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MCP3301-CI/P датащи(PDF) 18 Page - Microchip Technology

номер детали MCP3301-CI/P
подробное описание детали  13-Bit Differential Input, Low Power A/D Converter with SPI??Serial Interface
PDF  32 Pages
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производитель  MICROCHIP [Microchip Technology]
домашняя страница  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MCP3301-CI/P датащи(HTML) 18 Page - Microchip Technology

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MCP3301
DS21700C-page 18
© 2007 Microchip Technology Inc.
FIGURE 6-5:
Adding an amplifier allows
for gain and also buffers the input from any high
impedance sources.
This circuit shows that some headroom will be lost due
to the amplifier output not being able to swing all the
way to the rail. An example would be for an output
swing of 0V to 5V. This limitation can be overcome by
supplying a VREF that is slightly less than the common
mode voltage. Using a 2.048V reference for the A/D
converter, while biasing the input signal at 2.5V solves
the problem. This circuit is shown in Figure 6-6.
FIGURE 6-6:
Circuit solution to overcome
amplifier output swing limitation.
6.4
Common Mode Input Range
The common mode input range has no restriction and
is equal to the absolute input voltage range: V
SS -0.3V
to V
DD +0.3V. However, for a given V
REF, the common
mode voltage has a limited swing if the entire range of
the A/D converter is to be used. Figure 6-7 and
Figure 6-8 show the relationship between VREF and the
common mode voltage. A smaller VREF allows for wider
flexibility in a common mode voltage. VREF levels down
to 400 mV and exhibits less than 0.1 LSB change in
DNL and INL. See Figure 2-9 and Figure 2-12 for char-
acterization graphs that illustrate this performance
relationship.
FIGURE 6-7:
Common Mode Range of
Full Differential input signal versus V
REF.
FIGURE 6-8:
Common Mode Range
versus VREF for Pseudo Differential Input.
V
DD = 5V
-
+
0.1 µF
MCP6022
IN+
IN-
VREF
MCP3301
1µF
MCP1525
VIN
VOUT
0.1 µF
1k
Ω
10 k
Ω
1M
Ω
1µF
VIN
1M
Ω
2.048V
V
DD = 5V
-
+
0.1 µF
MCP606
IN+
IN-
VREF
MCP3301
1µF
MCP1525
VIN
VOUT
0.1 µF
1k
Ω
10 k
Ω
1µF
VIN
10 k
Ω
V
REF (V)
0.25
V
DD = 5V
5.0
1.0
2.5
4.0
-1
0
1
2
3
4
5
4.05V
2.8V
2.3V
0.95V
V
REF (V)
0.25
V
DD = 5V
2.5
0.5
1.25
2.0
-1
0
1
2
3
4
5
4.05V
2.8V
2.3V
0.95V



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