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BQ24090_12 Datasheet, PDF (25/34 Pages) Texas Instruments – 1A, Single-Input, Single Cell Li-Ion and Li-Pol Battery Charger
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bq24090, bq24091
bq24092, bq24093
bq24095
SLUS968D – JANUARY 2010 – REVISED DECEMBER 2012
Leakage Current Effects on Battery Capacity
To determine how fast a leakage current on the battery will discharge the battery is an easy calculation. The time
from full to discharge can be calculated by dividing the Amp-Hour Capacity of the battery by the leakage current.
For a 0.75AHr battery and a 10μA leakage current (750mAHr/0.010mA = 75000 Hours), it would take 75k hours
or 8.8 years to discharge. In reality the self discharge of the cell would be much faster so the 10μA leakage
would be considered negligible.
Layout Tips
To obtain optimal performance, the decoupling capacitor from IN to GND (thermal pad) and the output filter
capacitors from OUT to GND (thermal pad) should be placed as close as possible to the bq2409x, with short
trace runs to both IN, OUT and GND (thermal pad).
• All low-current GND connections should be kept separate from the high-current charge or discharge paths
from the battery. Use a single-point ground technique incorporating both the small signal ground path and the
power ground path.
• The high current charge paths into IN pin and from the OUT pin must be sized appropriately for the maximum
charge current in order to avoid voltage drops in these traces
• The bq2409x family is packaged in a thermally enhanced MLP package. The package includes a thermal pad
to provide an effective thermal contact between the IC and the printed circuit board (PCB); this thermal pad is
also the main ground connection for the device. Connect the thermal pad to the PCB ground connection. It is
best to use multiple 10mil vias in the power pad of the IC and in close proximity to conduct the heat to the
bottom ground plane. The bottom ground place should avoid traces that “cut off” the thermal path. The thinner
the PCB the less temperature rise. The EVM PCB has a thickness of 0.031 inches and uses 2 oz. (2.8mil
thick) copper on top and bottom, and is a good example of optimal thermal performance.
SPACER
REVISION HISTORY
Changes from Original (January 2010) to Revision A
Page
• Changed VDO(IN-OUT), MAX value From: 500 mV To: 520 mV in the Elect Characteristics table ........................................... 4
• Changed IPRE-TERM MAX value From: 79 µA to 81µA in the Elect Characteristics table ....................................................... 4
• Changed VCLAMP(TS) MIN value From: 1900 mV to 1800 mV in the Elect Characteristics table ........................................... 5
Changes from Revision A (February 2010) to Revision B
Page
• Changed the device number on the front page circuit From: bq24090 To: bq2409x ........................................................... 1
• Changed the ORDERING INFORMATION table Marking column From: Product Preview To: bq24092 and bq24093 ...... 2
Changes from Revision B (June 2010) to Revision C
Page
• Changed all instances of Li-ion To: Li-ion and Li-Pol ........................................................................................................... 1
Changes from Revision C (May 2012) to Revision D
Page
• Added bq24095 to the ORDERING INFORMATION table ................................................................................................... 2
• Changed the KISET entry in the Elect Characteristics table ................................................................................................... 4
• Changed bq24090/2 to bq24090/2/5 for TS pin description in Pin Functions table. ............................................................ 7
• Deleted " Line Regulation" typical characteristics graph .................................................................................................... 12
• Changed "Current Regulation Over Temperature" graph to "Load Regulation - bq24095" graph ..................................... 12
Copyright © 2010–2012, Texas Instruments Incorporated
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