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UB10803G-SH2-R 数据表(PDF) 7 Page - Unisonic Technologies

部件名 UB10803G-SH2-R
功能描述  ONE-CELL STANDALONE LINEAR LITHIUM BATTERY CHARGER
PDF  10 Pages
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制造商  UTC [Unisonic Technologies]
网页  http://www.utc-ic.com
标志 UTC - Unisonic Technologies

UB10803G-SH2-R 数据表(HTML) 7 Page - Unisonic Technologies

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UB10803
Preliminary
CMOS IC
UNISONICTECHNOLOGIESCO.,LTD
7 of 10
www.unisonic.com.tw
QW-R502-A26.a
APPLICATION INFORMATION
Input Capacitor Selection
The input capacitor is employed to decouple the power supply from load transients and suppress noise from
power lines. Typically, a 1μF X5R ceramic capacitor is recommended to be placed very close between the VIN pin
and GND pin to stabilize the operation during the start up, especially when the input supply is passing the POR
threshold and the VIN-BAT comparator offset voltage. Once passing through the POR threshold, there is a voltage
hysteresis to provide sufficient guard band from noise or load transient to trigger the system to reset.
Output Capacitor Selection
The criterion for selecting the output capacitor is to maintain the stability of the charger as well as to bypass any
transient load current. Typically, a minimum capacitance of 1μF X5R ceramic capacitor is recommended and
sufficient for stabilizing the system. For systems that may happen to occasionally see high load transients, the output
capacitor may be increased to further bypass any ripples so caused.
Charge Current Limit
During the constant-current (CC) charging mode, the charging current is primarily determined by ICHG as
calculated in previous formula. However, the actual charge current in the CC mode could also be limited by other
factors. When the input (VIN) and output (VBAT) voltages are too close to each other, the on-resistance of the internal
pass element may limit the amount of current that passes through it.
When the input voltage is sufficiently higher than the battery voltage, yet has not increased the die temperature
over the thermal limit.
When the input voltage is reduced (or the battery voltage increases towards the input voltage), the charge current
is limited by the on-resistance of the pass element. Therefore, it is recommended to employ sufficiently high input
voltage for applications that require constant charging current over the entire charging period. But for applications
that needs to minimize the heat dissipation, a current-limiting adapter maybe applied to maintain constant charging
current at whole charging phase.
In addition, if the input voltage increases, the charge current may also be reduced due to the thermal fold back
function. The high voltage drop across the pass element increases the power dissipation therein and thus causing
the die temperature to increase significantly.
Layout Guidance
The UTC UB10803 employs thermally-enhanced DFN package, which has an exposed thermal pad at its bottom
side. It is recommended to connect as much copper as possible between the exposed pad and PCB to make it
effective in taking the heat away from the die. For applications requiring high charging current, the thermal
impedance should be further reduced by employing more layers of copper to connect with the exposed pad through
thermal via.
Input Power Sources
The UTC UB10803 works with different types of AC/DC adapter or USB port (any type) with no special
requirements. The UTC UB10803 accepts input voltage ranges from 4.5V to 6.5V for normal operation.



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