Design Considerations
The LM79MXX fixed voltage regulator series have
thermal-overload protection from excessive power, internal
short-circuit protection which limits the circuit’s maximum
current, and output transistor safe-area compensation for
reducing the output current as the voltage across the pass
transistor is increased.
Although the internal power dissipation is limited, the junc-
tion temperature must be kept below the maximum specified
temperature in order to meet data sheet specifications. To
calculate the maximum junction temperature or heat sink
required, the following thermal resistance values should be
used:
Package θ
JC
θ
JA
(˚C/W) (˚C/W)
TO-220 3 40
(1)
θ
CA
=θ
CS
+θ
SA
Solving for T
J
:
T
J
=T
A
+P
D
(θ
JC
+θ
CA
)or
=T
A
=+ P
D
θ
JA
(Without a Heat Sink)
Where
T
J
= Junction Temperature
T
A
= Ambient Temperature
P
D
= Power Dissipation
θ
JC
= Junction-to-Case Thermal Resistance
θ
CA
= Case-to-Ambient Thermal Resistance
θ
CS
= Case-to-Heat Sink Thermal Resistance
θ
SA
= Heat Sink-to-Ambient Thermal Resistance
θ
JA
= Junction-to-Ambient Thermal Resistance
Typical Applications
Bypass capacitors are necessary for stable operation of the
LM79MXX series of regulators over the input voltage and
output current ranges. Output bypass capacitors will improve
the transient response of the regulator.
The bypass capacitors (2.2µF on the input, 1.0µF on the
output), should be ceramic or solid tantalum which have
good high frequency characteristics. If aluminum electrolyt-
ics are used, their values should be 10µF or larger. The
bypass capacitors should be mounted with the shortest
leads, and if possible, directly across the regulator terminals.
Fixed Regulator
DS010483-2
*Required if regulator is separated from filter capacitor by more than 3".
For value given, capacitor must be solid tantalum. 25µF aluminum
electrolytic may be substituted.
†Required for stability. For value given, capacitor must be solid tantalum.
25µF aluminum electrolytic may be substituted. Values given may be
increased without limit.
For output capacitance in excess of 100µF, a high current diode from input
to output (1N4001, etc.) will protect the regulator from momentary input
shorts.
Variable Output
DS010483-3
*Improves transient response and ripple rejection.
Do not increase beyond 50µF.
Select R2 as follows:
LM79M05C 300Ω
LM79M12C 750Ω
LM79M15C 1k
LM79MXX Series
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