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UB2017L-AA-AG6-R Datasheet(PDF) 9 Page - Unisonic Technologies

No. de pieza UB2017L-AA-AG6-R
Descripción Electrónicos  ONE-CELL STANDALONE LINEAR LITHIUM BATTERY CHARGER
PDF  13 Pages
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Fabricante Electrónico  UTC [Unisonic Technologies]
Página de inicio  http://www.utc-ic.com
Logo UTC - Unisonic Technologies

UB2017L-AA-AG6-R Datasheet(HTML) 9 Page - Unisonic Technologies

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UB2017
Preliminary
CMOS IC
UNISONICTECHNOLOGIESCO.,LTD
9 of 13
www.unisonic.com.tw
QW-R502-868.a
APPLICATION INFORMATION(Cont.)
Increasing Thermal Regulation Current
Reducing the voltage drop across the internal MOSFET can significantly decrease the power dissipation in the IC.
This has the effect of increasing the current delivered to the battery during thermal regulation. One method is by
dissipating some of the power through an external component, such as a resistor or diode. While this application
delivers more energy to the battery and reduces charge time in thermal mode, it may actually lengthen charge time
in voltage mode if VCC becomes low enough to put the UTC UB2017 into dropout. Figure 2 shows how this circuit
can result in dropout as RCC becomes large. This technique works best when RCC values are minimized to keep
component size small and avoid dropout. Remember to choose a resistor with adequate power handling capability.
UTC
UB2017
PROG
BAT
VCC
2kΩ
+
Li-Ion
BATTERY
RCC
1µF
GND
5V
Fig. 2 A Circuit to Maximize Thermal Mode Charge Current
VCC Bypass Capacitor
Many types of capacitors can be used for input bypassing. However, caution must be exercised when using
multilayer 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. Adding a 1 W resistor in series with an X5R ceramic capacitor will minimize start-up
voltage transients.
Charge Current Soft-Start
The UTC UB2017 includes a soft-start circuit to minimize the inrush current at the start of a charge cycle. When a
charge cycle is initiated, the charge current ramps from zero to the full-scale current over a period of approximately
50ms. This has the effect of minimizing the transient current load on the power supply during start-up.



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