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AD8235 Datasheet(PDF) 18 Page - Analog Devices

Part # AD8235
Description  40 關A Micropower Instrumentation Amplifier in WLCSP Package
PDF  20 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD8235 Datasheet(HTML) 18 Page - Analog Devices

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AD8235
Rev. 0 | Page 18 of 20
To eliminate high frequency common-mode signals while using
smaller source resistors, a low-pass RC network can be placed
at the input of the instrumentation amplifier (see Figure 42).
The filter limits the input signal bandwidth according to the
following relationship:
)
G
C
D
C
+
2
(
2
1
DIFF
C
C
R
π
FilterFreq
+
=
)
(
2
1
G
C
CM
C
C
R
π
FilterFreq
+
=
Mismatched CC capacitors result in mismatched low-pass filters.
The imbalance causes the AD8235 to treat what is a common-
mode signal as a differential signal. To reduce the effect of
mismatched external CC capacitors, select a value of CD greater
than 10× CC. This sets the differential filter frequency lower than
the common-mode frequency.
R
R
AD8235
+VS
–IN
+IN
10µF
0.1µF
VOUT
REF
CC
CD
1nF
10nF
CC
1nF
4.02kΩ
4.02kΩ
SDN
Figure 42. RFI Suppression
COMMON-MODE INPUT VOLTAGE RANGE
The common-mode input voltage range is a function of the
input voltages, reference voltage, supplies, and the output of
Internal Op Amp A. Figure 35 shows the internal nodes of the
AD8235. Figure 20 to Figure 23 show the common-mode
voltage ranges for typical supply voltages and gains.
If the supply voltages and reference voltage are not represented
in Figure 20 to Figure 23, the following methodology can be
used to calculate the acceptable common-mode voltage range:
1.
Adhere to the input, output, and reference voltage ranges
shown in Table 1 and Table 2.
2.
Calculate the output of Internal Op Amp A. The following
equation calculates this output:
4
V
V
R
kΩ
52.5
2
V
V
4
5
A
REF
DIFF
G
DIFF
CM
−
−
⎟
⎠
⎞
⎜
⎝
⎛
−
=
where:
VDIFF is defined as the difference in input voltages,
VDIFF = VINP − VINM.
VCM is defined as the common-mode voltage,
VCM = (VINP + VINM)/2.
If no gain setting resistor, RG, is installed, set RG to infinity.
3.
Keep A within 10 mV of either supply rail. This is valid over
the −40°C to +125°C temperature range.
−VS + 10 mV < A < +VS – 10 mV



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