LTC4008EGN Linear Technology, LTC4008EGN Datasheet - Page 11

IC BATT CHARGER CTRLR 4A 20SSOP

LTC4008EGN

Manufacturer Part Number
LTC4008EGN
Description
IC BATT CHARGER CTRLR 4A 20SSOP
Manufacturer
Linear Technology
Datasheet

Specifications of LTC4008EGN

Function
Charge Management
Battery Type
Multi-Chemistry
Voltage - Supply
6 V ~ 28 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
20-SSOP (0.154", 3.91mm Width)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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OPERATION
If the charging current decreases below 10% to 15%
of programmed current, while engaged in input current
limiting, BGATE will be forced low to prevent the charger
from discharging the battery. Audible noise can occur in
this mode of operation.
An overvoltage comparator guards against voltage transient
overshoots (>7% of programmed value). In this case, both
MOSFETs are turned off until the overvoltage condition
is cleared. This feature is useful for batteries which “load
dump” themselves by opening their protection switch
to perform functions such as calibration or pulse mode
charging.
PWM Watchdog Timer
There is a watchdog timer that observes the activity on
the BGATE and TGATE pins. If TGATE stops switching for
more than 40μs, the watchdog activates and turns off the
top MOSFET for about 400ns. The watchdog engages to
prevent very low frequency operation in dropout which
is a potential source of audible noise when using ceramic
input and output capacitors.
1.2
0.8
0.6
0.2
1.0
0.4
0
0
I
Figure 2. V
CHARGE
0.309V
20
(% OF MAXIMUM CURRENT)
40
PROG
60
vs I
1.19V
CHARGE
80
4008 F02
100
Charger Startup
When the charger is enabled, it will not begin switching
until the I
tial current will be positive. This threshold is 5% to 15%
of the maximum programmed current (100mV/R
After the charger begins switching, the various loops will
control the current at a level that is higher or lower than
the initial current. The duration of this transient condition
depends upon the loop compensation but is typically less
than 100μs.
Thermistor Detection
The thermistor detection circuit is shown in Figure 3. It
requires an external resistor and capacitor in order to
function properly.
NTC
R
10k
TH
TH
voltage exceeds a threshold that assures ini-
C7
0.47μF
32.4k
R10
8
LTC4008
NTC
Figure 3
S1
D
C
Q
+
+
LTC4008
+
60k
45k
15k
11
SENSE
~4.5V
CLK
TBAD
4008 F03
4008fb
).

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