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HM5902 датащи(PDF) 13 Page - Shenzhen Huazhimei Semiconductor Co., Ltd

номер детали HM5902
подробное описание детали  Power Bank IC with 1A Linear Charger and 1.2A Boost Converter
PDF  15 Pages
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производитель  HMSEMI [Shenzhen Huazhimei Semiconductor Co., Ltd]
домашняя страница  http://www.hmsemi.com/
Logo HMSEMI - Shenzhen Huazhimei Semiconductor Co., Ltd

HM5902 датащи(HTML) 13 Page - Shenzhen Huazhimei Semiconductor Co., Ltd

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Application Information
Power Dissipation
The conditions that cause the HM5902 to reduce charge current through thermal feedback can be
approximated by considering the power dissipated in the IC. For high charge current, the HM5902
power dissipation is approximately:
PD= (VIN-VBAT).IBAT
Where PD is the power dissipated, VCC is the input supply voltage, VBAT is the battery voltage and
IBAT is the charge current. It is not necessary to check any worst-case power dissipation scenarios
because the HM5902 will automatically reduce the charge current to maintain the die temperature
under 140°C approximately. The approximate ambient temperature at which the thermal feedback
begins to protect the IC is:
TA=140°C – PDθJA
=140°C – (VIN-VBAT).IBAT.θJA
For example: Consider an HM5902 operating from a 5V wall adapter providing 0.5A to a 4.0V
Li-Ion battery. The ambient temperature above which the HM5902 will begin to reduce the 0.5A charge
current is approximately:
TA = 140°C – (5V – 4.0V) • (0.5A) • 60°C/W
= 140°C – 0.5W • 60°C/W = 140°C – 30°C
= 110°C
The HM5902 can be used above 110°C, but the charge current will be reduced to smaller than
500mA. The approximate current at a given ambient temperature can be calculated:
IBAT =
(
) JA
•
BAT
-
IN
A
θ
V
V
T
-
C
°
140
Using the previous example with an ambient temperature of 90°C, the charge current will be
reduced to approximately:
IBAT = (
)
C/W
°
60
3.6V
-
V
5
C
°
90
-
C
°
140
•
= 595mA



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