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AD7779ACPZ датащи(PDF) 43 Page - Analog Devices

номер детали AD7779ACPZ
подробное описание детали  8-Channel, 24-Bit, Simultaneous Sampling ADC
PDF  101 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
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AD7779ACPZ датащи(HTML) 43 Page - Analog Devices

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AD7779
Data Sheet
Rev. A | Page 42 of 100
SPI Control Functionality
Global Control Functions
The following list details the global control functions of the
AD7779:
High resolution and low power modes of operation
Output data rate: sample rate converter (SRC)
VCM buffer power-down
Internal/external reference selection
Enable, precharged, or bypassed reference buffer modes
Internal reference power-down
SAR diagnostic mux
SAR power-down
GPIO write/read
SPI SAR conversion readback
SPI slave mode—read Σ-∆ results
SDO and DOUT drive strength
DOUT mode
DCLK division
Internal LDO bypassed
CRC protection: enabled or disabled
Per Channel Functions
The following list details the per channel functions of the
AD7779:
PGA gain.
Σ-∆ channel power-down.
Phase delay: synchronization phase offset per channel.
Calibration of offset.
Calibration of gain.
Σ-∆ input signal mux.
Channel error register.
PGA gain.
Phase Adjustment
The AD7779 phase delay can be adjusted to compensate for phase
mismatches between channels due to sensors or signal channel
phase errors connected to the AD7779. Achieve phase adjustment
by programming the CHx_SYNC_OFFSET register. This
programming delays the synchronization signal by a certain
number of modulator clocks, MOD_CLKs, to individually initiate
the digital filter for each Σ-∆ ADC.
The phase adjustment register is read during the pulse; conse-
quently, any further changes on the register have no effect unless a
pulse is generated (see the Digital Reset and Synchronization
Pins section for more information on how to generate a pulse in
the pin).
The phase offset register is multiplied internally by a factor that
depends on the decimation rate, as shown in Table 20.
Table 20. Phase Adjustment vs. Decimation Rate
Phase Adjustment Compensation
Decimation Rate
×1
≤255
×2
≤511
×4
≤1023
×8
≤2047
×16
≤4095
The maximum phase delay cannot be equal to or greater than
the decimation rate. If this is the case, the value changes
internally to the decimation rate value minus 1.
As an example, the phase mismatch between Channel 0 and
Channel 1 is 5°, and the ODR is 5 kSPS in high resolution mode. In
this case, the decimation rate is 2048 kHz/5 kHz = 409.6, which
means that the offset register value is multiplied internally by 2.
Assuming an input signal of 50 Hz, the number of MOD_
MCLK pulses required to sample a full period is 2048 kHz/
50 Hz = 40960 > 360°/40960 = 0.00878°.
If a 5° delay is required, the number of MOD_MCLK delays
must be 569 (5°/0.00878°) because the offset register is multiplied
by 2; the final offset register value is 409.6/2 − 569/2, which
gives a negative value. In this case, if the offset value programmed
to the register is higher than 204 (for example, 210 × 2 = 420),
the value is internally changed to 408, resulting in a phase
compensation of 408 × 0.00878° = 3.58°.
PGA Gain
The PGA gain can be selected individually by appropriately
selecting Bits[7:6] in the CHx_CONFIG register, as shown in
Table 21.
Table 21. PGA Gain Settings via CHx_CONFIG
CHx_CONFIG, Bits[7:6] Setting
PGA Gain Setting
00
×1
01
×2
10
×4
11
×8
If the Σ-∆ reference is updated, it is recommended to apply a
pulse on the SYNC_IN pin to remove invalid samples during
the transition of the reference
Decimation
The decimation defines the sampling frequency as follows:
In high resolution mode, the sampling frequency = MCLK/
(4 × decimation)
In low power mode, the sampling frequency = MCLK/
(8 × decimation)
Refer to the Sample Rate Converter (SRC) section for more
information.



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