AP1117D ANACHIP [Anachip Corp], AP1117D Datasheet - Page 4

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AP1117D

Manufacturer Part Number
AP1117D
Description
1A Low Dropout Positive Adjustable or Fixed-Mode Regulator
Manufacturer
ANACHIP [Anachip Corp]
Datasheet

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Reference Voltage
Output Voltage
Line Regulation
Load Regulation
Dropout Voltage
(V
Current Limit
Minimum Load Current
Thermal Regulation
Ripple Rejection
Temperature Stability
Junction-to-Ambient(No
heat sink ;No air flow)
Junction-to-Case
θ
θ
1A Low Dropout Positive Adjustable or Fixed-Mode Regulator
Note1: See thermal regulation specifications for changes in output voltage due to heating effects. Line and load regulation are measured at a constant
Note2: Line and load regulation are guaranteed up to the maximum power dissipation of 15W. Power dissipation is determined by the difference between
Note3: Quiescent current is defined as the minimum output current required in maintaining regulation. At 12V input/output differential the
Anachip Corp.
www.anachip.com.tw
JA
JC
IN
-V
Thermal Resistance
Electrical Characteristics
Thermal Resistance
PARAMETER
OUT
device is guaranteed to regulate if the output current is greater than 10mA.
junction temperature by low duty cycle pulse testing. Load regulation is measured at the output lead = 1/18” from the package.
input and output differential and the output current. Guaranteed maximum power dissipation will not be available over the full input/output range.
)
AP1117-ADJ
AP1117-1.5
AP1117-1.8
AP1117-1.9
AP1117-2.5
AP1117-3.3
AP1117-5.0
AP1117-XXX
AP1117-ADJ
AP1117-1.5
AP1117-1.8
AP1117-1.9
AP1117-2.5
AP1117-3.3
AP1117-5.0
AP1117-ADJ/1.5/1.8
/1.9/2.5/3.3/5.0
AP1117-ADJ/1.5/1.8
/1.9/2.5/3.3/5.0
AP1117-XXX
T
F=120Hz,C
AP1117-XXX
I
SOT89
SOT-223
TO-252
TO-220/263
SOT89 : Control Circuitry/Power Transistor
SOT-223 : Control Circuitry/Power Transistor
TO-263 : Control Circuitry/Power Transistor
TO-252 : Control Circuitry/Power Transistor
TO-220 : Control Circuitry/Power Transistor
O
A
=10mA
=25
o
C, 30ms pulse
OUT
=25uF Tantalum, I
(Under Operating Conditions)
V
CONDITIONS
IN
I
=V
T
I
3V≦V
I
3.3V≦V
I
3.3V≦V
I
4V≦V
I
4.8V≦V
I
6.5V≦V
I
T
V
T
V
T
V
T
V
T
V
T
V
T
V
T
I
(V
0
O
OUT
OUT
OUT
OUT
OUT
OUT
O
OUT
o
J
=10mA
J
J
J
J
J
J
J
J
IN
IN
IN
IN
IN
IN
IN
=10mA,V
=25
=25
=25
=25
=25
=25
=25
=25
=25
C≦Tj≦125
IN
OUT
=3.3V,Vadj=0,0mA<Io<1A,
=3V, 0mA<Io<1A,
=3.3V, 0mA<Io<1A,
=3.3V, 0mA<Io<1A,
=4V, 0mA<Io<1A,
= 5V, 0≦I
= 8V, 0≦I
-V
= 1A ,∆V
= 10mA, T
= 10mA, T
= 10mA, T
= 10mA, T
= 10mA, T
= 10mA, T
o
o
o
o
o
o
o
o
o
+3V
OUT
IN
IN
C,(V
C
C (Note 1,2)
C (Note 1,2)
C (Note 1,2)
C (Note 1,2)
C (Note 1,2)
C (Note 1,2)
C (Note 1,2)
≦12V
≦12V
IN
IN
IN
IN
) = 5V
OUT
≦12V
≦12V
≦12V
≦12V
4/11
OUT
IN
=1A
-
OUT
OUT
OUT
OUT
o
+1.5V<V
C
J
J
J
J
J
J
= 25
= 25
= 25
= 25
= 25
= 25
=0.1%V
≦1A,
≦1A,
)=1.5V
o
o
o
o
o
o
C,
C,
C,
C,
C,
C,
IN
OUT
<12V,
1.225
1.470
1.764
1.862
2.450
3.235
4.900
MIN
1. 1
0.65/2.7
0.65/2.7
1.250
1.500
1.800
1.900
2.500
3.300
5.000
0.008
TYP
300
117
100
1.3
0.5
12
15
16
20
26
40
60
92
85
15
10
5
Rev.1.0 Aug 17, 2004
AP1117
1.275
1.530
1.836
1.938
2.550
3.365
5.100
MAX
0.04
0.2
1.4
15
18
19
25
33
50
10
70
1
O
O
%/W
UNIT
mV
mV
mV
mV
mV
mV
mA
C/W
C/W
dB
%
%
%
V
V
V
V
V
V
V
V
A

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