參數(shù)資料
型號: LM4510SDX/NOPB
廠商: NATIONAL SEMICONDUCTOR CORP
元件分類: 穩(wěn)壓器
英文描述: LM4510 Synchronous Step-Up DC/DC Converter with True Shutdown Isolation; Package: LLP; No of Pins: 10; Qty per Container: 4500/Reel
中文描述: 1.8 A SWITCHING REGULATOR, 1200 kHz SWITCHING FREQ-MAX, DSO10
封裝: 3 X 3 MM, 0.80 MM HEIGHT, LEAD FREE, LLP-10
文件頁數(shù): 4/16頁
文件大小: 2467K
代理商: LM4510SDX/NOPB
MAXIMUM OUTPUT CURRENT
When the output voltage is set at different level, it is important
to know the maximum load capability. By first order estima-
tion, I
OUT(MAX) can be estimated by the following equation:
INDUCTOR SELECTION
The larger value inductor makes lower peak inductor current
and reduces stress on internal power NMOS.
On the other hand, the smaller value inductor has smaller
outline, lower DCR and a higher current capacity. Generally
a 4.7
μH to 15 μH inductor is recommended.
I
L_AVE CHECK
The average inductor current is given by the following equa-
tion:
Where I
OUT is output current, η is the converter efficiency of
the total driven load and D’ is the off duty cycle of the switching
regulator.
Inductor DC current rating (40°C temperature rise) should be
more than the average inductor current at worst case.
ΔI Define
The inductor ripple current is given by the following equations:
Where D is the on-duty cycle of the switching regulator. A
common choice is to set
ΔI
L to about 30% of IL_AVE.
I
L_PKICL Check & IMIN Define
The peak inductor current is given by the following equation:
To prevent loss of regulation, ensure that the NMOS power
switch current limit is greater than the worst-case peak in-
ductor current in the target application.
Also make sure that the inductor saturation current is greater
than the peak inductor current under the worst-case load
transient, high ambient temperature and startup conditions.
Refer to Table 2 for suggested inductors.
TABLE 2. Suggested Inductors and Their Suppliers
Model
Vendor
Dimensions LxWxH (mm)
D.C.R (max)
DO3314-472ML
COILCRAFT
3.3mm x 3.3mm x 1.4mm
320 m
DO3316P-472ML
COILCRAFT
12.95mm x 9.4mm x 5.4mm
18 m
INPUT CAPACITOR SELECTION
Due to the presence of an inductor, the input current wave-
form is continuous and triangular. So the input capacitor is
less critical than output capacitor in boost applications. Typi-
cally, a 4.7
μF to 10 μF ceramic input capacitor is recom-
mended on the VIN pin of the IC.
I
CIN_RMS Check
The RMS current in the input capacitor is given by the follow-
ing equation:
The input capacitor should be capable of handling the RMS
current.
OUTPUT CAPACITOR SELECTION
The output capacitor in a boost converter provides all the out-
put current when the switch is closed and the inductor is
charging. As a result, it sees very large ripple currents.
A ceramic capacitor of value 4.7
μF to 10 μF is recommended
at the output. If larger amounts of capacitance are desired for
improved line support and transient response, tantalum ca-
pacitors can be used.
I
COUT_RMS Check
The RMS current in the output capacitor is given by the fol-
lowing equation:
The output capacitor should be capable of handling the RMS
current.
The ESR and ESL of the output capacitor directly control the
output ripple. Use capacitors with low ESR and ESL at the
output for high efficiency and low ripple voltage. The output
capacitor also affects the soft-start time. See Soft-Start Func-
tion and Soft-Start Capacitor Selection. Table 3 shows sug-
gested input and output capacitors.
www.national.com
12
LM4510
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