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AME5140AEEAADJZ3 参数 Datasheet PDF下载

AME5140AEEAADJZ3图片预览
型号: AME5140AEEAADJZ3
PDF下载: 下载PDF文件 查看货源
内容描述: 1.6 MHz的升压转换器30V内部FET开关 [1.6 MHz Boost Converter With 30V Internal FET Switch]
分类和应用: 转换器开关升压转换器
文件页数/大小: 22 页 / 214 K
品牌: AME [ ANALOG MICROELECTRONICS ]
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AME, Inc.  
1.6 MHz Boost Converter with  
30V Internal FET Switch  
AME5140  
n Application Hints  
Calculating Load Current  
Shutdown Pin Operation  
The device is turned off by pulling the shutdown pin low.  
If this function is not going to be used, the pin should be  
tied directly to VIN. If the SHDN function will be needed, a  
pull-up resistor must be used to VIN (approximately 50k-  
100k recommended). The EN pin must not be left  
unterminated.  
The load current is related to the average inductor cur-  
rent by the relation:  
ILOAD = IIND (AVG) x (1 - D)  
Where Dis the duty cycle of the application. The  
switch current can be found by:  
ISW = IIND (AVG) + 1 /2 (IRIPPLE  
)
Inductor ripple current is dependent on inductance, duty  
cycle, input voltage and frequency:  
IRIPPLE = D x (VIN-VSW) / (f x L)  
Combining all terms, we can develop an expression  
which allows the maximum available load current to be  
calculated:  
D ( VIN-VSW  
2fL  
)
I
LOAD = ( 1-D ) x ( ISW (max) -  
)
Thermal Consuderations  
At higher duty cycles, the increased ON time of the  
FET means the maximum output current will be deter-  
mined by power dissipation within the AME5140 FET  
switch. The switch power dissipation from ON-state con-  
duction is calculated by:  
P(SW) = D x IIND(AVE)2 x RDS(ON)  
There will be some switching losses as well, so some  
derating needs to be applied when calculating IC power  
dissipation.  
Inductor Suppliers  
Recommended suppliers of inductors for this product  
include, but are not limited to Sumida, Coilcraft, Panasonic,  
TDK and Murata. When selecting an inductor, make cer-  
tain that the continuous current rating is high enough to  
avoid saturation at peak currents. A suitable core type  
must be used to minimize core (switching) losses, and  
wire power losses must be considered when selecting  
the current rating.  
Rev.G.01  
12  
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