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ADP3801AR PDF预览

ADP3801AR

更新时间: 2024-01-23 19:34:21
品牌 Logo 应用领域
亚德诺 - ADI 电池开关
页数 文件大小 规格书
20页 258K
描述
High Frequency Switch Mode Dual Li-Ion Battery Chargers

ADP3801AR 技术参数

是否无铅: 含铅是否Rohs认证: 不符合
生命周期:Active零件包装代码:SOIC
包装说明:SOP,针数:16
Reach Compliance Code:unknown风险等级:5.72
模拟集成电路 - 其他类型:BATTERY CHARGE CONTROLLER控制模式:CURRENT/VOLTAGE-MODE
控制技术:PULSE WIDTH MODULATION最大输入电压:20 V
最小输入电压:4.1 V标称输入电压:10 V
JESD-30 代码:R-PDSO-G16JESD-609代码:e0
长度:9.9 mm湿度敏感等级:NOT SPECIFIED
功能数量:1端子数量:16
最高工作温度:85 °C最低工作温度:-40 °C
标称输出电压:3.3 V封装主体材料:PLASTIC/EPOXY
封装代码:SOP封装形状:RECTANGULAR
封装形式:SMALL OUTLINE峰值回流温度(摄氏度):220
认证状态:COMMERCIAL座面最大高度:1.75 mm
表面贴装:YES切换器配置:SINGLE
最大切换频率:250 kHz温度等级:INDUSTRIAL
端子面层:TIN LEAD端子形式:GULL WING
端子节距:1.27 mm端子位置:DUAL
处于峰值回流温度下的最长时间:30宽度:3.9 mm
Base Number Matches:1

ADP3801AR 数据手册

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ADP3801/ADP3802  
Current Sense Amplifier  
Overcurrent Comparator  
A differential, high side current sense amplifier (GM1 in Figure  
20) amplifies the voltage drop across a current sense resistor  
RCS. The input common-mode range of GM1 extends from  
ground to VCC – 2 V. Sensing to ground ensures current regu-  
lation even in short circuit conditions. To stay within the com-  
mon-mode range of GM1, VCC must be at least 2 V greater  
than the final battery voltage or a circuit such as shown in Fig-  
ure 32 must be used. RC filters are included to filter out high  
frequency transients, which could saturate the internal circuitry.  
The filter’s cutoff is typically set at half the switching frequency  
of the oscillator.  
Similar to the voltage loop, the current loop includes a com-  
parator to protect the external circuitry from an overcurrent  
event. This comparator trips when GM1’s differential input  
voltage exceeds 185 mV. Like the overvoltage comparator, it has  
two outputs to quickly reduce the duty cycle to 0% and to pro-  
vide a soft-start recovery. The response time of the internal  
comparator is approximately 1 µs; however, the filter on the  
input of GM1 may slow down the total response time of the  
loop.  
End-of-Charge Output  
The ADP3801/ADP3802 provides an active low, end-of-charge  
(EOC) logic output to signal when the battery has completed  
charging. The typical Li-Ion charging characteristic in Figure 25  
shows that when the battery reaches its final voltage the current  
decreases. To determine EOC, an internal comparator senses  
when the current falls below 6% of full scale, ensuring that the  
battery has been fully charged. The comparator has hysteresis to  
prevent oscillation around the trip point.  
The charge current is controlled by the voltage on the ISET pin  
according to the following formula:  
V
ISET  
ICHARGE  
=
10 × RCS  
The factor of 10 is due the GM1’s gain of 10 V/V. To set a charge  
current of 1.5 A with RCS = 0.1 , VISET must be 1.5 V. Figure  
22 shows the linearity of the charge current control as the volt-  
age is increased from 0 V to the programmed final battery volt-  
age (12.6 V in this case). It is important to state that this curve  
is taken with an ideal, zero impedance load. An actual Li-Ion  
battery will exhibit a more gradual drop in charge current due to  
the internal impedance of the battery as shown in Figure 25.  
To prevent false triggering (such as during soft-start), the com-  
parator is only enabled when the battery voltage is within 5% of  
its final voltage. As the battery is charging up, the comparator  
will not go low even if the current falls below 6% as long as the  
battery voltage is below 95% of full scale. Once the battery has  
risen above 95%, the comparator is enabled.  
There are two important reasons for this functionality. First,  
when the circuit is initially powered on, the charge current is  
zero because of the soft start. If the comparator is not gated by  
the battery voltage, then EOC would go low erroneously. Sec-  
ond, a provision must be made for battery discharge. Assume  
that a battery has been fully charged. EOC goes low, and the  
charger is gated off. When the battery voltage falls to 95%, due  
to self-discharge for example, EOC will return high. Then the  
charger can start up and top off the battery, preventing the  
battery from “floating” at the end-of-charge voltage.  
3.5  
3.0  
2.5  
2.0  
1.5  
1.0  
The EOC output has many possible uses as shown in Figure 23.  
One simple function is to terminate the charging to prevent  
floating (Figure 23a). It can be used as a logic signal to a  
microcontroller to indicate that the battery has finished charg-  
ing. The microcontroller can then switch to the next battery if  
appropriate or shutdown the ADP3801/ADP3802. It can also be  
used to turn on an LED to signal charge completion (Figure  
23b). Using a flip-flop, EOC can control the switching from  
BATA to BATB (Figure 23d). The RC filter delays switching  
between the two batteries to ensure that the output capacitor is  
discharged.  
0.5  
0
2
3
4
5
6
7
8
9
10  
11  
12 13  
V
– Volts  
OUT  
Figure 22. CCCV Characteristic with Ideal Load  
–10–  
REV. 0  

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