参数资料
型号: LTC4095EDC#TRPBF
厂商: Linear Technology
文件页数: 14/16页
文件大小: 0K
描述: IC CHARGER LI-ION/POLY 8-DFN
标准包装: 2,500
功能: 充电管理
电池化学: 锂离子(Li-Ion)、锂聚合物(Li-Pol)
电源电压: 4.35 V ~ 5.5 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 8-WFDFN 裸露焊盘
供应商设备封装: 8-DFN(2x2)
包装: 带卷 (TR)
LTC4095
APPLICATIONS INFORMATION
In constant-current mode, the PROG pin is in the feed-
back loop rather than the battery voltage. Because of the
additional pole created by any PROG pin capacitance,
capacitance on this pin must be kept to a minimum. With
no additional capacitance on the PROG pin, the battery
charger is stable with program resistor values as high
as 25k. However, additional capacitance on this node
reduces the maximum allowed program resistor. The pole
frequency at the PROG pin should be kept above 100kHz.
Therefore, if the PROG pin has a parasitic capacitance,
C PROG , the following equation should be used to calculate
the maximum resistance value for R PROG :
Board Layout Considerations
In order to deliver maximum charge current under all
conditions, it is critical that the exposed metal pad on
the backside of the LTC4095 package is soldered to the
PC board ground. Correctly soldered to a 2500mm 2
double-sided 1oz. copper board the LTC4095 has a ther-
mal resistance of approximately 60°C/W. Failure to make
thermal contact between the Exposed Pad on the backside
of the package and the copper board will result in thermal
resistances far greater than 60°C/W. As an example, a
correctly soldered LTC4095 can deliver over 950mA to a
battery from a 5V supply at room temperature. Without
2 π ? 10 ? C PROG
R PROG ≤
1
5
a backside thermal connection, this number could drop
to less than 500mA.
The stability of the constant-current loop also needs to
be considered when average, rather than instantaneous,
battery current is of interest to the user. For example, if a
switching power supply operating in low current mode is
connected in parallel with the battery, the average current
being pulled out of the BAT pin is typically of more interest
than the instantaneous current pulses. In such a case, a
simple RC ?lter an be used on the PROG pin to measure
the average battery current as shown in Figure 7. A 10k
resistor has been added between the PROG pin and the
?lter capacitor to ensure stability.
IN Bypass Capacitor
Many types of capacitors can be used for input bypassing;
however, caution must be exercised when using multi-layer
ceramic capacitors. Because of the self-resonant and high
Q characteristics of some types of ceramic capacitors, high
voltage transients can be generated under some start-up
conditions, such as connecting the charger input to a live
power source. For more information, refer to Application
Note 88.
LTC4095
PROG
7
10k
CHARGE
CURRENT
MONITOR
GND
2
R PROG
C FILTER
4095 F04
CIRCUITRY
Figure 7. Isolating Capacitive Load on PROG Pin and Filtering
4095fa
14
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