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PDF DA9212 Data sheet ( Hoja de datos )

Número de pieza DA9212
Descripción PMU
Fabricantes Dialog Semiconductor 
Logotipo Dialog Semiconductor Logotipo



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DA9211 and DA9212
Datasheet
Company confidential
1. General description
DA9211 and DA9212 are PMUs optimised for the supply of CPUs, GPUs, and DDR memory rails in
smartphones, tablets and other handheld applications. The fast transient response (10A/µs) and load
regulation are optimised for the new generation of multi-core application processors.
DA9212 integrates two dual-phase buck converters, each phase using a small external 0.47 µH
inductor. Each buck is capable of delivering up to 6 A output current at an output voltage in the range
0.3 - 1.57 V. The input voltage range of 2.8 5.5 V makes it suited for a wide variety of low voltage
systems, including all Li-Ion battery-powered applications.
DA9211 operates as a single four-phase buck converter delivering up to 12 A output current. To
guarantee the highest accuracy and to support multiple PCB routing scenarios without loss of
performance, a remote sensing capability is implemented in both DA9211 and DA9212.
The power devices are fully integrated, so no external FETs or Schottky diodes are needed.
A programmable soft start-up can be enabled, which limits the inrush current from the input node and
secures a slope-controlled activation of the rail.
The Dynamic Voltage Control (DVC) supports adaptive adjustment of the supply voltage depending
on the processor load, either via direct register writes through the communication interface (I2C or
SPI compatible) or via an input pin.
A voltage tracking functionality is implemented allowing the buck output voltage to be controlled by
an analogue input signal. This feature, together with a digital clock input, allows complete control of
the buck converter from external signals in the platform.
DA9211 and DA9212 feature integrated over-temperature and over-current protection for increased
system reliability without the need for external sensing components. The safety feature set is
completed by a VDDIO under voltage lockout.
The configurable I2C address selection via GPI allows multiple instances of DA9211 and DA9212 or
both to be placed in the application sharing the same communication interface with different
addresses.
2. Key features
2.8 V to 5.5 V Input voltage
0.3 V to 1.57 V Output voltage
12 A Output Current (DA9211)
2x 6 A Output Current (DA9212)
3 MHz nominal Switching Frequency
Max Inductor height 1.0 mm
±1 % Accuracy (static)
±3 % Accuracy (dynamic)
Dynamic Voltage Control (DVC)
Automatic Phase Shedding
Integrated Power Switches
Remote Sensing at Point of Load
I2C/SPI compatible Interface
Output Voltage Tracking Capability
Adjustable Soft Start
-40 to +85 ºC Temperature Range
Package 42 WL-CSP 0.4 mm pitch
Data sheet
CFR0011-120-00 Rev 3
Version <3.0>
1 of 74
<07-Jan-2015>
© 2015 Dialog Semiconductor GmbH

1 page




DA9212 pdf
DA9211 and DA9212
Datasheet
Company confidential
14.2.4 Register Page 2 ...................................................................................................... 64
15. Application Information .............................................................................................................. 71
15.1 Capacitor Selection ............................................................................................................. 71
15.2 Inductor Selection ............................................................................................................... 71
16. Package information ................................................................................................................... 73
Data sheet
CFR0011-120-00 Rev 3
Version <3.0>
5 of 74
<07-Jan-2015>
© 2015 Dialog Semiconductor GmbH

5 Page





DA9212 arduino
DA9211 and DA9212
Datasheet
Company confidential
9. Absolute maximum ratings
Table 4: Absolute maximum ratings (Note 1)
Symbol
Parameter
Conditions
Min Typ Max Unit
TSTG
TA_LIM
Storage temperature
Limiting ambient
temperature
-65
+165
°C
-40 +85 °C
VDD_LIM
VPIN
Limiting supply voltage
Limiting voltage at all
pins except above
-0.3 5.5 V
-0.3
VDD + 0.3
V
(max 5.5)
PTOT
total power dissipation derating factor above
(Note 2)
TA = 70°C: 23 mW/°C
1265
1610
mW
VESD_HBM
Electrostatic discharge
voltage
Human Body Model
2 kV
Note 1
Note 2
Stresses beyond those listed under Absolute maximum ratingsmay cause permanent damage
to the device. These are stress ratings only, so functional operation of the device at these or any
other conditions beyond those indicated in the operational sections of the specification are not
implied. Exposure to absolute maximum rating conditions for extended periods may affect device
reliability.
Obtained from simulation on a 2S2P 4L JEDEC Board (EIA/JESD51-2). Influenced by PCB
technology and layout
10. Recommended operating conditions
Table 5: Recommended operating conditions (Note 1)
Symbol
Parameter
Conditions
VDD
VDDIO
Supply voltage
Input/output supply voltage
Min
2.8
1.2
Note 1 Within the specified limits, a life time of 10 years is guaranteed
Note 2 VDDIO is not allowed to be higher than VDD
Typ Max Unit
5.5 V
3.6
(Note
2)
V
Data sheet
CFR0011-120-00 Rev 3
Version <3.0>
11 of 74
<07-Jan-2015>
© 2015 Dialog Semiconductor GmbH

11 Page







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