000
APS1056.2007.04.0.9 (PRELIMINARY INFORMATION)
5

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APS1056 arduino
APS1056
Fast Transient 600mA Step-Down Converter
Applications Information
Inductor Selection
The step-down converter uses peak current mode
control with slope compensation to maintain stability
for duty cycles greater than 50%. The output induc-
tor value must be selected so the inductor current
down slope meets the internal slope compensation
requirements. The internal slope compensation for
the adjustable and low-voltage fixed versions of the
APS1056 is 0.24A/µsec. This equates to a slope
compensation that is 75% of the inductor current
down slope for a 1.5V output and 4.7µH inductor.
m
=
0.75 VO
L
=
0.75 1.5V
4.7µH
=
0.24
A
µsec
This is the internal slope compensation for the
adjustable (0.6V) version or low-voltage fixed ver-
sions. When externally programming the 0.6V ver-
sion to 2.5V, the calculated inductance is 7.5µH.
L=
0.75 VO
m
=
0.75 VO
A
3
µsec
A
VO
0.24A µsec
µsec
=3 A
2.5V = 7.5µH
www.DataShIneetth4Uis.ccoamse, a standard 6.8µH value is selected.
For high-voltage fixed versions (2.5V), m = 0.48A/
µsec. Table 1 displays inductor values for the
APS1056 fixed and adjustable options.
Manufacturer's specifications list both the inductor
DC current rating, which is a thermal limitation, and
the peak current rating, which is determined by the
saturation characteristics. The inductor should not
show any appreciable saturation under normal load
conditions. Some inductors may meet the peak and
average current ratings yet result in excessive loss-
es due to a high DCR. Always consider the losses
associated with the DCR and its effect on the total
converter efficiency when selecting an inductor.
The 4.7µH CDRH3D16 series inductor selected
from Sumida has a 105mDCR and a 900mA DC
current rating. At full load, the inductor DC loss is
17mW which gives a 2.8% loss in efficiency for a
600mA, 1.5V output.
Input Capacitor
Select a 4.7µF to 10µF X7R or X5R ceramic capac-
itor for the input. To estimate the required input
capacitor size, determine the acceptable input rip-
ple level (VPP) and solve for C. The calculated
value varies with input voltage and is a maximum
when VIN is double the output voltage.
VO
VIN
·
⎛⎝1 -
VO
VIN
CIN =
VPP
IO
- ESR⎞⎠ · FS
VO
VIN
·
⎛⎝1 -
VO
VIN
=
1
4
for
VIN
=
2
·
VO
1
CIN(MIN) = VPP
IO
- ESR⎞⎠ · 4 · FS
Always examine the ceramic capacitor DC voltage
coefficient characteristics when selecting the prop-
er value. For example, the capacitance of a 10µF,
6.3V, X5R ceramic capacitor with 5.0V DC applied
is actually about 6µF.
Configuration
0.6V Adjustable With
External Feedback
Fixed Output
Output Voltage
1V, 1.2V
1.5V, 1.8V
2.5V, 3.3V
0.6V to 3.3V
Table 1: Inductor Values.
Inductor
2.2µH
4.7µH
6.8µH
4.7µH
APS1056.2007.04.0.9 (PRELIMINARY INFORMATION)
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