LT1083/LT1084/LT1085
13
108345fh
For more information www.linear.com/LT1083
applicaTions inForMaTion
Connected as shown, R
P
is not multiplied by the divider
ratio. R
P
is about 0.004Ω per foot using 16-gauge wire. This
translates to 4mV/ft at 1A load current, so it is important
to keep the positive lead between regulator and load as
short as possible and use large wire or PC board traces.
Thermal Considerations
The LT1083 series of regulators have internal power and
thermal limiting circuitry designed to protect the device
under overload conditions. For continuous normal load
conditions however, maximum junction temperature rat
-
ings must not be exceeded. It is important to give careful
consideration to all sources of thermal resistance from
junction to ambient. This includes junction-to-case, case-
to-heat sink interface, and heat sink resistance itself. New
thermal resistance specifications have been developed to
more accurately reflect device temperature and ensure
safe operating temperatures. The data section for these
new regulators provides a separate thermal resistance and
maximum junction temperature for both the Control Section
and the Power Transistor. Previous regulators, with a single
junction-to-case thermal resistance specification, used
an average of the two values provided here and therefore
could allow excessive junction temperatures under certain
conditions of ambient temperature and heat sink resistance.
To avoid this possibility, calculations should be made for
both sections to ensure that both thermal limits are met.
Junction-to-case thermal resistance is specified from the
IC junction to the bottom of the case directly below the
die. This is the lowest resistance path for heat flow. Proper
mounting is required to ensure the best possible thermal
flow from this area of the package to the heat sink. Thermal
compound at the case-to-heat sink interface is strongly
recommended. If the case of the device must be electri
-
cally isolated, a thermally conductive spacer can be used,
as long as its added contribution to thermal resistance is
considered.
Note that the case of all devices in this series
is electrically connected to the output.
For example, using an LT1083CK (TO-3, Commercial)
and assuming:
V
IN
(Max Continuous) = 9V, V
OUT
= 5V, I
OUT
= 6A,
T
A
= 75°C, θ
HEAT SINK
= 1°C/W,
θ
CASE-TO-HEAT SINK
= 0.2°C/W for K package with
thermal compound.
Power dissipation under these conditions is equal to:
P
D
= (V
IN
– V
OUT
)(I
OUT
) = 24W
Junction temperature will be equal to:
T
J
= T
A
+ P
D
(θ
HEAT SINK
+ θ
CASE-TO-HEAT SINK
+ θ
JC
)
For the Control Section:
T
J
= 75°C + 24W (1°C/W + 0.2°C/W + 0.6°C/W) = 118°C
118°C < 125°C = T
JMAX
(Control Section
Commercial Range)
For the Power Transistor:
T
J
= 75°C + 24W (1°C/W + 0.2°C/W + 1.6°C/W) = 142°C
142°C < 150°C = T
JMAX
(Power Transistor
Commercial Range)
In both cases the junction temperature is below the maxi
-
mum rating for the respective sections, ensuring reliable
operation.
LT1083/LT1084/LT1085
14
108345fh
For more information www.linear.com/LT1083
Typical applicaTion
7.5A Variable Regulator
15V
15V
15V
110VAC
T1
TRIAD
F-269U
+
+
+
+
+
OUTIN LT1083 OUTIN
ADJ
C30B
C30B
3
20Ω
20Ω
1
2
L
1mH
T2
1N4003
1N4148
1N4003
1N914
C1
50,000µF
100µF
LT1004-1.2
1N4003
1µF
0.1µF
1µF
100pF
560Ω
16k*
16k*
LT1004-1.2
11k*
11k*
0V TO 35V
OA TO 7.5A
10k
82k 15k
2
2
2
3
3
3
8
8
–15V
–15V
–15V
15V
4
4
4
7
7
1
1
200k
750Ω*
2k
OUTPUT
ADJUST
2.7k
–15V
1.5k
15K
10k
2N3904
NC
8
6
7
1
LT1011
LT1011
LM301A
*
1% FILM RESISTOR
L: DALE TO-5 TYPE
T2: STANCOR 11Z-2003
GENERAL PURPOSE REGULATOR WITH SCR PREREGULATOR
TO LOWER POWER DISSIPATION. ABOUT 1.7V DIFFERENTIAL
IS MAINTAINED ACROSS THE LT1083 INDEPENDENT OF OUTPUT
VOLTAGE AND LOAD CURRENT
LT1083/4/5 ADJ TA05
LT1083/LT1084/LT1085
15
108345fh
For more information www.linear.com/LT1083
Typical applicaTion
LT1083 OUTINV
IN
ADJ
LT1083
0.015Ω
OUT
2 FEET #18 WIRE*
IN
ADJ
R1
120Ω
R2
*THE #18 WIRE ACTS
AS BALLAST RESISTANCE
INSURING CURRENT SHARING
BETWEEN BOTH DEVICES
LT1083/4/5 ADJ TA03
V
OUT
= 1.25V 1 +
I
OUT
= 0A TO 15A
R2
R1
( )
Paralleling Regulators
Remote Sensing
R1
121Ω
1%
IN
OUT
ADJ
R2
365Ω
1%
10µF
V
OUT
5V
LT1083
V
IN
1083/4/5 ADJ TA04
+
C1
25µF*
150µF
+
+
*C1 IMPROVES RIPPLE REJECTION.
X
C
SHOULD BE < R1 AT RIPPLE FREQUENCY
Improving Ripple Rejection
+
LT1083 OUTIN
V
IN
V
IN
RETURN
ADJ
R
P
(MAX DROP 300mV)
121Ω
365Ω
25Ω
10µF
5µF
100µF
1083/4/5 ADJ TA07
R
L
V
OUT
5V
RETURN
25Ω
2
6
7
1
8
100pF
3
4
+
1k
LM301A
+
+

LT1085IM#TRPBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
LDO Voltage Regulators 3A Low Dropout Regulator
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union