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KB4540 参数 Datasheet PDF下载

KB4540图片预览
型号: KB4540
PDF下载: 下载PDF文件 查看货源
内容描述: 锂离子电池充电器 [Li-Ion Battery Charger]
分类和应用: 电池
文件页数/大小: 15 页 / 151 K
品牌: KINGBOR [ KINGBOR TECHNOLOGY CO ]
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Kingbor Technology Co.,Ltd  
TEL:(86)0755-26508846 FAX:(86)0755-26509052  
KB4540  
APPLICATIONS INFORMATION  
CHRG Status Output Pin  
To detect when the KB4540 is in charge mode, force the  
digital output pin (OUT) high and measure the voltage at  
the CHRG pin. The N-channel MOSFET will pull the pin  
voltage low even with the 2k pull-up resistor. Once the  
charge cycle terminates, the N-channel MOSFET is turned  
off and a 20µA current source is connected to the CHRG  
pin. The IN pin will then be pulled high by the 2k pull-up  
resistor. Todetermineifthereisaweakpull-downcurrent,  
the OUT pin should be forced to a high impedance state.  
The weak current source will pull the IN pin low through  
the 800k resistor; if CHRG is high impedance, the IN pin  
will be pulled high, indicating that the part is in a UVLO  
state.  
The CHRG pin can provide an indication that the input  
voltage is greater than the undervoltage lockout threshold  
level. A weak pull-down current of approximately 20µA  
indicates that sufficient voltage is applied to VCC to begin  
charging. When a discharged battery is connected to the  
charger, the constant current portion of the charge cycle  
begins and the CHRG pin pulls to ground. The CHRG pin  
can sink up to 10mA to drive an LED that indicates that a  
charge cycle is in progress.  
When the battery is nearing full charge, the charger enters  
the constant-voltage portion of the charge cycle and the  
charge current begins to drop. When the charge current  
drops below 1/10 of the programmed current, the charge  
cycle ends and the strong pull-down is replaced by the  
20µA pull-down, indicating that the charge cycle has  
ended. If the input voltage is removed or drops below the  
undervoltage lockout threshold, the CHRG pin becomes  
high impedance. Figure 5 shows that by using two  
different value pull-up resistors, a microprocessor can  
detect all three states from this pin.  
Reverse Polarity Input Voltage Protection  
In some applications, protection from reverse polarity  
voltage on VCC is desired. If the supply voltage is high  
enough, a series blocking diode can be used. In other  
cases, where the voltage drop must be kept low a P-  
channel MOSFET can be used (as shown in Figure 6).  
+
V
V
DD  
DRAIN-BULK  
DIODE OF FET  
KB4540  
CC  
V
V
IN  
V
CC  
800k  
KB4540  
CHRG  
µPROCESSOR  
2k  
OUT  
IN  
Figure 5. Using a Microprocessor to Determine CHRG State  
Figure 6. Low Loss Input Reverse Polarity Protection  
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