TI LM747H/883

LM747QML
LM747QML Dual Operational Amplifier
Literature Number: SNOSAR6
LM747QML
Dual Operational Amplifier
General Description
Features
The LM747 is a general purpose dual operational amplifier.
The two amplifiers share a common bias network and power
supply leads. Otherwise, their operation is completely independent.
Additional features of the LM747 are: no latch-up when input
common mode range is exceeded, freedom from oscillations,
and package flexibility.
■
■
■
■
■
No frequency compensation required
Short-circuit protection
Wide common-mode and differential voltage ranges
Low power consumption
No latch-up
Ordering Information
NS Part Number
SMD Part Number
NS Package Number
Package Description
LM747H/883
H10C
10LD TO-100 Metal Can
LM747J/883
J14A
14LD Ceramic Dip
Connection Diagrams
Dual-In-Line Package
20159701
Top View
See NS Package Number J14A
10LD Metal Can Package
20159702
See NS Package Number H10C
© 2010 National Semiconductor Corporation
201597
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LM747QML Dual Operational Amplifier
December 16, 2010
LM747QML
Absolute Maximum Ratings (Note 1)
Supply voltage
Power Dissipation (Note 2)
Differential Input Voltage
Input Voltage (Note 3)
Output Short-Circuit Duration
Maximum Junction Temperature (TJmax)
Operating Temperature Range
±22V
800mW
±30V
±15V
Indefinite
150°C
−55°C ≤ TA ≤ +125°C
−65°C ≤ TA ≤ +150°C
+300°C
Storage Temperature Range
Lead Temperature
(Soldering, 10 seconds)
Quality Conformance Inspection
Mil-Std-883, Method 5005 - Group A
Subgroup
Description
Temp (°C)
1
Static tests at
+25
2
Static tests at
+125
3
Static tests at
-55
4
Dynamic tests at
+25
5
Dynamic tests at
+125
6
Dynamic tests at
-55
7
Functional tests at
+25
8A
Functional tests at
+125
8B
Functional tests at
-55
9
Switching tests at
+25
10
Switching tests at
+125
11
Switching tests at
-55
12
Settling time at
+25
13
Settling time at
+125
14
Settling time at
-55
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2
LM747QML
LM747 Electrical Characteristics
DC Parameters
The following conditions apply, unless otherwise specified.
Symbol
Parameter
VCC = ±15V, VCM = 0V
Conditions
Notes
RS = 50Ω, VCM = -12V
RS = 50Ω, VCM = 12V
VIO
Input Offset Voltage
RS = 50Ω
RS = 50Ω, VCC = ±5V
VCM = -12V
VCM = 12V
IIO
Input Offset Current
VCC = ±5V
VCM = -12V
VCM = 12V
IIB+
Input Bias Current
VCC = ±5V
VCM = -12V
VCM = 12V
IIB-
Input Bias Current
VCC = ±5V
Subgroups
Min
Max
Units
-5.0
5.0
mV
1
-6.0
6.0
mV
2, 3
-5.0
5.0
mV
1
-6.0
6.0
mV
2, 3
-5.0
5.0
mV
1
-6.0
6.0
mV
2, 3
-5.0
5.0
mV
1
-6.0
6.0
mV
2, 3
-200
200
nA
1
-500
500
nA
2, 3
-200
200
nA
1
-500
500
nA
2, 3
-200
200
nA
1
-500
500
nA
2, 3
-200
200
nA
1
-500
500
nA
2, 3
0.0
500
nA
1
0.0
1500
nA
2, 3
0.0
500
nA
1
0.0
1500
nA
2, 3
0.0
500
nA
1
0.0
1500
nA
2, 3
0.0
500
nA
1
0.0
1500
nA
2, 3
0.0
500
nA
1
0.0
1500
nA
2, 3
0.0
500
nA
1
0.0
1500
nA
2, 3
0.0
500
nA
1
0.0
1500
nA
2, 3
0.0
500
nA
1
0.0
1500
nA
2, 3
mV
1, 2, 3
mV
1, 2, 3
VIO Adj+
Input Offset Voltage Adjustment
Range
(Note 7)
VIO Adj-
Input Offset Voltage Adjustment
Range
(Note 7)
PSRR+
Power Supply Rejection Ratio
RS = 50Ω, VCC = ±15V to ±5V
77
dB
1, 2, 3
PSRR-
Power Supply Rejection Ratio
RS = 50Ω, VCC = ±15V to ±5V
77
dB
1, 2, 3
CMRR
Common Mode Rejection Ratio
RS = 50Ω, VCM = ±12V
IOS+
IOS-
Output Short Circuit Current
Output Short Circuit Current
3
6.0
-6.0
dB
1, 2, 3
-45
70
-9.0
mA
1, 2
-50
-9.0
mA
3
9.0
45
mA
1, 2
9.0
50
mA
3
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LM747QML
Symbol
ICC
VOP+
VOP-
Max
Units
Subgroups
5.6
mA
1
5.0
mA
2
6.6
mA
3
RL = 10KΩ
12
V
1, 2, 3
RL = 2KΩ
10
V
1, 2, 3
VCC = ±20V, RL = 10KΩ
16
V
1, 2, 3
VCC = ±20V, RL = 2KΩ
15
Parameter
Conditions
Notes
Min
Supply Current
Output Voltage Swing
Output Voltage Swing
V
1, 2, 3
RL = 10KΩ
-12
V
1, 2, 3
RL = 2KΩ
-10
V
1, 2, 3
VCC = ±20V, RL = 10KΩ
-16
V
1, 2, 3
V
1, 2, 3
50
-15
V/mV
1
25
V/mV
2, 3
50
V/mV
1
25
V/mV
2, 3
VCC = ±20V, RL = 2KΩ
AVS+
Open Loop Voltage Gain
AVS-
Open Loop Voltage Gain
VI
Input Voltage Range
VOP
Output Voltage Swing
VO = 0 to +10V, RL = 2K
VO = 0 to -10V, RL = 2K
VCC = ±5V
(Note 6)
(Note 6)
(Note 4)
12
−12
V
1, 2, 3
(Note 5)
2
−2
V
1, 2, 3
Notes
Min
Max
Units
Subgroups
AC Parameters
The following conditions apply, unless otherwise specified.
AC:
VCC = ±15V, VCM = 0V
Symbol
Parameter
Conditions
SR+
Slew Rate
AV = 1, VI = -5V to +5V
0.2
V/µS
9
SR-
Slew Rate
AV = 1, VI = +5V to -5V
0.2
V/µS
9
GBW
Gain Bandwidth
0.25
Mhz
9
VI = 50mV, ƒ = 20KHz,
RL = 2KΩ
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is
functional, but do not guarantee specific performance limits. For guaranteed specifications and test conditions, see the Electrical Characteristics. The guaranteed
specifications apply only for the test conditions listed. Some performance characteristics may degrade when the device is not operated under the listed test
conditions.
Note 2: The maximum power dissipation must be derated at elevated temperatures and is dictated by TJmax (maximum junction temperature), θJA (package
junction to ambient thermal resistance), and TA (ambient temperature). The maximum allowable power dissipation at any temperature is PDmax = (TJmax - TA)/
θJA or the number given in the Absolute Maximum Ratings, whichever is lower.
Note 3: For supply voltages less than ±15V, the absolute maximum input voltage is equal to the supply voltage.
Note 4: Parameter tested go-no-go only, guaranteed by CMRR test.
Note 5: Guaranteed parameter, not tested.
Note 6: Datalog reading in K = V/mV
Note 7: Tested for CERDIPs only.
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4
Released
12/16/2010
Revision
A
Section
Changes
New Release, Corporate format
5
1 MDS data sheet converted into one Corp. data
sheet format. The drift table was eliminated from the
883 section since it did not apply; MNLM747-X Rev
0BL will be archived.
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LM747QML
Revision History
LM747QML
Physical Dimensions inches (millimeters) unless otherwise noted
10 Pin Metal Can Package (H)
NS Package Number H10C
14 Pin Cerdip Package (J)
NS Package Number J14A
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6
LM747QML
Notes
7
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LM747QML Dual Operational Amplifier
Notes
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