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TJ4519 参数 Datasheet PDF下载

TJ4519图片预览
型号: TJ4519
PDF下载: 下载PDF文件 查看货源
内容描述: 600kHz的3A降压型开关稳压器 [600kHz 3A Step-Down Switching Regulator]
分类和应用: 稳压器开关
文件页数/大小: 11 页 / 478 K
品牌: HTC [ HTC KOREA TAEJIN TECHNOLOGY CO. ]
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600kHz 3A Step-Down Switching Regulator  
TJ4519  
VO (1-D)  
IOMAX = 3 -  
2•L • fs  
Where:  
fS = switching frequency,  
VO = output voltage  
D = duty ratio, VO/VI  
VI = input Voltage.  
Figure 2 shows the theoretical maximum load current for the specific cases. In a real application, however, the  
allowed maximum load current also depends on the layout and the air cooling condition. Therefore, the maximum  
load current may need to be degraded according to the thermal situation of the application.  
Maximum Load Current vs. Input Voltage  
L=10uH  
VO = 2.5V  
V
O = 3.3V  
O = 5.0V  
V
VI (V)  
Figure 2. Theoretical maximum load current curves  
Inductor Selection  
The factors for selecting the inductor include its cost, efficiency, size and EMI. For a typical TJ4519 application,  
the inductor selection is mainly based on its value, saturation current and DC resistance. Increasing the inductor  
value will decrease the ripple level of the output voltage while the output transient response will be degraded. Low  
value inductors offer small size and fast transient responses while they allow large ripple currents, poor  
efficiencies and require more output capacitance for low output ripple. The inductor should be able to handle the  
peak current without saturating and its copper resistance in the winding should be as low as possible to minimize  
its resistive power loss. A good trade-off among its size, loss and cost is to set the inductor ripple current to be  
within 15% to 30% of the maximum output current.  
The inductor value can be determined according to its operating point under its continuous mode and the  
switching frequency as follows:  
VO (V - VO )  
I
L =  
V • fs δ IOMAX  
I
Where :  
fs = switching frequency,  
δ = ratio of the peak to peak inductor current to the output load current  
Vo = output voltage.  
Jul. 2010 – Preliminary  
- 6 -  
HTC  
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