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LM2672M-ADJ 参数 Datasheet PDF下载

LM2672M-ADJ图片预览
型号: LM2672M-ADJ
PDF下载: 下载PDF文件 查看货源
内容描述: SIMPLE SWITCHER电源转换器高效率1A降压型稳压器与特点 [SIMPLE SWITCHER Power Converter High Efficiency 1A Step-Down Voltage Regulator with Features]
分类和应用: 转换器稳压器开关光电二极管
文件页数/大小: 25 页 / 890 K
品牌: NSC [ NATIONAL SEMICONDUCTOR ]
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LM2672
LM2672 Series Buck Regulator Design Procedure (Fixed Output)
PROCEDURE (Fixed Output Voltage Version)
1. Inductor Selection (L1)
A.
Select the correct inductor value selection guide from
and
or
(output voltages of 3.3V, 5V, or 12V
respectively). For all other voltages, see the design procedure
for the adjustable version.
B.
From the inductor value selection guide, identify the
inductance region intersected by the Maximum Input Voltage
line and the Maximum Load Current line. Each region is
identified by an inductance value and an inductor code (LXX).
C.
Select an appropriate inductor from the four manufacturer’s
part numbers listed in
Each manufacturer makes a
different style of inductor to allow flexibility in meeting various
design requirements. Listed below are some of the
differentiating characteristics of each manufacturer’s inductors:
Schott:
ferrite EP core inductors; these have very low leakage
magnetic fields to reduce electro-magnetic interference (EMI)
and are the lowest power loss inductors
Renco:
ferrite stick core inductors; benefits are typically lowest
cost inductors and can withstand E
T and transient peak
currents above rated value. Be aware that these inductors have
an external magnetic field which may generate more EMI than
other types of inductors.
Pulse:
powered iron toroid core inductors; these can also be low
cost and can withstand larger than normal E
T and transient
peak currents. Toroid inductors have low EMI.
Coilcraft:
ferrite drum core inductors; these are the smallest
physical size inductors, available only as SMT components. Be
aware that these inductors also generate EMI — but less than
stick inductors.
Complete specifications for these inductors are available from
the respective manufacturers. A table listing the manufacturers’
phone numbers is located in
2. Output Capacitor Selection (C
OUT
)
A.
Select an output capacitor from the output capacitor table in
Using the output voltage and the inductance value
found in the inductor selection guide, step 1, locate the
appropriate capacitor value and voltage rating.
The capacitor list contains through-hole electrolytic capacitors
from four different capacitor manufacturers and surface mount
tantalum capacitors from two different capacitor manufacturers.
It is recommended that both the manufacturers and the
manufacturer’s series that are listed in the table be used. A
table listing the manufacturers’ phone numbers is located in
(Continued)
EXAMPLE (Fixed Output Voltage Version)
1. Inductor Selection (L1)
A.
Use the inductor selection guide for the 5V version shown in
B.
From the inductor value selection guide shown in
the inductance region intersected by the 12V horizontal line and
the 1A vertical line is 33 µH, and the inductor code is L23.
C.
The inductance value required is 33 µH. From the table in
go to the L23 line and choose an inductor part number
from any of the four manufacturers shown. (In most instances,
both through hole and surface mount inductors are available.)
2. Output Capacitor Selection (C
OUT
)
A.
Use the 5.0V section in the output capacitor table in
Choose a capacitor value and voltage rating from the line
that contains the inductance value of 33 µH. The capacitance
and voltage rating values corresponding to the 33 µH inductor
are the:
Surface Mount:
68 µF/10V Sprague 594D Series.
100 µF/10V AVX TPS Series.
Through Hole:
68 µF/10V Sanyo OS-CON SA Series.
220 µF/35V Sanyo MV-GX Series.
220 µF/35V Nichicon PL Series.
220 µF/35V Panasonic HFQ Series.
11
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