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1963AEFE18 参数 Datasheet PDF下载

1963AEFE18图片预览
型号: 1963AEFE18
PDF下载: 下载PDF文件 查看货源
内容描述: 1.5A ,低噪声,快速瞬态响应 [1.5A, Low Noise, Fast Transient Response]
分类和应用:
文件页数/大小: 28 页 / 545 K
品牌: Linear [ Linear ]
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LT1963A Series  
applicaTions inForMaTion  
Y5Vdielectricsaregoodforprovidinghighcapacitancesin  
asmallpackage,butexhibitstrongvoltageandtemperature  
coefficients as shown in Figures 10 and 11. When used  
with a 5V regulator, a 10µF Y5V capacitor can exhibit an  
effective value as low as 1µF to 2µF over the operating  
temperature range. The X5R and X7R dielectrics result in  
more stable characteristics and are more suitable for use  
as the output capacitor. The X7R type has better stability  
across temperature, while the X5R is less expensive and  
is available in higher values.  
“FREE” Resistance with PC Traces  
The resistance values shown in Table 2 can easily be made  
using a small section of PC trace in series with the output  
capacitor. The wide range of non-critical ESR makes it  
easy to use PC trace. The trace width should be sized to  
handle the RMS ripple current associated with the load.  
Theoutputcapacitoronlysourcesorsinkscurrentforafew  
microsecondsduringfastoutputcurrenttransitions.There  
is no DC current in the output capacitor. Worst case ripple  
current will occur if the output load is a high frequency  
(>100kHz) square wave with a high peak value and fast  
edges (< 1µs). Measured RMS value for this case is 0.5  
times the peak-to-peak current change. Slower edges or  
lower frequency will significantly reduce the RMS ripple  
current in the capacitor.  
Voltage and temperature coefficients are not the only  
sources of problems. Some ceramic capacitors have a  
piezoelectric response. A piezoelectric device generates  
voltage across its terminals due to mechanical stress,  
similar to the way a piezoelectric accelerometer or micro-  
phone works. For a ceramic capacitor the stress can be  
induced by vibrations in the system or thermal transients.  
Table 2. PC Trace Resistors  
10mΩ  
20mΩ  
30mΩ  
"
"
"
0.5oz C  
1.0oz C  
2.0oz C  
Width  
0.011 (0.28mm)  
0.011 (0.28mm)  
0.011 (0.28mm)  
U
U
U
"
"
"
Length  
0.102 (2.6mm)  
0.204 (5.2mm)  
0.307 (7.8mm)  
"
"
"
Width  
Length  
0.006 (0.15mm)  
0.006 (0.15mm)  
0.006 (0.15mm)  
"
"
"
0.110 (2.8mm)  
0.220 (5.6mm)  
0.330 (8.4mm)  
"
"
"
"
Width  
Length  
0.006 (0.15mm)  
0.006 (0.15mm)  
0.006 (0.15mm)  
"
"
0.224 (5.7mm)  
0.450 (11.4mm)  
0.670 (17mm)  
40  
20  
20  
0
BOTH CAPACITORS ARE 16V,  
1210 CASE SIZE, 10µF  
X5R  
X5R  
0
–20  
–40  
–60  
–80  
–100  
–20  
–40  
–60  
–80  
–100  
Y5V  
Y5V  
BOTH CAPACITORS ARE 16V,  
1210 CASE SIZE, 10µF  
0
8
12 14  
50  
TEMPERATURE (°C)  
100 125  
2
4
6
10  
16  
–50 –25  
0
25  
75  
DC BIAS VOLTAGE (V)  
1963A F10  
1963A F11  
Figure 11. Ceramic Capacitor Temperature Characteristics  
Figure 10. Ceramic Capacitor DC Bias Characteristics  
1963aff  
17  
For more information www.linear.com/LT1963A  
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