FEATURES
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LT3013
250mA, 4V to 80V
Low Dropout Micropower
Linear Regulator with PWRGD
DESCRIPTION
The LT
®
3013 is a high voltage, micropower low dropout
linear regulator. The device is capable of supplying 250mA
of output current with a dropout voltage of 400mV. Designed
for use in battery-powered or high voltage systems, the low
quiescent current (65μA operating and 1μA in shutdown)
makes the LT3013 an ideal choice. Quiescent current is
also well controlled in dropout.
Other features of the LT3013 include a PWRGD flag to
indicate output regulation. The delay between regulated
output level and flag indication is programmable with
a single capacitor. The LT3013 also has the ability to
operate with very small output capacitors. The regulator
is stable with only 3.3μF on the output while most older
devices require between 10μF and 100μF for stability.
Small ceramic capacitors can be used without any need
for series resistance (ESR) as is common with other
regulators. Internal protection circuitry includes reverse-
battery protection, current limiting, thermal limiting and
reverse current protection.
The device is available with an adjustable output with a
1.24V reference voltage. The LT3013 regulator is available
in the thermally enhanced 16-lead TSSOP and the low
profile (0.75mm), 12-pin (4mm
×
3mm) DFN package,
both providing excellent thermal characteristics.
, LT, LTC and LTM are registered trademarks of Linear Technology Corporation.
All other trademarks are the property of their respective owners.
Wide Input Voltage Range: 4V to 80V
Low Quiescent Current: 65μA
Low Dropout Voltage: 400mV
Output Current: 250mA
No Protection Diodes Needed
Adjustable Output from 1.24V to 60V
1μA Quiescent Current in Shutdown
Stable with 3.3μF Output Capacitor
Stable with Aluminum, Tantalum or Ceramic
Capacitors
Reverse-Battery Protection
No Reverse Current Flow from Output to Input
Thermal Limiting
Thermally Enhanced 16-Lead TSSOP and
12-Pin (4mm
×
3mm) DFN Package
APPLICATIONS
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Low Current High Voltage Regulators
Regulator for Battery-Powered Systems
Telecom Applications
Automotive Applications
TYPICAL APPLICATION
5V Supply with Shutdown
DROPOUT VOLTAGE (mV)
IN
V
IN
5.4V TO
80V
1μF
1.6M
OUT
LT3013
ADJ
C
T
249k
3013 TA01
Dropout Voltage
400
350
300
250
200
150
100
50
0
0
50
200
OUTPUT CURRENT (mA)
100
150
250
3013 TA02
750k
V
OUT
5V
250mA
3.3μF
SHDN
PWRGD
GND
V
SHDN
<0.3V
>2.0V
OUTPUT
OFF
ON
1000pF
3013fe
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LT3013
ABSOLUTE MAXIMUM RATINGS
(Note 1)
IN Pin Voltage .........................................................±80V
OUT Pin Voltage ......................................................±60V
IN to OUT Differential Voltage .................................±80V
ADJ Pin Voltage ....................................................... ±7V
SHDN
Pin Input Voltage ..........................................±80V
CT Pin Voltage .................................................7V, –0.5V
PWRGD Pin Voltage .......................................80V, –0.5V
Output Short-Circuit Duration .......................... Indefinite
Storage Temperature Range
TSSOP Package .................................–65°C to 150°C
DFN Package......................................–65°C to 125°C
Operating Junction Temperature Range
(Notes 3, 10, 11)
LT3013E .............................................–40°C to 125°C
LT3013HFE.........................................–40°C to 140°C
LT3013MP..........................................–55°C to 125°C
Lead Temperature (FE16 Soldering, 10 sec) ......... 300°C
PIN CONFIGURATION
TOP VIEW
TOP VIEW
NC
OUT
OUT
ADJ
GND
PWRGD
1
2
3
4
5
6
13
12 NC
11 IN
10 IN
9
8
7
NC
SHDN
C
T
GND
NC
OUT
OUT
ADJ
GND
PWRGD
GND
DE PACKAGE
12-LEAD (4mm 3mm) PLASTIC DFN
T
JMAX
= 125°C,
θ
JA
= 40°C/W,
θ
JC
= 16°C/W
EXPOSED PAD (PIN 13) IS GND
MUST BE SOLDERED TO PCB
1
2
3
4
5
6
7
8
17
16 GND
15 NC
14 IN
13 IN
12 NC
11
SHDN
10 C
T
9
GND
FE PACKAGE
16-LEAD PLASTIC TSSOP
T
JMAX
= 140°C,
θ
JA
= 40°C/W,
θ
JC
= 16°C/W
EXPOSED PAD (PIN 17) IS GND
MUST BE SOLDERED TO PCB
ORDER INFORMATION
LEAD FREE FINISH
LT3013EDE#PBF
LT3013EFE#PBF
LT3013HFE#PBF
LT3013MPFE#PBF
LEAD BASED FINISH
LT3013EDE
LT3013EFE
LT3013HFE
LT3013MPFE
TAPE AND REEL
LT3013EDE#TRPBF
LT3013EFE#TRPBF
LT3013HFE#TRPBF
LT3013MPFE#TRPBF
TAPE AND REEL
LT3013EDE#TR
LT3013EFE#TR
LT3013HFE#TR
LT3013MPFE#TR
PART MARKING
3013
3013EFE
3013HFE
3013MPFE
PART MARKING
3013
3013EFE
3013HFE
3013MPFE
PACKAGE DESCRIPTION
12-Lead (4mm x 3mm) Plastic DFN
16-Lead Plastic TSSOP
16-Lead Plastic TSSOP
16-Lead Plastic TSSOP
PACKAGE DESCRIPTION
12-Lead (4mm x 3mm) Plastic DFN
16-Lead Plastic TSSOP
16-Lead Plastic TSSOP
16-Lead Plastic TSSOP
TEMPERATURE RANGE
–40°C to 125°C
–40°C to 125°C
–40°C to 140°C
–55°C to 125°C
TEMPERATURE RANGE
–40°C to 125°C
–40°C to 125°C
–40°C to 140°C
–55°C to 125°C
Consult LTC Marketing for parts specified with wider operating temperature ranges.
For more information on lead free part marking, go to:
http://www.linear.com/leadfree/
For more information on tape and reel specifications, go to:
http://www.linear.com/tapeandreel/
3013fe
2
LT3013
ELECTRICAL CHARACTERISTICS
PARAMETER
Minimum Input Voltage
ADJ Pin Voltage (Notes 2,3)
Line Regulation
Load Regulation (Note 2)
Dropout Voltage
V
IN
= V
OUT(NOMINAL)
(Notes 4, 5)
CONDITIONS
I
LOAD
= 250mA
V
IN
= 4V, I
LOAD
= 1mA
4.75V < V
IN
< 80V, 1mA < I
LOAD
< 250mA
ΔV
IN
= 4V to 80V, I
LOAD
= 1mA (Note 2)
V
IN
= 4.75V,
ΔI
LOAD
= 1mA to 250mA
V
IN
= 4.75V,
ΔI
LOAD
= 1mA to 250mA
I
LOAD
= 10mA
I
LOAD
= 10mA
I
LOAD
= 50mA
I
LOAD
= 50mA
I
LOAD
= 250mA
I
LOAD
= 250mA
GND Pin Current
V
IN
= 4.75V
(Notes 4, 6)
Output Voltage Noise
ADJ Pin Bias Current
Shutdown Threshold
SHDN
Pin Current (Note 8)
Quiescent Current in Shutdown
PWRGD Trip Point
PWRGD Trip Point Hysteresis
PWRGD Output Low Voltage
C
T
Pin Charging Current
C
T
Pin Voltage Differential
Ripple Rejection
Current Limit
Reverse Output Current (Note 9)
V
CT(PWRGD High)
– V
CT(PWRGD Low)
V
IN
= 7V(Avg), V
RIPPLE
= 0.5V
P-P
, f
RIPPLE
= 120Hz, I
LOAD
= 250mA
V
IN
= 7V, V
OUT
= 0V
V
IN
= 4.75V, ΔV
OUT
= –0.1V (Note 2)
V
OUT
= 1.24V, V
IN
< 1.24V (Note 2)
l
l
l
l
l
l
l
l
l
l
(LT3013E, LT3013MP)
The
l
denotes the specifications which apply over the full operating temperature range, otherwise specifications are at T
J
= 25°C.
MIN
1.225
1.2
TYP
4
1.24
1.24
0.1
7
160
250
400
65
3
10
100
30
l
l
MAX
4.75
1.255
1.28
5
12
25
230
300
340
420
490
620
120
18
100
2
2
1
5
94
250
6
UNITS
V
V
V
mV
mV
mV
mV
mV
mV
mV
mV
mV
μA
mA
mA
μV
RMS
nA
V
V
μA
μA
μA
%
%
mV
μA
V
dB
mA
mA
I
LOAD
= 0mA
I
LOAD
= 100mA
I
LOAD
= 250mA
C
OUT
= 10μF, I
LOAD
= 250mA, BW = 10Hz to 100kHz
(Note 7 )
V
OUT
= Off to On
V
OUT
= On to Off
V
SHDN
= 0V
V
SHDN
= 6V
V
IN
= 6V, V
SHDN
= 0V
% of Nominal Output Voltage, Output Rising
% of Nominal Output Voltage
I
PWRGD
= 50μA
0.3
1.3
0.8
0.3
0.1
1
l
l
85
90
1.1
140
3.0
1.6
65
250
75
400
12
25
μA
ELECTRICAL CHARACTERISTICS
PARAMETER
Minimum Input Voltage
ADJ Pin Voltage (Notes 2,3)
Line Regulation
Load Regulation (Note 2)
CONDITIONS
I
LOAD
= 200mA
(LT3013H)
The
l
denotes the specifications which apply over the –40°C to 140°C operating temperature range, otherwise specifications are at T
J
= 25°C.
MIN
l
l
l
l
TYP
4
1.24
1.24
0.1
6
MAX
4.75
1.255
1.28
5
12
30
UNITS
V
V
V
mV
mV
mV
V
IN
= 4V, I
LOAD
= 1mA
4.75V < V
IN
< 80V, 1mA < I
LOAD
< 200mA
ΔV
IN
= 4V to 80V, I
LOAD
= 1mA (Note 2)
V
IN
= 4.75V, ΔI
LOAD
= 1mA to 200mA
V
IN
= 4.75V, ΔI
LOAD
= 1mA to 200mA
1.225
1.2
3013fe
3
LT3013
ELECTRICAL CHARACTERISTICS
PARAMETER
Dropout Voltage
V
IN
= V
OUT(NOMINAL)
(Notes 4, 5)
CONDITIONS
I
LOAD
= 10mA
I
LOAD
= 10mA
I
LOAD
= 50mA
I
LOAD
= 50mA
I
LOAD
= 200mA
I
LOAD
= 200mA
GND Pin Current
V
IN
= 4.75V
(Notes 4, 6)
Output Voltage Noise
ADJ Pin Bias Current
Shutdown Threshold
SHDN
Pin Current (Note 8)
Quiescent Current in Shutdown
PWRGD Trip Point
PWRGD Trip Point Hysteresis
PWRGD Output Low Voltage
C
T
Pin Charging Current
C
T
Pin Voltage Differential
Ripple Rejection
Current Limit
Reverse Output Current (Note 9)
V
CT(PWRGD High)
– V
CT(PWRGD Low)
V
IN
= 7V(Avg), V
RIPPLE
= 0.5V
P-P
, f
RIPPLE
= 120Hz, I
LOAD
= 200mA
V
IN
= 7V, V
OUT
= 0V
V
IN
= 4.75V, ΔV
OUT
= –0.1V (Note 2)
V
OUT
= 1.24V, V
IN
< 1.24V (Note 2)
l
l
l
l
l
l
(LT3013H)
The
l
denotes the specifications which apply over the –40°C to 140°C operating temperature range, otherwise specifications are at T
J
= 25°C.
MIN
TYP
160
250
360
65
3
7
100
30
l
l
MAX
230
320
340
450
490
630
130
18
100
2
2
1
5
95
250
6
UNITS
mV
mV
mV
mV
mV
mV
μA
mA
mA
μV
RMS
nA
V
V
μA
μA
μA
%
%
mV
μA
V
dB
mA
mA
I
LOAD
= 0mA
I
LOAD
= 100mA
I
LOAD
= 200mA
C
OUT
= 10μF, I
LOAD
= 200mA, BW = 10Hz to 100kHz
(Note 7)
V
OUT
= Off to On
V
OUT
= On to Off
V
SHDN
= 0V
V
SHDN
= 6V
V
IN
= 6V, V
SHDN
= 0V
% of Nominal Output Voltage, Output Rising
% of Nominal Output Voltage
I
PWRGD
= 50μA
0.3
1.3
0.8
0.3
0.1
1
l
l
85
90
1.1
140
3.0
1.6
65
200
75
400
12
25
μA
Note 1:
Stresses beyond those listed under Absolute Maximum Ratings
may cause permanent damage to the device. Exposure to any Absolute
Maximum Rating condition for extended periods may affect device
reliability and lifetime.
Note 2:
The LT3013 is tested and specified for these conditions with the
ADJ pin connected to the OUT pin.
Note 3:
Operating conditions are limited by maximum junction
temperature. The regulated output voltage specification will not apply
for all possible combinations of input voltage and output current. When
operating at maximum input voltage, the output current range must be
limited. When operating at maximum output current, the input voltage
range must be limited.
Note 4:
To satisfy requirements for minimum input voltage, the LT3013 is
tested and specified for these conditions with an external resistor divider
(249k bottom, 649k top) for an output voltage of 4.5V. The external
resistor divider will add a 5μA DC load on the output.
Note 5:
Dropout voltage is the minimum input to output voltage differential
needed to maintain regulation at a specified output current. In dropout, the
output voltage will be equal to (V
IN
– V
DROPOUT
).
Note 6:
GND pin current is tested with V
IN
= 4.75V and a current source
load. This means the device is tested while operating close to its dropout
region. This is the worst-case GND pin current. The GND pin current will
decrease slightly at higher input voltages.
Note 7:
ADJ pin bias current flows into the ADJ pin.
Note 8:
SHDN
pin current flows out of the
SHDN
pin.
Note 9:
Reverse output current is tested with the IN pin grounded and the
OUT pin forced to the rated output voltage. This current flows into the OUT
pin and out the GND pin.
Note 10:
The LT3013E is guaranteed to meet performance specifications
from 0°C to 125°C operating junction temperature. Specifications over
the –40°C to 125°C operating junction temperature range are assured by
design, characterization and correlation with statistical process controls.
The LT3013H is tested to the LT3013H Electrical Characteristics table at
140°C operating junction temperature. High junction temperatures degrade
operating lifetimes. Operating lifetime is derated at junction temperatures
greater than 125°C. The LT3013MP is 100% tested and guaranteed over
the –55°C to 125°C operating junction temperature range.
Note 11:
This IC includes overtemperature protection that is intended
to protect the device during momentary overload conditions. Junction
temperature will exceed 125°C (LT3013E, LT3013MP) or 140°C (LT3013H)
when overtemperature protection is active. Continuous operation above
the specified maximum operating junction temperature may impair device
reliability.
3013fe
4
LT3013
TYPICAL PERFORMANCE CHARACTERISTICS
Typical Dropout Voltage
600
GUARANTEED DROPOUT VOLTAGE (mV)
500
DROPOUT VOLTAGE (mV)
400
300
200
100
0
T
J
= 25°C
T
J
= 125°C
600
500
DROPOUT VOLTAGE (mV)
400
300
200
100
0
0
50
100
150
200
OUTPUT CURRENT (mA)
250
3013 G01
Guaranteed Dropout Voltage
= TEST POINTS
600
T
J
≤ 125°C
500
400
300
200
100
Dropout Voltage
I
L
= 250mA
I
L
= 100mA
T
J
≤ 25°C
I
L
= 50mA
I
L
= 10mA
I
L
= 1mA
0
50
100
200
150
OUTPUT CURRENT (mA)
250
3013 G02
0
–50 –25
0
25 50 75 100 125 150
TEMPERATURE (°C)
3013 G03
Quiescent Current
120
V
IN
= 6V
R
L
= ∞
100 I
L
= 0
QUIESCENT CURRENT (μA)
80
60
40
20
V
SHDN
= GND
0
–50 –25
0
25 50 75 100 125 150
TEMPERATURE (°C)
3013 G04
ADJ Pin Voltage
1.260
1.255
ADJ PIN VOLTAGE (V)
I
L
= 1mA
V
SHDN
= V
IN
1.250
1.245
1.240
1.235
1.230
1.225
1.220
–50 –25
0
25 50 75 100 125 150
TEMPERATURE (°C)
3013 G05
3013fe
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