Maxim MAX1666SEEE, MAX1666VEEP Datasheet

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General Description
The MAX1666 provides complete protection against over­voltage, undervoltage, overcharge current, overdischarge current, and cell mismatch for 2-cell to 4-cell Lithium-Ion battery packs. The voltage of each cell in the battery pack is checked and compared to the programmable threshold and to the other cells in the pack.
The MAX1666 protects the battery pack in an overcurrent condition by disconnecting the pack from the load at a pro­grammable limit. On-chip power MOSFET drivers control external P-channel MOSFETs to disconnect the cells from external terminals when faults occur.
The MAX1666 employs a unique timing scheme that allows three modes of operation, for optimal performance and bat­tery power conservation. The MAX1666 can operate in a stand-alone configuration or in conjunction with a micro­controller. It is available in three versions: the “S” version monitors two Li-Ion cells, the “V” version monitors three cells, and the “X” version monitors four cells.
Applications
2/3/4-Cell Lithium-Ion Battery Pack
Features
Overvoltage Protection
Programmable Limits from +4.0V to +4.4V Accurate to ±0.5%
Undervoltage Protection
Programmable Limits from +2.0V to +3.0V Accurate to ±2.5%
Cell Mismatch Protection
Programmable Limits from 0 to 500mV Accurate to ±10%
Overcharge Current ProtectionOverdischarge Current ProtectionLow Operating Supply Current: 30µA typLow Standby Current: 1µA max+28V max Input VoltageAvailable in Small 16-Pin QSOP (MAX1666S) and
20-Pin QSOP (MAX1666V/X) Packages
MAX1666S/V/X
Advanced Lithium-Ion
Battery-Pack Protector
________________________________________________________________
Maxim Integrated Products
1
TOP VIEW
20
19
18
17
16
15
14
13
1
2
3
4
5
6
7
8
UVO
V
CC
REF
OVACGO
TKO
DSO
SRC
UVA
MMA
WRN
PKFB1P
B2P
B3P
B3P
12
11
9
10
CGI
DSIPKN
GND
MAX1666V
20
19
18
17
16
15
14
13
1
2
3
4
5
6
7
8
UVO
V
CC
REF
OVACGO
TKO
DSO
SRC
UVA
MMA
WRN
PKFB1P
B2P
B3P
B4P
12
11
9
10
CGI
DSIPKN
GND
MAX1666X
16
15
14
13
12
11
10
9
1
2
3
4
5
6
7
8
SRC V
CC
REF
OVA
UVA
MMA
PKF
CGI
DSI
MAX1666S
DSO
TKO
BIP
CGO
B2P
GND
PKN
QSOP
QSOP QSOP
19-1465; Rev 1; 7/99
PART
MAX1666SEEE MAX1666VEEP MAX1666XEEP -40°C to +85°C
-40°C to +85°C
-40°C to +85°C
TEMP. RANGE PIN-PACKAGE
16 QSOP 20 QSOP 20 QSOP
Pin Configurations
Ordering Information
Selector Guide
Typical Operating Circuits appear at end of data sheet.
NUMBER OF LI-ION CELLSPART
MAX1666S 2
3 4MAX1666X
MAX1666V
MAX1666S/V/X
Advanced Lithium-Ion Battery-Pack Protector
2 _______________________________________________________________________________________
ABSOLUTE MAXIMUM RATINGS
ELECTRICAL CHARACTERISTICS
(V
SRC
= 16V, each cell voltage V
CELL
= 3.6V, 330kload at REF, TA= 0°C to +85°C, unless otherwise noted. Typical values are at
T
A
= +25°C.)
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.
SRC, DSO, TKO, CGO, UVO, PKF, WRN to GND ...-0.3V to +28V
V
CC
, REF, OVA, UVA, MMA to GND ........................-0.3V to +6V
B4P to B3P ...............................................................-0.3V to +6V
B3P to B2P ...............................................................-0.3V to +6V
B2P to B1P ...............................................................-0.3V to +6V
B1P to GND..............................................................-0.3V to +6V
PKN to GND...........................................................................±2V
V
CC
, CGI, DSI to PKN...............................................-0.3V to +6V
Continuous Power Dissipation (T
A
= +70°C)
16-Pin QSOP (derate 8.3mW/°C above +70°C)...........667mW
20-Pin QSOP (derate 9.1mW/°C above +70°C)...........727mW
Operating Temperature Range ...........................-40°C to +85°C
Storage Temperature Range .............................-65°C to +150°C
Lead Temperature (soldering, 10sec) .............................+300°C
No faults, long time average current from the top battery terminal B_P
V
SRC
- V
B_P
= 1V
V
SRC
- V
B_P
R
LOAD
665, 2V < V
CELL
< 4.4V
Pulse on
CONDITIONS
µA
30 45
I
SUP
Supply Current
µA
210
V
1
Charge Mode Detection Threshold SRC Input Current Range
µA1I
SHDN
Shutdown Supply Current
V3.09 3.25 3.41V
CC
VCCOutput Voltage
V2.7 2.85 3
VCCUndervoltage Lockout Threshold
V1.221V
REF
Reference Output Voltage
UNITSMIN TYP MAXSYMBOLPARAMETER
Cell voltage rising
Cell voltage falling
4.378 4.400 4.422
V4.2
3.980 4.000 4.020
Overvoltage Threshold
mV200Overvoltage Threshold Hysteresis
V
1.950 2.000 2.050
Undervoltage Threshold 2.500
2.925 3.000 3.075
OVA, UVA, MMA = REF
Above undervoltage threshold, cell voltage falling
mV
All cells > 2V
-220 -200 -180
PKN to GND Overcharge Current Threshold
nA0.1 20OVA, UVA, MMA Input Current
mV100
mV100Undervoltage Threshold Hysteresis
WRN Early Warning Threshold
mV
±0
Cell Mismatch Threshold
±250
±450 ±500 ±550
mV270 300 330
PKN to GND Overdischarge Current Threshold
OVA = GND V
OVA
= V
REF
/ 2
OVA = REF
UVA = GND V
UVA
= V
REF
/ 2
UVA = REF
MMA = GND V
MMA
= V
REF
/ 2
MMA = REF
mV200
WRN Early Warning Threshold Hysteresis
MAX1666S/V/X
Advanced Lithium-Ion
Battery-Pack Protector
_______________________________________________________________________________________ 3
No faults, long time average current from the top battery terminal B_P
V
SRC
- V
B_P
= 1V to 4V
V
SRC
- V
B_P
4.373 4.427
R
LOAD
665, 2V < V
CELL
< 4.4V
3.975 4.025
CONDITIONS
Overvoltage Threshold
OVA, UVA, MMA = REF
µA
45
I
SUP
Supply Current
µA
10
V
1
Charge Mode Detection Threshold
SRC Input Current Range
nA20OVA, UVA, MMA Leakage
µA1I
SHDN
Shutdown Supply Current
V3.09 3.41V
CC
VCCOutput Voltage
V2.7 3
VCCUndervoltage Lockout Threshold
UNITSMIN TYP MAXSYMBOLPARAMETER
OVA = GND OVA = REF
V
V
2.925 3.075
1.950 2.050
Undervoltage Threshold
UVA = GND UVA = REF
CONDITIONS
No faults, V
DSO
= V
CGO=VUVO
= 1V to 27V
V
DSO
= V
SRC
- 4V and V
CGO
= V
SRC
- 4V,
fault condition
V
DSO
= V
CGO
= V
UVO
= 27V, fault condition
ms1.6 2.4 3.2t
I-DELAY
Overdischarge/Overcharge Current Fault Blanking Time
ms330 550 770t
P-DELAY
Overcurrent Fault Timer Delay
µA20 30 40
DSO, CGO, UVO Output Sink Current
mA210
DSO, CGO Output Source Current
µA0.2
DSO, CGO, UVO Leakage Current
UNITSMIN TYP MAXSYMBOLPARAMETER
V
DSI
, V
CGI
= 5V
Referenced to PKN
Referenced to PKN
Fault condition, V
WRN
= 0.4V
Fault condition, V
PKF
= 0.4V
V
PKF
= V
WRN
= 27V
µA1
DSI, CGI Input Current
V0.45
V2
TKO = GND DSI, CGI Input High Voltage DSI, CGI Input Low Voltage
mA24
WRN Sink Current
mA48
PKF Sink Current
µA0.2
PKF, WRN Leakage Current
k100 200
TKO Pull-Down Resistance
mA18
TKO Source Current
Fault persistent for 4 consecutive sample
periods
ms180 320 460t
F-DELAY
Undervoltage, Overvoltage, or Mismatch Fault, to DSO, CGO, TKO Transition Delay
ELECTRICAL CHARACTERISTICS (continued)
(V
SRC
= 16V, each cell voltage V
CELL
= 3.6V, 330kload at REF, TA= 0°C to +85°C, unless otherwise noted. Typical values are at
T
A
= +25°C.)
ELECTRICAL CHARACTERISTICS
(V
SRC
= 16V, each cell voltage V
CELL
= 3.6V, 330kload at REF, TA= -40°C to +85°C, unless otherwise noted.) (Note 1)
MAX1666S/V/X
Advanced Lithium-Ion Battery-Pack Protector
4 _______________________________________________________________________________________
CONDITIONS
No faults; V
DSO
, V
CGO
, V
UVO
= 1V to 27V
V
DSO
= V
SRC
- 4V and V
CGO
= V
SRC
- 4V,
fault condition
V
DSO
= V
CGO
= V
UVO
= 27V, fault condition
ms1.6 3.2t
I-DELAY
Overdischarge/Overcharge Current Fault Blanking Time
ms330 770t
P-DELAY
mV
All cells > 2V, MMA = REF
-220 -180
PKN to GND Overcharge Current Threshold
Overcurrent Fault Timer Delay
µA20 40
DSO, CGO UVO Output Sink Current
mA2
DSO, CGO Output Source Current
µA0.2
DSO, CGO, UVO Leakage Current
UNITSMIN TYP MAXSYMBOLPARAMETER
mV±450 ±550Cell Mismatch Threshold
mV270 330
PKN to GND Overdischarge Current Threshold
V
DSI
= V
CGI
= 5V
Referenced to PKN
Referenced to PKN
Fault condition, V
WRN
= 0.4V
Fault condition, V
PKF
= 0.4V
V
PKF
= V
WRN
= 27V
µA1
DSI, CGI Input Current
V0.45
V2
TKO = GND DSI, CGI Input High Voltage DSI, CGI Input Low Voltage
mA2
WRN Sink Current
mA4
PKF Sink Current
µA0.2
PKF, WRN Leakage Current
k100
TKO Pull-Down Resistance
mA1
TKO Source Current
Fault persistent for 4 consecutive sample
periods
ms180 460t
F-DELAY
Undervoltage, Overvoltage, or Mismatch Fault, to DSO, CGO, TKO Transition Delay
Note 1: Specifications to -40°C are guaranteed by design, not production tested.
ELECTRICAL CHARACTERISTICS
(V
SRC
= 16V, each cell voltage V
CELL
= 3.6V, 330kload at REF, TA= -40°C to +85°C, unless otherwise noted.) (Note 1)
MAX1666S/V/X
Advanced Lithium-Ion
Battery-Pack Protector
_______________________________________________________________________________________
5
700
720
710
740
730
760
750
770
-40 0 20-20 40 60 80 100
SHUTDOWN SUPPLY CURRENT
vs. TEMPERATURE
MAX1666toc01
TEMPERATURE (°C)
SUPPLY CURRENT (nA)
V
CELL
= 3.6V
25
27
31
29
33
35
-40 0 20-20 40 60 80 100
SUPPLY CURRENT
vs. TEMPERATURE
MAX1666toc02
TEMPERATURE (°C)
SUPPLY CURRENT (µA)
V
CELL
= 3.6V
3.0000
3.0005
3.0010
3.0015
UNDERVOLTAGE THRESHOLD
vs. TEMPERATURE
MAX1666toc03
TEMPERATURE (°C)
UNDERVOLTAGE THRESHOLD (V)
-40 20 40-20 0 60 80 100
UVA = REF
4.385
4.390
4.395
4.400
OVERVOLTAGE THRESHOLD
vs. TEMPERATURE
MAX1666toc04
TEMPERATURE (°C)
UNDERVOLTAGE THRESHOLD (V)
-40 20 40-20 0 60 80 100
OVA = REF
295
297
296
299
298
301
300
302
-40 0 20-20 40 60 80 100
OVERDISCHARGE THRESHOLD
vs. TEMPERATURE
MAX1666toc07
TEMPERATURE (°C)
OVERDISCHARGE THRESHOLD (mV)
495
497
496
499
498
500
501
-40 20 40-20 0 60 80 100
MISMATCH VOLTAGE THRESHOLD
vs. TEMPERATURE
MAX1666toc05
TEMPERATURE (°C)
MISMATCH VOLTAGE THRESHOLD (mV)
MMA = REF
199
200
201
202
203
OVERCHARGE THRESHOLD
vs. TEMPERATURE
MAX1666toc06
TEMPERATURE (°C)
OVERCHARGE THRESHOLD (mV)
-40 20 40-20 0 60 80 100
1ms/div
OVERDISCHARGE PROTECTION
PKN
(0.5V/div)
DSO
(10V/div)
MAX1666toc08
t
I-DELAY
100ms/div
OVERDISCHARGE RECOVERY TIME
(0.5V/div)
(10V/div)
PKN
DSO
MAX1666toc09
t
P
Typical Operating Characteristics
(TA = +25°C, unless otherwise noted.)
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