參數(shù)資料
型號: AAT3215IGV-25-T1
廠商: Advanced Analogic Technologies, Inc.
英文描述: 150mA CMOS High Performance LDO
中文描述: 150mA的LDO穩(wěn)壓器的CMOS高性能
文件頁數(shù): 11/16頁
文件大?。?/td> 283K
代理商: AAT3215IGV-25-T1
AAT3215
150mA CMOS High Performance LDO
3215.2002.03.0.91
11
Applications Information
V
OUT
= 2.5 volts
I
OUT
= 150mA
I
GND
= 150uA
V
IN(MAX)
=(211mW+(2.5Vx150mA))/(150mA +150uA)
V
IN(MAX)
= 3.90V
Higher input to output voltage differentials can be
obtained with the AAT3215, while maintaining
device functions within the thermal safe operating
area. To accomplish this, the device thermal
resistance must be reduced by increasing the heat
sink area or by operating the LDO regulator in a
duty cycled mode.
For example, an application requires V
IN
= 4.2V
while V
OUT
= 2.5V at a 150mA load and T
A
= 85°C.
V
IN
is greater than 3.90V, which is the maximum
safe continuous input level for V
OUT
= 2.5V at
150mA for T
A
= 85°C. To maintain this high input
voltage and output current level, the LDO regulator
must be operated in a duty cycled mode. Refer to
the following calculation for duty cycle operation:
P
D(MAX)
is assumed to be 211mW
I
GND
= 150μA
I
OUT
= 150mA
V
IN
= 4.2 volts
V
OUT
= 2.5 volt
%DC=100(P
D(MAX)
/((V
IN
-V
OUT
)I
OUT
+(V
IN
xI
GND
))
%DC=100(211mW/((4.2V-2.5V)150mA+(4.2Vx150μA))
%DC = 85.54%
For a 150mA output current and a 2.7volt drop
across the AAT3215 at an ambient temperature of
85°C, the maximum on time duty cycle for the
device would be 85.54%.
The following family of curves show the safe oper-
ating area for duty cycled operation from ambient
room temperature to the maximum operating level.
Device Duty Cycle vs. V
DROP
V
OUT
= 2.5V @ 85 C
0
0.5
1
1.5
2
2.5
3
3.5
0
10
20
30
40
50
60
70
80
90
100
Duty Cycle (%)
V
200mA
150mA
100mA
Device Duty Cycle vs. V
DROP
V
OUT
= 2.5V @ 50 C
0
0.5
1
1.5
2
2.5
3
3.5
0
10
20
30
40
50
60
70
80
90
100
Duty Cycle (%)
V
200mA
150mA
Device Duty Cycle vs. V
DROP
V
OUT
= 2.5V @ 25 C
0
0.5
1
1.5
2
2.5
3
3.5
0
10
20
30
40
50
60
70
80
90
100
Duty Cycle (%)
V
200mA
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