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ST1S32 bảng dữ liệu(PDF) 17 Page - STMicroelectronics

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ST1S32
Application information
Doc ID 023246 Rev 1
17/29
The slope compensation, to prevent the sub-harmonic instability in peak current control
loop, is internally managed and so fixed. This implies a further lower limit for the inductor
value. To assure the sub-harmonic stability:
Equation 20
where Vpp is the peak-to-peak value of the slope compensation ramp.
The inductor value selected, based on Equation 19, must satisfy Equation 20.
The peak current through the inductor is given by:
Equation 21
So if the inductor value decreases, the peak current (that must be lower than the current
limit of the device) increases. The higher the inductor value, the higher the average output
current that can be delivered, without reaching the current limit.
In Table 7 some inductor part numbers are listed.
5.3
Output capacitor selection
The current in the output capacitor has a triangular waveform which generates a voltage
ripple across it. This ripple is due to the capacitive component (charge or discharge of the
output capacitor) and the resistive component (due to the voltage drop across its ESR). So
the output capacitor must be selected in order to have a voltage ripple compliant with the
application requirements.
The amount of the voltage ripple can be calculated starting from the current ripple obtained
by the inductor selection.
Table 7.
Inductors
Manufacturer
Series
Inductor value (µH)
Saturation current (A)
Coilcraft
XAL50xx
1.2 to 3.3
6.3 to 9
XAL60xx
2.2 to 5.6
7.4 to 11
MSS1048
1.0 to 3.8
6.5 to 11
Wurth
WE-HCI 7030
1.5 to 4.7
7 to 14
WE-PD type L
1.5 to 3.5
6.4 to 10
Coiltronics
DR73
1.0 to 2.2
5.5 to 7.9
DR74
1.5 to 3.3
5.4 to 8.35
LV
out
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pp
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LPK
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O
ΔI
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2
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