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AD7779 датащи(PDF) 56 Page - Analog Devices

номер детали AD7779
подробное описание детали  8-Channel, 24-Bit, Simultaneous Sampling ADC
PDF  97 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
Logo AD - Analog Devices

AD7779 датащи(HTML) 56 Page - Analog Devices

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AD7779
Data Sheet
Rev. 0 | Page 56 of 97
CH0_HEADER _+_CH0_8_BITS_MSB
CH0_16_BITS_LSB
CS
SDO
Figure 118. SPI Readback, 16 Bits per Frame
CS
SDO
CH0_HEADER _+_CH0_16_BITS_MSB
CH0_8_BITS_LSB_+_CH1_HEADER_+CH1_8_BITS_MSB
Figure 119. SPI Readback, 24 Bits per Frame
The SPI operates in multiples of 8 bits per frame; Figure 118 shows
a readback example in 16 bits per frames, whereas Figure 119
shows a readback in 24 bits per frame.
Note that if the device is configured in SPI control mode, the
AD7779 generates a software reset if the SDI pin is sampled
high for 64 consecutive clocks. To avoid a reset or unwanted
register writes, it is recommended to transfer a 0x8000 command,
which generates a readback command that is ignored by the
device, as explained in the SPI Software Reset section.
CALCULATING THE CRC CHECKSUM
The AD7779 implements two different CRC checksum
generators, one for the -Δ results and another for the SPI
control mode.
The AD7779 uses a CRC polynomial to calculate the CRC
checksum value. The 8-bit CRC polynomial used is x8 + x2 + x + 1.
The polynomial is aligned so that its MSB is adjacent to the
leftmost Logic 1 of the data. An XOR (exclusive OR) function is
applied to the data to produce a new, shorter number. The poly-
nomial is again aligned so that its MSB is adjacent to the leftmost
Logic 1 of the new result, and the procedure is repeated. This
process is repeated until the original data is reduced to a value
less than the polynomial. This is the 8-bit checksum.
As an example of CRC calculation for 12-bit data is shown in
Table 42.
Table 42. Example CRC Calculation for 12-Bit Data1
Data
0
1
1
0
0
1
0
0
1
1
1
0
Polynomial
1
0
0
0
0
0
1
1
1
0
0
1
0
1
0
1
1
0
1
0
0
0
0
0
1
1
CRC
0
1
0
1
1
1
1
0
1 This table represents the division of the data; blank cells are for formatting
purposes.
-∆ CRC Checksum
The CRC message is calculated internally by the AD7779 on
ADC pairs. The CRC is calculated using the ADC output data
from two ADCs and Bits[7:4] from the header. Therefore, 56 bits
are used to calculate the 8-bit CRC. This CRC is split between
the two channel headers. The CRC data covers channel pairings
as follows: Channel 0 and Channel 1, Channel 2 and Channel 3,
Channel 4 and Channel 5, Channel 6 and Channel 7.
To generate the checksum, the data is left shifted by eight bits to
create a number ending in eight Logic 1s.
The CRC is calculated from 56 bits across two consecutive/
channel pairings (Channel 0 and Channel 1, Channel 2 and
Channel 3, Channel 4 and Channel 5, Channel 6 and Channel 7).
The 56 bits consist of the chip error, the 3 bits for the first ADC
pairing channel, and the 24 bits of data of each pairing channel.
For example, for the second channel pairing, Channel 2 and
Channel 3,
56 bits = chip error + 3 ADC channel bits (010) + 24 data
bits (Channel 2) + chip error + 3 ADC channel bits (011) +
24 data bits (Channel 3)
SPI Control Mode Checksum
The CRC message is calculated internally by the AD7779. The
data transferred to the AD7779 uses the R/W bit, a 7-bit address,
and 8 bits of data for the CRC calculation.
The CRC calculated and appended to the data that it is shifted
out uses a 0010 0000 header and 8 bits of data for the register
readback, as well as the 0010 header and 12 bits of SAR conversion
data for the SAR readback transfers.



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