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A7BE00ZA 参数 Datasheet PDF下载

A7BE00ZA图片预览
型号: A7BE00ZA
PDF下载: 下载PDF文件 查看货源
内容描述: 单节锂离子/锂聚合物单节锂离子/锂聚合物 [Single-cell Li-ion / Li-polymer Single-cell Li-ion / Li-polymer]
分类和应用:
文件页数/大小: 23 页 / 223 K
品牌: ANASEM [ AnaSem Hong Kong Limited ]
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Single-cell Li-ion / Li-polymer Battery Protection IC
Rev. E09-06
A7B Series
MEASUREMENT CONDITIONS
Over-charge detection voltage, Over-charge hysteresis voltage --- [Circuit 1]
Set V1=3.5V and V2=0V.
Over-charge detection voltage Vc is V1 at which VC
O
goes "Low" from "High" when
V1 is gradually increased from 3.5V. Then IC is released from the over-charge state and VC
O
goes "High" from
"Low" at the voltage "Measured Vc-VHc" when V1 is gradually decreased.
If V2 is set to the greater value than discharge over-current detection voltage VIdc in the over-charge state, VHc
is canceled and then IC is released from the over-charge state at Vc.
Over-discharge detection voltage --- [Circuit 1]
Set V1=3.5V and V2=0V.
Over-discharge detection voltage Vdc is V1 at which VD
O
goes "Low" from "High"
when V1 is gradually decreased from 3.5V. Next, set V2 under to charge over-current detection voltage VIc.
Then IC is released from the over-discharge state at Vdc and VD
O
goes "High" from "Low".
Charge over-current detection voltage --- [Circuit 2]
Set V1=3.5V and V2=0V.
Charge over-current detection voltage VIc is V2 at which VC
O
goes "Low" from "High"
when V2 is gradually decreased from 0V.
Discharge over-current detection voltage --- [Circuit 2]
Set V1=3.5V and V2=0V.
Discharge over-current detection voltage VIdc is V2 at which VD
O
goes "Low" from
"High" when V2 is gradually increased from 0V.
Load short-circuiting detection voltage --- [Circuit 2]
Set V1=3.5V and V2=0V.
Load short-circuiting detection voltage Vshort is V2 at which VD
O
goes "Low" from
"High" within a time between the minimum and the maximum value of load short-circuiting detection delay time
tshort, when V2 is increased rapidly within 10μs.
0V battery charge starting charger voltage --- [Circuit 3]
Set V1=V2=0V and decrease V2 gradually.
goes "High" ( V1-0.1V or higher ).
0V battery charge starting charger voltage Vcha is V2 when VC
O
0V battery charge inhibiting battery voltage --- [Circuit 3]
Set V1=1.8V and V2=0V at first. Then set V2=V1-4.0V. Next, decrease V1 and V2 gradually, maintaining the
relation of V2=V1-4.0V. 0V battery charge inhibiting battery voltage Vinh is V1 when VC
O
goes "Low" ( V2+0.1V
or lower ).
Current consumption on operation and shutdown --- [Circuit 4]
Set V1=3.5V and V2=0V on normal condition. I
DD
shows current consumption on operation Iopr.
Set V1=V2=1.8V on over-discharge condition. I
DD
shows current consumption on shutdown Isdn.
C
O
: Pch ON resistance, C
O
: Nch ON resistance --- [Circuit 5]
Set V1=3.5V, V2=0V and V3=3.0V.
Set V1=4.6V, V2=0V and V3=0.5V.
(V1-V3)/|IC
O
| is Pch ON resistance Rcop.
V3/|IC
O
| is Nch ON resistance Rcon.
6
.......... Future of the analog world
AnaSem Inc.