LMC6482IN National Semiconductor, LMC6482IN Datasheet - Page 17

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LMC6482IN

Manufacturer Part Number
LMC6482IN
Description
Operational Amplifier (Op-Amp) IC
Manufacturer
National Semiconductor
Datasheets

Specifications of LMC6482IN

No. Of Amplifiers
2
Slew Rate
1.3V/µs
No. Of Pins
8
Amplifier Type
Operational
Mounting Type
Through Hole
Peak Reflow Compatible (260 C)
No
Leaded Process Compatible
No
Package / Case
8-DIP
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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Application Information
7.0 OFFSET VOLTAGE ADJUSTMENT
Offset voltage adjustment circuits are illustrated in Figure 12
Figure 13. Large value resistances and potentiometers are
used to reduce power consumption while providing typically
configurations with V
±
2.5mV of adjustment range, referred to the input, for both
FIGURE 13. Non-Inverting Configuration
FIGURE 12. Inverting Configuration
Offset Voltage Adjustment
Offset Voltage Adjustment
S
=
±
5V.
(Continued)
01171325
01171326
17
8.0 UPGRADING APPLICATIONS
The LMC6484 quads and LMC6482 duals have industry
standard pin outs to retrofit existing applications. System
performance can be greatly increased by the LMC6482’s
features. The key benefit of designing in the LMC6482 is
increased linear signal range. Most op-amps have limited
input common mode ranges. Signals that exceed this range
generate a non-linear output response that persists long
after the input signal returns to the common mode range.
Linear signal range is vital in applications such as filters
where signal peaking can exceed input common mode
ranges resulting in output phase inverison or severe distor-
tion.
9.0 DATA ACQUISITION SYSTEMS
Low power, single supply data acquisition system solutions
are provided by buffering the ADC12038 with the LMC6482
(Figure 14). Capable of using the full supply range, the
LMC6482 does not require input signals to be scaled down
to meet limited common mode voltage ranges. The
LMC4282 CMRR of 82dB maintains integral linearity of a
12-bit data acquisition system to
rail input amplifiers with only 50dB of CMRR will degrade the
accuracy of the data acquisition system to only 8 bits.
±
0.325 LSB. Other rail-to-
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