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LM340ASX-5.0 Folha de dados(PDF) 6 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
Nome de Peças LM340ASX-5.0
Descrição Electrónicos  3-Terminal Positive Regulators
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Fabricante Electrônico  NSC [National Semiconductor (TI)]
Página de início  http://www.national.com
Logo NSC - National Semiconductor (TI)

LM340ASX-5.0 Folha de dados(HTML) 6 Page - National Semiconductor (TI)

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LM340 Electrical Characteristics (Note 4) (Continued)
0˚C
≤ T
J
≤ +125˚C unless otherwise specified
Output Voltage
5V
12V
15V
Symbol
Input Voltage (unless otherwise noted)
10V
19V
23V
Units
Parameter
Conditions
Min
Typ Max Min
Typ Max Min Typ
Max
V
MIN
≤ V
IN
≤ V
MAX
(7.5
≤ V
IN
≤ 20)
(14.8
≤ V
IN
27)
(17.9
≤ V
IN
≤ 30)
V
I
O
≤ 500 mA, 0˚C ≤ T
J
≤ +125˚C
1.0
1.0
1.0
mA
V
MIN
≤ V
IN
≤ V
MAX
(7
≤ V
IN
≤ 25)
(14.5
≤ V
IN
30)
(17.5
≤ V
IN
≤ 30)
V
V
N
Output Noise
Voltage
T
A = 25˚C, 10 Hz
≤ f ≤ 100 kHz
40
75
90
µV
Ripple Rejection
I
O
≤ 1A, T
J =
25˚C
62
80
55
72
54
70
dB
f = 120 Hz
or I
O
≤ 500 mA,
62
55
54
dB
0˚C
≤ T
J
≤ +125˚C
V
MIN
≤ V
IN
≤ V
MAX
(8
≤ V
IN
≤ 18)
(15
≤ V
IN
≤ 25)
(18.5
≤ V
IN
28.5)
V
R
O
Dropout Voltage
T
J = 25˚C, IO = 1A
2.0
2.0
2.0
V
Output Resistance
f=1kHz
8
18
19
m
Short-Circuit Current T
J = 25˚C
2.1
1.5
1.2
A
Peak Output
Current
T
J = 25˚C
2.4
2.4
2.4
A
Average TC of V
OUT
0˚C
≤ T
J
≤ +125˚C, I
O = 5 mA
−0.6
−1.5
−1.8
mV/˚C
V
IN
Input Voltage
T
J = 25˚C, IO
≤ 1A
Required to
Maintain
7.5
14.6
17.7
V
Line Regulation
Note 1: Absolute Maximum Ratings are limits beyond which damage to the device may occur. Operating Conditions are conditions under which the device functions
but the specifications might not be guaranteed. For guaranteed specifications and test conditions see the Electrical Characteristics.
Note 2: The maximum allowable power dissipation at any ambient temperature is a function of the maximum junction temperature for operation (TJMAX = 125˚C or
150˚C), the junction-to-ambient thermal resistance (
θJA), and the ambient temperature (TA). PDMAX =(TJMAX −TA)/θJA. If this dissipation is exceeded, the die
temperature will rise above TJMAX and the electrical specifications do not apply. If the die temperature rises above 150˚C, the device will go into thermal shutdown.
For the TO-3 package (K, KC), the junction-to-ambient thermal resistance (
θJA) is 39˚C/W. When using a heatsink, θJA is the sum of the 4˚C/W junction-to-case
thermal resistance (
θJC) of the TO-3 package and the case-to-ambient thermal resistance of the heatsink. For the TO-220 package (T), θJA is 54˚C/W and θJC is
4˚C/W. If SOT-223 is used, the junction-to-ambient thermal resistance is 174˚C/W and can be reduced by a heatsink (see Applications Hints on heatsinking).
If the TO-263 package is used, the thermal resistance can be reduced by increasing the PC board copper area thermally connected to the package: Using 0.5 square
inches of copper area,
θJA is 50˚C/W; with 1 square inch of copper area, θJAis 37˚C/W; and with 1.6 or more inches of copper area, θJA is 32˚C/W.
Note 3: ESD rating is based on the human body model, 100 pF discharged through 1.5 k
Ω.
Note 4: All characteristics are measured with a 0.22 µF capacitor from input to ground and a 0.1 µF capacitor from output to ground. All characteristics except noise
voltage and ripple rejection ratio are measured using pulse techniques (tw ≤ 10 ms, duty cycle ≤ 5%). Output voltage changes due to changes in internal temperature
must be taken into account separately.
Note 5: Military datasheets are available upon request. At the time of printing, the military datasheet specifications for the LM140K-5.0/883, LM140K-12/883, and
LM140K-15/883 complied with the min and max limits for the respective versions of the LM140. The LM140H and LM140K may also be procured as JAN devices
on slash sheet JM38510/107.
www.national.com
6


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