
Rev.4.0
_00
BATTERY PROTECTION IC FOR 3-SERIAL-CELL PACK
S-8233C Series
Electrical Characteristics
Seiko Instruments Inc.
5
Table 4 (1 / 2)
(Ta
=
25
°
C unless otherwise specified)
Item
Symbol
Condition
Min.
Typ.
Max.
Unit
Measure-
ment
condition
Measure-
ment
circuit
1
1
1
1
1
1
1
1
1
1
1
1
2
2
2
6
6
6
6
6
6
7
7
7
Detection voltage
Over charge detection voltage 1
Over charge release voltage 1
Over discharge detection voltage 1
Over discharge release voltage 1
Over charge detection voltage 2
Over charge release voltage 2
Over discharge detection voltage 2
Over discharge release voltage 2
Over charge detection voltage 3
Over charge release voltage 3
Over discharge detection voltage 3
Over discharge release voltage 3
Over current detection voltage 1
*1
Over current detection voltage 2
Over current detection voltage 3
Voltage temperature factor 1
*2
Voltage temperature factor 2
*3
Delay time
Over charge detection delay time 1
Over charge detection delay time 2
Over charge detection delay time 3
Over discharge detection delay time 1
t
DD1
Over discharge detection delay time 2
t
DD2
Over discharge detection delay time 3
t
DD3
Over current detection delay time 1
Over current detection delay time 2
V
CU1
V
CD1
V
DD1
V
DU1
V
CU2
V
CD2
V
DD2
V
DU2
V
CU3
V
CD3
V
DD3
V
DU3
V
IOV1
0.15 to 0.50V Adjustment
V
IOV2
V
CC
Reference
V
IOV3
V
SS
Reference
T
COE1
Ta=-20 to 70°C
T
COE2
Ta=-20 to 70°C
t
CU1
C
CCT
=0.47
μ
F
t
CU2
C
CCT
=0.47
μ
F
t
CU3
C
CCT
=0.47
μ
F
C
CDT
=0.1
μ
F
C
CDT
=0.1
μ
F
C
CDT
=0.1
μ
F
t
IOV1
C
COVT
=0.1
μ
F
t
IOV2
FET gate capacitor
=2000 pF
3.80 to 4.40 Adjustment
3.45 to 4.40 Adjustment
2.00 to 2.80 Adjustment
2.00 to 4.00 Adjustment
3.80 to 4.40 Adjustment
3.45 to 4.40 Adjustment
2.00 to 2.80 Adjustment
2.00 to 4.00 Adjustment
3.80 to 4.40 Adjustment
3.45 to 4.40 Adjustment
2.00 to 2.80 Adjustment
2.00 to 4.00 Adjustment
V
CU1
-0.05
V
CD1
-0.10
V
DD1
-0.08
V
DU1
-0.10
V
CU2
-0.05
V
CD2
-0.10
V
DD2
-0.08
V
DU2
-0.10
V
CU3
-0.05
V
CD3
-0.10
V
DD3
-0.08
V
DU3
-0.10
V
IOV1
×0.9
0.54
1.0
-1.0
-0.5
0.5
0.5
0.5
20
20
20
10
2
V
CU1
V
CD1
V
DD1
V
DU1
V
CU2
V
CD2
V
DD2
V
DU2
V
CU3
V
CD3
V
DD3
V
DU3
V
IOV1
0.6
2.0
0
0
1.0
1.0
1.0
40
40
40
20
4
V
CU1
+0.05
V
CD1
+0.10
V
DD1
+0.08
V
DU1
+0.10
V
CU2
+0.05
V
CD2
+0.10
V
DD2
+0.08
V
DU2
+0.10
V
CU3
+0.05
V
CD3
+0.10
V
DD3
+0.08
V
DU3
+0.10
V
IOV1
×1.1
0.66
3.0
1.0
0.5
1.5
1.5
1.5
60
60
60
30
8
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
1
1
1
1
2
2
2
2
3
3
3
3
4
4
4
9
10
11
9
10
11
12
12
mV/
°
C
mV/
°
C
s
s
s
ms
ms
ms
ms
ms
Over current detection delay time 3
t
IOV3
100
300
550
μ
s
12
Operating voltage
Operating voltage between VCC and
VSS
Current consumption
Current consumption (during normal
operation)
Current consumption for cell 1
Current consumption for cell 2
Current consumption for cell 3
Current consumption at power down
Internal resistance with 0V battery charging function type
Resistance between VCC and VMP
Resistance between VSS and VMP
Internal resistance without 0V battery charging function type.
Resistance between VCC and VMP
Resistance between VSS and VMP
Input voltage
CTL"H" Input voltage
CTL"L" Input voltage
V
DSOP
2.0
24
V
I
OPE
V1=V2=V3=3.5 V
20
50
μ
A
5
3
I
CELL1
I
CELL2
I
CELL3
I
PDN
V1=V2=V3=3.5 V
V1=V2=V3=3.5 V
V1=V2=V3=3.5 V
V1=V2=V3=1.5 V
300
300
300
0.20
0.20
0.40
0.40
V
CC
x 0.8
0
0
0
300
300
300
0.1
0.80
0.80
1.40
1.40
V
CC
x 0.2
nA
nA
nA
μ
A
M
M
M
M
V
V
5
5
5
5
6
6
6
6
3
3
3
3
3
3
3
3
R
VCM
R
VSM
V1=V2=V3=3.5 V
V1=V2=V3=1.5 V
0.50
0.50
0.90
0.90
R
VCM
R
VSM
V
CTL(H)
V
CTL(L)
V1=V2=V3=3.5 V
V1=V2=V3=1.5 V