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AP1186T525 参数 Datasheet PDF下载

AP1186T525图片预览
型号: AP1186T525
PDF下载: 下载PDF文件 查看货源
内容描述: 1.5A超低压差正可调或固定模式稳压器 [1.5A Ultra Low Dropout Positive Adjustable or Fixed-mode Regulator]
分类和应用: 稳压器电源电路
文件页数/大小: 8 页 / 192 K
品牌: ANACHIP [ ANACHIP CORP ]
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AP1186  
1.5A Ultra Low Dropout Positive Adjustable or Fixed-mode Regulator  
„ Functional Descriptions(Continued)  
Vout = Vref (1+R2/R1) + Iadj * R2 where : Vref = 1.25V & Iadj=50uA Typically  
Vin  
Vout  
AP1186-ADJ  
Vsense  
Vctrl  
Vref  
R1+  
R2+  
Adj  
Iadj=50uA  
The AP1186-ADJ keeps a constant 1.25V between  
the Vsense pin and the Adj pin. By placing a  
resistor R1 across these two pins and connecting  
the Vsense ans Vout pin together, a constant  
current flows through R1, adding to the Iadj current  
and into the R2 resistor producing a voltage equal  
to the (1.25/R1)*R2 + Iadj*R2. This voltage is then  
added to the 1.25V to set the output voltage. This is  
summarized in the above equation.  
the range of 50uA it only adds a small error to the  
output voltage and should be considered when very  
precise output voltage setting is required.  
Load Regulation  
Since the AP1186 has separate pins for the output  
(Vout) and the sense (Vsense), it is ideal for  
providing true remote sensing of the output voltage  
at the load. This means that the voltage drops due  
to parasitic resistance such as PCB traces between  
the regulator and the load are compensated for  
using remote sensing. Figure following shows a  
typical application of the AP1186 with remote  
sensing.  
Since the minimum load current requirement of the  
AP1186-ADJ is 10mA, R1 is typically selected to be  
a 121resistor so that it automatically satisfies this  
condition. Notice that since the Iadj is typically in  
Vout  
Vin  
Vin  
AP1186-ADJ  
Adj  
Vsense  
Vctrl  
Vctrl  
R1  
R2  
RL  
Stability  
increases, the ESR decreases resulting in a fixed  
RC time constant. The AP1186-XXX takes  
The AP1186-XXX requires the use of an output  
capacitor as part of the frequency compensation in  
order to make the regulator stable. Typical designs  
for the microprocessor applications use standard  
electrolytic capacitors with typical ESR in the range  
of 50 to 100mand an output capacitance of  
100uF to 1000uF. Fortunately as the capacitance  
advantage of  
the phenomena in making the  
overall regulator loop stable.  
For most applications  
a minimum of 100uF  
aluminum electrolytic capacitor insures both stability  
and good transient response.  
Anachip Corp.  
www.anachip.com.tw  
Rev.1.1 Sep.7, 2004  
5/8  
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