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AOZ9005DI-00 Datasheet(PDF) 9 Page - Alpha & Omega Semiconductors

Part # AOZ9005DI-00
Description  Single-Cell Battery Protection IC
Download  16 Pages
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Manufacturer  AOSMD [Alpha & Omega Semiconductors]
Direct Link  http://www.aosmd.com
Logo AOSMD - Alpha & Omega Semiconductors

AOZ9005DI-00 Datasheet(HTML) 9 Page - Alpha & Omega Semiconductors

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AOZ9005D
Rev. 1.1 August 2008
www.aosmd.com
Page 9 of 16
by connecting the charger. The resistance (RVMD)
between the VM pin and VDD pin is not connected in the
discharge over-current detection status.
When a battery is in the normal status, and the discharge
current becomes abnormally higher (EB+ pin and EB- pin
shorted), and thus the VM pin voltage is equal or higher
than load short-circuiting detection voltage (VSHORT) for
load short-circuiting detection delay time (tSHORT), the
IC turns off the discharge control MOSFET and stops
discharging. This status is the load shorting-circuiting
status. In the load shorting-circuiting status, the VM pin
and VSS pin are shorted by the resistor between VM pin
and VSS pin (RVMS) in the IC. When the short-circuiting
condition is released, the VM pin returns to the VSS
potential. The resistance (RVMD) between the VM pin and
VDD pin is not connected in the load shorting-circuiting
status.
Charge Over-Current Status
When a battery in the normal status is in the status, and
the charge current is higher than the specified value and
the status lasts for the charge over-current detection
delay time (tCIOV), the charge control MOSFET is turned
off and charging is stopped. This status is the charge
over-current status. This IC will be restored to the normal
status from the charge over-current status when, the
voltage at the VM pin returns to charge over-current
detection voltage (VCIOV) or higher by removing the char-
ger. The charge over-current detection function does not
work in the over-discharge status. The resistance (RVMD)
between the VM pin and VDD pin, and the
resistance (RVMS) between the VM pin and VSS pin are
not connected in the charge over-current status.
0V Battery Charging Function “Available”
This function is used to recharge a connected battery
whose voltage is 0V due to self-discharge. When the 0V
battery charge starting charger voltage (V0CHA) or a
higher voltage is applied between the EB+ and EB- pins
by connecting a charger, the charging control MOSFET
gate is fixed to the VDD pin voltage.
When the voltage between the gate and source of the
charging control MOSFET becomes equal to or higher
than the turn-on voltage due to the charger voltage, the
charging control MOSFET is turned on to start charging.
At this time, the discharging control MOSFET is off and
the charging current flows through the internal parasitic
diode in the discharging control MOSFET. When the
battery voltage becomes equal to or higher than over-
discharge release voltage (VDU), the AOZ9005D enters
the normal status.
0V Battery Charging Function “Unavailable”
This function inhibits recharging when a battery that is
internally short-circuited (0V battery) is connected. When
the battery voltage is the 0V battery charge inhibition
battery voltage (V0INH) or lower, the charging control
MOSFET gate is fixed to the EB- pin voltage to inhibit
charging. When the battery voltage is the 0V battery
charge inhibition battery voltage (V0INH) or higher,
charging can be performed.
Calculation of Current Limit
The charge and discharge current limit is determined by
the charge and discharge over-current threshold voltages
(VDIOV and VCIOV), and the total resistance of the internal
MOSFET (RSS). Use the following equations to deter-
mine the maximum and minimum current limits:
MIN
SS
MAX
DIOV
MAX
DIOV
R
V
I
_
_
_
=
;
MAX
SS
MIN
DIOV
MIN
DIOV
R
V
I
_
_
_
=
MIN
SS
MAX
CIOV
MAX
CIOV
R
V
I
_
_
_
=
;
MAX
SS
MIN
CIOV
MIN
CIOV
R
V
I
_
_
_
=


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