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Número de pieza AIC1811CCV
Descripción One-Cell Lithium-Ion Battery Protection IC
Fabricantes Analog Intergrations Corporation 
Logotipo Analog Intergrations Corporation Logotipo



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AIC1811
One-Cell Lithium-Ion Battery Protection IC
n FEATURES
n DESCRIPTION
l Reduction in Board Size due to Miniature
Package SOT-23-5 and Less External
Components.
l Ultra-Low Quiescent Current at 7µA (VCC=3.5V).
l Ultra-Low Power-Down Current at 0.4µA (VCC
=2.3V).
l Precision Overcharge Protection Voltage
4.35V ± 50mV for the AIC1811A
4.30V ± 50mV for the AIC1811B
4.25V ± 50mV for the AIC1811C
l Built-in Delay Time Circuits for Overcharge,
Over-discharge, and Overcurrent Protection.
l Load Detection Function during Overcharge
Mode.
l Two Detection Levels for Overcurrent Protection.
The AIC1811 battery protection IC is designed to
protect lithium-ion battery from damage or
degrading the lifetime due to overcharge,
overdischarge, and/or overcurrent for one-cell
lithium-ion battery powered systems, such as
cellular phones. The ultra-small package and less
required external components make it ideal to
integrate the AIC1811 into the limited space of
battery pack.
The accurate ±50mV overcharging detection
voltage ensures safe and full utilization charging.
Three different specification values for overcharge
protection voltage are provided for various
protection requirements. The very low standby
current drains little current from the cell while in
storage.
n APPLICATIONS
l Protection IC for One-Cell Lithium-Ion Battery
Pack.
n TYPICAL APPLICATION CIRCUIT
M1
SI9926
FUSE
R1 5 VCC
100 C1
0.1µF
2 GND
3 OD
4
CS
OC 1
R2
51K
AIC1811
R3
10M
M2 SI9926
Protection Circuit for One-Cell Lithium-Ion Battery
BATT+
BATT-
DS-1811-00 June 7, 00
www.analog.com.tw
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AIC1811CCV pdf
AIC1811
n APPLICATION INFORMATIONS
THE OPERATION
Overcharge Protection
When the voltage of the battery cell exceeds the
overcharge protection voltage (VOCP) beyond the
overcharge delay time (TOC) period, charging is
inhibited by the turning-off of the charge control
MOSFET M2. The overcharge delay time is fixed
to 100mS by IC internal circuit. The overcharge
condition is released in two cases:
1. The voltage of the battery cell becomes lower
than the overcharge release voltage (VOCR or
VOCP- VHYS) through self-discharge.
2. The voltage of the battery cell falls below the
overcharge protection voltage (VOCP) and a
load is connected.
When the battery voltage is above VOCP, the
overcharge condition is never released even a
load is connected to the pack.
Overdischarge Protection
When the voltage of the battery cell goes below
the overdischarge protection voltage (VODP)
beyond the overdischarge delay time (TOD) period,
discharging is inhibited by the turning-off of the
discharge control MOSFET M1. The
overdischarge delay time defaults to 100mS.
Inhibition of discharging is immediately released
when the voltage of the battery cell becomes
higher than overdischarge release voltage (VODR)
through charging.
Overcurrent Protection
In normal mode, the AIC1811 continuously
monitors the discharge current by sensing the
voltage of CS pin. If the voltage of CS pin exceeds
the overcurrent protection voltage (VOIP) beyond
the overcurrent delay time (TOI) period, the
overcurrent protection circuit operates and
discharging is inhibited by the turning-off of the
discharge control MOSFET M1. The overcurrent
condition returns to the normal mode when the
load is released and the impedance between the
BATT+ and BATT- terminals is 20Mor higher.
The AIC1811 is provided with the two overcurrent
detection levels (0.2V and 1V) and the two
overcurrent delay time (TOI1 and TOI2)
corresponding to each overcurrent detection level.
Load Detection after Overcharge
The load detection function after overcharge is
implemented by detecting the CS pin voltage.
Once a load is connected to the battery pack after
overcharge, discharge current flows through the
parasitic diode of MOSFET M2 and there is a
diode voltage drop between CS and GND. Load is
determined to be connected to the pack if the CS
pin voltage is above load detection threshold
voltage (VLD).
Power-Down after Overdischarge
When overdischarge occurs, the AIC1811 will go
into power-down mode, turning off all the timing
generation and detection circuitry to reduce the
quiescent current to 0.4µA (VCC=2.3V). At the
same time, the CS pin is pull-high to VCC through
a high resistance resistor.
Charge Detection after Overdischarge
When overdischarge occurs, the discharge control
MOSFET M1 turns off and discharging is inhibited.
However, charging is still permitted through the
parasitic diode of M1. Once the charger is
connected to the battery pack, the AIC1811
immediately turns on all the timing generation and
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