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TPS61040DDCT 参数 Datasheet PDF下载

TPS61040DDCT图片预览
型号: TPS61040DDCT
PDF下载: 下载PDF文件 查看货源
内容描述: 低功耗DC / DC升压转换器采用SOT -23和儿子套餐 [LOW-POWER DC/DC BOOST CONVERTER IN SOT-23 AND SON PACKAGES]
分类和应用: 转换器稳压器开关式稳压器或控制器电源电路开关式控制器光电二极管升压转换器
文件页数/大小: 27 页 / 977 K
品牌: TI [ TEXAS INSTRUMENTS ]
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TPS61040  
TPS61041  
SLVS413F OCTOBER 2002REVISED DECEMBER 2010  
www.ti.com  
APPLICATION INFORMATION  
INDUCTOR SELECTION, MAXIMUM LOAD CURRENT  
Because the PFM peak current control scheme is inherently stable, the inductor value does not affect the stability  
of the regulator. The selection of the inductor together with the nominal load current, input and output voltage of  
the application determines the switching frequency of the converter. Depending on the application, inductor  
values between 2.2 mH and 47 mH are recommended. The maximum inductor value is determined by the  
maximum on time of the switch, typically 6 ms. The peak current limit of 400 mA/250 mA (typically) should be  
reached within this 6-ms period for proper operation.  
The inductor value determines the maximum switching frequency of the converter. Therefore, select the inductor  
value that ensures the maximum switching frequency at the converter maximum load current is not exceeded.  
The maximum switching frequency is calculated by the following formula:  
V
  (V  
* V  
IN(min)  
OUT  
  L   V  
IN)  
fS  
+
max  
I
P
OUT  
Where:  
IP = Peak current as described in the Peak Current Control section  
L = Selected inductor value  
VIN(min) = The highest switching frequency occurs at the minimum input voltage  
(2)  
If the selected inductor value does not exceed the maximum switching frequency of the converter, the next step  
is to calculate the switching frequency at the nominal load current using the following formula:  
2   I  
  (V  
* V ) Vd)  
load  
OUT  
IN  
fSǒIloadǓ+  
2
I
  L  
P
Where:  
IP = Peak current as described in the Peak Current Control section  
L = Selected inductor value  
Iload = Nominal load current  
Vd = Rectifier diode forward voltage (typically 0.3V)  
A smaller inductor value gives a higher converter switching frequency, but lowers the efficiency.  
(3)  
The inductor value has less effect on the maximum available load current and is only of secondary order. The  
best way to calculate the maximum available load current under certain operating conditions is to estimate the  
expected converter efficiency at the maximum load current. This number can be taken out of the efficiency  
graphs shown in Figure 1 through Figure 4. The maximum load current can then be estimated as follows:  
2
I
  L   fS  
max  
* V  
P
I
+ h  
load max  
2   (V  
OUT  
IN)  
Where:  
IP = Peak current as described in the Peak Current Control section  
L = Selected inductor value  
fSmax = Maximum switching frequency as calculated previously  
h = Expected converter efficiency. Typically 70% to 85%  
(4)  
10  
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Copyright © 2002–2010, Texas Instruments Incorporated  
Product Folder Link(s): TPS61040 TPS61041