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PDF ADP5034 Data sheet ( Hoja de datos )

Número de pieza ADP5034
Descripción 1200 mA Buck Regulators
Fabricantes Analog Devices 
Logotipo Analog Devices Logotipo



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Data Sheet
Dual 3 MHz, 1200 mA Buck
Regulators with Two 300 mA LDOs
ADP5034
FEATURES
Main input voltage range: 2.3 V to 5.5 V
Two 1200 mA buck regulators and two 300 mA LDOs
24-lead, 4 mm × 4 mm LFCSP package
Regulator accuracy: ±3%
Factory programmable or external adjustable VOUTx
3 MHz buck operation with forced PWM and auto PWM/PSM
modes
BUCK1/BUCK2: output voltage range from 0.8 V to 3.8 V
LDO1/LDO2: output voltage range from 0.8 V to 5.2 V
LDO1/LDO2: low input supply voltage from 1.7 V to 5.5 V
LDO1/LDO2: high PSRR and low output noise
APPLICATIONS
Power for processors, ASICS, FPGAs, and RF chipsets
Portable instrumentation and medical devices
Space constrained devices
GENERAL DESCRIPTION
The ADP5034 combines two high performance buck regulators
and two low dropout (LDO) regulators in a small, 24-lead 4 mm ×
4 mm LFCSP to meet demanding performance and board space
requirements.
The high switching frequency of the buck regulators enables tiny
multilayer external components and minimizes the board space.
When the MODE pin is set to high, the buck regulators operate in
forced PWM mode. When the MODE pin is set to low, the buck
regulators operate in PWM mode when the load is above a pre-
defined threshold. When the load current falls below a predefined
threshold, the regulator operates in power save mode (PSM),
improving the light load efficiency.
The two bucks operate out of phase to reduce the input capaci-
tor requirement. The low quiescent current, low dropout voltage,
and wide input voltage range of the ADP5034 LDOs extend the
battery life of portable devices. The ADP5034 LDOs maintain
power supply rejection greater than 60 dB for frequencies as
high as 10 kHz while operating with a low headroom voltage.
Regulators in the ADP5034 are activated through dedicated
enable pins. The default output voltages can be externally set in
the adjustable version, or factory programmable to a wide range
of preset values in the fixed voltage version.
2.3V TO
5.5V
1.7V TO
5.5V
TYPICAL APPLICATION CIRCUITwww.DataSheet.co.kr
CAVIN
0.1µF
C1
4.7µF
ON
OFF
AVIN
VIN1
EN1
HOUSEKEEPING
BUCK1
EN1 MODE
C2
4.7µF
VIN2
EN2
C3
1µF
ON
OFF
C4
1µF
EN3
VIN3
EN4
VIN4
MODE
BUCK2
EN2
EN3 LDO1
(ANALOG)
EN4
LDO2
(DIGITAL)
ADP5034
VOUT1
SW1
FB1
PGND1
MODE
VOUT2
SW2
FB2
PGND2
VOUT3
FB3
VOUT4
FB4
L1 1µH
R1
R2
VOUT1 AT
1200mA
C5
10µF
PWM
PSM/PWM
L2 1µH
R3
R4
R5
R6
VOUT2 AT
1200mA
C6
10µF
VOUT3 AT
300mA
C7
1µF
R7
R8
VOUT4 AT
300mA
C8
1µF
AGND
Figure 1.
Rev. A
Information furnished by Analog Devices is believed to be accurate and reliable. However, no
responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other
rights of third parties that may result from its use. Specifications subject to change without notice. No
license is granted by implication or otherwise under any patent or patent rights of Analog Devices.
Trademarksandregisteredtrademarksarethepropertyoftheirrespectiveowners.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
www.analog.com
Fax: 781.461.3113
©2011 Analog Devices, Inc. All rights reserved.
Datasheet pdf - http://www.DataSheet4U.net/

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ADP5034 pdf
Data Sheet
ADP5034
Parameter
VOLTAGE FEEDBACK
DROPOUT VOLTAGE4
Symbol
VFB3, VFB4
VDROPOUT
CURRENT-LIMIT THRESHOLD5
ACTIVE PULL-DOWN
OUTPUT NOISE
Regulator LDO1
Regulator LDO2
POWER SUPPLY REJECTION
RATIO
Regulator LDO1
ILIMIT3, ILIMIT4
RPDWN-L
NOISELDO1
NOISELDO2
PSRR
Regulator LDO2
Test Conditions/Comments
VOUT3 = VOUT4 = 5.2 V, IOUT3 = IOUT4 = 300 mA
VOUT3 = VOUT4 = 3.3 V, IOUT3 = IOUT4 = 300 mA
VOUT3 = VOUT4 = 2.5 V, IOUT3 = IOUT4 = 300 mA
VOUT3 = VOUT4 = 1.8 V, IOUT3 = IOUT4 = 300 mA
Channel disabled
10 Hz to 100 kHz, VIN3 = 5 V, VOUT3 = 2.8 V
10 Hz to 100 kHz, VIN4 = 5 V, VOUT4 = 1.2 V
10 kHz, VIN3 = 3.3 V, VOUT3 = 2.8 V, IOUT3 = 1 mA
100 kHz, VIN3 = 3.3 V, VOUT3 = 2.8 V, IOUT3 = 1 mA
1 MHz, VIN3 = 3.3 V, VOUT3 = 2.8 V, IOUT3 = 1 mA
10 kHz, VIN4 = 1.8 V, VOUT4 = 1.2 V, IOUT4 = 1 mA
100 kHz, VIN4 = 1.8 V, VOUT4 = 1.2 V, IOUT4 = 1 mA
1 MHz, VIN4 = 1.8 V, VOUT4 = 1.2 V, IOUT4 = 1 mA
Min
0.485
335
Typ
0.5
50
75
100
180
600
600
Max
0.515
140
Unit
V
mV
mV
mV
mV
mA
Ω
100 μV rms
60 μV rms
60 dB
62 dB
63 dB
54 dB
57 dB
64 dB
1 All limits at temperature extremes are guaranteed via correlation using standard statistical quality control (SQC).
2 This is the input current into VIN3/VIN4, which is not delivered to the output load.
3 Based on an endpoint calculation using 1 mA and 300 mA loads.
4 Dropout voltage is defined as the input-to-output voltage differential when the input voltage is set to the nominal output voltage. This applies only to output voltages
above 1.7 V.
5 Current-limit threshold is defined as the current at which the output voltage drops to 90% of the specified typical value. For example, the current limit for a 3.0 V
output voltage is defined as the current that causes the output voltage to drop to 90% of 3.0 V, or 2.7 V.
INPUT AND OUTPUT CAPACITOR, RECOMMENDED SPECIFICATIONS
www.DataSheet.co.kr
TA = −40°C to +125°C, unless otherwise specified.
Table 4.
Parameter
SUGGESTED INPUT AND OUTPUT CAPACITANCE
BUCK1, BUCK2 Input Capacitor
BUCK1, BUCK2 Output Capacitor
LDO1, LDO21 Input and Output Capacitor
CAPACITOR ESR
Symbol
CMIN1, CMIN2
CMIN1, CMIN2
CMIN3, CMIN4
RESR
Min
4.7
7
0.70
0.001
Typ Max Unit
40 μF
40 μF
μF
1 The minimum input and output capacitance should be greater than 0.70 μF over the full range of operating conditions. The full range of operating conditions in the
application must be considered during device selection to ensure that the minimum capacitance specification is met. X7R- and X5R-type capacitors are
recommended; Y5V and Z5U capacitors are not recommended for use because of their poor temperature and dc bias characteristics.
Rev. A | Page 5 of 28
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ADP5034 arduino
Data Sheet
T
VOUT
1
ISW
2
SW
T
VIN
VOUT
1
SW
ADP5034
4
CH1 50mV BW CH2 500mA M 400ns A CH2
CH4 2.00V BW
T 28.40%
220mA
Figure 21. Typical Waveforms, VOUT1 = 3.3 V, IOUT1 = 30 mA, PWM Mode
T
VOUT
1
ISW
2
SW
43
CH1 50.0mV BW
M 1.00ms
CH3 1.00V BW CH4 2.00V BW
T 30.40%
A CH3
4.80V
Figure 24. BUCK2 Response to Line Transient, VIN2 = 4.5 V to 5.0 V,
VOUT2 = 1.8 V, PWM Mode
T
SW
4
VOUT
1
4
CH1 50mV BW CH2 500mA M 400ns A CH2
CH4 2.00V BW
T 28.40%
220mA
Figure 22. Typical Waveforms, VOUT2 = 1.8 V, IOUT2 = 30 mA, PWM Mode
T
VIN
VOUT
1
SW
3
CH1 50.0mV BW
M 1.00ms
CH3 1.00V BW CH4 2.00V BW
T 30.40%
A CH3
4.80V
Figure 23. BUCK1 Response to Line Transient, Input Voltage from 4.5 V to
5.0 V, VOUT1 = 3.3 V, PWM Mode
www.DataSheet.co.kr
IOUT
2
CH1 50.0mV BW CH2 50.0mA BW M 20.0µs A CH2 356mA
CH4 5.00V BW T 60.000µs
Figure 25. BUCK1 Response to Load Transient, IOUT1 from 1 mA to 50 mA,
VOUT1 = 3.3 V, Auto Mode
T
SW
4
VOUT
1
IOUT
2
CH1 50.0mV BW CH2 50.0mA BW M 20.0µs A CH2
CH4 5.00V BW
T 22.20%
379mA
Figure 26. BUCK2 Response to Load Transient, IOUT2 from 1 mA to 50 mA,
VOUT2 = 1.8 V, Auto Mode
Rev. A | Page 11 of 28
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