参数资料
型号: ILC6363
厂商: Fairchild Semiconductor Corporation
元件分类: DC/DC变换器
英文描述: Step-Up DC-DC Converter for One-Cell Lithium-Ion Batteries
中文描述: 升压型DC - DC转换器为一节锂离子电池
文件页数: 6/14页
文件大小: 158K
代理商: ILC6363
ILC6363
PRODUCT SPECIFICATION
6
REV. 1.3.5 5/21/02
Figure 5. PFM Waveform
Other Considerations
The other limitation of PWM techniques is that, while the
fundamental switching frequency is easier to filter out since
it's constant, the higher order harmonics of PWM will be
present and may have to be filtered out, as well. Any filtering
requirements, though, will vary by application and by actual
system design and layout, so generalizations in this area are
difficult, at best.
However, PWM control for boost DC-DC conversion is
widely used, especially in audio-noise sensitive applications
or applications requiring strict filtering of the high frequency
components.
Low Battery Detector
The ILC6363's low battery detector is a based on a CMOS
comparator. The negative input of the comparator is tied to
an internal 1.25V (nominal) reference, V
REF
. The positive
input is the LBI/SD pin. It uses a simple potential divider
arrangement with two resistors to set the LBI threshold as
shown in Figure 6. The input bias current of the LBI pin is
only 200nA. This means that the resistor values R1 and R2
can be set quite high. The formula for setting the LBI
threshold is:
VLBI = VREF x (1+R5/R6)
Since the LBI input current is negligible (<200nA), this
equation is derived by applying voltage divider formula
across R6. A typical value for R6 is 100k
.
R5 = 100k
x [(VLBI/VREF) -1],
where VREF=1.25V (nom.)
The LBI detector has a built in delay of 120ms. In order to
get a valid low-battery-output (LBO) signal, the input volt-
age must be lower than the low-battery-input (LBI) threshold
for a duration greater than the low battery hold time
(t
hold(LBI)
) of 120msec. This feature eliminates false trigger-
ing due to voltage transients at the battery terminal caused by
high frequency switching currents.
Figure 6. Low Battery Detector
The output of the low battery detector is an open drain
capable of sinking 2mA. A 10k
pull-up resistor is
recommended on this output.
For V
LBI
< 1.25V
The low battery detector can also be configured for voltages
<1.25V by bootstrapping the LBI input from V
OUT
. The
circuitry for this is shown in Figure 7.
Figure 7. V
LBI
< 1.25V
The following equation is used when V
IN
is lower than
1.25V:
R1 = R2 x [(V
REF
– V
IN
) / (V
OUT
– V
REF
)],
where V
REF
= 1.25V (nom.)
This equation can also be derived using voltage divider
formula across R2. A typical value for R2 is 100k
.
Shut Down
The LBI pin is shared with the shutdown pin. A low voltage
(<0.4V) will put the ILC6363 into a power down state. The
simplest way to implement this is with an FET across R6 as
shown in Figure 8. Note that when the device is not in PWM
mode or is in shutdown the low battery detector does not
operate.
V
SET
V
OUT
Switch Waveform
R6
R5
LBI/SD
3
2 V
IN
ILC6363
Shutdown
DELAY
100ms
1.25V
Internal
Reference
GND
7
LBO
3.3V
R
PU
6
+
-
V
OUT
8
R2
3
LBI/SD
V
IN
R1
ILC6363
+
-
1.25V
Internal
Reference
GND
7
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