LM330-N [TI]
LM330 3-Terminal Positive Regulator; LM330三端稳压器正型号: | LM330-N |
厂家: | TEXAS INSTRUMENTS |
描述: | LM330 3-Terminal Positive Regulator |
文件: | 总9页 (文件大小:708K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
LM330
LM330 3-Terminal Positive Regulator
Literature Number: SNOSC19C
May 1998
LM330
3-Terminal Positive Regulator
General Description
aging internal and external circuits. Also, the LM330 regula-
tor cannot be harmed by a temporary mirror-image insertion.
The LM330 5V 3-terminal positive voltage regulator features
an ability to source 150 mA of output current with an input-
output differential of 0.6V or less. Familiar regulator features
such as current limit and thermal overload protection are
also provided.
Features
n Input-output differential less than 0.6V
n Output current of 150 mA
n Reverse battery protection
n Line transient protection
n Internal short circuit current limit
n Internal thermal overload protection
n Mirror-image insertion protection
n P+ Product Enhancement tested
The low dropout voltage makes the LM330 useful for certain
battery applications since this feature allows a longer battery
discharge before the output falls out of regulation. For ex-
ample, a battery supplying the regulator input voltage may
discharge to 5.6V and still properly regulate the system and
load voltage. Supporting this feature, the LM330 protects
both itself and regulated systems from negative voltage
inputs resulting from reverse installations of batteries.
Other protection features include line transient protection up
to 26V, when the output actually shuts down to avoid dam-
Schematic and Connection Diagrams
00930601
(TO-220)
Plastic Package
00930602
Front View
Order Number LM330T-5.0
See NS Package Number T03B
© 2004 National Semiconductor Corporation
DS009306
www.national.com
Absolute Maximum Ratings (Note 1)
Internal Power Dissipation
Operating Temperature Range
Maximum Junction Temperature
Storage Temperature Range
Lead Temperature
Internally Limited
0˚C to +70˚C
+125˚C
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
−65˚C to +150˚C
Input Voltage
Operating Range
26V
40V
(Soldering, 10 sec.)
+300˚C
Line Transient Protection (1000
ms)
Electrical Characteristics (Note 2)
Symbol
Parameter
Conditions
Min
4.8
Typ
Max
5.2
Units
Vo
Output Voltage
Tj = 25˚C
5
<
<
<
<
<
<
Output Voltage
Over Temp
5
6
9
6
5
Io 150 mA
4.75
5.25
V
<
<
<
VIN 26V; 0˚C ≤ Tj ≤ 100˚C
∆Vo
Line Regulation
VIN 16V, Io = 5 mA
7
30
14
20
3.5
5
25
60
50
VIN 26V, Io = 5 mA
mV
<
Io 150 mA
Load Regulation
Long Term Stability
Quiescent Current
mV/1000 hrs
IQ
Io = 10 mA
7
Io = 50 mA
11
40
Io = 150 mA
18
14
−80
10
mA
%
Line Transient
Reverse Polarity
Quiescent Current
Change
VIN = 40V, RL = 100Ω, 1s
VIN = −6V, RL = 100Ω
< <
VIN 26V
∆IQ
6
VIN
Overvoltage Shutdown
Voltage
26
38
Max Line Transient
60
50
V
1s, Vo ≤ 5.5V
Reverse Polarity
Input Voltage
−30
−12
50
>
DC Vo − 0.3V, RL = 100Ω
Output Noise Voltage
Output Impedance
Ripple Rejection
Current Limit
10 Hz–100 kHz
µV
mΩ
dB
Io = 100 mADC + 10 mArms
200
56
150
400
0.32
4
700
0.6
mA
V
Dropout Voltage
Thermal Resistance
Io = 150 mA
Junction to Case
Junction to Ambient
˚C/W
50
Note 1: “Absolute Maximum Ratings” indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is
functional, but do not guarantee specific performance limits.
Note 2: Unless otherwise specified: V = 14V, I = 150 mA, T = 25˚C, C1 = 0.1 µF, C2 = 10 µF. All characteristics except noise voltage and ripple rejection are
IN
o
j
measured using pulse techniques (t ≤ 10 ms, duty cycle ≤ 5%). Output voltage changes due to changes in internal temperature must be taken into account
W
separately.
www.national.com
2
Typical Performance Characteristics
Dropout Voltage
Dropout Voltage
High Voltage Behavior
Load Transient Response
00930607
00930608
Low Voltage Behavior
00930609
00930610
Line Transient Response
00930612
00930611
3
www.national.com
Typical Performance Characteristics (Continued)
Peak Output Current
Quiescent Current
Quiescent Current
Ripple Rejection
00930613
00930614
00930616
00930618
Quiescent Current
00930615
Ripple Rejection
00930617
www.national.com
4
Typical Performance Characteristics (Continued)
Output Impedance
Overvoltage Supply Current
00930619
00930620
Reverse Supply Current
Output at Reverse Supply
00930621
00930622
Output Voltage (Normalized
to 5V at Tj = 25˚C)
Output at Overvoltage
00930623
00930624
5
www.national.com
heat sinking can be simpler and device reliability improved
through lower chip operating temperature. Also, a cost sav-
ings can be utilized through use of lower power/voltage
components. In applications utilizing battery power, the
LM330 allows the battery voltage to drop to within 0.3V of
output voltage prior to the voltage regulator dropping out of
regulation.
Typical Applications
The LM330 is designed specifically to operate at lower input
to output voltages. The device is designed utilizing a power
lateral PNP transistor which reduces dropout voltage from
2.0V to 0.3V when compared to IC regulators using NPN
pass transistors. Since the LM330 can operate at a much
lower input voltage, the device power dissipation is reduced,
00930605
* Required if regulator is located far from power supply filter.
** C2 may be either an Aluminum or Tantalum type capacitor but must be rated to operate at −40˚C to guarantee regulator stability to that temperature extreme.
10 µF is the minimum value required for stability and may be increased without bound. Locate as close as possible to the regulation.
00930606
Note: Compared to IC regulator with 2.0V dropout voltage and I
, = 6.0 mA.
Qmax
www.national.com
6
Physical Dimensions inches (millimeters)
unless otherwise noted
TO Plastic Package
Order Number LM330T-5.0
NS Package Number T03B
National does not assume any responsibility for use of any circuitry described, no circuit patent licenses are implied and National reserves
the right at any time without notice to change said circuitry and specifications.
For the most current product information visit us at www.national.com.
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properly used in accordance with instructions for use
provided in the labeling, can be reasonably expected to result
in a significant injury to the user.
2. A critical component is any component of a life support
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