參數(shù)資料
型號(hào): SPX2815AU-3.3
元件分類: 基準(zhǔn)電壓源/電流源
英文描述: 1.5A Low Dropout Voltage Regulator Adjustable & Fixed Output, Fast Response
中文描述: 1.5A的低壓差線性穩(wěn)壓器可調(diào)節(jié)
文件頁數(shù): 3/10頁
文件大?。?/td> 73K
代理商: SPX2815AU-3.3
3
Date: 5/17/04 SPX2815 1.5A Low Dropout Voltage Regulator
Copyright 2004 Sipex Corporation
TYPICAL PERFORMANCE CHARACTERISTICS
Figure 1. Line Regulation for SPX2815U-3.3; I
OUT
=10mA
3.300
3.305
3.310
3.315
3.320
3.325
4.5
6.5
8.5
10.5
12.5
14.5
Vin (V)
V
1.225
1.23
1.235
1.24
1.245
1.25
1.255
1.26
1.265
1.27
1.275
-50
-30
-10
10
30
Temp (C)
50
70
90
110
130
V
1.25v Adj
Figure 2. V
OUT
vs Temperature, V
IN
=2.5V, I
OUT
=10mA
Figure 3. V
IN
=4.0V, I
OUT
=10mA
2.45
2.46
2.47
2.48
2.49
2.5
2.51
2.52
2.53
2.54
2.55
-50
-30
-10
10
30
Temp (C)
50
70
90
110
130
V
2.5v Adj
2.5v Fixed
Figure 4. V
IN
=5.0V, I
OUT
=10mA
3.26
3.28
3.3
3.32
3.34
3.36
3.38
-50
-30
-10
10
30
Temp (C)
50
70
90
110
130
V
3.3v Adj
3.3v Fixed
Output Capacitor
To ensure the stability of the SPX2815, an
output capacitor of at least 10
μ
F (ceramic or
tantalum) or 22
μ
F (aluminum) is required. The
value may change based on the application
requirements of the output load or temperature
range. The value of ESR can vary based on the
type of capacitor used in the applications to
guarantee stability. The recommended value
for ESR is 0.5
or less. A larger value of output
capacitance (up to 100
μ
F) can improve the load
transient response.
Soldering Methods
The SPX2815 die is attached to the heatsink lead
which exits opposite the input, output, and ground
pins.
Thermal Characteristics
The SPX2815 features the internal thermal lim-
iting to protect the device during overload con-
ditions. Special care needs to be taken during
continuous load conditions such that the maxi-
mum junction temperature does not exceed
125
°
C. Thermal protection is activated at >179
°
C
and deactiviated at <165
°
C.
The thermal interaction from other components
in the application can effect the thermal resis-
tance of the SPX2815. The actual thermal
resistance can be determined with experimenta-
tion.
SPX2815 power dissipation is calculated as
follows:
P
= (V
- V
)(I
)
Maximum Junction Temperature range:
T
= T
(max) + P
D
* thermal resistance
(junction-to-ambient)
Maximum junction temperature must not ex-
ceed the 125
°
C.
APPLICATION INFORMATION
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