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AD7262 查看數據表(PDF) - Analog Devices

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AD7262 Datasheet PDF : 33 Pages
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AD7262
Comparator Application Details
The comparators on the AD7262/AD7262-5 have been designed
with no internal hysteresis, allowing users the flexibility to add
external hysteretic if required for systems operating in noisy
environments. If the comparators on the AD7262/AD7262-5
are used with external hysteresis, some external resistors and
capacitors are required, as shown in Figure 28. The value of RF
and RS, the external resistors, can be determined using the
following equation, depending on the amount of hysteresis
required in the application:
VHYS
=
RS
RS + RF
×Cx
_ C xVCC
where Cx_CxVCC = CA_CBVCC or CC_CDVCC.
The amount of hysteresis chosen must be sufficient to eliminate
the effects of analog noise at the comparator inputs, which may
affect the stability of the comparator outputs. The level of
hysteresis required in any system depends on the noise in the
system; thus, the values of RF and RS need to be carefully selected
to eliminate any noise effects. To increase the level of hysteresis in
the system, increase the value of RS or RF. For example, RF = 10 MΩ,
RS = 1 kΩ give 330 μV of hysteresis with a Cx_CxVCC of 3.3 V; if
hysteresis is increased to 1 mV, RS = 3.1 kΩ. In certain applications,
a load capacitor (100 pF) may be required on the comparator
outputs to suppress high frequency transient glitches.
RF
RS
SENSOR
RS
Cx
Cx+
COUTx
Figure 28. Recommended Comparator Connection Diagram
Data Sheet
APPLICATION DETAILS
The AD7262/AD7262-5 have been specifically designed to meet
the requirements of any motor control shaft position feedback
loop. The devices can interface directly to multiple sensor types,
including optical encoders, magneto resistive sensors, and Hall
effect sensors. Flexible analog inputs that incorporate program-
mable gain ensure that identical board design can be used for a
variety of sensors, which results in reduced design cycles and costs.
The two simultaneous sampling ADCs are used to sample the
sine and cosine outputs from the sensor. No external buffering
is required between the sensor/transducer and the analog inputs
of the AD7262/AD7262-5. The on-chip comparators can be
used to monitor the pole sensors, which can be Hall effect sensors
or the inner tracks from an optical encoder.
Figure 29 shows how the AD7262/AD7262-5 can be used in a
typical application. An optical encoder is shown in Figure 29,
but other sensor types could as easily be used. Figure 29 indicates
a typical application configuration only, and there are several
other configurations that render equally effective results.
Rev. B | Page 20 of 32

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