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BQ24190_15 Datasheet, PDF (38/52 Pages) Texas Instruments – bq2419x I2C Controlled 4.5-A Single Cell USB/Adapter Charger with Narrow VDC Power Path Management and USB OTG
bq24190, bq24192, bq24192I
SLUSAW5B – JANUARY 2012 – REVISED DECEMBER 2014
Typical Application (continued)
10.2.1 Design Requirements
Table 19. Design Requirements
DESIGN PARAMETER
Input voltage
Input current limit
Fast charge current
Boost mode output current
EXAMPLE VALUE
3.9 V to 17 V
3000 mA
4000 mA
1.3 A
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10.2.2 Detailed Design Procedure
10.2.2.1 Inductor Selection
The bq24190, bq24192, bq24192I has 1.5-MHz switching frequency to allow the use of small inductor and
capacitor values. The Inductor saturation current should be higher than the charging current (ICHG) plus half the
ripple current (IRIPPLE):
( ) ISAT ³ ICHG + 1/ 2 IRIPPLE
(5)
The inductor ripple current depends on input voltage (VBUS), duty cycle (D = VBAT/VVBUS), switching frequency
(fs) and inductance (L):
IRIPPLE
=
VIN
´ D ´ (1- D)
¦s ´ L
(6)
The maximum inductor ripple current happens with D = 0.5 or close to 0.5. Usually inductor ripple is designed in
the range of (20 to 40%) maximum charging current as a trade-off between inductor size and efficiency for a
practical design. Typical inductor value is 2.2 µH.
10.2.2.2 Input Capacitor
Input capacitor should have enough ripple current rating to absorb input switching ripple current. The worst case
RMS ripple current is half of the charging current when duty cycle is 0.5. If the converter does not operate at
50% duty cycle, then the worst case capacitor RMS current ICIN occurs where the duty cycle is closest to 50%
and can be estimated by the following equation:
ICIN = ICHG ´ D ´ (1- D)
(7)
For best performance, VBUS should be decouple to PGND with 1-μF capacitance. The remaining input capacitor
should be place on PMID.
Low ESR ceramic capacitor such as X7R or X5R is preferred for input decoupling capacitor and should be
placed to the drain of the high side MOSFET and source of the low side MOSFET as close as possible. Voltage
rating of the capacitor must be higher than normal input voltage level. 25-V rating or higher capacitor is preferred
for 15-V input voltage.
10.2.2.3 Output Capacitor
Output capacitor also should have enough ripple current rating to absorb output switching ripple current. The
output capacitor RMS current ICOUT is given:
ICOUT
IRIPPLE
=
» 0.29 ´ IRIPPLE
2´ 3
(8)
The output capacitor voltage ripple can be calculated as follows:
DVO
=
VOUT
8LC¦s2
æ
ççè1-
VOUT
VIN
ö
÷
÷ø
(9)
At certain input/output voltage and switching frequency, the voltage ripple can be reduced by increasing the
output filter LC.
38
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