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LMC66 датащи(PDF) 5 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
номер детали LMC66
подробное описание детали  CMOS Dual Operational Amplifier
PDF  13 Pages
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производитель  NSC [National Semiconductor (TI)]
домашняя страница  http://www.national.com
Logo NSC - National Semiconductor (TI)

LMC66 датащи(HTML) 5 Page - National Semiconductor (TI)

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Typical Performance Characteristics V
S = ±7.5V, TA = 25˚C unless otherwise specified (Continued)
Application Hints
AMPLIFIER TOPOLOGY
The topology chosen for the LMC662, shown in
Figure 1,is
unconventional (compared to general-purpose op amps) in
that the traditional unity-gain buffer output stage is not used;
instead, the output is taken directly from the output of the in-
tegrator, to allow rail-to-rail output swing. Since the buffer
traditionally delivers the power to the load, while maintaining
high op amp gain and stability, and must withstand shorts to
either rail, these tasks now fall to the integrator.
As a result of these demands, the integrator is a compound
affair with an embedded gain stage that is doubly fed forward
(via C
f and Cff) by a dedicated unity-gain compensation
driver. In addition, the output portion of the integrator is a
push-pull configuration for delivering heavy loads. While
sinking current the whole amplifier path consists of three
gain stages with one stage fed forward, whereas while
sourcing the path contains four gain stages with two fed
forward.
The large signal voltage gain while sourcing is comparable
to traditional bipolar op amps, even with a 600
Ω load. The
gain while sinking is higher than most CMOS op amps, due
to the additional gain stage; however, under heavy load
(600
Ω) the gain will be reduced as indicated in the Electrical
Characteristics.
CMRR vs Frequency
DS009763-30
Open-Loop Frequency
Response
DS009763-31
Frequency Response vs
Capacitive Load
DS009763-32
Non-Inverting Large Signal
Pulse Response
DS009763-33
Stability vs
Capacitive Load
DS009763-34
Note: Avoid resistive loads of less than 500
Ω,
as they may cause instability.
Stability vs
Capacitive Load
DS009763-35
Note: Avoid resistive loads of less than 500
Ω,
as they may cause instability.
DS009763-4
FIGURE 1. LMC662 Circuit Topology (Each Amplifier)
www.national.com
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