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CR43-220 参数 Datasheet PDF下载

CR43-220图片预览
型号: CR43-220
PDF下载: 下载PDF文件 查看货源
内容描述: 1.2MHz的/采用ThinSOT封装的2.2MHz的输出DC / DC转换器 [1.2MHz/2.2MHz Inverting DC/DC Converters in ThinSOT]
分类和应用: 转换器
文件页数/大小: 12 页 / 426 K
品牌: Linear [ Linear ]
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LT1931/LT1931A  
W U U  
U
APPLICATIO S I FOR ATIO  
The inductors shown in Table 2 for use with the LT1931A  
were chosen for their small size. For better efficiency, use  
similar valued inductors with a larger volume. For in-  
stance, the Sumida CR43 series, in values ranging from  
3.3µH to 10µH, will give a LT1931A application a few  
percentage points increase in efficiency.  
zero to the system. For the tantalum and OS-CON capaci-  
tors, this zero is located at a lower frequency due to the  
higher value of the ESR, while the zero of a ceramic  
capacitor is at a much higher frequency and can generally  
be ignored.  
A phase lead zero can be intentionally introduced by  
placing a capacitor (C4) in parallel with the resistor (R1)  
between VOUT and VNFB as shown in Figure 1. The  
frequency of the zero is determined by the following  
equation.  
CAPACITOR SELECTION  
Low ESR (equivalent series resistance) capacitors should  
beusedattheoutputtominimizetheoutputripplevoltage.  
Multilayer ceramic capacitors are an excellent choice, as  
they have an extremely low ESR and are available in very  
small packages. X5R dielectrics are preferred, followed by  
X7R, as these materials retain their capacitance over wide  
voltage and temperature ranges. A 10µF to 22µF output  
capacitor is sufficient for most LT1931 applications while  
a 4.7µF to 10µF capacitor will suffice for the LT1931A.  
Solid tantalum or OS-CON capacitors can be used, but  
they will occupy more board area than a ceramic and will  
haveahigherESR. Alwaysuseacapacitorwithasufficient  
voltage rating.  
1
ƒZ  
=
2π R1•C4  
By choosing the appropriate values for the resistor and  
capacitor, the zero frequency can be designed to improve  
the phase margin of the overall converter. The typical  
target value for the zero frequency is between 20kHz to  
60kHz. Figure 3 shows the transient response of the  
inverting converter from Figure 1 without the phase lead  
capacitor C4. The phase margin is reduced as evidenced  
by more ringing in both the output voltage and inductor  
current. A 220pF capacitor for C4 results in better phase  
margin, which is revealed in Figure 4 as a more damped  
responseandlessovershoot. Figure5showsthetransient  
response when a 22µF tantalum capacitor with no phase  
lead capacitor is used on the output. The higher output  
voltage ripple is revealed in the upper waveform as a  
thicker line. The transient response is adequate which  
implies that the ESR zero is improving the phase margin.  
Ceramic capacitors also make a good choice for the input  
decoupling capacitor, which should be placed as close as  
possible to the LT1931/LT1931A. A 1µF to 4.7µF input  
capacitorissufficientformostapplications.Table3shows  
a list of several ceramic capacitor manufacturers. Consult  
the manufacturers for detailed information on their entire  
selection of ceramic parts.  
Table 3. Ceramic Capacitor Manufacturers  
Taiyo Yuden  
(408) 573-4150  
www.t-yuden.com  
VOUT  
20mV/DIV  
AC COUPLED  
AVX  
(803) 448-9411  
www.avxcorp.com  
Murata  
(714) 852-2001  
www.murata.com  
I
L1A + IL1B  
0.5A/DIV  
AC COUPLED  
200mA  
100mA  
LOAD  
CURRENT  
ThedecisiontouseeitherlowESR(ceramic)capacitorsor  
the higher ESR (tantalum or OS-CON) capacitors can  
effect the stability of the overall system. The ESR of any  
capacitor, along with the capacitance itself, contributes a  
100µs/DIV  
1931 F03  
Figure 3. Transient Response of Inverting Converter  
Without Phase Lead Capacitor  
1931fa  
6
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