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AAT3142ITP-T1 参数 Datasheet PDF下载

AAT3142ITP-T1图片预览
型号: AAT3142ITP-T1
PDF下载: 下载PDF文件 查看货源
内容描述: 高效率1X / 1.5X / 2X电荷泵白光LED应用 [High Efficiency 1X/1.5X/2X Charge Pump for White LED Applications]
分类和应用:
文件页数/大小: 16 页 / 477 K
品牌: AAT [ ADVANCED ANALOG TECHNOLOGY, INC. ]
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AAT3142  
High Efficiency 1X/1.5X/2X Charge Pump  
for White LED Applications  
In addition, with an ideal 1.5X charge pump, the  
maximize charge pump transient response. Since  
ceramic capacitors are non-polarized, they are not  
prone to incorrect connection damage.  
output current may be expressed as 2/3 of the  
input current. The expression to define the ideal  
efficiency (η) can be rewritten as:  
Equivalent Series Resistance  
ESR is an important characteristic to consider when  
selecting a capacitor. ESR is a resistance internal to  
a capacitor that is caused by the leads, internal con-  
nections, size or area, material composition, and  
ambient temperature. Capacitor ESR is typically  
measured in milliohms for ceramic capacitors and  
can range to more than several ohms for tantalum or  
aluminum electrolytic capacitors.  
POUT  
PIN  
VOUT × IOUT  
=
VOUT  
η =  
=
VIN × 1.5IOUT 1.5VIN  
-or-  
VOUT  
η(%) = 100  
1.5V  
IN  
For a charge pump with an output of 5V and a nom-  
inal input of 3.5V, the theoretical efficiency is 95%.  
Due to internal switching losses and IC quiescent  
current consumption, the actual efficiency can be  
measured at 93%. These figures are in close agree-  
ment for output load conditions from 1mA to 100mA.  
Efficiency will decrease as load current drops below  
Ceramic Capacitor Materials  
Ceramic capacitors less than 0.1µF are typically  
made from NPO or C0G materials. NPO and C0G  
materials have tight tolerance and are stable over  
temperature. Large capacitor values are typically  
composed of X7R, X5R, Z5U, or Y5V dielectric mate-  
rials. Large ceramic capacitors, greater than 2.2µF,  
are often available in low-cost Y5V and Z5U  
dielectrics, but capacitors greater than 1µF are usu-  
ally not required for AAT3142 applications.  
0.05mA or when the level of VIN approaches VOUT  
.
Refer to the Typical Characteristics section of this  
datasheet for measured plots of efficiency versus  
input voltage and output load current for the given  
charge pump output voltage options.  
Capacitor area is another contributor to ESR.  
Capacitors that are physically large will have a lower  
ESR when compared to an equivalent material  
smaller capacitor. These larger devices can improve  
circuit transient response when compared to an  
equal value capacitor in a smaller package size.  
Capacitor Selection  
Careful selection of the four external capacitors CIN,  
C1, C2, and COUT is important because they will  
affect turn-on time, output ripple, and transient per-  
formance. Optimum performance will be obtained  
when low equivalent series resistance (ESR)  
ceramic capacitors are used. In general, low ESR  
may be defined as less than 100mΩ. A value of 1µF  
for all four capacitors is a good starting point when  
choosing capacitors. If the LED current sources are  
only programmed for light current levels, then the  
capacitor size may be decreased.  
Thermal Protection  
The AAT3142 has a thermal protection circuit that will  
shut down the charge pump if the die temperature  
rises above the thermal limit, as is the case during a  
short-circuit of the CP pin.  
Charge Pump Compatibility  
The three-output AAT3142 is pin-compatible with  
the AAT3140, AAT3123, and AAT3113 in TSOPJW-  
12 packages. The AAT3142 offers an improved  
overall efficiency, wider operating range, and the  
ability to drive high-VF type LEDs at full current.  
The AAT3142 is well suited for battery-powered  
applications using single-cell lithium-ion/polymer  
batteries and 3-series connected dry cells (3.6V).  
Capacitor Characteristics  
Ceramic composition capacitors are highly recom-  
mended over all other types of capacitors for use with  
the AAT3142. Ceramic capacitors offer many advan-  
tages over their tantalum and aluminum electrolytic  
counterparts. A ceramic capacitor has very low ESR,  
is lowest cost, has a smaller PCB footprint, and is  
non-polarized. Low ESR ceramic capacitors help  
14  
3142.2007.03.1.2  
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