LP2954/LP2954A
5V and Adjustable Micropower Low-Dropout Voltage
Regulators
LP2954/LP2954A 5V and Adjustable Micropower Low-Dropout Voltage Regulators
June 1999
General Description
The LP2954 is a 5V micropower voltage regulator with very
low quiescent current (90 µA typical at 1 mA load) and very
low dropout voltage (typically 60 mV at light loads and
470 mV at 250 mA load current).
The quiescent current increases only slightly at dropout
(120 µA typical), which prolongs battery life.
The LP2954 with a fixed 5V output is available in the
three-lead TO-220 and TO-263 packages. The adjustable
LP2954 isprovided in an 8-lead surface mount, small outline
package. The adjustable version also provides a resistor network which can be pin strapped to set the output to 5V.
Reverse battery protection is provided.
The tight line and load regulation (0.04%typical), as well as
very low output temperature coefficient make the LP2954
well suited for use as a low-power voltage reference.
Output accuracy is guaranteed at both room temperature
and over the entire operating temperature range.
Features
n 5V output within 1.2%over temperature (A grade)
n Adjustable 1.23 to 29V output voltage available
(LP2954IM and LP2954AIM)
n Guaranteed 250 mA output current
n Extremely low quiescent current
n Low dropout voltage
n Reverse battery protection
n Extremely tight line and load regulation
n Very low temperature coefficient
n Current and thermal limiting
n Pin compatible with LM2940 and LM340 (5V version
only)
n Adjustable version adds error flag to warn of output drop
and a logic-controlled shutdown
Applications
n High-efficiency linear regulator
n Low dropout battery-powered regulator
Package Outline and Ordering Information (Continued)
TO-263 3-Lead Plastic Surface-Mount Package
DS011128-9
Top View
DS011128-10
Side View
Order Number LP2954AIS or LP2954IS
See NS Package TS3B
Ordering Information
Order NumberTemp. RangePackageNS Package
(T
) ˚C(JEDEC)Number
LP2954AIT−40 to +125TO-220TO3B
LP2954IT
LP2954AIS−40 to +125TO-263TS3B
LP2954IS
LP2954AIM−40 to +125SO-8M08A
LP2954IM
J
www.national.com2
Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Operating Junction Temperature
Range
LP2954AI/LP2954I−40˚C to +125˚C
Storage Temperature Range−65˚C to +150˚C
Lead Temperature
(Soldering, 5 seconds)260˚C
Power Dissipation (Note 2)Internally Limited
Input Supply Voltage−20V to +30V
ESD Rating2 kV
Electrical Characteristics
Limits in standard typeface are for T
are guaranteed by production testing or correlation techniques using standard Statistical Quality Control (SQC) methods. Unless otherwise noted: V
=
6V, I
IN
SymbolParameterConditionsTypical2954AI2954IUnits
V
O
Output Voltage5.04.9755.0254.9505.050V
Output Voltage(Note 3)
Temp. Coefficient
Line RegulationV
Load RegulationI
V
IN–VO
Dropout VoltageI
(Note 5)150150
I
GND
Ground Pin CurrentI
(Note 6)180180
I
GND
Ground PinV
Current at Dropout120210210µA
(Note 6)
I
LIMIT
Current LimitV
Thermal Regulation(Note 7)
=
25˚C, bold typeface applies over the −40˚C to +125˚C temperature range. Limits
J
L
=
1 mA, C
L
=
2.2 µF.
MinMaxMinMax
4.9405.0604.9005.100
1mA≤I
≤250 mA5.04.9305.0704.8805.120
L
20100150ppm/˚C
=
6V to 30V0.030.100.20
IN
0.200.40
=
1 to 250 mA
L
=
0.1 to 1 mA0.04
I
L
0.160.20
0.200.30
(Note 4)
=
1 mA60100100mV
L
=
I
50 mA240300300
L
420420
=
I
100 mA310400400
L
520520
=
I
250 mA470600600
L
800800
=
1 mA90150150µA
L
=
I
50 mA1.122mA
L
2.52.5
=
I
100 mA4.566
L
88
=
I
250 mA212828
L
3333
=
4.5V170170
IN
=
0V380500500mA
OUT
530530
0.050.20.2
%
%
%
/W
e
n
Output NoiseC
=
2.2 µF400µV RMS
L
Voltage
(10 Hz to 100 kHz)C
=
I
100 mA
L
=
33 µF260
L
=
33µF(Note 9)80
C
L
www.national.com3
Electrical Characteristics (Continued)
Limits in standard typeface are for T
are guaranteed by production testing or correlation techniques using standard Statistical Quality Control (SQC) methods. Unless otherwise noted: V
=
6V, I
IN
SymbolParameterConditionsTypical2954AI2954IUnits
Additional Specifications for the Adjustable Device (LP2954AIM and LP2954IM)
Reference Voltage(Note 10)1.2301.215
REF
/
Reference Voltage
REF
Line Regulation
REF
/∆T Reference Voltage
Temperature
∆V
V
∆V
V
REF
Coefficient
(FB)Feedback Pin Bias
I
B
I
GND
Current
Ground Pin Current
at Shutdown (Note
6)
(SINK)Output ″OFF″
I
O
Pulldown Current
Dropout Detection Comparator
I
Output ″HIGH″
OH
Leakage Current
V
V
THR
V
THR
Output ″LOW″
OL
Voltage
(MAX) Upper Threshold
Voltage
(MIN) Lower Threshold
Voltage
HYSTHysteresis(Note 13)15mV
Shutdown Input
V
Input Offset Voltage(Referred to V
OS
HYSTHysteresis6mV
I
Input Bias CurrentVIN(S/D)=0V to 5V10−30
B
Note 1: Absolute maximum ratings indicate limits beyond which damage to the component may occur. Electrical specifications do not apply when operating the device outside of its rated operating conditions.
Note 2: The maximum allowable power dissipation is a function of the maximum junction temperature, T
and the ambient temperature, T
. The maximum allowable power dissipation at any ambient temperature is calculated using:
A
=
25˚C, bold typeface applies over the −40˚C to +125˚C temperature range. Limits
J
=
L
1 mA, C
L
=
2.2 µF.
MinMaxMinMax
=
V
2.5V to
IN
VO(NOM)+1V
=
2.5V to
V
IN
VO(NOM)+1V to 30V
1.205
1.255
0.030.10.2
0.20.4
1.245
1.205
1.190
1.255
1.270
(Note 11)
(Note 3)20ppm/˚C
2040
V
SHUTDOWN
≤1.1V105140140µA
(Note 12)30
20
=
V
30V0.011
OH
=
V
(NOM)−0.5V
V
IN
O
(COMP)=400µA
I
O
150250
(Note 13)−60−80
−95
(Note 13)−85−110
−160
REF
)
±
3−7.5
−10
−50
60
30
20
2
400
−35
−25
−55
−40
7.5
10
30
50
(MAX), the junction-to-ambient thermal resistance, θ
J
−80
−95
−110
−160
−7.5
−10
−30
−50
40
60
1
2
250
400
−35
−25
−55
−40
7.5
10
30
50
nA
mA
µA
mV
mV
mV
mV
nA
V
,
J-A
Exceeding the maximum allowable power dissipation will result in excessive die temperature, and the regulator will gointothermal shutdown.The junction-to-ambient
thermal resistance of the TO-220 (without heatsink) is 60˚C/W, 73˚C/W for the TO-263, and 160˚C/W for the SO-8. If the TO-263 package is used, the thermal resistance can be reduced by increasing the P.C. board copper area thermally connected to the package: Using 0.5 square inches of copper area, θ
1 square inch of copper area, θ
If an external heatsink is used, the effective junction-to-ambient thermal resistance is the sum of the junction-to-case resistance (3˚C/W), the specified thermal resistance of the heatsink selected, and the thermal resistance of the interface between the heatsink and the LP2954. Some typical values are listed for interface materials used with TO-220:
www.national.com4
is 37˚C/W; and with 1.6 or more square inches of copper area, θJAis 32˚C/W. The junction-to-case thermal resistance is 3˚C/W.
JA
is 50˚C/W; with
JA
.
Loading...
+ 9 hidden pages
You need points to download manuals.
1 point = 1 manual.
You can buy points or you can get point for every manual you upload.