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AD8546 датащи(PDF) 29 Page - Analog Devices

номер детали AD8546
подробное описание детали  OVP and EMI Protected, Precision, Low Noise and Bias Current Op Amps
PDF  33 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
Logo AD - Analog Devices

AD8546 датащи(HTML) 29 Page - Analog Devices

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Data Sheet
ADA4177-1/ADA4177-2/ADA4177-4
Rev. E | Page 29 of 33
Figure 95 shows the input and output of a comparator circuit
referenced to ground using the ADA4177-1/ADA4177-2/
ADA4177-4. The supply voltages are ±5 V. The −INx input is
grounded and a positive input is stepped to ±1 V. Both the
positive and negative recovery is approximately 4 µs.
VIN
VOUT
Figure 95. ADA4177-1/ADA4177-2/ADA4177-4 Used as a Comparator with
±5 V Supplies and a ±1 V Input Step, Voltage Follower Configuration
OUTPUT PHASE REVERSAL
Phase reversal is defined as a change in polarity in the amplifier
transfer function. Many op amps exhibit phase reversal when
the voltage applied to the input is greater than the maximum
common-mode voltage. In some instances, this phase reversal
can cause permanent damage to the amplifier. In feedback
loops, it can result in system lockups or equipment damage.
The ADA4177-1/ADA4177-2/ADA4177-4 are immune to phase
reversal problems even at input voltages beyond the power
supply settings.
Figure 96. Output Showing No Phase Reversal in Overvoltage Condition
PROPER PRINTED CIRCUIT BOARD (PCB) LAYOUT
The ADA4177-1/ADA4177-2/ADA4177-4 are high precision
devices. To ensure optimum performance at the PCB level, take
care in the design of the board layout.
To avoid leakage currents, maintain a clean and moisture free
board surface. Coating the surface creates a barrier to moisture
accumulation and reduces parasitic resistance on the board.
Keeping supply traces short and properly bypassing the power
supplies minimizes the power supply disturbances caused by
the output current variation, such as when driving an ac signal
into a heavy load. Connect bypass capacitors as closely as possible
to the device supply pins. Stray capacitances are a concern at the
outputs and the inputs of the amplifier. Keep the signal traces at
least 5 mm from supply lines to minimize coupling.
A variation in temperature across the PCB can cause a mismatch
in the Seebeck voltages at solder joints and other points where
dissimilar metals are in contact, resulting in thermal voltage errors.
To minimize these thermocouple effects, orient resistors so that
heat sources warm both ends equally. Ensure, where possible,
that input signal paths contain matching numbers and types of
components, to match the number and type of thermocouple
junctions. For example, dummy components such as zero value
resistors can be used to match real resistors in the opposite
input path. Place matching components in close proximity to
each other, and orient them in the same manner. Ensure that
leads are of equal length so that thermal conduction is in
equilibrium. Keep heat sources on the PCB as far away from
amplifier input circuitry as is practical.
The use of a ground plane is highly recommended. A ground
plane reduces EMI noise and maintains a constant temperature
across the circuit board.
LONG-TERM DRIFT
The stability of a precision signal path over its lifetime or
between calibration procedures is dependent on the long-term
stability of the analog components in the path, such as op amps,
references, and data converters. To help system designers
predict the long-term drift of circuits that use the ADA4177-1/
ADA4177-2/ADA4177-4, Analog Devices measured the offset
voltage of multiple units for 10,000 hours (more than 13 months)
using a high precision measurement system, including an
ultrastable oil bath. To replicate real-world system performance,
the devices under test (DUTs) were soldered onto an FR4 PCB
using a standard reflow profile (as defined in the JEDEC J-STD-
020D standard), as opposed to testing them in sockets. This
manner of testing is important because expansion and
contraction of the PCB can apply stress to the integrated circuit
(IC) package and contribute to shifts in the offset voltage.



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