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AAT3672IWO-4.2-1-T1 PDF预览

AAT3672IWO-4.2-1-T1

更新时间: 2024-01-29 14:36:52
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ANALOGICTECH /
页数 文件大小 规格书
27页 4299K
描述
Power Management Circuit,

AAT3672IWO-4.2-1-T1 技术参数

生命周期:Obsolete包装说明:HVSON,
Reach Compliance Code:unknownECCN代码:EAR99
HTS代码:8542.39.00.01风险等级:7.84
可调阈值:YES模拟集成电路 - 其他类型:POWER SUPPLY MANAGEMENT CIRCUIT
JESD-30 代码:S-PDSO-N14长度:3 mm
信道数量:1功能数量:1
端子数量:14最高工作温度:85 °C
最低工作温度:-25 °C封装主体材料:PLASTIC/EPOXY
封装代码:HVSON封装形状:SQUARE
封装形式:SMALL OUTLINE, HEAT SINK/SLUG, VERY THIN PROFILE座面最大高度:0.8 mm
最大供电电压 (Vsup):6.5 V最小供电电压 (Vsup):4 V
标称供电电压 (Vsup):5 V表面贴装:YES
温度等级:OTHER端子形式:NO LEAD
端子节距:0.4 mm端子位置:DUAL
宽度:3 mmBase Number Matches:1

AAT3672IWO-4.2-1-T1 数据手册

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PRODUCT DATASHEET  
AAT3672  
TM  
BatteryManager  
1.6A Dynamic Battery Charger and Power Management IC  
perature fault, and battery current sharing with the out-  
put during the charging cycle. When the fault condition  
recovers, the counter will resume the timing function.  
pin as practically possible. Ceramic, tantalum, or alumi-  
num electrolytic capacitors may be selected for CADP  
.
There is no specific capacitor equivalent series resistance  
(ESR) requirement for CADP. However, for higher current  
operation, ceramic capacitors are recommended for CADP  
due to their inherent capability over tantalum capacitors  
to withstand input current surges from low impedance  
sources such as batteries in portable devices.  
The charge timer will automatically reset when the  
AAT3672 enable pin is reset or cycled off and on. The  
constant current provided to charge the timing capacitor  
is very small and this pin is susceptible to noise and  
changes in capacitance value. Therefore, the timing  
capacitor should be physically located on the printed  
circuit board layout as close as possible to the CT pin.  
Since the accuracy of the internal timer is determined by  
the capacitance value, a 10% tolerance or better ceram-  
ic capacitor is recommended. Ceramic capacitor materi-  
als such as X7R and X5R type are a good choice for this  
application.  
Typically, 50V rated capacitors are required for most of  
the application to prevent any surge voltage. Ceramic  
capacitors selected as small as 1206 are available which  
can meet these requirements. Other voltage rating  
capacitor can also be used for the known input voltage  
application.  
Charger Output Capacitor  
Battery Over-Voltage Protection  
The AAT3672 only requires a 1μF ceramic capacitor on  
the BAT pin to maintain circuit stability. This value should  
be increased to 10μF or more if the battery connection is  
made any distance from the charger output.  
An over-voltage event is defined as a condition where  
the voltage on the BAT pin exceeds the maximum bat-  
tery charge voltage and is set by the over-voltage pro-  
tection threshold (VBOVP). If an over-voltage condition  
occurs, the AAT3672 charge control will shutdown the  
device until voltage on the BAT pin drops below the over-  
voltage protection threshold (VBOVP). The AAT3672 will  
resume normal charging operation once the battery  
over-voltage condition is removed.  
System Power Output Capacitor  
For proper load voltage regulation and operational stabil-  
ity, a capacitor is required between OUT and GND. The  
output capacitor connection to the ground pin should be  
made as directly as practically possible for maximum  
device performance. Since the regulator has been  
designed to function with very low ESR capacitors,  
ceramic capacitors in the 1.0μF to 10μF range are recom-  
mended or best performance. Applications utilizing the  
exceptionally low output noise and optimum power sup-  
ply ripple rejection of the AAT3672 should use 2.2μF or  
greater values for the system power output capacitor.  
Over-Temperature Shutdown  
The AAT3672 has a thermal protection control circuit  
which will shut down charging functions should the inter-  
nal die temperature exceed the preset thermal limit  
threshold.  
Battery Temperature Fault Monitoring  
In the event of a battery over-temperature condition, the  
charge control will turn off the internal charge path  
regulation device and disable the BAT-OUT dynamic  
path. After the system recovers from a temperature  
fault, the device will resume charging operation. The  
AAT3672 checks battery temperature before starting the  
charge cycle, as well as during all stages of charging.  
Typically, batteries employ the use of a negative tem-  
perature coefficient (NTC) thermistor that is integrated  
into the battery.  
Printed Circuit Board  
Layout Recommendations  
For proper thermal management and to take advantage  
of the low RDS(ON) of the AAT3672, a few circuit board  
layout rules should be followed: IN and BAT should be  
routed using wider than normal traces, and GND should  
be connected to a ground plane. To maximize package  
thermal dissipation and power handling capacity of the  
AAT3672 TDFN33 package, solder the exposed paddle of  
the IC onto the thermal landing of the PCB, where the  
thermal landing is connected to the ground plane. If heat  
is still an issue, multi-layer boards with dedicated ground  
planes are recommended. Also, adding more thermal  
vias on the thermal landing would help transfer heat to  
the PCB effectively.  
Capacitor Selection  
Input Capacitor  
A 1μF or larger capacitor is typically recommended for  
C
ADP. CADP should be located as close to the device ADP  
w w w . a n a l o g i c t e c h . c o m  
3672.2009.06.1.3  
21  

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