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LM3490_07

100 mA, SOT-23, Quasi Low-Dropout Linear Voltage Regulator with Logic-Controlled ON/OFF

厂商名称:National Semiconductor(TI )

厂商官网:http://www.ti.com

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LM3490 100 mA, SOT-23, Quasi Low-Dropout Linear Voltage Regulator with Logic-Controlled
ON/OFF
June 2007
LM3490
100 mA, SOT-23, Quasi Low-Dropout Linear Voltage
Regulator with Logic-Controlled ON/OFF
General Description
The LM3490 is an integrated linear voltage regulator. It fea-
tures operation from an input as high as 30V and a guaran-
teed maximum dropout of 1.2V at the full 100 mA load.
Standard packaging for the LM3490 is the 5-lead SOT-23
package. A logic-controlled ON/OFF feature makes the
LM3490 ideal for powering subsystems ON and OFF as need-
ed.
The 5, 12, and 15V members of the LM3490 series are in-
tended as tiny alternatives to industry standard LM78LXX
series and similar devices. The 1.2V quasi low dropout of
LM3490 series devices makes them a nice fit in many appli-
cations where the 2 to 2.5V dropout of LM78LXX series
devices precludes their (LM78LXX series devices) use.
The LM3490 series features a 3.3V member. The SOT pack-
aging and quasi low dropout features of the LM3490 series
converge in this device to provide a very nice, very tiny 3.3V,
100 mA bias supply that regulates directly off the system 5V
±5% power supply.
Key Specifications
30V maximum input for operation
1.2V guaranteed maximum dropout over full load and
temperature ranges
100 mA guaranteed load current
±5% guaranteed output voltage tolerance over full load
and temperature ranges
−40 to +125°C junction temperature range for operation
Features
3.3, 5, 12, and 15V versions available
Logic-controlled ON/OFF
Packaged in the tiny 5-lead SOT-23 package
Applications
Tiny alternative to LM78LXX series and similar devices
Tiny 5V±5% to 3.3V, 100 mA converter
Post regulator for switching DC/DC converter
Bias supply for analog circuits
Typical Application Circuit
10007102
Connection Diagram
10007101
Top View
SOT-23 Package
5-Lead, Molded-Plastic Small-Outline Transistor (SOT) Package
Package Code MF05A(Note
1)
© 2007 National Semiconductor Corporation
100071
www.national.com
LM3490
Ordering Information
Output
Voltage
(V)
3.3
5.0
12
15
Order
Number
(Note 2)
LM3490IM5-3.3
LM3490IM5X-3.3
LM3490IM5-5.0
LM3490IM5X-5.0
LM3490IM5-12
LM3490IM5X-12
LM3490IM5-15
LM3490IM5X-15
Package
Marking
(Note 3)
L78B
L78B
L79B
L79B
L80B
L80B
L81B
L81B
Comments
1000 Units on Tape and Reel
3000 Units on Tape and Reel
1000 Units on Tape and Reel
3000 Units on Tape and Reel
1000 Units on Tape and Reel
3000 Units on Tape and Reel
1000 Units on Tape and Reel
3000 Units on Tape and Reel
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2
LM3490
Absolute Maximum Ratings
(Note 4)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Input Voltage (IN to GND)
Voltage ON/OFF to GND
Power Dissipation (Note 5)
Junction Temp. (T
J
) (Note 5)
Ambient Storage Temp.
35V
5.5V
400 mW
+150°C
−65 to +150°C
Soldering Time, Temp. (Note 6)
Wave
Infrared
Vapor Phase
ESD (Note 7)
ON/OFF
All Other Pins
4sec., 260°C
10sec., 240°C
75sec., 219°C
1.0kV
2.0kV
(Note 4)
30V
0 to 5V
−40 to +125°C
300 mW
Operating Ratings
Maximum Input Voltage (IN to GND)
Voltage ON/OFF to GND
Junction Temperature (T
J
)
Maximum Power Dissipation (Note 8)
Electrical Characteristics
LM3490-3.3, LM3490-5.0
V
IN
= V
NOM
+ 1.5V unless otherwise noted. Typicals and limits appearing in normal type apply for T
A
= T
J
= 25°C. Limits appearing
in boldface type apply over the entire junction temperature range for operation, −40 to +125°C. (Notes 9, 10, 11)
Nominal Output Voltage (V
NOM
)
Symbol
V
OUT
Parameter
Output Voltage
Conditions
1 mA
I
OUT
100 mA
3.30
3.17
3.14
3.43
3.46
7
25
15
40
15
40
9
25
3.3V
Typical
Limit
5.00
4.80
4.75
5.20
5.25
5.0V
Typical
Limit
Units
V
V(min)
V(min)
V(max)
V(max)
mV
mV(max)
mV
mV(max)
ΔV
OUT
ΔV
OUT
I
GND
Line Regulation
Load Regulation
Ground Pin Current
V
NOM
+ 1.5V
V
IN
30V,
I
OUT
= 1 mA
10 mA
I
OUT
100 mA
V
NOM
+ 1.5V
V
IN
30V,
No Load
V
ON/OFF
= 5V
V
ON/OFF
= 0V
2
4
0.1
5
0.7
0.9
1.0
2
4
0.1
5
0.7
0.9
1.0
0.9
1.1
1.2
1.1
1.2
150
0.2
0.2
mA
mA(max)
µA
µA(max)
V
V(max)
V(max)
V
V(max)
V(max)
µV
rms
V(max)
V
IN
-
V
OUT
Dropout Voltage
I
OUT
= 10 mA
I
OUT
= 100 mA
0.9
e
n
V
IL
Output Noise
Voltage
Maximum Low Level
Input Voltage at ON/
OFF
Minimum High Level
Input Voltage at ON/
OFF
V
IN
= 10V,
Bandwidth: 10 Hz to 100 kHz
100
V
IH
2.0
2.0
V(min)
I
IL
I
IH
V
ON/OFF
= 0V
V
ON/OFF
= 5V
1
−1
1
20
−1
20
µA(max)
µA
µA(max)
3
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LM3490
LM3490-12, LM3490-15
V
IN
= V
NOM
+ 1.5V unless otherwise noted. Typicals and limits appearing in normal type apply for T
A
= T
J
= 25°C. Limits appearing
in boldface type apply over the entire junction temperature range for operation, −40 to +125°C. (Notes 9, 10, 11)
Nominal Output Voltage (V
NOM
)
Symbol
V
OUT
Parameter
Output Voltage
Conditions
1 mA
I
OUT
100 mA
12.00
11.52
11.40
12.48
12.60
14
40
36
60
45
75
16
40
12V
Typical
Limit
15.00
14.40
14.25
15.60
15.75
15V
Typical
Limit
Units
V
V(min)
V(min)
V(max)
V(max)
mV
mV(max)
mV
mV(max)
ΔV
OUT
ΔV
OUT
I
GND
Line Regulation
Load Regulation
V
NOM
+ 1.5V
V
IN
30V,
I
OUT
= 1 mA
10 mA
I
OUT
100 mA
Ground Pin Current V
NOM
+ 1.5V
V
IN
30V,
No Load
V
ON/OFF
= 5V
V
ON/OFF
= 0V
2
4
0.1
5
0.7
0.9
1.0
2
4
0.1
5
0.7
0.9
1.0
0.9
1.1
1.2
1.1
1.2
450
0.2
0.2
mA
mA(max)
µA
µA(max)
V
V(max)
V(max)
V
V(max)
V(max)
µV
rms
V(max)
V
IN
-
V
OUT
Dropout Voltage
I
OUT
= 10 mA
I
OUT
= 100 mA
0.9
e
n
V
IL
Output Noise
Voltage
Maximum Low
Level Input Voltage
at ON/OFF
Minimum High
Level Input Voltage
at ON/OFF
V
IN
= 10V,
Bandwidth: 10 Hz to 100 kHz
360
V
IH
2.0
2.0
V(min)
I
IL
I
IH
V
ON/OFF
= 0V
V
ON/OFF
= 5V
1
−1
1
20
−1
20
µA(max)
µA
µA(max)
Note 1:
The package code MA05B is internal to National Semiconductor Corporation and indicates a specific version of the SOT-23 package and associated
mechanical drawings.
Note 2:
The suffix “I” indicates the junction temperature range for operation is the industrial temperature range, −40 to +125°C. The suffix “M5” indicates the die
is packaged in the 5-lead SOT-23 package. The suffix “X” indicates the devices will be supplied in blocks of 3k units as opposed to blocks of 250 units.
Note 3:
Because the entire part number does not fit on the SOT-23 package, the SOT-23 package is marked with this code instead of the part number.
Note 4:
Absolute Maximum Ratings are limits beyond which damage to the device may occur. Operating Ratings are conditions under which operation of the
device is guaranteed. Operating Ratings do not imply guaranteed performance limits. For guaranteed performance limits and associated test conditions, see the
Electrical Characteristics tables.
Note 5:
The Absolute Maximum power dissipation depends on the ambient temperature and can be calculated using P = (T
J
- T
A
)/θ
JA
where T
J
is the junction
temperature, T
A
is the ambient temperature, and
θ
JA
is the junction-to-ambient thermal resistance. The 400 mW rating results from substituting the Absolute
Maximum junction temperature, 150°C, for T
J
, 50°C for T
A
, and 250°C/W for
θ
JA
. More power can be safely dissipated at lower ambient temperatures. Less power
can be safely dissipated at higher ambient temperatures. The Absolute Maximum power dissipation can be increased by 4 mW for each °C below 50°C ambient.
It must be derated by 4 mW for each °C above 50°C ambient. A
θ
JA
of 250°C/W represents the worst-case condition of no heat sinking of the 5-lead plastic SOT-23
package. Heat sinking enables the safe dissipation of more power. The LM3490 actively limits its junction temperature to about 150°C.
Note 6:
Times shown are dwell times. Temperatures shown are dwell temperatures. For detailed information on soldering plastic small-outline packages, refer
to the
Packaging Databook
available from National Semiconductor Corporation.
Note 7:
For testing purposes, ESD was applied using the human-body model, a 100 pF capacitor discharged through a 1.5 kΩ resistor.
Note 8:
As with the Absolute Maximum power dissipation, the maximum power dissipation for operation depends on the ambient temperature. The 300 mW rating
appearing under Operating Ratings results from substituting the maximum junction temperature for operation, 125°C, for T
J
, 50°C for T
A
, and 250°C/W for
θ
JA
in
P = (T
J
− T
A
)/θ
JA
. More power can be dissipated at lower ambient temperatures. Less power can be dissipated at higher ambient temperatures. The maximum
power dissipation for operation appearing under Operating Ratings can be increased by 4 mW for each °C below 50°C ambient. It must be derated by 4 mW for
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4
LM3490
each °C above 50°C ambient. A
θ
JA
of 250°C/W represents the worst-case condition of no heat sinking of the 5-lead plastic SOT-23 package. Heat sinking enables
the dissipation of more power during operation.
Note 9:
A typical is the center of characterization data taken with T
A
= T
J
= 25°C. Typicals are not guaranteed.
Note 10:
All limits are guaranteed. All electrical characteristics having room-temperature limits are tested during production with T
A
= T
J
= 25°C. All hot and cold
limits are guaranteed by correlating the electrical characteristics to process and temperature variations and applying statistical process control.
Note 11:
All voltages except dropout are with respect to the voltage at the GND pin.
5
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参数对比
与LM3490_07相近的元器件有:LM3490IM5-15、LM3490IM5X-12、LM3490IM5X-5.0。描述及对比如下:
型号 LM3490_07 LM3490IM5-15 LM3490IM5X-12 LM3490IM5X-5.0
描述 100 mA, SOT-23, Quasi Low-Dropout Linear Voltage Regulator with Logic-Controlled ON/OFF 100 mA, SOT-23, Quasi Low-Dropout Linear Voltage Regulator with Logic-Controlled ON/OFF 100 mA, SOT-23, Quasi Low-Dropout Linear Voltage Regulator with Logic-Controlled ON/OFF 100 mA, SOT-23, Quasi Low-Dropout Linear Voltage Regulator with Logic-Controlled ON/OFF
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