参数资料
型号: LT3652IDD#PBF
厂商: Linear Technology
文件页数: 15/26页
文件大小: 0K
描述: IC BATTERY CHARGER 2A 12DFN
产品培训模块: LT3652 Multi-Chemistry Battery Charger for Solar Power
标准包装: 121
功能: 充电管理,太阳能
电池化学: 铅酸,LiFePO4,锂离子,锂聚合物,镍镉,镍氢
电源电压: 4.95 V ~ 32 V
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 12-WFDFN 裸露焊盘
供应商设备封装: 12-DFN-EP(3x3)
包装: 管件
配用: DC1568A-ND - BOARD BATTERY CHARGER SOLAR PWR
LT3652
APPLICATIONS INFORMATION
Using a resistor divider with an equivalent input resistance
at the V FB pin of 250k compensates for input bias current
error. Required resistor values to program desired V BAT(FLT)
follow the equations:
For a three-resistor network, R FB1 and R FB2 follow the
relation:
R FB2 /R FB1 = 3.3/(V BAT(FLT) – 3.3)
Example:
R FB1 = (V BAT(FLT) ? 2.5 ? 10 5 ) / 3.3
R FB2 = (R1 ? (2.5 ? 10 5 )) / (R1- (2.5 ? 10 5 ))
(Ω)
(Ω)
For V BAT(FLT) = 3.6V:
R FB2 /R FB1 = 3.3/(3.6 - 3.3) = 11.
Setting divider current (I RFB ) = 10μA yields:
The charge function operates to achieve the final float
voltage of 3.3V on the V FB pin. The auto-restart feature
initiates a new charging cycle when the voltage at the V FB
pin falls 2.5% below that float voltage.
Because the battery voltage is across the V BAT(FLT) pro-
gramming resistor divider, this divider will draw a small
amount of current from the battery (I RFB ) at a rate of:
I RFB = 3.3 / R FB2
Precision resistors in high values may be hard to ob-
tain, so for some lower V BAT(FLT) applications, it may be
desirable to use smaller-value feedback resistors with an
additional resistor (R FB3 ) to achieve the required 250k
equivalent resistance. The resulting 3-resistor network,
as shown in Figure 5, can ease component selection
and/or increase output voltage precision, at the expense of
additional current through the feedback divider.
R FB2 = 3.3/10μA
R FB2 = 330k
Solving for R FB1 :
R FB1 = 330k/11
R FB1 = 30k
The divider equivalent resistance is:
R FB1 ||R FB2 = 27.5k
To satisfy the 250k equivalent resistance to the V FB
pin:
R FB3 = 250k ? 27.5k
R FB3 = 223k.
Because the V FB pin is a relatively high impedance node,
stray capacitances at this pin must be minimized. Special
attention should be given to any stray capacitances that
can couple external signals onto the pin, which can pro-
LT3652
BAT
V FB
R FB3
R FB1
+
duce undesirable output transients or ripple. Effects of
parasitic capacitance can typically be reduced by adding
a small-value (20pF to 50pF) feedforward capacitor from
3652 F05
R FB2
the BAT pin to the V FB pin.
Extra care should be taken during board assembly. Small
Figure 5. A Three-Resistor Feedback Network Can
Ease Component Selection
amounts of board contamination can lead to significant
shifts in output voltage. Appropriate post-assembly board
3652fd
15
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