www.fairchildsemi.com
LM2904,LM358/LM358A,LM258/
LM258A
Dual Operational Amplifier
Features
• Internally Frequency Compensated for Unity Gain
• Large DC Voltage Gain: 100dB
• Wide Power Supply Range:
LM258/LM258A, LM358/LM358A: 3V~32V (or ±1.5V
~ 16V)
LM2904 : 3V~26V (or ±1.5V ~ 13V)
• Input Common Mode Voltage Range Includes Ground
• Large Output Voltage Swing: 0V DC to Vcc -1.5V DC
• Power Drain Suitable for Battery Operation.
Description
The LM2904,LM358/LM358A, LM258/LM258A consist of
two independent, high gain, internally frequency
compensated operational amplifiers which were designed
specifically to operate from a single power supply over a
wide range of voltage. Operation from split power supplies
is also possible and the low power supply current drain is
independent of the magnitude of the power supply voltage.
Application areas include transducer amplifier, DC gain
blocks and all the conventional OP-AMP circuits which now
can be easily implemented in single power supply systems.
8-DIP
1
8-SOP
1
Internal Block Diagram
OUT1
1
8
V
CC
IN1 (-)
2
-
+
7
OUT2
6
IN2 (-)
IN1 (+)
3
-
+
GND
4
5
IN2 (+)
Rev. 1.0.2
©2002 Fairchild Semiconductor Corporation
LM2904,LM358/LM358A,LM258/LM258A
Schematic Diagram
(One section only)
V
CC
Q5
Q6
Q12
Q17
Q19
Q20
Q2
IN(-)
Q1
R2
IN(+)
Q11
Q21
Q15
Q7
Q8
Q9
Q10
Q13
Q14
Q16
OUTPUT
Q3
Q4
C1
Q18
R1
GND
Absolute Maximum Ratings
Parameter
Supply Voltage
Differential Input Voltage
Input Voltage
Output Short Circuit to GND
V
CC
≤15V,
T
A
= 25°C(One Amp)
Operating Temperature Range
Storage Temperature Range
Symbol
V
CC
V
I(DIFF)
V
I
-
T
OPR
T
STG
LM258/LM258A
±16
or 32
32
-0.3 to +32
Continuous
-25 ~ +85
-65 ~ +150
LM358/LM358A
±16
or 32
32
-0.3 to +32
Continuous
0 ~ +70
-65 ~ +150
LM2904
±13
or 26
26
-0.3 to +26
Continuous
-40 ~ +85
-65 ~ +150
Unit
V
V
V
-
°C
°C
2
LM2904,LM358/LM358A,LM258/LM258A
Electrical Characteristics
(Vcc = 5.0V, V
EE
= GND, T
A
= 25°C, unless otherwise specified)
Parameter
Symbol
Conditions
V
CM
= 0V to V
CC
-1.5V
V
O(P)
= 1.4V,
R
S
= 0Ω
-
-
V
CC
= 30V
(LM2904, V
CC
=26V)
R
L
=
∞,
V
CC
= 30V
(LM2904, V
CC
=26V)
R
L
=
∞,
V
CC
= 5V
V
CC
= 15V,
R
L
=
2kΩ
V
O(P)
= 1V to 11V
LM258
LM358
LM2904
Unit
Min. Typ. Max. Min. Typ. Max. Min. Typ. Max.
-
2.9
5.0
-
2.9
7.0
-
2.9
7.0
Input Offset
Voltage
Input Offset
Current
Input Bias
Current
Input Voltage
Range
V
IO
mV
I
IO
I
BIAS
V
I(R)
-
-
0
-
-
50
3
45
-
0.8
0.5
100
-
28
5
85
100
120
40
30
150
Vcc
-1.5
2.0
1.2
-
-
-
20
-
-
-
60
-
-
0
-
-
25
26
27
-
65
65
-
-
5
45
-
0.8
0.5
100
-
28
5
80
100
120
40
50
250
Vcc
-1.5
2.0
1.2
-
-
-
20
-
-
-
60
-
-
0
-
-
25
22
23
-
50
50
-
-
5
45
-
0.8
0.5
100
-
24
5
80
100
120
40
50
250
Vcc
-1.5
2.0
1.2
-
-
-
20
-
-
-
60
nA
nA
V
mA
mA
V/mV
V
V
mV
dB
dB
dB
mA
Supply Current
Large Signal
Voltage Gain
I
CC
G
V
V
O(H)
Output Voltage
Swing
V
O(L)
Common-Mode
Rejection Ratio
Power Supply
Rejection Ratio
Channel
Separation
Short Circuit to
GND
CMRR
PSRR
CS
I
SC
V
CC
=30V R
L
= 2kΩ 26
(V
CC
R
L
=
=26V for
27
10kΩ
LM2904)
V
CC
= 5V, R
L
=
10kΩ
-
-
f = 1kHz to 20kHz
(Note1)
-
-
70
65
-
-
V
I(+)
= 1V,
V
I(-)
= 0V
I
SOURCE
V
CC
= 15V,
V
O(P)
= 2V
Output Current
I
SINK
V
I(+)
= 0V, V
I(-)
= 1V,
V
CC
= 15V,
V
O(P)
= 2V
V
I(+)
= 0V,V
I(-)
=1V ,
V
CC
= 15V,
V
O(P)
= 200mV
-
20
30
-
20
30
-
20
30
-
mA
10
15
-
10
15
-
10
15
-
mA
12
-
100
-
-
V
CC
12
-
100
-
-
V
CC
-
-
-
-
-
V
CC
µA
V
Differential
Input Voltage
V
I(DIFF)
Note:
1. This parameter, although guaranteed, is not 100% tested in production.
3
LM2904,LM358/LM358A,LM258/LM258A
Electrical Characteristics
(Continued)
(V
CC
= 5.0V, V
EE
= GND, unless otherwise specified)
The following specification apply over the range of -25°C
≤
T
A
≤
+85°C for the LM258; and the 0°C
≤
T
A
≤
+70°C
for the LM358; and the -40°C
≤
T
A
≤
+85°C for the LM2904
Parameter
Symbol
Conditions
LM258
LM358
LM2904
Unit
Min. Typ. Max. Min. Typ. Max. Min. Typ. Max.
Input Offset
Voltage
Input Offset
Voltage Drift
Input Offset
Current
Input Offset
Current Drift
Input Bias
Current
Input Voltage
Range
Large Signal
Voltage Gain
V
IO
V
CM
= 0V to
V
CC
-1.5V
V
O(P)
= 1.4V,
R
S
= 0Ω
R
S
= 0Ω
-
-
-
-
-
7.0
-
-
9.0
-
-
10.0
mV
∆V
IO/
∆
T
I
IO
∆I
IO
/∆T
I
BIAS
-
-
-
-
7.0
-
10
40
-
100
-
300
Vcc
-2.0
-
-
-
-
7.0
-
10
40
-
150
-
500
Vcc
-2.0
-
-
-
-
7.0
45
10
40
-
200
-
500
Vcc
-2.0
µV/°C
nA
pA/°C
nA
V
I(R)
V
CC
= 30V
(LM2904 ,
V
CC
= 26V)
V
CC
= 15V,
R
L
=2.0kΩ
V
O(P)
= 1V to 11V
V
CC
=30V
R
L
= 2kΩ
(V
CC
=
26V for
R
L
=10kΩ
LM2904)
V
CC
= 5V, R
L
=10kΩ
0
-
0
-
0
-
V
G
V
25
26
27
-
-
-
28
5
-
-
-
20
15
26
27
-
-
-
28
5
-
-
-
20
15
22
23
-
-
-
24
5
-
-
-
20
V/mV
V
V
mV
Output Voltage
Swing
V
O(H)
V
O(L)
Output Current
V
I(+)
= 1V,
V
I(-)
= 0V
I
SOURCE
V
CC
= 15V,
V
O(P)
= 2V
I
SINK
10
30
-
10
30
-
10
30
-
mA
V
I(+)
= 0V,
V
I(-)
= 1V
V
CC
= 15V,
V
O(P)
= 2V
-
5
8
-
5
9
-
5
9
-
mA
Differential
Input Voltage
V
I(DIFF)
-
-
V
CC
-
-
V
CC
-
-
V
CC
V
4
LM2904,LM358/LM358A,LM258/LM258A
Electrical Characteristics
(Continued)
(V
CC
= 5.0V, V
EE
= GND, T
A
= 25°C, unless otherwise specified)
Parameter
Input Offset Voltage
Input Offset Current
Input Bias Current
Input Voltage Range
Supply Current
Large Signal Voltage
Gain
Output Voltage Swing
Common-Mode
Rejection Ratio
Power Supply
Rejection Ratio
Channel Separation
Short Circuit to GND
Symbol
V
IO
I
IO
I
BIAS
V
I(R)
I
CC
G
V
V
OH
V
O(L)
CMRR
PSRR
CS
I
SC
I
SOURCE
Output Current
I
SINK
V
CC
= 30V
R
L
=
∞,V
CC
= 30V
RL =
∞,
V
CC
= 5V
V
CC
= 15V, R
L
=
2kΩ
V
O
= 1V to 11V
V
CC
= 30V
R
L
= 2kΩ
R
L
=10kΩ
Conditions
V
CM
= 0V to V
CC
-1.5V
V
O(P)
= 1.4V, R
S
= 0Ω
-
-
LM258A
Min. Typ.
-
-
-
0
-
-
50
26
27
-
70
65
-
-
20
10
12
-
1.0
2
40
-
0.8
0.5
100
-
28
5
85
100
120
40
30
15
100
-
LM358A
Max.
3.0
30
100
V
CC
-1.5
2.0
1.2
-
-
-
20
-
-
-
60
-
-
-
V
CC
Unit
mV
nA
nA
V
mA
mA
V/mV
V
V
mV
dB
dB
dB
mA
mA
mA
µA
V
Max. Min. Typ.
3.0
15
80
V
CC
-1.5
2.0
1.2
-
-
-
20
-
-
-
60
-
-
-
V
CC
-
-
-
0
-
-
25
26
27
-
65
65
-
-
20
10
12
-
2.0
5
45
-
0.8
0.5
100
-
28
5
85
100
120
40
30
15
100
-
V
CC
= 5V, R
L
=10kΩ
-
-
f = 1kHz to 20kHz (Note1)
-
V
I(+)
= 1V, V
I(-)
= 0V
V
CC
= 15V, V
O(P)
= 2V
V
I(+)
= 1V, V
I(-)
= 0V
V
CC
= 15V, V
O(P)
= 2V
V
in +
= 0V, V
in (-)
= 1V
V
O(P)
= 200mV
-
Differential Input
Voltage
V
I(DIFF)
Note:
1. This parameter, although guaranteed, is not 100% tested in production.
5