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LM2596SX-5.0/NOPB 参数 Datasheet PDF下载

LM2596SX-5.0/NOPB图片预览
型号: LM2596SX-5.0/NOPB
PDF下载: 下载PDF文件 查看货源
内容描述: LM2596 SIMPLE SWITCHER电源转换器150千赫3A降压型稳压器 [LM2596 SIMPLE SWITCHER Power Converter 150 kHz 3A Step-Down Voltage Regulator]
分类和应用: 转换器稳压器
文件页数/大小: 42 页 / 4730 K
品牌: TI [ TEXAS INSTRUMENTS ]
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LM2596  
SNVS124C NOVEMBER 1999REVISED APRIL 2013  
www.ti.com  
PROCEDURE (Adjustable Output Voltage Version)  
5. Catch Diode Selection (D1)  
EXAMPLE (Adjustable Output Voltage Version)  
5. Catch Diode Selection (D1)  
A. The catch diode current rating must be at least 1.3 times greater A. Refer to the table shown in Table 6. Schottky diodes provide the  
than the maximum load current. Also, if the power supply design best performance, and in this example a 5A, 40V, 1N5825 Schottky  
must withstand a continuous output short, the diode should have a diode would be a good choice. The 5A diode rating is more than  
current rating equal to the maximum current limit of the LM2596. The adequate and will not be overstressed even for a shorted output.  
most stressful condition for this diode is an overload or shorted  
output condition.  
B. The reverse voltage rating of the diode should be at least 1.25  
times the maximum input voltage.  
C. This diode must be fast (short reverse recovery time) and must be  
located close to the LM2596 using short leads and short printed  
circuit traces. Because of their fast switching speed and low forward  
voltage drop, Schottky diodes provide the best performance and  
efficiency, and should be the first choice, especially in low output  
voltage applications. Ultra-fast recovery, or High-Efficiency rectifiers  
are also a good choice, but some types with an abrupt turn-off  
characteristic may cause instability or EMl problems. Ultra-fast  
recovery diodes typically have reverse recovery times of 50 ns or  
less. Rectifiers such as the 1N4001 series are much too slow and  
should not be used.  
6. Input Capacitor (CIN  
)
6. Input Capacitor (CIN)  
A low ESR aluminum or tantalum bypass capacitor is needed The important parameters for the Input capacitor are the input  
between the input pin and ground to prevent large voltage transients voltage rating and the RMS current rating. With a nominal input  
from appearing at the input. In addition, the RMS current rating of voltage of 28V, an aluminum electrolytic aluminum electrolytic  
the input capacitor should be selected to be at least ½ the DC load capacitor with a voltage rating greater than 42V (1.5 × VIN) would be  
current. The capacitor manufacturers data sheet must be checked to needed. Since the the next higher capacitor voltage rating is 50V, a  
assure that this current rating is not exceeded. The curve shown in 50V capacitor should be used. The capacitor voltage rating of (1.5 ×  
Figure 25 shows typical RMS current ratings for several different VIN) is a conservative guideline, and can be modified somewhat if  
aluminum electrolytic capacitor values.  
desired.  
This capacitor should be located close to the IC using short leads The RMS current rating requirement for the input capacitor of a buck  
and the voltage rating should be approximately 1.5 times the regulator is approximately ½ the DC load current. In this example,  
maximum input voltage.  
with a 3A load, a capacitor with a RMS current rating of at least 1.5A  
is needed.  
If solid tantalum input capacitors are used, it is recomended that they  
be surge current tested by the manufacturer.  
The curves shown in Figure 25 can be used to select an appropriate  
input capacitor. From the curves, locate the 50V line and note which  
capacitor values have RMS current ratings greater than 1.5A. Either  
a 470 μF or 680 μF, 50V capacitor could be used.  
Use caution when using a high dielectric constant ceramic capacitor  
for input bypassing, because it may cause severe ringing at the VIN  
pin.  
For a through hole design, a 680 μF/50V electrolytic capacitor  
(Panasonic HFQ series or Nichicon PL series or equivalent) would  
be adequate. Other types or other manufacturers capacitors can be  
used provided the RMS ripple current ratings are adequate.  
For additional information, see section on input capacitors in  
Application Information section.  
For surface mount designs, solid tantalum capacitors can be used,  
but caution must be exercised with regard to the capacitor surge  
current rting (see Application Information or input capacitors in this  
data sheet). The TPS series available from AVX, and the 593D  
series from Sprague are both surge current tested.  
To further simplify the buck regulator design procedure, Texas  
Instruments is making available computer design software to be  
used with the Simple Switcher line ot switching regulators.  
Switchers Made Simple (version 4.3 or later) is available on a 3½  
diskette for IBM compatible computers.  
LM2596 Series Buck Regulator Design Procedure (Adjustable Output)  
Table 2. Output Capacitor and Feedforward Capacitor Selection Table  
Output  
Voltage  
(V)  
Through Hole Output Capacitor  
Surface Mount Output Capacitor  
Panasonic  
HFQ Series  
(μF/V)  
Nichicon PL  
AVX TPS  
Series  
Sprague  
595D Series  
Feedforward  
Capacitor  
Feedforward  
Capacitor  
Series  
(μF/V)  
(μF/V)  
(μF/V)  
2
4
6
820/35  
560/35  
470/25  
820/35  
470/35  
470/25  
33 nF  
10 nF  
3.3 nF  
330/6.3  
330/6.3  
220/10  
470/4  
390/6.3  
330/10  
33 nF  
10 nF  
3.3 nF  
14  
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Product Folder Links: LM2596  
 
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