LT1117CST-3.3#TRPBF Linear Technology, LT1117CST-3.3#TRPBF Datasheet - Page 8

IC LDO REG FXD 3.3V 800MA SOT223

LT1117CST-3.3#TRPBF

Manufacturer Part Number
LT1117CST-3.3#TRPBF
Description
IC LDO REG FXD 3.3V 800MA SOT223
Manufacturer
Linear Technology
Datasheet

Specifications of LT1117CST-3.3#TRPBF

Regulator Topology
Positive Fixed
Voltage - Output
3.3V
Voltage - Input
Up to 15V
Voltage - Dropout (typical)
1.1V @ 800mA
Number Of Regulators
1
Current - Limit (min)
800mA
Operating Temperature
0°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
SOT-223 (3 leads + Tab), SC-73, TO-261
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output
-

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Output Voltage
The LT1117 develops a 1.25V reference voltage between the
output and the adjust terminal (see Figure 2). By placing a
resistor between these two terminals, a constant current
is caused to flow through R1 and down through R2 to
set the overall output voltage. Normally this current is
chosen to be the specified minimum load current of 10mA.
Because I
to the current through R1, it represents a small error and
can usually be ignored. For fixed voltage devices R1 and
R2 are included in the device.
LT1117/LT1117-2.85
LT1117-3.3/LT1117-5
APPLICATIONS INFORMATION
Load Regulation
Because the LT1117 is a 3-terminal device, it is not possible
to provide true remote load sensing. Load regulation will be
limited by the resistance of the wire connecting the regulator
to the load. The data sheet specification for load regulation
is measured at the output pin of the device. Negative side
sensing is a true Kelvin connection, with the bottom of the
output divider returned to the negative side of the load.
Although it may not be immediately obvious, best load
regulation is obtained when the top of the resistor divider
(R1) is returned directly to the output pin of the device,
not to the load. This is illustrated in Figure 3. Connected
as shown, R
were connected to the load, the effective resistance between
the regulator and the load would be:
8
R
P
×
R R
V
ADJ
IN
2
R
+
1
Figure 2. Basic Adjustable Regulator
P
+
is very small and constant when compared
1
is not multiplied by the divider ratio. If R1
,
R
V
OUT
P
IN
50μA
I
=
ADJ
= V
LT1117
Parasitic Line Resistance
REF
ADJ
1 +
OUT
R2
R1
+ I
ADJ
V
REF
R2
R1
R2
1117 F02
V
OUT
For fixed voltage devices the top of R1 is internally Kelvin
connected, and the ground pin can be used for negative
side sensing.
Thermal Considerations
LT1117 series regulators have internal thermal limiting
circuitry designed to protect the device during overload
conditions. For continuous normal load conditions however,
the maximum junction temperature rating of 125°C must
not be exceeded.
It is important to give careful consideration to all sources
of thermal resistance from junction to ambient. For
the SOT-223 package, which is designed to be surface
mounted, additional heat sources mounted near the device
must also be considered. Heat sinking is accomplished
using the heat spreading capability of the PC board and
its copper traces. The thermal resistance of the LT1117 is
15°C/W from the junction to the tab. Thermal resistances
from tab to ambient can be as low as 30°C/W. The total
thermal resistance from junction to ambient can be as low
as 45°C/W. This requires a reasonable sized PC board with
at least one layer of copper to spread the heat across the
board and couple it into the surrounding air.
Figure 3. Connections for Best Load Regulation
V
IN
IN
LT1117
ADJ
OUT
LINE RESISTANCE
PARASITIC
R1
R2
R1 TO CASE
R
CONNECT
P
R2 TO LOAD
CONNECT
R
L
1117 F03
1117fd

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