Philips Stereo Amplifier MC1458 User Manual

Philips Semiconductors Linear Products  
Product specification  
General purpose operational amplifier  
MC/SA1458/MC1558  
DESCRIPTION  
PIN CONFIGURATION  
The MC1458 is a high-performance operational amplifier with high  
open-loop gain, internal compensation, high common-mode range  
and exceptional temperature stability. The MC1458 is short-circuit  
protected.  
D, N Packages  
1
2
3
4
8
V+  
OUTPUT A  
INVERTING INPUT A  
7
6
5
OUTPUT B  
A
B
The MC1458/SA1458/MC1558 consists of a pair of 741 operational  
amplifiers on a single chip.  
– +  
+
NON -INVERTING INPUT A  
V–  
INVERTING INPUT B  
NON -INVERTING INPUT B  
FEATURES  
Internal frequency compensation  
TOP VIEW  
Short-circuit protection  
Excellent temperature stability  
High input voltage range  
No latch-up  
1558/1458 are 2 “op amps” in space of one 741 package  
ORDERING INFORMATION  
DESCRIPTION  
TEMPERATURE RANGE  
0 to +70°C  
ORDER CODE  
MC1458D  
MC1458N  
SA1458D  
DWG #  
0174C  
0404B  
0174C  
0404B  
0404B  
8-Pin Plastic Small Outline (SO) Package  
8-Pin Plastic Dual In-Line Package (DIP)  
8-Pin Plastic Small Outline (SO) Package  
8-Pin Plastic Dual In-Line Package (DIP)  
8-Pin Plastic Dual In-Line Package (DIP)  
0 to +70°C  
-40°C to +85°C  
-40°C to +85°C  
-55°C to +125°C  
SA1458N  
MC1558N  
ABSOLUTE MAXIMUM RATINGS  
SYMBOL  
PARAMETER  
RATING  
UNIT  
V
S
Supply voltage  
MC1458  
±18  
±18  
V
V
SA1458  
MC1558  
±22  
V
T
J
Junction temperature  
+150  
°C  
P
D MAX  
Maximum power dissipation,  
1
T =25°C (still-air)  
A
N package  
1160  
780  
mW  
mW  
V
D package  
V
V
Differential input voltage  
±30  
DIFF  
2
Input voltage  
±15  
V
IN  
Output short-circuit duration  
Operating ambient temperature range  
MC1458  
Continuous  
T
A
0 to +70  
-40 to +85  
-55 to +125  
-65 to +150  
300  
°C  
°C  
°C  
°C  
°C  
SA1458  
MC1558  
T
STG  
Storage temperature range  
Lead soldering temperature (10sec max)  
T
SOLD  
NOTES:  
1. The following derating factors should be applied above 25°C; N package at 9.3mW/°C; D package at 6.2mW/°C  
2. For supply voltages less than ±15V, the absolute maximum input voltage is equal to the supply voltage.  
59  
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August 31, 1994  
853-1062 13721  
Philips Semiconductors Linear Products  
Product specification  
General purpose operational amplifier  
MC/SA1458/MC1558  
DC ELECTRICAL CHARACTERISTICS (Continued)  
T =25°C V =±15V, unless otherwise specified.  
A
CC  
MC1458  
Typ  
SA1458  
UNIT  
SYMBOL  
PARAMETER  
Offset voltage  
TEST CONDITIONS  
Min  
Max  
6.0  
Min  
Typ  
Max  
6.0  
V
OS  
R =10kΩ  
2.0  
2.0  
mV  
mV  
S
R =10k, over temp.  
S
7.5  
7.5  
V  
Offset voltage  
Offset current  
Over temperature  
12  
20  
12  
20  
µV/°C  
nA  
OS  
I
200  
300  
200  
500  
OS  
Over temperature  
Over temperature  
nA  
I  
OS  
Offset current  
0.10  
80  
0.10  
80  
nA/°C  
nA  
I
Input bias current  
500  
800  
500  
BIAS  
Over temperature  
Over temperature  
1500  
nA  
I  
BIAS  
Bias current  
1.0  
±14  
±13  
200  
1.0  
±14  
±13  
200  
nA/°C  
R =10k, over temp.  
±12  
±10  
25  
±12  
±10  
20  
L
V
OUT  
Output voltage swing  
V
R =2k, over temp.  
L
R =2k, V =±10V  
V/mV  
L
O
A
VOL  
Large-signal voltage gain  
R =2k, V =±10V,  
L
O
Over temperature  
15  
70  
15  
70  
V/mV  
mV  
µV/V  
dB  
Offset voltage adjustment range  
Power supply rejection ratio  
Common-mode rejection ratio  
Supply current  
±30  
30  
±30  
30  
PSRR  
CMRR  
R 10kΩ  
S
150  
5.6  
150  
5.6  
90  
90  
I
2.3  
±13  
1
2.3  
±13  
1
mA  
V
CC  
V
IN  
Input voltage range  
±12  
0.3  
±12  
0.3  
R
Input resistance  
MΩ  
mW  
dB  
IN  
D
P
Power consumption  
70  
170  
70  
170  
Channel separation  
120  
25  
120  
25  
I
Output short-circuit current  
mA  
SC  
AC ELECTRICAL CHARACTERISTICS  
T =25°C V =±15V, unless otherwise specified.  
A
S
MC1458, SA1458,  
MC1558  
SYMBOL  
PARAMETER  
TEST CONDITIONS  
UNIT  
Min  
0.3  
Typ  
Max  
R
Parallel input resistance  
Open-loop, f=20Hz  
f=20Hz  
MΩ  
MΩ  
IN  
Common-mode input impedance  
200  
30  
Ǹ
Equivalent input noise voltage  
A =100, R =10k, BW=1.0kHz, f=1.0kHz  
V
S
nVń Hz  
BW  
Power bandwidth  
Phase margin  
A =1, R =2.0k, THD5%, V  
=20V  
OUT P-P  
14  
65  
11  
kHz  
degrees  
dB  
V
L
A
V
Gain margin  
Unity gain crossover frequency  
Transient response unity gain  
Rise time  
Open loop  
=20mV, R =2k, C 100pF  
1.0  
MHz  
V
IN  
L
L
t
0.3  
5.0  
0.8  
µs  
%
R
Overshoot  
SR  
Slew rate  
C 100pF, R 2k, V =±10V  
V/µs  
L
L
IN  
61  
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August 31, 1994  
Philips Semiconductors Linear Products  
Product specification  
General purpose operational amplifier  
MC/SA1458/MC1558  
TYPICAL PERFORMANCE CHARACTERISTICS  
Output Voltage Swing as a  
Function of Supply Voltage  
Input Common–Mode Range  
as a Function of Supply Voltage  
Power Consumption as a  
Function of Supply Voltage  
40  
36  
32  
28  
24  
20  
16  
14  
100  
o
O
C
o
= 25 C  
o
O
–55 C < T < + 125  
A
T
–55 C < T < + 125  
C
A
A
R
> 2kΩ  
80  
L
12  
10  
60  
40  
8
6
16  
12  
4
2
20  
0
8
4
0
0
5
10  
15  
20  
5
10  
15  
20  
5
10  
15  
20  
SUPPLY VOLTAGE — +V  
SUPPLY VOLTAGE — +V  
SUPPLY VOLTAGE — +V  
Input Bias Current as a  
Function Of Ambient Temperature  
Input Resistance as a  
Function of Ambient Temperature  
Input Offset Current as a  
Function of Supply Voltage  
500  
10.0  
40  
V
= +15V  
S
V
= +15V  
o
S
T
A
= 25 C  
5.0  
3.0  
400  
30  
20  
10  
0
300  
200  
100  
0
1.0  
0.5  
0.3  
0.1  
–60  
5
–20  
20  
60  
100  
o
140  
20  
–60  
–20  
20  
60  
100  
o
140  
10  
15  
TEMPERATURE —  
C
TEMPERATURE —  
C
SUPPLY VOLTAGE — +V  
Input Offset Current as a  
Function of Ambient Temperature  
Power Consumption as a  
Function of Ambient Temperature  
Output Voltage Swing as a  
Function of Load Resistance  
140  
28  
26  
V
= +15V  
V
T
= + 15V  
70  
S
S
A
o
120  
= 25 C  
24  
22  
20  
18  
60  
50  
40  
30  
100  
80  
60  
40  
16  
14  
12  
10  
8
20  
0
–60  
–20  
20  
60  
100  
140  
–60  
–20  
20  
60  
100  
140  
0.1 0.2  
0.5 10 2.0  
5.0 1.0  
o
o
TEMPERATURE —  
C
TEMPERATURE —  
C
LOAD RESISTANCE — kΩ  
62  
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Philips Semiconductors Linear Products  
Product specification  
General purpose operational amplifier  
MC/SA1458/MC1558  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
Output Short–Circuit Current as a  
Input Noise Voltage as a  
Function of Frequency  
Input Noise Current as a  
Function of Frequency  
Function of Ambient Temperature  
35  
–21  
–13  
–14  
10  
10  
10  
10  
V
T
= + 15V  
S
A
V
T
= + 15V  
S
A
o
= 25 C  
o
= 25 C  
–22  
–23  
30  
25  
20  
–15  
–16  
–17  
–18  
10  
10  
–24  
–25  
–26  
10  
10  
10  
10  
10  
10  
15  
10  
10  
100  
1K  
10K  
100K  
–60  
–20  
20  
60  
100  
140  
10  
100  
1K  
10K  
100K  
o
TEMPERATURE —  
C
FREQUENCY — Hz  
FREQUENCY — Hz  
Broadband Noise for  
Various Bandwidths  
Open–Looped Voltage Gain  
as a Function of Frequency  
Open-Looped Phase Response  
as a Function of Frequency  
6
0
10  
100  
V
T
= + 15V  
S
A
5
4
3
2
V
T
= + 15V  
S
A
10  
10  
10  
o
= 25 C  
o
= 25 C  
–45  
–90  
10  
1
10–100kHz  
10–100kHz  
10–1kHz  
10  
10  
–135  
–180  
1
0.1  
1
10 100 1K 10K 100K 1M 10M  
FREQUENCY — Hz  
1
10 100 1K 10K 100K 1M 10M  
FREQUENCY — Hz  
100  
1K  
10K  
100K  
SOURCE RESISTANCE — Ω  
Output Voltage Swing  
as a Function of Frequency  
Common–Mode Rejection Ratio  
as a Function of Frequency  
Transient Response  
40  
100  
90  
28  
36  
32  
V
T
= + 15V  
V
T
= + 15V  
S
A
L
S
A
24  
20  
o
o
= 25 C  
= 25 C  
80  
70  
60  
50  
40  
30  
R
= 10kΩ  
28  
24  
V
T
= + 15V  
16  
12  
S
A
o
= 25 C  
20  
16  
R
= 2kΩ  
= 100pF  
L
L
C
8
4
12  
20  
10  
8
4
0
RISE TIME  
0
1
10 100 1K 10K 100K 1M 10M  
FREQUENCY — Hz  
0
0.5  
1.0  
1.5  
2.0  
2.5  
100  
1K  
10K  
100K  
1M  
FREQUENCY — Hz  
TIME — µs  
63  
August 31, 1994  
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Philips Semiconductors Linear Products  
Product specification  
General purpose operational amplifier  
MC/SA1458/MC1558  
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)  
Power Bandwidth  
(Large–Signal Swing vs Frequency)  
28  
24  
20  
16  
12  
(VOLTAGE FOLLOWER)  
+ 15 VOLT SUPPLIES  
THD < 5%  
8
4
0
10  
100  
1K  
10K  
100K  
FREQUENCY — Hz  
64  
August 31, 1994  
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