LMC6084IM National Semiconductor, LMC6084IM Datasheet - Page 10

IC, OP-AMP, 1.3MHZ, 1.5V/µs, SOIC-14

LMC6084IM

Manufacturer Part Number
LMC6084IM
Description
IC, OP-AMP, 1.3MHZ, 1.5V/µs, SOIC-14
Manufacturer
National Semiconductor
Datasheet

Specifications of LMC6084IM

Op Amp Type
Precision
No. Of Amplifiers
4
Bandwidth
1.3MHz
Slew Rate
1.5V/µs
Supply Voltage Range
4.5V To 15
Amplifier Case Style
SOIC
No. Of Pins
14
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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Applications Hints
The designer should be aware that when it is inappropriate
to lay out a PC board for the sake of just a few circuits, there
FIGURE 4. Example of Guard Ring in P.C. Board
FIGURE 5. Typical Connections of Guard Rings
Non-Inverting Amplifier
Inverting Amplifier
Follower
Layout
(Continued)
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01146708
01146709
01146707
10
is another technique which is even better than a guard ring
on a PC board: Don’t insert the amplifier’s input pin into the
board at all, but bend it up in the air and use only air as an
insulator. Air is an excellent insulator. In this case you may
have to forego some of the advantages of PC board con-
struction, but the advantages are sometimes well worth the
effort of using point-to-point up-in-the-air wiring. See Figure
6.
Latchup
CMOS devices tend to be susceptible to latchup due to their
internal parasitic SCR effects. The (I/O) input and output pins
look similar to the gate of the SCR. There is a minimum
current required to trigger the SCR gate lead. The LMC6084
is designed to withstand 100 mA surge current on the I/O
pins. Some resistive method should be used to isolate any
capacitance from supplying excess current to the I/O pins. In
addition, like an SCR, there is a minimum holding current for
any latchup mode. Limiting current to the supply pins will
also inhibit latchup susceptibility.
(Input pins are lifted out of PC board and soldered directly to components.
All other pins connected to PC board).
Typical Single-Supply
Applications
(V
The extremely high input impedance, and low power con-
sumption, of the LMC6084 make it ideal for applications that
require battery-powered instrumentation amplifiers. Ex-
amples of these types of applications are hand-held pH
probes, analytic medical instruments, magnetic field detec-
tors, gas detectors, and silicon based pressure transducers.
Figure 7 shows an instrumentation amplifier that features
high differential and common mode input resistance
(
CMRR with 1 kΩ imbalance in bridge source resistance.
Input current is less than 100 fA and offset drift is less than
2.5 µV/˚C. R
over a wide range without degrading CMRR. R
trim used to maximize CMRR without using super precision
matched resistors. For good CMRR over temperature, low
drift resistors should be used.
>
+
10
= 5.0 V
14
Ω), 0.01% gain accuracy at A
DC
2
)
provides a simple means of adjusting gain
FIGURE 6. Air Wiring
V
= 1000, excellent
7
is an initial
01146711

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