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AD7380 датащи(PDF) 18 Page - Analog Devices

номер детали AD7380
подробное описание детали  Differential Input, Quad,14-Bit, Simultaneous Sampling, SAR ADC
PDF  31 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
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AD7381-4
Data Sheet
Rev. 0 | Page 18 of 31
Rolling Average Oversampling
Rolling average oversampling mode can be used in applications
where higher output data rates are required and where a higher
SNR or dynamic range is desirable. Rolling averaging involves
taking a number of samples, adding them together, and
dividing the result by the number of samples taken. This result
is then output from the device. The sample data is not cleared
when the process completes. The rolling oversampling mode
uses a first in, first out (FIFO) buffer of the most recent samples
in the averaging calculation, allowing the ADC throughput rate
and output data rate to stay the same.
Rolling average oversampling mode is configured by setting the
OS_MODE bit to Logic 1 and having a valid nonzero value in
the OSR bits. The oversampling ratio of the digital filter is
controlled using the oversampling bits, OSR (see Table 12).
Table 12 provides the oversampling bit decoding to select the
different oversample rates. The output result is decimated to
16-bit resolution for the AD7381-4. If required, additional
resolution can be achieved by configuring the resolution boost
bit in the Configuration 1 register. See the Resolution Boost
section for further details.
In rolling average oversampling mode, all ADC conversions are
controlled and initiated by the falling edge of CS. When a
conversion is complete, the result is loaded into the FIFO. The
FIFO length is 8, regardless of the oversampling ratio set. The
FIFO is filled on the first conversion after a power-on reset
(POR), on the first conversion after a software controlled hard
or soft reset, or on the first conversion after the REFSEL bit is
toggled. A new conversion result is shifted into the FIFO on
completion of every ADC conversion regardless of the status of
the OSR bits and the OS_MODE bit. This conversion allows a
seamless transition from no oversampling to rolling average
oversampling, or different rolling average oversampling ratios
without waiting for the FIFO to fill.
The number of samples, n, defined by the OSR bits are taken
from the FIFO, added together and the result is divided by n.
Table 12. Rolling Average Oversampling Overview
OSR, Bits[2:0]1
OS Ratio
SNR (dB Typical)
Data Output Rate
(kSPS Maximum)
2.5 V External Reference
3.3 V External Reference
RES = 0
RES = 1
RES = 0
RES = 1
000
No OS
84.4
84.8
84.2
85.2
4000
001
2
84.4
87.6
84.5
88.0
4000
010
4
84.9
90.4
85.0
90.9
4000
011
8
85.3
92.3
85.4
92.8
4000
1XX
Invalid
Not applicable
Not applicable
Not applicable
Not applicable
Not applicable
1
X means don’t care.
S1
ACQ
S2
ACQ
S3
ACQ
S4
ACQ
S5
ACQ
S6
ACQ
S7
...
ACQ
ENABLE OS = 2
ENABLE OS = 4
S1
(F1 + F2)/2
DON’T CARE
SDOA
SDOB
SDI
CS
VCC
INTERNAL
(F1 + F2)/2
S2
(F1 + F2 + F3 + F4)/4
(F1 + F2)/2
FIFO
S1
S1
S1
S1
S1
S1
S1
S1
1
2
3
4
5
6
7
8
FIFO
S2
S1
S1
S1
S1
S1
S1
S1
1
2
3
4
5
6
7
8
FIFO
S3
S2
S1
S1
S1
S1
S1
S1
1
2
3
4
5
6
7
8
FIFO
S4
S3
S2
S1
S1
S1
S1
S1
1
2
3
4
5
6
7
8
FIFO
S5
S4
S3
S2
S1
S1
S1
S1
1
2
3
4
5
6
7
8
FIFO
S6
S5
S4
S3
S2
S1
S1
S1
1
2
3
4
5
6
7
8
FIFO
S7
S6
S5
S4
S3
S2
S1
S1
1
2
3
4
5
6
7
8
Figure 33. Rolling Average Oversampling Mode Configuration



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