LMC6081IMX/NOPB is an OPERATIONAL AMPLIFIER. The commonly used packaging method is SOIC-8
LMC6081IMX/NOPB amplifier core information:
The minimum operating temperature of the LMC6081IMX/NOPB is -40 °C and the maximum operating temperature is 85 °C. Its peak reflow temperature is 260°C and its maximum average bias current is 0.000004 µA
How to simply check the efficiency of an amplifier? Looking at its slew rate, the nominal slew rate of LMC6081IMX/NOPB is 1.5 V/us. When the op amp is used in closed loop, at a certain closed-loop gain (usually 1 or 2, 10, etc.), the frequency when the LMC6081IMX/NOPB gain becomes 0.707 times the low-frequency gain is 1300 kHz.
The nominal supply voltage of LMC6081IMX/NOPB is 5 V, and its corresponding nominal negative supply voltage is. The input offset voltage of the LMC6081IMX/NOPB is 800 µV (input offset voltage: the compensation voltage added between the two input terminals to make the output terminal of the operational amplifier 0V (or close to 0V).)
Related dimensions of LMC6081IMX/NOPB:
The width of LMC6081IMX/NOPB is: 3.9 mm and the length is 4.9 mm. LMC6081IMX/NOPB has 8 terminals. Its terminal position type is: DUAL. Terminal pitch is 1.27 mm. Total pins: 8
LMC6081IMX/NOPB amplifier additional information:
Its temperature grade is: INDUSTRIAL. And its humidity sensitivity level is: 1. LMC6081IMX/NOPB is not Rohs certified. It does not contain lead. The corresponding JESD-30 code is: R-PDSO-G8.
The corresponding JESD-609 code is: e3. The packaging code of LMC6081IMX/NOPB is: SOP. The materials of LMC6081IMX/NOPB packaging are mostly PLASTIC/EPOXY. The package shape is RECTANGULAR. LMC6081IMX/NOPB package pin formats are: SMALL OUTLINE.
Its terminal forms are: GULL WING. The maximum seat height is 1.75 mm.
LMC6081IMX/NOPB is an OPERATIONAL AMPLIFIER. The commonly used packaging method is SOIC-8
LMC6081IMX/NOPB amplifier core information:
The minimum operating temperature of the LMC6081IMX/NOPB is -40 °C and the maximum operating temperature is 85 °C. Its peak reflow temperature is 260°C and its maximum average bias current is 0.000004 µA
How to simply check the efficiency of an amplifier? Looking at its slew rate, the nominal slew rate of LMC6081IMX/NOPB is 1.5 V/us. When the op amp is used in closed loop, at a certain closed-loop gain (usually 1 or 2, 10, etc.), the frequency when the LMC6081IMX/NOPB gain becomes 0.707 times the low-frequency gain is 1300 kHz.
The nominal supply voltage of LMC6081IMX/NOPB is 5 V, and its corresponding nominal negative supply voltage is. The input offset voltage of the LMC6081IMX/NOPB is 800 µV (input offset voltage: the compensation voltage added between the two input terminals to make the output terminal of the operational amplifier 0V (or close to 0V).)
Related dimensions of LMC6081IMX/NOPB:
The width of LMC6081IMX/NOPB is: 3.9 mm and the length is 4.9 mm. LMC6081IMX/NOPB has 8 terminals. Its terminal position type is: DUAL. Terminal pitch is 1.27 mm. Total pins: 8
LMC6081IMX/NOPB amplifier additional information:
Its temperature grade is: INDUSTRIAL. And its humidity sensitivity level is: 1. LMC6081IMX/NOPB is not Rohs certified. It does not contain lead. The corresponding JESD-30 code is: R-PDSO-G8.
The corresponding JESD-609 code is: e3. The packaging code of LMC6081IMX/NOPB is: SOP. The materials of LMC6081IMX/NOPB packaging are mostly PLASTIC/EPOXY. The package shape is RECTANGULAR. LMC6081IMX/NOPB package pin formats are: SMALL OUTLINE.
Its terminal forms are: GULL WING. The maximum seat height is 1.75 mm.
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Differential Input Voltage
Voltage at Input/Output Pin
Supply Voltage (V
+
− V
−
)
Output Short Circuit to V
+
Output Short Circuit to V
−
Lead Temperature
(Soldering, 10 Sec.)
Storage Temp. Range
Junction Temperature
ESD Tolerance (Note 4)
Current at Input Pin
260˚C
−65˚C to +150˚C
150˚C
2 kV
Current at Output Pin
Current at Power Supply Pin
Power Dissipation
±
30 mA
40 mA
(Note 3)
±
Supply Voltage
(V
+
) +0.3V,
(V
−
) −0.3V
16V
(Note 10)
(Note 2)
Operating Ratings
(Note 1)
Temperature Range
LMC6081AM
LMC6081AI, LMC6081I
Supply Voltage
Thermal Resistance (θ
JA
), (Note 11)
N Package, 8-Pin Molded DIP
M Package, 8-Pin Surface
Mount
Power Dissipation (Note 9)
115˚C/W
193˚C/W
−55˚C
≤
T
J
≤
+125˚C
−40˚C
≤
T
J
≤
+85˚C
4.5V
≤
V
+
≤
15.5V
±
10 mA
DC Electrical Characteristics
Unless otherwise specified, all limits guaranteed for T
J
= 25˚C.
Boldface
limits apply at the temperature extremes. V
+
= 5V, V
−
= 0V, V
CM
= 1.5V, V
O
= 2.5V and R
L
>
1M unless otherwise specified.
Typ
Symbol
V
OS
TCV
OS
I
B
I
OS
R
IN
CMRR
+PSRR
−PSRR
V
CM
Parameter
Input Offset Voltage
Input Offset Voltage
Average Drift
Input Bias Current
Input Offset Current
Input Resistance
Common Mode
Rejection Ratio
Positive Power Supply
Rejection Ratio
Negative Power Supply
Rejection Ratio
Input Common-Mode
Voltage Range
V = 5V and 15V
for CMRR
≥
60 dB
V − 1.9
A
V
Large Signal
Voltage Gain
R
L
= 2 kΩ
(Note 7)
Sinking
R
L
= 600Ω
(Note 7)
Sinking
150
Sourcing
350
1200
Sourcing
1400
+
+
+
+
LMC6081AM
Limit
(Note 6)
350
1000
LMC6081AI
Limit
(Note 6)
350
800
LMC6081I
Limit
(Note 6)
800
1300
µV
Max
µV/˚C
pA
Units
Conditions
(Note 5)
150
1.0
0.010
100
0.005
100
4
2
75
72
75
72
84
81
−0.1
0
V − 2.3
V − 2.5
400
300
180
100
400
150
100
50
+
+
+
+
4
2
66
63
66
63
74
71
−0.1
0
V − 2.3
V − 2.5
300
200
90
60
200
80
70
35
Max
pA
Max
Tera
Ω
dB
Min
dB
Min
dB
Min
V
Max
V
Min
V/mV
Min
V/mV
Min
V/mV
Min
V/mV
Min
>
10
0V
≤
V
CM
≤
12.0V
V = 15V
5V
≤
V
≤
15V
+
+
85
85
94
−0.4
75
72
75
72
84
81
−0.1
0
V − 2.3
V − 2.6
400
300
180
70
400
150
100
35
V
O
= 2.5V
0V
≤
V
≤
−10V
−
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2
LMC6081
DC Electrical Characteristics
(Continued)
Unless otherwise specified, all limits guaranteed for T
J
= 25˚C.
Boldface
limits apply at the temperature extremes. V
+
= 5V, V
−
= 0V, V
CM
= 1.5V, V
O
= 2.5V and R
L
>
1M unless otherwise specified.
Typ
LMC6081AM
Limit
(Note 6)
4.80
4.70
0.10
V
+
= 5V
R
L
= 600Ω to 2.5V
0.30
V = 15V
R
L
= 2 kΩ to 7.5V
0.26
V = 15V
R
L
= 600Ω to 7.5V
0.79
+
+
LMC6081AI
Limit
(Note 6)
4.80
4.73
0.13
0.17
4.50
4.31
0.40
0.50
14.50
14.34
0.35
0.45
13.35
12.86
1.16
1.32
16
10
16
13
28
22
28
22
750
900
850
950
LMC6081I
Limit
(Note 6)
4.75
4.67
0.20
0.24
4.40
4.21
0.50
0.63
14.37
14.25
0.44
0.56
12.92
12.44
1.33
1.58
13
8
13
10
23
18
23
18
750
900
850
950
V
Min
V
Max
V
Min
V
Max
V
Min
V
Max
V
Min
V
Max
mA
Min
mA
Min
mA
Min
mA
Min
µA
Max
µA
Max
Units
Symbol
V
O
Parameter
Output Swing
Conditions
V
+
= 5V
R
L
= 2 kΩ to 2.5V
(Note 5)
4.87
0.13
0.19
4.50
4.24
0.40
0.63
14.50
14.30
0.35
0.48
13.35
12.80
1.16
1.42
16
8
16
11
28
18
28
19
750
900
850
950
4.61
14.63
13.90
I
O
Output Current
V = 5V
+
Sourcing, V
O
= 0V
Sinking, V
O
= 5V
22
21
30
34
450
550
I
O
Output Current
V
+
= 15V
Sourcing, V
O
= 0V
Sinking, V
O
= 13V
(Note 10)
I
S
Supply Current
V = +5V, V
O
= 1.5V
V = +15V, V
O
= 7.5V
+
+
3
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LMC6081
AC Electrical Characteristics
Unless otherwise specified, all limits guaranteed for T
J
= 25˚C,
Boldface
limits apply at the temperature extremes. V
+
= 5V, V
−
= 0V, V
CM
= 1.5V, V
O
= 2.5V and R
L
>
1M unless otherwise specified.
Typ
Symbol
SR
GBW
φ
m
e
n
i
n
T.H.D.
Parameter
Slew Rate
Gain-Bandwidth Product
Phase Margin
Input-Referred
Voltage Noise
Input-Referred
Current Noise
Total Harmonic Distortion
F = 1 kHz
F = 1 kHz
F = 10 kHz, A
V
= −10
R
L
= 2 kΩ, V
O
= 8 V
PP
0.01
%
Conditions
(Note 8)
(Note 5)
1.5
1.3
50
22
0.0002
LMC6081AM
Limit
(Note 6)
0.8
0.5
LMC6081AI
Limit
(Note 6)
0.8
0.6
LMC6081
Limit
(Note 6)
0.8
0.6
V/µs
Min
MHz
Deg
Units
±
5V Supply
Note 1:
Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is
intended to be 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.
Note 2:
Applies to both single-supply and split-supply operation. Continuous short circuit operation at elevated ambient temperature can result in exceeding the
maximum allowed junction temperature of 150˚C. Output currents in excess of
±
30 mA over long term may adversely affect reliability.
Note 3:
The maximum power dissipation is a function of T
J(Max)
,
θ
JA
, and T
A
. The maximum allowable power dissipation at any ambient temperature is P
D
= (T
J(Max)
− T
A
) /θ
JA
.
Note 4:
Human body model, 1.5 kΩ in series with 100 pF.
Note 5:
Typical values represent the most likely parametric norm.
Note 6:
All limits are guaranteed by testing or statistical analysis.
Note 7:
V
+
= 15V, V
CM
= 7.5V and R
L
connected to 7.5V. For Sourcing tests, 7.5V
≤
V
O
≤
11.5V. For Sinking tests, 2.5V
≤
V
O
≤
7.5V.
Note 8:
V
+
= 15V. Connected as Voltage Follower with 10V step input. Number specified is the slower of the positive and negative slew rates.
Note 9:
For operating at elevated temperatures the device must be derated based on the thermal resistance
θ
JA
with P
D
= (T
J
− T
A
)/θ
JA
.
Note 10:
Do not connect output to V
+
, when V
+
is greater than 13V or reliability will be adversely affected.
Note 11:
All numbers apply for packages soldered directly into a PC board.