參數(shù)資料
型號(hào): LTC4155IUFD#PBF
廠商: LINEAR TECHNOLOGY CORP
元件分類(lèi): 電源管理
英文描述: POWER SUPPLY SUPPORT CKT, PQCC28
封裝: 5 X 4 MM, 0.75 MM HEIGHT, PLASTIC, MO-220WXXX-X, QFN-28
文件頁(yè)數(shù): 24/52頁(yè)
文件大?。?/td> 473K
代理商: LTC4155IUFD#PBF
LTC4155
30
4155f
Battery Charger Operation
The LTC4155 contains a fully featured constant-current/
constant-voltage Li-Ion/Li-Polymer battery charger with
automatic recharge, bad cell detection, trickle charge,
programmable safety timer, thermistor temperature
qualified charging, programmable end-of-charge indica-
tion, programmable float voltage, programmable charge
current, detailed I2C status reporting, and programmable
interrupt generation.
Precharge/Low Battery
When a battery charge cycle begins, the battery charger
first determines if the battery is deeply discharged. If the
batteryvoltageisbelowVTRKL,typically2.85V,theLTC4155
will report the LOWBAT condition via I2C (see Table 18).
If the low battery voltage persists for more than one-half
hour, the battery charger automatically terminates and
indicates via the I2C port that the battery was unrespon-
sive. When the battery voltage is low, charge current is
reduced, both to protect the battery and to prevent exces-
sive power dissipation in the external PMOS transistor.
Figure 1 shows the relationship between battery voltage
and charge current reduction. When input power (USB
or WALL) is unavailable, the I2C LOWBAT indication will
always be true, independent of the actual state of charge
of the battery and can be disregarded.
Constant-Current
When the battery voltage is above approximately 3.4V, the
chargerwillattempttodelivertheprogrammedchargecur-
rentinconstant-currentmode.Dependingonavailableinput
power and external load conditions, the battery charger
may or may not be able to charge at the full programmed
rate. The external load will always be prioritized over the
battery charge current. Likewise, the USB and WALL input
current limit programming will always be observed and
only additional power will be available to charge the bat-
tery. When system loads are light, battery charge current
will be maximized.
The upper limit of charge current is programmed by the
combination of a resistor from PROG to ground and the
PROGservovoltagevaluesetintheI2Cport.Themaximum
charge current will be given by the following expression:
ICHRG =
VPROG
RPROG
1000
VPROG can be set by the I2C port and ranges from 150mV
to 1.2V in 75mV steps. The default value of VPROG is 1.2V.
VPROG is controlled by bits ICHARGE[3:0] located at sub
address 0x02. See Table 11.
Ineithertheconstant-currentorconstant-voltagecharging
modes, the voltage at the PROG pin will be proportional
to the actual charge current delivered to the battery. The
chargecurrentcanbedeterminedatanytimebymonitoring
the PROG pin voltage and using the following relationship:
IBAT =
VPROG
RPROG
1000
Recall, however, that in some cases the actual battery
charge current, IBAT, will be lower than the programmed
current, ICHG, due to limited input power available and
prioritization of the system load drawn from VOUT. RPROG
should be set to match the capacity of the battery without
regard to input power limitations.
Constant-Voltage
Once the battery terminal voltage reaches the preset float
voltage, the battery charger will hold the voltage steady
and the charge current will decrease naturally toward
zero. Four voltage settings are available for final float
voltage selection via the I2C port using bits VFLOAT[1:0]
(Table 12). For applications that require as much run
time as possible, the 4.200V setting can be selected. For
applications that seek to reduce battery aging or tolerate
widertemperatureextremes,theLTC4155featuresalternate
voltage settings as low as 4.050V.
OPERATION
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