參數(shù)資料
型號(hào): ISL6298-2CR3
廠商: Intersil Corporation
英文描述: Li-ion/Li-Polymer Battery Charger
中文描述: 鋰聚合物電池充電器
文件頁數(shù): 12/17頁
文件大?。?/td> 445K
代理商: ISL6298-2CR3
12
FN9173.3
July 20, 2005
pulled up to the V2P8 pin voltage, higher than the Battery
Removal Threshold V
RMV
, and the charger is disabled.
Comparators CP2 and CP3 form a window comparator and
the two transistors, Q1 and Q2, create hysteresis for the two
window thresholds respectively. When the TEMP pin voltage
is “out of the window,” determined by the V
TMIN
and V
TMAX
,
the ISL6298 stops charging and indicates a fault condition.
When the temperature returns to within the window, the
charger re-starts a charge cycle. See the Application
Information for more details on the NTC thermistor selection.
Thermal Foldback
Over-heating is always a concern in a linear charger. The
maximum power dissipation usually occurs at the beginning
of a charge cycle when the battery voltage is at its minimum
but the charge current is at its maximum. The charge current
thermal foldback function in the ISL6298 frees users from
the over-heating concern.
Figure 22 shows the typical charge curves in a charge cycle,
using a constant voltage input. Once the internal
temperature reaches 100°C, the ISL6298 starts to reduce
the charge current to prevent further temperature rise. The
power dissipation is directly related to the thermal
impedance, which is related to the layout of the printed-
circuit board, and the ambient temperature. The dotted lines
show the power limit and the current waveforms in two cases
that the thermal foldback occurs. The current is reduced and
gradually increases to the constant charge current as the
battery voltage rises.
Usually the charge current should not drop below the EOC
current because of the thermal foldback. For some extreme
cases if that does happen, the charger does not indicate
end-of-charge unless the battery voltage is already above
the recharge threshold.
Indications
The ISL6298 has three indications: the input presence, the
charge status, and the fault indication. The input presence is
indicated by the V2P8 pin while the other two indications are
presented by the STATUS pin and FAULT pin respectively.
Figure 23 shows the V2P8 pin voltage vs. the input voltage.
The V2P8 pin outputs a 2.8V voltage (blue waveform) when
the input voltage (yellow waveform) rises above 3.4V rising
POR threshold and falls to zero volt when the input voltage
falls below the 2.4V falling POR threshold. The V2P8 pin can
be used as a logic signal for the input presence.
+
-
+
-
V2P8
TEMP
GND
2.8V
R2
60K
R3
75K
R4
25K
R5
4K
Q1
Q2
CP2
CP3
Under
Temp
Over
Temp
ISL6298
R
U
To TEMP Pin
V
TMIN
V
TMAX
R
T
+
-
R1
40K
Battery
Removal
CP1
V
RMV
FIGURE 21. THE INTERNAL AND EXTERNAL CIRCUIT FOR
THE NTC INTERFACE
FIGURE 22. TYPICAL CHARGE CURVES USING A
CONSTANT-VOLTAGE INPUT
V
CH
V
MIN
V
IN
I
REF
I
REF
/5
P
1
P
2
P
3
Trickle
Mode
Constant Current
Mode
Constant Voltage
Mode
Inhibit
TIMEOUT
Input Voltage
Battery Voltage
Charge Current
Power Dissipation
FIGURE 23. THE V2P8 PIN OUTPUT vs THE INPUT VOLTAGE
AT THE VIN PIN. VERTICAL: 1V/DIV,
HORIZONTAL: 100ms/DIV
3.4V
2.4V
2.8V
V
IN
V2P8
ISL6298
相關(guān)PDF資料
PDF描述
ISL6298-2CR3Z Quadruple 2-Input Exclusive-OR Gates 14-SOIC -40 to 85
ISL6298-2CR4Z Li-ion/Li-Polymer Battery Charger
ISL6298CR4Z Quadruple 2-Input Exclusive-OR Gates 14-SSOP -40 to 85
ISL6298-2CR4Z-T Li-ion/Li-Polymer Battery Charger
ISL6298CR4Z-T Li-ion/Li-Polymer Battery Charger
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