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RT5016C Datasheet(PDF) 36 Page - Richtek Technology Corporation

Part # RT5016C
Description  I2C Programmable Multi-Channel PMU
PDF  68 Pages
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Manufacturer  RICHTEK [Richtek Technology Corporation]
Direct Link  http://www.richtek.com
Logo RICHTEK - Richtek Technology Corporation

RT5016C Datasheet(HTML) 36 Page - Richtek Technology Corporation

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RT5016C
36
DS5016C-02
November 2016
www.richtek.com
Copyright
2016 Richtek Technology Corporation. All rights reserved.
is a registered trademark of Richtek Technology Corporation.
©
VDDM Bootstrap
To support bootstrap function, the RT5016C provides a power selection circuit which selects the maximum voltage
between SYS and PVD1 to support the power requirement at node VDDI. The RT5016C includes UVLO circuits to
monitor VDDI and SYS voltage status.
Figure 3
Charger Unit
The RT5016C includes a Li-ion battery charger with Automatic Power Path Management. The charger is designed to
operate in below modes :
Pre-Charge Mode
When the output voltage is lower than 2.8V, the charging current will be reduced to a ratio of the fast-charge current
set by A8.ISETA [3:0] to protect the battery life-time. The timing diagram is showed in Figure 3.
Fast-Charge Mode
When the output voltage is higher than 3V, the charging current will be equal to the fast-charge current set by
A8.ISETA [3:0] shown as Figure 3.
Constant Voltage Mode
When the output voltage is near 4.2V and the charging current falls below the termination current for a deglitch time
of 25ms, the charger will be disabled and CHG will go high. The timing diagram is showed in Figure 3.
Re-Charge Mode
When the chip is in charge termination mode, the charging current gradually goes down to zero. Once the battery
voltage drops to below 4.1V for a deglitch time of 100ms, the charger will resume charging shown as Figure 3.
SYS
PVD1
VDDI = Max (SYS, PVD1)
4.16 to 4.2 to 4.23V
−40°C to 85°C
Battery Voltage
Charging Current
VPRECH
VRECH
ITERM2
If ISETL = 0, ISETU = 0
ITERMI = 3.3% x ICHG_FAST
If
ISETL = 1, ISETU = 1
ISETL = 0, ISETU = X
ITERMI = 10% x ICHG_FAST
Time
ICHG_PRE = 10% x ICHG_FAST



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