LT1084CP Linear Technology, LT1084CP Datasheet - Page 11

IC LDO REG 5A ADJ TO-3P-3

LT1084CP

Manufacturer Part Number
LT1084CP
Description
IC LDO REG 5A ADJ TO-3P-3
Manufacturer
Linear Technology
Datasheet

Specifications of LT1084CP

Regulator Topology
Positive Adjustable
Voltage - Output
1.25 ~ 28.5 V
Voltage - Input
2.55 ~ 30 V
Voltage - Dropout (typical)
1.3V @ 5A
Number Of Regulators
1
Current - Output
5A
Current - Limit (min)
5.5A
Operating Temperature
0°C ~ 150°C
Mounting Type
Through Hole
Package / Case
TO-3P-3, TO-247-3
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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APPLICATIONS INFORMATION
The problem occurs with a heavy output load when the
input voltage is high and the output voltage is low, such
as immediately after removal of a short. The load line for
such a load may intersect the output current curve at two
points. If this happens, there are two stable output operat-
ing points for the regulator. With this double intersection,
the power supply may need to be cycled down to zero and
brought up again to make the output recover.
Ripple Rejection
The typical curves for ripple rejection refl ect values for a
bypassed adjustment pin. This curve will be true for all
values of output voltage. For proper bypassing and ripple
rejection approaching the values shown, the impedance
of the adjust pin capacitor at the ripple frequency should
be less than the value of R1, (normally 100Ω to 120Ω).
The size of the required adjust pin capacitor is a function
of the input ripple frequency. At 120Hz the adjust pin
capacitor should be 25μF if R1 = 100Ω. At 10kHz only
0.22μF is needed.
For circuits without an adjust pin bypass capacitor, the ripple
rejection will be a function of output voltage. The output
ripple will increase directly as a ratio of the output voltage
to the reference voltage (V
the output voltage equal to 5V and no adjust pin capacitor,
the output ripple will be higher by the ratio of 5V/1.25V
or four times larger. Ripple rejection will be degraded by
12dB from the value shown on the typical curve.
Output Voltage
The LT1083 develops a 1.25V reference voltage between
the output and the adjust terminal (see Figure 1). By
placing a resistor R1 between these two terminals, a
constant current is caused to fl ow through R1 and down
through R2 to set the overall output voltage. Normally this
current is the specifi ed minimum load current of 10mA.
Because I
with the current through R1, it represents a small error
and can usually be ignored.
ADJ
is very small and constant when compared
OUT
/V
REF
). For example, with
Load Regulation
Because the LT1083 is a 3-terminal device, it is not pos-
sible 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 specifi cation for
load regulation is measured at the bottom of the package.
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 resis-
tor divider R1 is connected directly to the case not to the
load. This is illustrated in Figure 2. If R1 were connected
to the load, the effective resistance between the regulator
and the load would be:
R
P
V
⎝ ⎜
Figure 2. Connections for Best Load Regulation
IN
*CONNECT R1 TO CASE
V
CONNECT R2 TO LOAD
R
IN
2
R
LT1083/LT1084/LT1085
Figure 1. Basic Adjustable Regulator
+
1
IN
V
R
OUT
1
⎠ ⎟
IN
= V
LT1083
,
R
50μA
ADJ
REF
I
ADJ
P
( )
LT1083
1 +
=
ADJ
Parasitic Line
R2
R1
OUT
+ I
OUT
LINE RESISTANCE
ADJ
PARASITIC
R2
R2*
R1*
V
R
REF
P
Resistan n ce
R2
R1
1083/4/5 ADJ F02
1083/4/5 ADJ F01
V
OUT
R
L
11
108345fg

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