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R5975D bảng dữ liệu(PDF) 39 Page - STMicroelectronics

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Giải thích chi tiết về linh kiện  Up to 3 A step-down switching regulator for aerospace applications
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R5975D bảng dữ liệu(HTML) 39 Page - STMicroelectronics

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R5975D
Application information
47
where the ideal duty cycle D for the boost converter is:
Equation 47
As for positive and inverting buck-boost (see Section 8.6 on page 35 and Section 8.7 on
page 37.) the measured real duty cycle must be used to calculate the switch current level.
The peak current flowing in the embedded switch is:
Equation 48
while its average current is equal to:
Equation 49
This is due to the fact that the current flowing through the internal power switch is delivered
to the output only during the OFF phase.
The switch peak current must be lower than the minimum current limit of the overcurrent
protection (see Table 4 on page 8 for details) while the average current must be lower than
the rated DC current of the device.
As a consequence, the maximum output current is:
Equation 50
where ISW MAX represents the rated current of the device.
Figure 25 shows a tested circuit to implement a boost current source for high current LED
driving (350 mA). To implement a boost conversion the LED string must be composed of
a minimum device number having a total voltage drop larger than maximum input voltage.
The input voltage can be either DC or AC thanks to the input bridge rectifier. In the case of
a DC voltage source D1, D2, D3, D4, C1, and C2 can be removed from the circuit and 1 F
capacitor value can be used for C5.
D
VOUT VIN
VOUT
------------------------------
=
ISW
ILOAD
1D
---------------
IRIPPLE
2
--------------------
+
ILOAD
1D
---------------
VIN
2L
-----------
D
fSW
---------
+
==
ISW
ILOAD
1D
---------------
=
IOUT MAX ISW MAX 1D




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