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C3216X5R0J476M 参数 Datasheet PDF下载

C3216X5R0J476M图片预览
型号: C3216X5R0J476M
PDF下载: 下载PDF文件 查看货源
内容描述: 5A , 24V , 570kHz降压转换器 [5A, 24V, 570kHz Step-Down Converter]
分类和应用: 转换器
文件页数/大小: 16 页 / 482 K
品牌: RICHTEK [ RICHTEK TECHNOLOGY CORPORATION ]
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RT8251  
Table 2. Suggested Inductors for Typical  
Application Circuit  
The output ripple, ΔVOUT , is determined by :  
1
ΔVOUT ≤ ΔIL ESR +  
8fCOUT  
Component  
Supplier  
TDK  
Series  
Dimensions (mm)  
The output ripple will be highest at the maximum input  
SLF10165  
NR10050  
VLF12060  
10.1x10.1x7  
10x9.8x5  
voltage since ΔIL increases with input voltage. Multiple  
capacitors placed in parallel may be needed to meet the  
ESR and RMS current handling requirement.Dry tantalum,  
special polymer, aluminum electrolytic and ceramic  
capacitors are all available in surface mount packages.  
Special polymer capacitors offer very low ESR value.  
However, it provides lower capacitance density than other  
types. Although Tantalum capacitors have the highest  
capacitance density, it is important to only use types that  
pass the surge test for use in switching power supplies.  
Aluminum electrolytic capacitors have significantly higher  
ESR. However, it can be used in cost-sensitive applications  
for ripple current rating and long term reliability  
considerations. Ceramic capacitors have excellent low  
ESR characteristics but can have a high voltage coefficient  
and audible piezoelectric effects. The high Q of ceramic  
capacitors with trace inductance can also lead to significant  
ringing.  
TAIYO YUDEN  
TDK  
12x11.7x6  
Diode Selection  
When the power switch turns off, the path for the current  
is through the diode connected between the switch output  
and ground. This forward biased diode must have a  
minimum voltage drop and recovery times. Schottky diode  
is recommended and it should be able to handle those  
current. The reverse voltage rating of the diode should be  
greater than the maximum input voltage, and current rating  
should be greater than the maximum load current. For  
more detail please refer to Table 4.  
CIN and COUT Selection  
The input capacitance, CIN, is needed to filter the  
trapezoidal current at the source of the high side MOSFET.  
To prevent large ripple current, a low ESR input capacitor  
sized for the maximum RMS current should be used. The  
RMS current is given by :  
Higher values, lower cost ceramic capacitors are now  
becoming available in smaller case sizes. Their high ripple  
current, high voltage rating and low ESR make them ideal  
for switching regulator applications. However, care must  
be taken when these capacitors are used at input and  
output. When a ceramic capacitor is used at the input  
and the power is supplied by a wall adapter through long  
wires, a load step at the output can induce ringing at the  
input, VIN. At best, this ringing can couple to the output  
and be mistaken as loop instability. At worst, a sudden  
inrush of current through the long wires can potentially  
cause a voltage spike at VIN large enough to damage the  
part.  
V
V
V
IN  
V
OUT  
OUT  
I
= I  
1  
RMS  
OUT(MAX)  
IN  
This formula has a maximum at VIN = 2VOUT, where  
IRMS = IOUT/2. This simple worst-case condition is  
commonly used for design because even significant  
deviations do not offer much relief.  
Choose a capacitor rated at a higher temperature than  
required. Several capacitors may also be paralleled to  
meet size or height requirements in the design.  
For the input capacitor, two 10μF low ESR ceramic  
capacitors are recommended. For the recommended  
capacitor, please refer to table 3 for more detail.  
Checking Transient Response  
The regulator loop response can be checked by looking  
at the load transient response. Switching regulators take  
several cycles to respond to a step in load current. When  
a load step occurs, VOUT immediately shifts by an amount  
equal to ΔILOAD (ESR) also begins to charge or discharge  
COUT generating a feedback error signal for the regulator  
The selection of COUT is determined by the required ESR  
to minimize voltage ripple.  
Moreover, the amount of bulk capacitance is also a key  
for COUT selection to ensure that the control loop is stable.  
Loop stability can be checked by viewing the load transient  
response as described in a later section.  
Copyright 2013 Richtek Technology Corporation. All rights reserved.  
©
is a registered trademark of Richtek Technology Corporation.  
www.richtek.com  
10  
DS8251-04 February 2013