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PDF AN79M00 Data sheet ( Hoja de datos )

Número de pieza AN79M00
Descripción 3-pin Negative Output Voltage Regulators 500mA Type
Fabricantes Panasonic Semiconductor 
Logotipo Panasonic Semiconductor Logotipo



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No Preview Available ! AN79M00 Hoja de datos, Descripción, Manual

AN79M00/AN79M00F Series
3-pin Negative Output Voltage Regulators (500mA Type)
s Overview
The AN79M00 and the AN79M00F series are 3-pin
fixed negative output voltage regulators. Stabilized fixed
output voltage is obtained from unstable DC input volt-
age without using any external components. 12 types of
output voltage are available ; –5V, –5.2V, –6V, –7V, –8V,
–9V, –10V, –12V, –15V, –18V, –20V and –24V. They can
be used widely in power circuits with current capacitance
up to 500mA.
s Features
• No external components
• Output voltage : –5V, –5.2V, –6V, –7V, –8V, –9V, –10V,
–12V, –15V, –18V, –20V, –24V
• Short-circuit current limiting built-in
• Thermal overload protection built-in
• Output transistor safe area compensation
AN79M00 Series
10.5±0.5
10.4±0.5 ø3.7
Unit:mm
1.4±0.1
1.4±0.25
0.8±0.2
2.54
+ 0.1
0.45 – 0.05
2.5±0.25
4.5±0.3
123
1 : Common
2 : Input
3 : Output
JEDEC:TO-220AB. (HSIP003-P-0000)
AN79M00F Series
10.5±0.3
ø5.3
(4.3)
3.1±0.1
(1.73)
Unit:mm
2.77±0.3
s Block Diagram
Starter
Voltage
Reference
Thermal
Protection
0.8±0.2
1.4±0.2
+ 0.1
0.4 – 0.05
(0.4) 2.0±0.25
2.5±0.25
2.54
1 23
4.5±0.3
1 : Common
2 : Input
3 : Output
TO-220 Full Pack Package (HSIP003-P-0000A)
+
Error Amp.
Current
Limiter
1 Common
R1
R2
3 Output
Q1
Pass Tr.
RSC
2 Input

1 page




AN79M00 pdf
s Electrical Characteristics (Ta=25˚C)
· AN79M09/AN79M09F (–9V Type)
Parameter
Symbol
Condition
min typ max Unit
Output voltage
Output voltage tolerance
Line regulation
VO
VO
REGIN
Tj=25˚C
VI=–11.5 to –26V,
IO=5 to 350mA, PD<= *
VI=–11.5 to –26V, Tj=25˚C
VI=–12 to –22V, Tj=25˚C
–8.65
–8.55
–9 –9.35
–9.45
7 80
2 50
V
V
mV
mV
Load regulation
REGL
IO=5 to 500mA, Tj=25˚C
IO=5 to 350mA, Tj=25˚C
25 180 mV
10 90 mV
Bias current
Input bias current fluctuation
Load bias current fluctuation
IBias
Ibias (IN)
Ibias (L)
Tj=25˚C
VI=–11.5 to –26V, Tj=25˚C
IO=5 to 350mA, Tj=25˚C
2 4 mA
0.8 mA
0.4 mA
Output noise voltage
Ripple rejection ratio
Vno f=10Hz to 100kHz, Ta=25˚C
RR
VI=–12 to –22V, IO=100mA,
f=120Hz, Ta=25˚C
225
58
µV
dB
Minimum input/output voltage difference
Output short circuit current
Peak output current
Output voltage temperature coefficient
VDIF (min.)
IO (Short)
IO (peak)
VO/Ta
Tj=25˚C
VI=–35V, Tj=25˚C
Tj=25˚C
IO=5mA, Tj=0 to 125˚C
1.1
50
1000
–0.6
V
mA
mA
mV/˚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=–15V, IO=350mA, CI=2µF, CO=1µF and Tj=0 to 125˚C
* AN79M09 : 15W, AN79M09F : 10.25W
· AN79M10/AN79M10F (–10V Type)
Parameter
Symbol
Condition
min typ max Unit
Output voltage
Output voltage tolerance
Line regulation
VO
VO
REGIN
Tj=25˚C
VI=–12.5 to –27V,
IO=5 to 350mA, PD<= *
VI=–12.5 to –27V, Tj=25˚C
VI=–13 to –23V, Tj=25˚C
–9.6 –10 –10.4
V
–9.5
–10.5
V
7 80 mV
2 50 mV
Load regulation
REGL
IO=5 to 500mA, Tj=25˚C
IO=5 to 350mA, Tj=25˚C
25 200 mV
10 100 mV
Bias current
Input bias current fluctuation
Load bias current fluctuation
IBias
Ibias (IN)
Ibias (L)
Tj=25˚C
VI=–12.5 to –27V, Tj=25˚C
IO=5 to 350mA, Tj=25˚C
2 4 mA
0.8 mA
0.4 mA
Output noise voltage
Ripple rejection ratio
Vno f=10Hz to 100kHz, Ta=25˚C
RR
VI=–13to –23V, IO=100mA,
f=120Hz, Ta=25˚C
250
58
µV
dB
Minimum input/output voltage difference
Output short circuit current
Peak output current
Output voltage temperature coefficient
VDIF (min.)
IO (Short)
IO (peak)
VO/Ta
Tj=25˚C
VI=–35V, Tj=25˚C
Tj=25˚C
IO=5mA, Tj=0 to 125˚C
1.1
50
1000
–0.7
V
mA
mA
mV/˚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=–16V, IO=350mA, CI=2µF, CO=1µF and Tj=0 to 125˚C
* AN79M10 : 15W, AN79M10F : 10.25W

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