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AN79M12F Datasheet(PDF) 6 Page - Panasonic Semiconductor

Part # AN79M12F
Description  3-pin Negative Output Voltage Regulators 500mA Type
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Manufacturer  PANASONIC [Panasonic Semiconductor]
Direct Link  http://www.panasonic.com/industrial/
Logo PANASONIC - Panasonic Semiconductor

AN79M12F Datasheet(HTML) 6 Page - Panasonic Semiconductor

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VO
–12.5
V
–12
VO
V
REGIN
80
mV
8
mV
REGL
mV
25
mV
mA
2
2
IBias
mA
mA
300
Vno
dB
0.8
0.4
50
–12.6
240
120
4
57
–11.5
–11.4
RR
V
1.1
mA
50
mA
1000
10
– 0.8
Parameter
Symbol
Condition
min
typ
max
Output voltage
Output voltage tolerance
Line regulation
Load regulation
Bias current
Input bias current fluctuation
Load bias current fluctuation
Output noise voltage
Ripple rejection ratio
Minimum input/output voltage difference
Output short circuit current
Peak output current
Output voltage temperature coefficient
Unit
s Electrical Characteristics (Ta=25˚C)
VI=–14.5 to –30V,
IO=5 to 350mA, PD *
VI=–14.5 to –30V, Tj=25˚C
IO=5 to 500mA, Tj=25˚C
IO=5 to 350mA, Tj=25˚C
VI=–15 to –25V, Tj=25˚C
Tj=25˚C
VI=–14.5 to –30V, Tj=25˚C
IO=5 to 350mA, Tj=25˚C
f=10Hz to 100kHz, Ta=25˚C
VI=–15 to –25V, IO=100mA,
f=120Hz, Ta=25˚C
Tj=25˚C
IO (Short)
IO (peak)
VI=–35V, Tj=25˚C
Tj=25˚C
∆V
O/Ta
IO=5mA, Tj=0 to 125˚C
Note 1) The specified condition Tj=25˚C means that the test should be carried out with the test time so short (within 10ms) that the
drift in characteristic value due to the rise in chip junction temperature can be ignored.
Note 2) When not specified, VI=–19V, IO=350mA, CI=2
µF, C
O=1
µF and T
j=0 to 125˚C
* AN79M12 : 15W, AN79M12F : 10.25W
µV
Tj=25˚C
∆I
bias (IN)
∆I
bias (L)
VDIF (min.)
mV/˚C
· AN79M12/AN79M12F (–12V Type)
<
=
VO
–15.6
V
–15
VO
V
REGIN
80
mV
mV
REGL
mV
mV
mA
2
IBias
mA
mA
375
Vno
dB
0.8
0.4
50
–15.75
240
120
4
56
–14.4
–14.25
RR
V
1.1
mA
50
mA
1000
10
3
25
10
– 0.9
Parameter
Symbol
Condition
min
typ
max
Output voltage
Output voltage tolerance
Line regulation
Load regulation
Bias current
Input bias current fluctuation
Load bias current fluctuation
Output noise voltage
Ripple rejection ratio
Minimum input/output voltage difference
Output short circuit current
Peak output current
Output voltage temperature coefficient
Unit
VI=–17.5 to –30V,
IO=5 to 350mA, PD *
VI=–17.5 to –30V, Tj=25˚C
IO=5 to 500mA, Tj=25˚C
IO=5 to 350mA, Tj=25˚C
VI=–18 to –28V, Tj=25˚C
Tj=25˚C
VI=–17.5 to –30V, Tj=25˚C
IO=5 to 350mA, Tj=25˚C
f=10Hz to 100kHz, Ta=25˚C
VI=–18 to –28V, IO=100mA,
f=120Hz, Ta=25˚C
Tj=25˚C
IO (Short)
IO (peak)
VI=–35V, Tj=25˚C
Tj=25˚C
∆V
O/Ta
IO=5mA, Tj=0 to 125˚C
Note 1) The specified condition Tj=25˚C means that the test should be carried out with the test time so short (within 10ms) that the
drift in characteristic value due to the rise in chip junction temperature can be ignored.
Note 2) When not specified, VI=–23V, IO=350mA, CI=2
µF, C
O=1
µF and T
j=0 to 125˚C
* AN79M15 : 15W, AN79M15F : 10.25W
µV
Tj=25˚C
∆I
bias (IN)
∆I
bias (L)
VDIF (min.)
mV/˚C
· AN79M15/AN79M15F (–15V Type)
<
=


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