ADJUSTABLE VOLTAGE REGULATORS
.GUARANTEED 7A PEAK OUTPUTCURRENT
.GUARANTEED 5A OUTPUTCURRENT
.ADJUSTABLE OUTPUT DOWN TO 1.2V
.LINE REGULATIONTYPICALLY 0.005% /V
.LOAD REGULATION TYPICALLY0.1%
.GUARANTEED THERMAL REGULATION
.CURRENT LIMIT CONSTANT WITH TEM-
PERATURE
.STANDARD3-LEAD TRANSISTOR PACKAGE
DESCRI PTIO N
TheLM138/LM238/LM338 are adjustable 3-terminal
positivevoltageregulatorscapable ofsupplyinginexcess of 5A over a 1.2V to 32V output range. They are
exceptionally easytouseandrequireonly 2 resistors
tosettheoutput voltage. Careful circuitdesignhasresulted in outstanding load and line regulation comparable to many commercial power supplies. The
LM138familyis supplied in astandard3-leadtransistorpackage.
A unique featureof the LM138 family is time-dependent current limiting. The current limit circuitry
allowspeakcurrents ofupto12Atobedrawnfromthe
regulator for short periods of time. This allows the
LM138 to be used with heavy transient loads and
speedsstart-up underfull-load conditions. Under sustainedloading conditions, the currentlimitdecreases
toa safevalueprotectingthe regulator. Also included
on thechip are thermal overload protection and safe
areaprotectionforthepowertransistor.Overloadprotection remains functional evenif theadjustment pin
is accidentally disconnected.
Normally,nocapacitorsareneeded unlessthedevice
is situatedfar fromthe input filter capacitors inwhich
case an input bypass is needed. An optional output
capacitor can be added to improve transient response. The adjustmentterminal can be bypassed to
achieve very highripple rejection ratioswhich aredifficulttoachieve withstandard 3-terminal regulators.
Besidesreplacing fixedregulatorsordiscretedesigns,
theLM238is usefulin awide varietyof other applications. Since the regulator is ”floating” and sees only
theinput-to-outputdifferential voltage,suppliesofseveral hundred volts can be regulated as long as the
maximuminputto inputdifferential isnotexceeded.
TheLM138/LM238/LM338 arepackaged in standard
steelTO-3 transistor packages. The LM138 is rated
foroperation from -55oCto150oC, the LM238from
–25°C to + 150°C and the LM338 from 0°Cto+
125°C.
THREE-TERMINAL 5-A
ORDER CODE
PART
NUMBER
LM138
LM238
LM338
EXAMPLE: LM138K
PIN CONNE C TI ON
LM13 8/2 38
TO3
K SUFFIX
(SteelCan)
TEMPERATURE
RANGE
o
-55
C to + 150oC
o
-25
C to + 150oC
0oC to + 125oC
(bot tom view)
Caseis output
LM338
PACKAGE
K
•
•
•
March1993
1/12
LM138-LM238-LM338
ABSOLUTE MAXIMUM RATING
Symbol Parameter Value Unit
P
Power Dissipation Internally Limited W
tot
V
T
T
THERMAL CHARACTERISTICS
Input-Output Voltage DIfferential 35 V
I-VO
Operating Junction Temperature Range LM138
oper
LM238
LM338
Storage Temperature Range -65 to 150
T
stg
Lead Temperature (Soldering, 10 seconds) 300
lead
-55 to 150
-25 to 150
0 to 125
o
C
o
C
o
C
Symbol Parameter Value Unit
R
R
Typical Junction-Case Thermal Resistance 1.4
th(j-c)
Max Junction-Ambient Thermal Resistance 35
th(j-a)
o
C/W
o
C/W
SCHEM ATIC DIAG RA M
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LM138-LM238-LM338
ELECTRICAL CHARACTERISTICS
LM138: -55 ≤ Tj≤ 150oC, VI-VO= 5V, IO=2.5A
LM238: -25 ≤ Tj≤ 150oC, VI-VO= 5V, IO=2.5A
LM338: 0 ≤ Tj≤ 150oC, VI-VO= 5V, IO= 2.5A
Although power dissipation is internally limited, these specifications apply to power dissipation up to
50W (unless otherwise specified).
Symbol Parameter LM138-LM238 LM338 Unit
Min. Typ. Max. Min. Typ. Max.
Line Regulation - (note 1)
K
VI
T
=25oC, 3 V ≤ (VI-VO)≤35 V
amb
Load Regulation T
K
VO
=25oC, 10 mA ≤ IO≤ 5A
amb
VO≤5V - (note 1)
VO≥ 5V - (note 1)
Thermal Regulation (pulse = 20 ms) 0.002 0.01 0.002 0.02 %/W
Adjustment Pin Current 45 100 45 100 µA
I
adj
∆I
Adjustment Pin Current Change
adj
10 mA ≤ IL≤ 5A,3V≤(VI-VO)≤35 V
v
Reference Voltage
(ref)
3V ≤ (VI-VO)≤35 V, 10 mA ≤ IO≤ 5A, P ≤ 50W
Line Regulation - (note 1)
K
VI
3V≤(VI-VO)≤35 V
Load Regulation 10 mA ≤ IO≤ 5A
K
VO
VO≤5V - (note 1)
VO≥ 5V - (note 1)
K
Temperature Stability (T
VT
I
O(min)
I
O(max)
Minimum Load Current (VI-VO≤35 V) 3.5 5 3.5 10 mA
Current Limit (VI-VO≤10 V)
min
≤ Tj≤ T
)11%
max
DC
0.5 ms Peak
V
=30V
I-VO
RMS Output Noise, % of V
(T
=25oC, 10 Hz ≤ f ≤ 10 KHz)
amb
Ripple Rejection Ratio
R
vf
O
VO= 10 V, f = 120 Hz
C
=10µF60
adi
Long Term Stability (T
K
VH
Note 1 : Regulation is measured at constant junction temperature. Changes in output voltage due to heating effects are taken
into account separately by thermal rejection.
= 125oC) 0.3 1 0.3 1 %
amb
0.005 0.01 0.005 0.03 %/V
5
0.1150.3
5
0.1250.5
mV
0.2 5 0.2 5 µA
1.19 1.24 1.29 1.19 1.24 1.29 V
0.02 0.04 0.02 0.06 %/V
5
7
20
0.3300.6
8
12
1
20
0.3
5
7
12
50
mV
1
8
1
0.003 0.003 %
60
75 60
60
75
%
%
A
dB
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