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AD9864 Datasheet(PDF) 20 Page - Analog Devices

Part # AD9864
Description  IF Digitizing Subsystem
PDF  48 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD9864 Datasheet(HTML) 20 Page - Analog Devices

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Data Sheet
AD9864
Rev. A | Page 19 of 47
PE
PC
PD
DON'T
CARE
D1
D0
D6
D7
R/W
A5
A1
A0
tS
tHI tLOW
tDS
tDH
tDV
tEZ
tCLK
Figure 30. 3-Wire SPI Read Operation Timing
T
PE
PC
PD
DON'T
CARE
DON'T
CARE
DON'T
CARE
DON'T
CARE
DON'T
CARE
DON'T
CARE
DON'T
CARE
DOUTB
D1
D0
D6
D7
R/W
A5
A1
A0
tS
tHI tLOW
tDS
tDH
tDV
tCLK
Figure 31. 4-Wire SPI Read Operation Timing
POWER-ON RESET
The SPI registers are automatically set to their default settings
upon power-up when the VDDD supply crosses a threshold. This
ensures that the AD9864 is in a known state and placed in standby
for minimal power consumption. In the unlikely event that the
SPI registers were not reset to their default settings, an equivalent
software reset by writing 0x99 to Register 0x3F can be used as the
first SPI write command to provide additional assurance.
SYNCHRONOUS SERIAL INTERFACE (SSI)
The AD9864 provides a high degree of programmability of its
SSI output data format, control signals, and timing parameters
to accommodate various digital interfaces. In a 3-wire digital
interface, the AD9864 provides a frame sync signal (FS), a clock
output (CLKOUT), and a serial data stream (DOUTA) signal to
the host device. In a 2-wire interface, the frame sync information
is embedded into the data stream, thus only CLKOUT and
DOUTA output signals are provided to the host device. The SSI
control registers are SSICRA, SSICRB, and SSIORD. Table 8 to
Table 13 show the bit fields associated with these registers.
The primary output of the AD9864 is the converted I and Q
demodulated signal available from the SSI port as a serial bit
stream contained within a frame. The output frame rate is equal
to the modulator clock frequency (fCLK) divided by the digital
filter’s decimation factor that is programmed in the Decimator
Register (0x07). The bit stream consists of an I word followed
by a Q word, where each word is either 24 bits or 16 bits long
and is given MSB first in twos complement form. Two optional
bytes may also be included within the SSI frame following the Q
word. One byte contains the AGC attenuation and the other
byte contains both a count of modulator reset events and an
estimate of the received signal amplitude (relative to full scale of
the AD9864 ADC). Figure 32 illustrates the structure of the SSI
data frames in a number of SSI modes.
The two optional bytes are output if the EAGC bit of SSICRA is
set. The first byte contains the 8-bit attenuation setting (0 = no
attenuation, 255 = 24 dB of attenuation), whereas the second byte
contains a 2-bit reset field and 6-bit received signal strength
field. The reset field contains the number of modulator reset
events since the last report, saturating at 3. The received signal
strength (RSSI) field is a linear estimate of the signal strength at
the output of the first decimation stage; 60 corresponds to a
full-scale signal.
The two optional bytes follow the I and Q data as a 16-bit word
provided that the AAGC bit of SSICRA is not set. If the AAGC
bit is set, the two bytes follow the I and Q data in an alternating
fashion. In this alternate AGC data mode, the LSB of the byte
containing the AGC attenuation is a 0, whereas the LSB of the
byte containing reset and RSSI information is always a 1.
In a 2-wire interface, the embedded frame sync bit (EFS) within
the SSICRA register is set to 1. In this mode, the framing
information is embedded in the data stream, with each eight
bits of data surrounded by a start bit (low) and a stop bit (high),
and each frame ends with at least 10 high bits. FS remains either
low or three-stated (default), depending on the state of the SFST
bit. Other control bits can be used to invert the frame sync
(SFSI), to delay the frame sync pulse by one clock period
(SLFS), to invert the clock (SCKI), or to three-state the clock
(SCKT). Note that if EFS is set, SLFS is a don’t care bit.



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