參數(shù)資料
型號(hào): L5981TR
廠商: STMICROELECTRONICS
元件分類(lèi): 穩(wěn)壓器
英文描述: 1 A SWITCHING REGULATOR, 1000 kHz SWITCHING FREQ-MAX, PDSO8
封裝: 3 X 3 MM, 1.08 MM HEIGHT, LEAD FREE, VFQFPN-8
文件頁(yè)數(shù): 7/37頁(yè)
文件大?。?/td> 714K
代理商: L5981TR
L5981
Application information
Doc ID 13004 Rev 6
15/37
5.2
Inductor selection
The inductance value fixes the current ripple flowing through the output capacitor. So the
minimum inductance value in order to have the expected current ripple has to be selected.
The rule to fix the current ripple value is to have a ripple at 20 % - 40 % of the output current.
In the continuos current mode (CCM), the inductance value can be calculated by the
following equation:
Equation 6
Where TON is the conduction time of the internal high side switch and TOFF is the conduction
time of the external diode (in CCM, FSW = 1 / (TON + TOFF)). The maximum current ripple, at
fixed Vout, is obtained at maximum TOFF that is at minimum duty cycle (see previous section
to calculate minimum duty). So fixing
ΔI
L = 20 % to 40 % of the maximum output current, the
minimum inductance value can be calculated:
Equation 7
where FSW is the switching frequency, 1/(TON + TOFF).
For example for VOUT = 3.3 V, VIN = 12 V, IO = 1 A and FSW = 250 kHz the minimum
inductance value to have
ΔI
L = 30 % of IO is about 31 μH.
The peak current through the inductor is given by:
Equation 8
So if the inductor value decreases, the peak current (that has to be lower than the current
limit of the device) increases. The higher is the inductor value, the higher is the average
output current that can be delivered, without reaching the current limit.
In the table below some inductor part numbers are listed.
Table 7.
Inductors
Manufacturer
Series
Inductor value (
μH)
Saturation current (A)
Wurth
PD M
10 to 18
1.7 to 2.2
Coilcraft
MSS1038
22 to 47
1.9 to 2.9
LPS6235
10 to 18
1.8 to 2.4
Coiltronics
DRQ73
10 to 22
1.67 to 2.47
LD2
27 to 47
1.64 to 2.1
SUMIDA
CDR6D28MN
10 to 22
1.65 to 2.5
CDRH105RNP
27 to 56
1.9 to 2.7
ΔI
L
V
IN
V
OUT
L
------------------------------ T
ON
V
OUT
V
F
+
L
---------------------------- T
OFF
==
L
MIN
V
OUT
V
F
+
ΔI
MAX
----------------------------
1D
MIN
F
SW
-----------------------
=
I
LPK
,
I
O
ΔI
L
2
--------
+
=
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