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FSP3129 Datasheet(PDF) 4 Page - FOSLINK SEMICONDUCTOR CO.,LTD

Part # FSP3129
Description  WIDE INPUT 2A STEP-DOWN CONVERTER
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Manufacturer  FOSLINK [FOSLINK SEMICONDUCTOR CO.,LTD]
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FSP3129 Datasheet(HTML) 4 Page - FOSLINK SEMICONDUCTOR CO.,LTD

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WIDE INPUT 2A STEP-DOWN CONVERTER
2007-1-4
4/10
FSP3129
TYPICAL APPLICATION CIRCUIT
APPLICATION INFORMATION
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 output voltage:
Figure 1 Output Voltage Setting
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 ripple current requirement.
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 (Table 1), the peak inductor current is IOUT
• (1 + KRIPPLE / 2). Make sure that this peak inductor current is less that the 2.4A current limit. Finally, select the
inductor core size so that it does not saturate at 2.4A.
VOUT
1.5V
1.8V
2.5V
3.3V
5V
L
6.8µ H 6.8µ H 6.8µ H 8.5µ H
15µ H
Table 1: Typical Inductor Values


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