LP2986AIM-5.0 National Semiconductor, LP2986AIM-5.0 Datasheet - Page 5

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LP2986AIM-5.0

Manufacturer Part Number
LP2986AIM-5.0
Description
Linear Voltage Regulator IC
Manufacturer
National Semiconductor
Datasheets

Specifications of LP2986AIM-5.0

No. Of Pins
8
Output Current
0.2A
Mounting Type
Surface Mount
Voltage Regulator Type
LDO Linear
Output Current Max
200mA
Peak Reflow Compatible (260 C)
No
Output Voltage
5V
Current Rating
0.2A
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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FEEDBACK PIN
V
I
SHUTDOWN INPUT
V
I
ERROR COMPARATOR
I
V
V
(MAX)
V
(MIN)
HYST
FB
S/D
OH
Limits in standard typeface are for T
less otherwise specified: V
FB
S/D
OL
THR
THR
Electrical Characteristics
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the component may occur. Electrical specifications do not apply when operating the de-
vice outside of its rated operating conditions.
Note 2: The ESD rating of the Feedback pin is 500V and the Tap pin is 1.5 kV.
Note 3: The maximum allowable power dissipation is a function of the maximum junction temperature, T
and the ambient temperature, T
The value of
excessive die temperature, and the regulator will go into thermal shutdown.
Note 4: If used in a dual-supply system where the regulator load is returned to a negative supply, the LM2986 output must be diode-clamped to ground.
Note 5: The output PNP structure contains a diode between the V
on this diode and may induce a latch-up mode which can damage the part (see Application Hints).
Note 6: Limits are 100% production tested at 25˚C. Limits over the operating temperature range are guaranteed through correlation using Statistical Quality Control
(SQC) methods. The limits are used to calculate National’s Average Outgoing Quality Level (AOQL).
Note 7: Dropout voltage is defined as the input to output differential at which the output voltage drops 100 mV below the value measured with a 1V differential.
Note 8: To prevent mis-operation, the Shutdown input must be driven by a signal that swings above V
Application Hints).
Note 9: Temperature coefficient is defined as the maximum (worst-case) change divided by the total temperature range.
Note 10: V
Note 11: See Typical Performance Characteristics curves.
Symbol
FB
J−A
Output Voltage
Temperature Coefficient
Feedback Pin Voltage
FB Pin Voltage
Temperature Coefficient
Feedback Pin Bias
Current
FB Pin Bias Current
Temperature Coefficient
S/D Input Voltage
(Note 8)
S/D Input Current
Output “HIGH” Leakage
Output “LOW” Voltage
Upper Threshold
Voltage
Lower Threshold
Voltage
Hysteresis
V
for the SO-8 (M) package is 160˚C/W, and the mini SO-8 (MM) package is 200˚C/W. Exceeding the maximum allowable power dissipation will cause
OUT
(V
Parameter
IN
− 1), 2.5V
A
. The maximum allowable power dissipation at any ambient temperature is calculated using:
IN
= V
O
V
(NOM) + 1V, I
IN
J
16V, 100 µA
= 25˚C, and limits in boldface type apply over the full operating temperature range. Un-
(Note 9)
(Note 10)
(Note 9)
I
(Note 9)
V
V
V
V
V
V
I
L
O
H
L
S/D
S/D
OH
IN
(COMP) = 300 µA
= 200 mA
(Continued)
= O/P OFF
= O/P ON
= V
= 16V
= 0
= 5V
Conditions
L
O
(NOM) − 0.5V,
= 1 mA, C
I
L
IN
200 mA, T
and V
OUT
OUT
J
terminals that is normally reverse-biased. Forcing the output above the input will turn
5
125˚C.
= 4.7 µF, C
Typical
−4.6
−6.6
1.23
1.23
0.55
0.01
150
150
0.1
1.4
2.0
20
20
0
5
IN
= 2.2 µF, V
−13.0
−5.5
−7.7
−8.9
H
LM2986AI-X.X
1.21
1.20
1.19
Min
1.6
and below V
J
(MAX), the junction-to-ambient thermal resistance,
(Note 6)
S/D
−2.5
Max
1.25
1.26
1.28
0.18
−3.5
−4.9
−3.3
330
760
220
350
L
−1
15
1
2
with a slew rate not less than 40 mV/µs (see
= 2V.
−13.0
−7.7
1.20
1.19
1.18
−5.5
−8.9
Min
1.6
LM2986I-X.X
(Note 6)
Max
1.26
1.27
1.29
0.18
−3.5
−2.5
−4.9
−3.3
330
760
220
350
−1
15
1
2
www.national.com
ppm/˚C
ppm/˚C
%V
Units
nA/˚C
mV
nA
µA
µA
V
V
J−A
OUT
,

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