S-8240A Series
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© ABLIC Inc., 2015-2018
BATTERY PROTECTION IC FOR 1-CELL PACK
Rev.2.6
_00
The S-8240A Series is a protection IC for lithium-ion / lithium polymer rechargeable batteries and includes high-accuracy
voltage detection circuits and delay circuits.
The S-8240A Series is suitable for protecting 1-cell lithium-ion / lithium polymer rechargeable battery packs from overcharge,
overdischarge, and overcurrent.
Features
High-accuracy voltage detection circuit
Overcharge detection voltage
3.500 V to 4.600 V (5 mV step)
Accuracy
20
mV
*1
Overcharge release voltage
3.100 V to 4.600 V
Accuracy
50
mV
Overdischarge detection voltage
2.000 V to 3.400 V (10 mV step)
Accuracy
50
mV
*2
Accuracy
100
mV
Overdischarge release voltage
2.000 V to 3.400 V
Discharge overcurrent detection voltage
0.015 V to 0.200 V (5 mV step)
Accuracy
5
mV
*3
Accuracy
40
mV
Load short-circuiting detection voltage
0.065 V to 0.500 V (25 mV step)
Charge overcurrent detection voltage
0.200
V to
0.015
V (5 mV step)
Accuracy
5
mV
Detection delay times are generated only by an internal circuit (external capacitors are unnecessary).
0 V battery charge function is selectable:
Available, unavailable
Power-down function is selectable:
Available, unavailable
Release condition of discharge overcurrent status is selectable:
Load disconnection, charger connection
Release voltage of discharge overcurrent status is selectable:
V
RIOV
, V
DIOV
High-withstand voltage:
VM pin and CO pin: Absolute maximum rating 28 V
Wide operation temperature range:
Ta =
40°C
to
85°C
Low current consumption
During operation:
1.5
A
typ., 3.0
A
max. (Ta =
25°C)
During power-down:
50 nA max. (Ta =
25°C)
During overdischarge:
500 nA max. (Ta =
25°C)
Lead-free (Sn 100%), halogen-free
*1.
Overcharge release voltage = Overcharge detection voltage
Overcharge hysteresis voltage
(Overcharge hysteresis voltage can be selected from a range of 0 V to 0.4 V in 50 mV step.)
*2.
Overdischarge release voltage = Overdischarge detection voltage
Overdischarge hysteresis voltage
(Overdischarge hysteresis voltage can be selected from a range of 0 V to 0.7 V in 100 mV step.)
*3.
Load short-circuiting detection voltage = Discharge overcurrent detection voltage
0.025
n
(n can be selected from any
integer value greater or equal to 2)
Applications
Lithium-ion rechargeable battery pack
Lithium polymer rechargeable battery pack
Packages
SOT-23-6
SNT-6A
HSNT-6 (1212)
1
Rev.2.6
_00
Product Name Structure
1. Product name
S-8240A xx
-
xxxx
U
BATTERY PROTECTION IC FOR 1-CELL PACK
S-8240A Series
Environmental code
U:
Lead-free (Sn 100%), halogen-free
Package abbreviation and IC packing specifications
*1
M6T1: SOT-23-6, Tape
I6T1: SNT-6A, Tape
A6T2: HSNT-6 (1212), Tape
Serial code
*2
Sequentially set from AA to ZZ
*1.
Refer to the tape drawing.
*2.
Refer to "3.
Product name list".
2. Packages
Table 1 Package Drawing Codes
Package Name
SOT-23-6
SNT-6A
HSNT-6 (1212)
Dimension
MP006-A-P-SD
PG006-A-P-SD
PM006-A-P-SD
Tape
MP006-A-C-SD
PG006-A-C-SD
PM006-A-C-SD
Reel
MP006-A-R-SD
PG006-A-R-SD
PM006-A-R-SD
Land
PG006-A-L-SD
PM006-A-L-SD
3. Product name list
3. 1 SOT-23-6
Table 2 (1 / 2)
Overcharge
Detection
Voltage
[V
CU
]
4.425 V
4.425 V
Overcharge
Release
Voltage
[V
CL
]
4.225 V
4.225 V
Overdischarge
Detection
Voltage
[V
DL
]
2.500 V
2.500 V
Overdischarge
Release
Voltage
[V
DU
]
2.800 V
2.900 V
Table 2 (2 / 2)
Product Name
Delay Time
Combination
*1
0 V Battery Charge
Function
Release Condition
Power-down Function
of Discharge
Overcurrent Status
Unavailable
Load disconnection
Unavailable
Load disconnection
Release Voltage of
Discharge Overcurrent
Status
V
DIOV
V
DIOV
Discharge
Overcurrent
Detection Voltage
[V
DIOV
]
0.200 V
0.200 V
Load Short-
circuiting
Detection
Voltage
[V
SHORT
]
0.500 V
0.500 V
Charge
Overcurrent
Detection
Voltage
[V
CIOV
]
0.150
V
0.200
V
Product Name
S-8240ACS-M6T1U
S-8240ACT-M6T1U
Available
S-8240ACS-M6T1U
(7)
Available
S-8240ACT-M6T1U
(3)
*1.
Refer to
Table 5
about the details of the delay time combinations.
Remark
Please contact our sales office for the products with detection voltage value other than those specified above.
3