Datasheet
SIGNATURE SERIES
Comparators
LM393xxx
LM2903xx
LM339xx
LM2901xx
Key Specifications
Operating Supply Voltage:
Single Supply
Dual Supply
Supply Current:
LM393xxx/LM2903xx
LM339xx/LM2901xx
Input Bias Current:
Input Offset Current:
Temperature Range:
LM393xx/LM339xxx
LM2903xx/LM2901xx
+2V to +36V
±1V to ±18V
0.4mA (Typ)
1.1mA (Typ)
25nA (Typ)
5nA (Typ)
-40°C to + 85°C
-40°C to +125°C
General Description
LM393xxx, LM2903xx, LM339xx, and LM2901xx
monolithic ICs integrate two or four independent
comparator circuits on a single chip and feature high
gain, low power consumption, and an operating
voltage range from 2V to 36V (single power supply).
Features
Operable with a Single Power Supply
Wide Operating Supply Voltage Range
Input / Output Ground Sense
Low Supply Current
Open Collector
Wide Temperature Range
Consumer Electronics
Current Sense Application
Battery Monitor
Multivibrator
Packages
SO Package8
TSSOP8
Mini SO8
SO Package14
TSSOP14
Application
W(Typ) x D(Typ) x H(Max)
4.90mm x 6.0mm x 1.55mm
3.00mm x 6.4mm x 1.10mm
3.00mm x 4.9mm x 0.95mm
8.65mm x 6.0mm x 1.55mm
5.00mm x 6.4mm x 1.10mm
Pin Configuration
SO Package8:
(SOP-J8)
TSSOP8:
(TSSOP-B8)
Mini SO8:
(TSSOP-B8J)
LM393DT
LM393WDT
LM2903DT
LM393PT
LM393WPT
LM2903PT
LM393ST
OUTPUT 1
1
INVERTING
2
INPUT 1
NON-INVERTING
INPUT 1
Vcc
-
3
4
CH1
- +
+
CH2
+ -
8
7
6
5
Vcc
+
OUTPUT 2
INVERTING
INPUT 2
NON-INVERTING
INPUT 2
Pin Description
LM393xxx/LM2903xx
Pin No.
1
2
3
4
5
6
7
8
Pin Name
OUTPUT 1
INVERTING INPUT 1
NON-INVERTING INPUT 1
Vcc
-
Function
CH1 Output
CH1 Inverting Input
CH1 Non-inverting Input
Negative power supply
CH2 Non-inverting Input
CH2 Inverting Input
CH2 Output
Positive power supply
NON-INVERTING INPUT 2
INVERTING INPUT 2
OUTPUT 2
Vcc
+
○Product
structure:Silicon monolithic integrated circuit
○This
product is not designed protection against radioactive rays.
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LM393xxx
LM2903xx
LM339xx
LM2901xx
Datasheet
Pin Configuration
SO Package14: LM339DT
(SOP-J14)
LM2901DT
TSSOP14:
(TSSOP-B14J)
LM339PT
LM2901PT
OUTPUT 2 1
OUTPUT 1 2
Vcc
+
3
INVERTING
INPUT 1 4
NON-INVERTING
5
INPUT 1
INVERTING
6
INPUT 2
NON-INVERTING
INPUT 2 7
CH2
- +
CH3
- +
CH1
- +
CH4
- +
14 OUTPUT 3
13 OUTPUT 4
-
12 Vcc
11
10
9
8
NON-INVERTING
INPUT 4
INVERTING
INPUT 4
NON-INVERTING
INPUT 3
INVERTING
INPUT 3
Pin Description
LM339xx/LM2901xx
Pin No.
1
2
3
4
5
6
7
8
9
10
11
12
13
14
Pin Name
CH2 Output
CH1 Output
Positive power supply
CH1 Inverting Input
CH1 Non-inverting Input
CH2 Inverting Input
CH2 Non-inverting Input
CH3 Inverting Input
CH3 Non-inverting Input
CH4 Inverting Input
CH4 Non-inverting Input
Negative power supply
CH4 Output
CH3 Output
Function
OUTPUT 2
OUTPUT 1
Vcc
+
INVERTING INPUT 1
NON-INVERTING INPUT 1
INVERTING INPUT 2
NON-INVERTING INPUT 2
INVERTING INPUT 3
NON-INVERTING INPUT 3
INVERTING INPUT 4
NON-INVERTING INPUT 4
Vcc
-
OUTPUT 4
OUTPUT 3
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LM393xxx
LM2903xx
LM339xx
LM2901xx
Datasheet
Circuit Diagram
Vcc
+
OUTPUT
NON-INVERTING
INPUT
INVERTING
INPUT
Vcc
-
Figure 1. Circuit Diagram (each channel)
Absolute Maximum Ratings
(T
A
=25°C)
Parameter
Supply Voltage
Symbol
Vcc
+
-Vcc
-
SO Package8
TSSOP8
Power Dissipation
P
D
Mini SO8
SO Package14
TSSOP14
Differential Input Voltage
(Note 7)
Input Common-mode Voltage Range
Input Current
(Note 8)
Operating Supply Voltage
Operating Temperature Range
Storage Temperature Range
Maximum Junction Temperature
Note:
Ratings
LM393xxx
0.67
(Note 1,6)
0.62
(Note 2,6)
0.58
(Note 3,6)
-
-
LM339xx
-
-
-
1.02
(Note 4,6)
0.84
(Note 5,6)
+36
(Vcc -0.3) to (Vcc +36)
-10
-
-
LM2903xx LM2901xx
0.67
(Note 1,6)
0.62
(Note 2,6)
-
-
-
-
-
-
1.02
(Note 4,6)
0.84
(Note 5,6)
Unit
V
+36
W
V
ID
V
ICM
I
I
V
opr
T
opr
T
stg
T
jmax
-40 to +85
V
V
mA
V
°C
°C
°C
+2.0 to +36.0
(±1.0 to ±18.0)
-
40 to +125
-
55 to +150
+150
Absolute maximum rating item indicates the condition which must not be exceeded. Application of voltage in excess of absolute maximum rating
or use out of absolute maximum rated temperature environment may cause deterioration of characteristics.
(Note 1) To use at temperature above T
A
=25°C reduce 5.4mW.
(Note 2) To use at temperature above T
A
=25°C reduce 5.0mW.
(Note 3) To use at temperature above T
A
=25°C reduce 4.7mW.
(Note 4) To use at temperature above T
A
=25°C reduce 8.2mW.
(Note 5) To use at temperature above T
A
=25°C reduce 6.8mW.
(Note 6) Mounted on a FR4 glass epoxy PCB 70mm×70mm×1.6mm(Copper foil area less than 3%).
(Note 7) The voltage difference between inverting input and non-inverting input is the differential input voltage.
The input terminal voltage is set to more than Vcc
-
.
(Note 8) An excessive input current will flow when input voltages of less than Vcc
-
-0.6V are applied.
The input current can be set to less than the rated current by adding a limiting resistor.
Caution:
Operating the IC over the absolute maximum ratings may damage the IC. The damage can either be a short circuit between pins or an open circuit
between pins and the internal circuitry. Therefore, it is important to consider circuit protection measures, such as adding a fuse, in case the IC is
operated over the absolute maximum ratings.
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LM393xxx
LM2903xx
LM339xx
LM2901xx
Datasheet
Electric Characteristics
○LM393xxx(Unless
otherwise specified Vcc
+
=+5V, Vcc
-
=0V, T
A
=25°C)
Limit
Temperature
Parameter
Symbol
Range
Min
Typ
Input Offset Voltage
(Note 9,10)
Input Offset Current
(Note 9,10)
Input Bias Current
(Note 9,10)
Large Signal Voltage Gain
Supply Current
(Note 10)
(All Comparators)
Input Common-mode
Voltage Range
(Note 10)
Output Saturation Voltage
(Note 10)
(Low Level Output Voltage)
Output Leakage Current
(Note 10)
(High Level Output Current)
Output Sink Current
(Note 10,11)
Small Signal Response Time
Large Signal Response Time
V
IO
I
IO
I
IB
A
V
I
CC
V
ICM
V
OL
I
LEAK
I
SINK
t
RE
t
REL
25°C
Full range
25°C
Full range
25°C
Full range
25°C
25°C
Full range
25°C
Full range
25°C
Full range
25°C
Full range
Full range
25°C
25°C
-
-
-
-
-
-
25
-
-
0
0
-
-
-
-
6
-
-
1
-
5
-
25
-
200
0.4
1
-
-
250
-
0.1
-
16
1.3
300
Max
7
9
50
150
250
400
-
1
2.5
+
Vcc -1.5
Unit
mV
nA
nA
V/mV
mA
V
mV
nA
μA
mA
μs
ns
Conditions
Vcc
+
=5V to 30V, V
O
=1.4V
V
ICM
=0 to 1.5V
V
O
=1.4V
V
O
=1.4V
Vcc =15V
V
O
=1.4V to 11.4V, R
L
=15kΩ
+
Vcc =5V, No Load
Vcc
+
=30V, No Load
-
V
ID
=-1V, I
SINK
=4mA
Vcc =30V, V
ID
=1V
V
O
=30V
V
ID
=-1V, V
O
=1.5V
R
L
=5.1kΩ, V
RL
=5V
V
IN
=100mVp-p,
Overdrive=5mV
R
L
=5.1kΩ, V
RL
=5V
V
IN
=TTL input, V
REF
=1.4V
+
+
Vcc
+
-2.0
400
700
-
1
-
-
-
(Note 9) Absolute value
(Note 10) Full range: T
A
=-40°C to +85°C
(Note 11) Consider the power dissipation of the IC under high temperature environment when selecting the output current value.
There may be a case where the output current value is reduced due to the rise in IC temperature caused by the heat generated inside the IC.
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LM393xxx
LM2903xx
LM339xx
LM2901xx
Datasheet
Electric Characteristics - continued
Parameter
Input Offset Voltage
(Note 12,13)
○LM339xx(Unless
otherwise specified Vcc
+
=+5V, Vcc
-
=0V, T
A
=25°C)
Symbol
V
IO
I
IO
I
IB
A
V
I
CC
V
ICM
V
OL
I
LEAK
I
SINK
t
RE
t
REL
Temperature
Range
25°C
Full range
25°C
Full range
25°C
Full range
25°C
25°C
Full range
25°C
Full range
25°C
Full range
25°C
Full range
Full range
25°C
25°C
Limit
Min
-
-
-
-
-
-
25
-
-
0
0
-
-
-
-
6
-
-
Typ
1
-
5
-
25
-
200
1.1
1.3
-
-
250
-
0.1
-
16
1.3
300
Max
7
9
50
150
250
400
-
2
2.5
Vcc
+
-1.5
Vcc
+
-2.0
400
700
-
1
-
-
-
Unit
mV
nA
nA
V/mV
mA
V
mV
nA
μA
mA
μs
ns
Conditions
Vcc
+
=5V to 30V, V
O
=1.4V
V
ICM
=0 to 1.5V
V
O
=1.4V
V
O
=1.4V
Vcc =15V
V
O
=1.4V to 11.4V, R
L
=15kΩ
Vcc
+
=5V, No Load
Vcc
+
=30V, No Load
-
V
ID
=-1V, I
SINK
=4mA
+
Vcc =30V, V
ID
=1V
V
O
=30V
+
Input Offset Current
(Note 12,13)
Input Bias Current
(Note 12,13)
Large Signal Voltage Gain
Supply Current
(Note 13)
(All Comparators)
Input Common-mode
Voltage Range
(Note 13)
Output Saturation Voltage
(Note 13)
(Low Level Output Voltage)
Output Leakage Current
(Note 13)
(High Level Output Current)
Output Sink Current
(Note 13,14)
Small Signal Response Time
Large Signal Response Time
V
ID
=-1V, V
O
=1.5V
R
L
=5.1kΩ, V
RL
=5V
V
IN
=100mVp-p,
Overdrive=5mV
R
L
=5.1kΩ, V
RL
=5V
V
IN
=TTL input, V
REF
=1.4V
(Note 12) Absolute value
(Note 13) Full range: T
A
=-40°C to +85°C
(Note 14) Consider the power dissipation of the IC under high temperature environment when selecting the output current value.
There may be a case where the output current value is reduced due to the rise in IC temperature caused by the heat generated inside the IC.
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TSZ02201-0RFR0G200530-1-2
6.July.2015 Rev.001