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LSP5502 датащи(PDF) 4 Page - Lite-On Technology Corporation

номер детали LSP5502
подробное описание детали  2A Synchronous Step Down DC/DC Converter
PDF  11 Pages
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производитель  LITEON [Lite-On Technology Corporation]
домашняя страница  http://www.liteon.com.tw/databook/default.htm
Logo LITEON - Lite-On Technology Corporation

LSP5502 датащи(HTML) 4 Page - Lite-On Technology Corporation

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LSP5502
2A Synchronous Step Down DC/DC Converter
4/11
Rev. 1.7
www.liteon-semi.com
APPLICATION INFORMATION
Output Voltage Setting
Figure1. Output Voltage Setting
Figure 1 shows the connections for setting the output voltage. Select the proper ratio of the two feedback resistors
RFB1 and RFB2 based on the output voltage. Typically, use RFB2 ≈ 10kΩ and determine RFB1 from the following
equation:
(1)
Table 1-Recommended Resistance Values
VOUT
RFB1
RFB2
1.0V
1.0kΩ
12kΩ
1.2V
3.0kΩ
10kΩ
1.8V
9.53kΩ
10kΩ
2.5V
16.9kΩ
10kΩ
3.3V
26.1kΩ
10kΩ
5V
44.2kΩ
10kΩ
12V
121kΩ
10kΩ
Inductor Selection
The inductor maintains a continuous current to the output load. This inductor current has a ripple that is dependent
on the inductance value: higher inductance reduces the peak-to-peak ripple current. The trade off for high
inductance value is the increase in inductor core size and series resistance, and the reduction in current handling
capability. In general, select an inductance value L based on the ripple current requirement:
RIPPLE
OUTMAX
SW
IN
OUT
IN
OUT
K
I
f
V
)
V
V
(
V
L
=
(2)
where VIN is the input voltage, VOUT is the output voltage, fSW is the switching frequency, IOUTMAX is the maximum
output current, and KRIPPLE is the ripple factor. Typically, choose KRIPPLE = 30% to correspond to the peak-to-peak
ripple current being 30% of the maximum output current.
With this inductor value, the peak inductor current is IOUT • (1 + KRIPPLE / 2). Make sure that this peak inductor current
is less that the 3A current limit. Finally, select the inductor core size so that it does not saturate at 3A. Typical
inductor values for various output voltages are shown in Table 1.
VOUT 1.0V 1.2V 1.5V 1.8V 2.5V 3.3V
5V
L
4.7uH 4.7uH 6.8µH6.8µH 10µH 10µH 15µH
Table 1. Typical Inductor Values
Input Capacitor
Free Datasheet http://www.nDatasheet.com



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