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ACT8946A Datasheet(PDF) 6 Page - Active-Semi, Inc

Part # ACT8946A
Description  Advanced PMU for Hisilicon Processors
Download  37 Pages
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Manufacturer  ACTIVE-SEMI [Active-Semi, Inc]
Direct Link  http://www.active-semi.com
Logo ACTIVE-SEMI - Active-Semi, Inc

ACT8946A Datasheet(HTML) 6 Page - Active-Semi, Inc

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ACT8946AQJ203-T
Rev 1.0, 08-Jul-16
ActivePMU and ActivePath are trademarks of Active-Semi.
-
6 -
www.active-semi.com
Copyright © 2016 Active-Semi, Inc.
PIN DESCRIPTIONS
PIN
NAME
DESCRIPTION
1
REFBP
Reference Bypass. Connect a 0.047μF ceramic capacitor from REFBP to GA. This pin is
discharged to GA in shutdown.
2
OUT1
Output Feedback Sense for REG1.
3
GA
Analog Ground. Connect GA directly to a quiet ground node. Connect GA, GP12 and GP3
together at a single point as close to the IC as possible.
4
OUT4
REG4 output. Capable of delivering up to 320mA of output current. Connect a 3.3µF ceramic
capacitor from OUT4 to GA. The output is discharged to GA with 1.5kΩ resistor when disabled.
5
OUT5
REG5 output. Capable of delivering up to 320mA of output current. Connect a 3.3µF ceramic
capacitor from OUT5 to GA. The output is discharged to GA with 1.5kΩ resistor when disabled.
6
INL
Power Input for REG4, REG5, REG6, and REG7. Bypass to GA with a high quality ceramic
capacitor placed as close to the IC as possible.
7
OUT7
REG7 output. Capable of delivering up to 320mA of output current. Connect a 3.3µF ceramic
capacitor from OUT7 to GA. The output is discharged to GA with 1.5kΩ resistor when disabled.
8
OUT6
REG6 output. Capable of delivering up to 320mA of output current. Connect a 3.3µF ceramic
capacitor from OUT6 to GA. The output is discharged to GA with 1.5kΩ resistor when disabled.
9
nPBIN
Master Enable Input. Drive nPBIN to GA through a 50kΩ resistor to enable the IC, drive nPBIN
directly to GA to assert a manual reset condition. Refer to the nPBIN Multi-Function Input section
for more information. nPBIN is internally pulled up to VSYS through a 35kΩ resistor.
10
PWRHLD
Power Hold Input. Enable input for all regulators. PWRHLD is internally pulled down to GA through
a 500kΩ resistor. Refer to the Control Sequences section for more information.
11
nRSTO
Active Low Reset Output. See the nRSTO Output section for more information.
12
nIRQ
Open-Drain Interrupt Output. nIRQ is asserted any time an unmasked fault condition exists or a
charger interrupt occurs. See the nIRQ Output section for more information.
13
nPBSTAT
Active-Low Open-Drain Push-Button Status Output. nPBSTAT is asserted low whenever the
nPBIN is pushed, and is high-Z otherwise. See the nPBSTAT Output section for more information.
14
GP3
Power Ground for REG3. Connect GA, GP12, and GP3 together at a single point as close to the
IC as possible.
15
SW3
Switching Node Output for REG3.
16
VP3
Power Input for REG3. Bypass to GP3 with a high quality ceramic capacitor placed as close to the
IC as possible.
17
OUT3
Output Feedback Sense for REG3.
18
PWREN
Power Enable Input. Refer to the Control Sequences section for more information.
19
nLBO
Low Battery Indicator Output. nLBO is asserted low whenever the voltage at LBI is lower than
1.2V, and is high-Z otherwise. See the Precision Voltage Detector section for more information.
20
LBI
Low Battery Input. The input voltage is compared to 1.2V and the output of this comparison drives
nLBO. See the Precision Voltage Detector section for more information.
21
ACIN
AC Input Supply Detection. See the Charge Current Programming section for more information.
22
CHGLEV
Charge Current Selection Input. See the Charge Current Programming section for more information.
23
ISET
Charge Current Set. Program the charge current by connecting a resistor (RISET) between ISET and
GA. See the Charge Current Programming section for more information.
24
TH
Temperature Sensing Input. Connect to battery thermistor. TH is pulled up with a 102µA (typ) current
internally. See the Battery Temperature Monitoring section for more information.
25
VSEL
Step-Down DC/DCs Output Voltage Selection. Drive to logic low to select default output voltage.
Drive to logic high to select secondary output voltage. See the Output Voltage Programming
section for more information.


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