s-8232nbft-t2-g Seiko Instruments Inc., s-8232nbft-t2-g Datasheet - Page 8

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s-8232nbft-t2-g

Manufacturer Part Number
s-8232nbft-t2-g
Description
Battery Protection Ic For 2-serial-cell Pack
Manufacturer
Seiko Instruments Inc.
Datasheet
*1. Since products are not screened at high and low temperature, the specification for this temperature range is
*2. Auxiliary overcharge detection voltage is equal to the overcharge detection voltage times 1.11 for the
*3. Temperature coefficient 1 for detection voltage should be applied to overcharge detection voltage,
*4. Temperature coefficient 2 for detection voltage should be applied to overcurrent detection voltage.
*5. The DO pin and CO pin logic are established at the operating voltage .
8
[DETECTION VOLTAGE]
Overcharge detection voltage 1, 2
Auxiliary overcharge detection voltage 1, 2
V
V
Overcharge release voltage 1, 2
Overdischarge detection voltage 1, 2
Overdischarge release voltage 1, 2
Overcurrent detection voltage 1
Overcurrent detection voltage 2
Temperature coefficient 1 for detection voltage
Temperature coefficient 2 for detection voltage
[DELAY TIME (C3 = 0.22 µF) ]
Overcharge detection delay time 1, 2
Overdischarge detection delay time 1, 2
Overcurrent detection delay time 1
[INPUT VOLTAGE]
Input voltage between VCC and VSS
[OPERATING VOLTAGE]
Operating voltage between VCC and VSS
[CURRENT CONSUMPTION]
Current consumption during normal operation
Current consumption at power down
[OUTPUT VOLTAGE]
DO voltage “H”
DO voltage “L”
CO voltage “H”
[CO PIN INTERNAL RESISTANCE]
Resistance between VSS and CO
[INTERNAL RESISTANCE]
Resistance between VCC and VM
Resistance between VSS and VM
[0 V BATTERY CHARGE FUNCTION]
0 V battery charge starting charger voltage
0 V battery charge inhibition battery voltage 1, 2
BATTERY PROTECTION IC FOR 2-SERIAL-CELL PACK
S-8232 Series
CUaux1
CUaux1
guaranteed by design, not tested in production .
products without overcharge hysteresis, and times 1.25 for other products.
overcharge release voltage, overdischarge detection voltage, and overdischarge release voltage.
, V
, V
CUaux2
CUaux2
= V
= V
CU1
CU1
, V
, V
Item
CU2
CU2
× 1.25 or
× 1.11
*5
*2
*3
*4
V
V
Symbol
V
V
V
V
V
V
V
V
T
T
V
V
CUaux1, 2
CUaux1, 2
t
t
V
V
R
R
R
Seiko Instruments Inc.
CU1, 2
DD1, 2
t
0INH1, 2
V
I
I
CU1, 2
CD1, 2
DD1, 2
DU1, 2
IOV1
COE1
COE2
DSOP
OPE
PDN
DO(H)
CO(H)
DO(L)
0CHA
IOV1
IOV2
VCM
VSM
COL
DS
3.85 to 4.60 V,
Adjustable
V
V
3.60 to 4.60 V,
Adjustable
1.70 to 2.60 V,
Adjustable
1.70 to 3.80 V,
Adjustable
0.07 to 0.30 V,
Adjustable
Load short circuit,
V
Ta = − 40 to + 85 °C
Ta = − 40 to + 85 °C
1.0 s
0.1 s
0.01 s
Absolute maximum
rating
Output logic fixed
V1 = V2 = 3.6 V
V1 = V2 = 1.5 V
I
I
I
V
V
V
0 V battery charging
function “available”
0 V battery charging
function “unavailable”
OUT
OUT
OUT
Table 6
CU1, 2
CU1, 2
CC
CO
CC
VM
= 10 µA
= 10 µA
= 10 µA
reference
− V
− V
− V
× 1.25
× 1.11
Condition
SS
VM
SS
= 1.1 V
= 9.4 V
= 0.5 V
(Ta = − 20 to + 70 °C unless otherwise specified
*1
*1
− 0.045
− 0.070
− 0.100
− 0.120
− 0.029
× 1.19
× 1.05
− 1.66 − 1.20 − 0.74
− 0.24 − 0.05
− 0.14
− 0.24
V
V
V
V
V
V
− 0.6
− 0.3
V
0.60
0.24
0.29
0.23
Min.
418
V
V
V
6.5
2.0
1.9
CU1, 2
CU1, 2
CU1, 2
CD1, 2
DD1, 2
DU1, 2
67
86
IOV1
0
CC
CC
SS
− 0.003
+ 0.003
− 0.019
0.0002 0.06
× 1.25
× 1.11
V
V
V
V
V
V
V
Typ.
1.00
0.75
0.88
100
240
597
V
V
V
7.5
0.6
CU1, 2
CU1, 2
CU1, 2
CD1, 2
DD1, 2
DU1, 2
10
IOV1
0
CC
CC
SS
+ 0.040
+ 0.065
+ 0.095
+ 0.115
+ 0.029
× 1.31
× 1.17
+ 0.14
V
V
V
V
V
V
Max.
1332
V
1.84
14.5
13.8
1.96
1.21
1.53
140
785
V
V
V
CU1, 2
CU1, 2
CU1, 2
CD1, 2
DD1 ,2
DU1, 2
0.6
18
16
IOV1
0
CC
CC
SS
mV/°C
mV/°C
Unit
MΩ
ms
ms
µA
µA
kΩ
kΩ
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
s
Condition
Rev.5.5
12, 13
Test
1, 2
1, 2
1, 2
1, 2
1, 2
1, 2
8, 9
8, 9
10
11
3
3
4
4
6
6
7
7
5
5
Circuit
Test
_00
1
1
1
1
1
1
1
1
5
5
5
2
2
3
3
4
4
2
2
6
6
*1
)

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