Philips Semiconductors
Product specification
General purpose operational amplifier
µA741/µA741C/SA741C
DESCRIPTION
The
µA741
is a high performance operational amplifier with high
open-loop gain, internal compensation, high common mode range
and exceptional temperature stability. The
µA741
is
short-circuit-protected and allows for nulling of offset voltage.
PIN CONFIGURATION
D, F, N Packages
OFFSET NULL
INVERTING INPUT
1
2
3
4
TOP VIEW
–
8
7
6
5
NC
V+
OUTPUT
OFFSET NULL
FEATURES
NON–INVERTING INPUT
V–
•
Internal frequency compensation
•
Short circuit protection
•
Excellent temperature stability
•
High input voltage range
ORDERING INFORMATION
DESCRIPTION
8-Pin Plastic Dual In-Line Package (DIP)
8-Pin Plastic Dual In-Line Package (DIP)
8-Pin Plastic Dual In-Line Package (DIP)
8-Pin Ceramic Dual In-Line Package (CERDIP)
8-Pin Ceramic Dual In-Line Package (CERDIP)
8-Pin Small Outline (SO) Package
+
SL00095
Figure 1. Pin Configuration
TEMPERATURE RANGE
-55°C to +125°C
0 to +70°C
-40°C to +85°C
-55°C to +125°C
0 to +70°C
0 to +70°C
ORDER CODE
µA741N
µA741CN
SA741CN
µA741F
µA741CF
µA741CD
DWG #
SOT97-1
SOT97-1
SOT97-1
0580A
0580A
SOT96-1
ABSOLUTE MAXIMUM RATINGS
SYMBOL
V
S
Supply voltage
µA741C
µA741
P
D
Internal power dissipation
D package
N package
F package
V
IN
V
IN
I
SC
T
A
Differential input voltage
Input
voltage
1
Output short-circuit duration
Operating temperature range
µA741C
SA741C
µA741
T
STG
T
SOLD
Storage temperature range
Lead soldering temperature (10sec max)
0 to +70
-40 to +85
-55 to +125
-65 to +150
300
°C
°C
°C
°C
°C
780
1170
800
±30
±15
Continuous
mW
mW
mW
V
V
±18
±22
V
V
PARAMETER
RATING
UNIT
NOTES:
1. For supply voltages less than
±15V,
the absolute maximum input voltage is equal to the supply voltage.
1994 Aug 31
1
853-0903 13721
Philips Semiconductors
Product specification
General purpose operational amplifier
µA741/µA741C/SA741C
DC ELECTRICAL CHARACTERISTICS
T
A
= 25°C, V
S
=
±15V,
unless otherwise specified.
SYMBOL
V
OS
∆V
OS
/∆T
I
OS
Offset current
Over temp.
T
A
=+125°C
T
A
=-55°C
∆I
OS
/∆T
I
BIAS
Input bias current
Over temp.
T
A
=+125°C
T
A
=-55°C
∆I
B
/∆T
R
L
=10kΩ
V
OUT
Output voltage swing
R
L
=2kΩ, over temp.
R
L
=2kΩ, V
O
=±10V
A
VOL
Large-signal voltage gain
Offset voltage adjustment range
R
S
≤10kΩ
PSRR
Supply voltage rejection ratio
R
S
≤10kΩ,
over temp.
CMRR
Common-mode rejection ratio
Over temp.
I
CC
V
IN
R
IN
P
D
R
OUT
I
SC
Supply current
Input voltage range
Input resistance
Power consumption
Output resistance
Output short-circuit current
10
T
A
=+125°C
T
A
=-55°C
T
A
=+125°C
T
A
=-55°C
(µA741, over temp.)
±12
0.3
70
90
1.4
1.5
2.0
±13
2.0
50
45
45
75
25
60
10
85
75
100
75
25
60
2.8
2.5
3.3
±12
0.3
±13
2.0
50
85
1.4
2.8
dB
mA
mA
mA
V
MΩ
mW
mW
mW
Ω
mA
10
150
70
90
µV/V
dB
R
L
=2kΩ, V
O
=±10V,
over temp.
25
±30
15
±30
10
150
V/mV
mV
µV/V
±10
50
±13
200
±10
20
±13
200
V
V/mV
±12
30
300
1
±14
±12
500
1500
1
±14
7.0
20
200
80
500
200
500
200
80
500
800
PARAMETER
Offset voltage
TEST CONDITIONS
R
S
=10kΩ
R
S
=10kΩ, over temp.
µA741
Min
Typ
1.0
1.0
10
20
200
Max
5.0
6.0
10
20
200
300
Min
µA741C
Typ
2.0
Max
6.0
7.5
UNIT
mV
mV
µV/°C
nA
nA
nA
nA
pA/°C
nA
nA
nA
nA
nA/°C
V
1994 Aug 31
2
Philips Semiconductors
Product specification
General purpose operational amplifier
µA741/µA741C/SA741C
DC ELECTRICAL CHARACTERISTICS
T
A
= 25°C, V
S
=
±15V,
unless otherwise specified.
SYMBOL
V
OS
Offset voltage
∆V
OS
/∆T
I
OS
Offset current
∆I
OS
/∆T
I
BIAS
Input bias current
∆I
B
/∆T
R
L
=10kΩ
V
OUT
Output voltage swing
R
L
=2kΩ, over temp.
R
L
=2kΩ, V
O
=±10V
A
VOL
Large-signal voltage gain
R
L
=2kΩ, V
O
=±10V, over temp.
Offset voltage adjustment range
PSRR
CMRR
V
IN
R
IN
P
d
R
OUT
I
SC
Supply voltage rejection ratio
Common mode rejection ration
Input voltage range
Input resistance
Power consumption
Output resistance
Output short-circuit current
Over temp.
R
S
≤10kΩ
70
±12
0.3
15
±30
10
90
±13
2.0
50
75
25
85
150
V/mV
mV
µV/V
dB
V
MΩ
mW
Ω
mA
±10
20
±13
200
V
V/mV
±12
Over temp.
1
±14
Over temp.
200
80
500
1500
PARAMETER
TEST CONDITIONS
R
S
=10kΩ
R
S
=10kΩ, over temp.
10
20
200
500
SA741C
Min
Typ
2.0
Max
6.0
7.5
UNIT
mV
mV
µV/°C
nA
nA
pA/°C
nA
nA
nA/°C
V
AC ELECTRICAL CHARACTERISTICS
T
A
=25°C, V
S
=
±15V,
unless otherwise specified.
SYMBOL
R
IN
C
IN
PARAMETER
Parallel input resistance
Parallel input capacitance
Unity gain crossover frequency
Transient response unity gain
t
R
SR
Rise time
Overshoot
Slew rate
C≤100pF, R
L
≥2kΩ,
V
IN
=±10V
TEST CONDITIONS
Open-loop, f=20Hz
Open-loop, f=20Hz
Open-loop
V
IN
=20mV, R
L
=2kΩ, C
L
≤100pF
0.3
5.0
0.5
µs
%
V/µs
µA741, µA741C
Min
0.3
1.4
1.0
Typ
Max
UNIT
MΩ
pF
MHz
1994 Aug 31
3
Philips Semiconductors
Product specification
General purpose operational amplifier
µA741/µA741C/SA741C
EQUIVALENT SCHEMATIC
INVERTING INPUT
V+
Q8
Q9
Q12
Q13
Q14
NON–INVERTING
INPUT
Q1
Q2
30pF
Q3
Q4
R5
39KΩ
Q16
Q7
Q5
OFFSET NULL
Q6
Q10
Q11
Q22
R7
4.5Ω
Q18 Q15
R8
7.5KΩ
R9
25Ω
OUTPUT
Q17
R10
50Ω
Q20
R1
1KΩ
R3
50KΩ
R2
1KΩ
R4
5kΩ
R12 R11
50kΩ 50Ω
V–
OFFSET NULL
SL00096
Figure 2. Equivalent Schematic
1994 Aug 31
4
Philips Semiconductors
Product specification
General purpose operational amplifier
µA741/µA741C/SA741C
TYPICAL PERFORMANCE CHARACTERISTICS
Output Voltage Swing as a
Function of Supply Voltage
PEAK TO PEAK OUTPUT SWING — V
40
36
32
28
24
20
16
12
8
4
0
5
10
15
20
–55
o
C < T
A
< +125
o
C
R
L
> 2kΩ
Input Common–Mode Voltage Range
as a Function of Supply Voltage
COMMON MODE VOLTAGE RANGE —+ V
16
POWER CONSUMPTION — mW
14
12
10
8
6
4
2
0
5
10
15
20
SUPPLY VOLTAGE — +V
–55
o
C < T
A
< +125
o
C
100
Power Consumption as a
Function of Supply Voltage
80
T
A A
2525
o
C
T= =
o
C
60
40
20
0
5
10
15
20
SUPPLY VOLTAGE — +V
SUPPLY VOLTAGE — +V
Input Bias Current as a Function
of Ambient Temperature
500
INPUT BIAS CURRENT — nA
V
S
= +15V
INPUT RESISTANCE — MΩ
400
10.0
5.0
3.0
Input Resistance as a Function
of Ambient Temperature
40
INPUT OFFSET CURRENT – nA
V
S
=
±15
o
C
Input Offset Current as a
Function of Supply Voltage
T
A
= 25
o
C
30
300
1.0
0.5
0.3
20
200
10
100
0
–60
–20
20
60
100
140
0.1
–60
0
–20
20
60
100
140
5
10
15
20
TEMPERATURE —
o
C
TEMPERATURE —
o
C
SUPPLY VOLTAGE — +V
Input Offset Current as a
Function of Ambient Temperature
140
INPUT OFFSET CURRENT — nA
POWER CONSUMPTION — mW
120
100
80
60
40
20
0
–60
V
S
=
±15
o
C
Power Consumption as a
Function of Ambient Temperature
70
PEAK–TO–PEAK OUTPUT SWING — V
28
26
24
22
20
18
16
14
12
10
Output Voltage Swing as a
Function of Load Resistance
V
S
= +15V
T
A
= 25
o
C
60
50
40
30
–60
–20
20
60
100
140
–20
20
60
100
140
8
0.1
0.2
0.5 1.0
2.0
5.0
10
TEMPERATURE —
o
C
TEMPERATURE —
o
C
LOAD RESISTANCE — kΩ
SL00097
Figure 3. Typical Performance Characteristics
1994 Aug 31
5