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AN80XX Datasheet(PDF) 5 Page - Panasonic Semiconductor

Part No. AN80XX
Description  3-pin, positive output, low dropout voltage regulator (50 mA type)
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Maker  PANASONIC [Panasonic Semiconductor]
Homepage  http://www.panasonic.com/industrial/
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AN80XX Datasheet(HTML) 5 Page - Panasonic Semiconductor

   
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AN80xx/AN80xxM Series
5
SFF00007CEB
I Electrical Characteristics at Ta = 25°C (continued)
• AN8007, AN8007M (7V type)
• AN8008, AN8008M (8V type)
• AN8085, AN8085M (8.5V type)
VO
V
REGIN
mV
REGL
mV
mV
VDIF(min)
V
V
mA
IBias
dB
RR
µV
Vno
mV/
°C
∆VO/Ta
7.28
7
Tj
= 25°C
VI
= 7.5 to 13V, Tj = 25°C
50
IO
= 1 to 40mA, Tj = 25°C
0.07
VI
= 6.8V, IO = 20mA, Tj = 25°C
VI
= 6.8V, IO = 50mA, Tj = 25°C
IO
= 1 to 50mA, Tj = 25°C
0.7
IO
= 0mA, Tj = 25°C
VI
= 8 to 10V, f = 120Hz
0.35
f
= 10Hz to 100kHz
Tj
= −30 to +125°C
60
70
0.2
0.3
1.3
6.72
50
0.13
6.5
14
31
120
62
Parameter
Symbol
Conditions
Min
Typ
Max
Output voltage
Line regulation
Load regulation
Minimum input/output voltage difference
Note 1) The specified condition Tj
= 25°C means that the test should be carried out within so short a test time (within 10ms) that the
characteristic value drift due to the chip junction temperature rise can be ignored.
Note 2) Unless otherwise specified, VI
= 8V, IO = 20mA and CO = 10µF.
Bias current
Ripple rejection ratio
Output noise voltage
Output voltage temperature coefficient
Unit
VO
V
REGIN
mV
REGL
mV
mV
VDIF(min)
V
V
mA
IBias
dB
RR
µV
Vno
mV/
°C
∆VO/Ta
yp
8.32
8
Tj
= 25°C
VI
= 8.5 to 14V, Tj = 25°C
55
IO
= 1 to 40mA, Tj = 25°C
0.07
VI
= 7.8V, IO = 20mA, Tj = 25°C
VI
= 7.8V, IO = 50mA, Tj = 25°C
IO
= 1 to 50mA, Tj = 25°C
0.7
IO
= 0mA, Tj = 25°C
VI
= 9 to 11V, f = 120Hz
0.4
f
= 10Hz to 100kHz
Tj
= −30 to +125°C
65
80
0.2
0.3
1.3
7.68
49
0.14
7.5
15
34
135
61
Parameter
Symbol
Conditions
Min
Typ
Max
Output voltage
Line regulation
Load regulation
Minimum input/output voltage difference
Note 1) The specified condition Tj
= 25°C means that the test should be carried out within so short a test time (within 10ms) that the
characteristic value drift due to the chip junction temperature rise can be ignored.
Note 2) Unless otherwise specified, VI
= 9V, IO = 20mA and CO = 10µF.
Bias current
Ripple rejection ratio
Output noise voltage
Output voltage temperature coefficient
Unit
VO
V
REGIN
mV
REGL
mV
mV
VDIF(min)
V
V
mA
IBias
dB
RR
µV
Vno
mV/
°C
∆VO/Ta
yp
8.84
8.50
Tj
= 25°C
VI
= 9 to 14.5V, Tj = 25°C
60
IO
= 1 to 40mA, Tj = 25°C
0.07
VI
= 8.3V, IO = 20mA, Tj = 25°C
VI
= 8.3V, IO = 50mA, Tj = 25°C
IO
= 1 to 50mA, Tj = 25°C
0.8
IO
= 0mA, Tj = 25°C
VI
= 9.5 to 11.5V, f = 120Hz
0.43
f
= 10Hz to 100kHz
Tj
= −30 to +125°C
70
90
0.2
0.3
1.4
8.16
48
0.14
8.3
16
36
140
60
Parameter
Symbol
Conditions
Min
Typ
Max
Output voltage
Line regulation
Load regulation
Minimum input/output voltage difference
Note 1) The specified condition Tj
= 25°C means that the test should be carried out within so short a test time (within 10ms) that the
characteristic value drift due to the chip junction temperature rise can be ignored.
Note 2) Unless otherwise specified, VI
= 9.5V, IO = 20mA and CO = 10µF.
Bias current
Ripple rejection ratio
Output noise voltage
Output voltage temperature coefficient
Unit


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