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ADRF5473BCZ-GP Datasheet(PDF) 14 Page - Analog Devices

Part # ADRF5473BCZ-GP
Description  Die on Carrier, Silicon Digital Attenuator, 0.5 dB LSB, 6-Bit, 100 MHz to 40 GHz
PDF  17 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADRF5473BCZ-GP Datasheet(HTML) 14 Page - Analog Devices

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Data Sheet
ADRF5473
THEORY OF OPERATION
analog.com
Rev. 0 | 14 of 17
SERIAL OR PARALLEL MODE SELECTION
The ADRF5473 can be controlled in either serial or parallel mode
by setting the PS pad to high or low, respectively (see Table 8).
Table 8. Mode Selection
PS
Control Mode
Low
Parallel
High
Serial
SERIAL MODE INTERFACE
The ADRF5473 supports a 4-wire SPI: serial data input (SERIN),
clock (CLK), serial data output (SEROUT), and latch enable (LE).
The serial control interface is activated when PS is set to high.
The ADRF5473 attenuation states can be controlled using 6-bit or
8-bit SERIN data. If an 8-bit word is used to control the state of
the attenuator, the first two bits, D7 and D6, are don’t care bits. It
does not matter if these two bits are held low or high, or if they are
omitted altogether. Only Bits[D0:D5] set the state of the attenuator.
In serial mode, the SERIN data is clocked MSB first on the rising
CLK edges into the shift register. Then, LE must be toggled high
to latch the new attenuation state into the device. LE must be set
to low to clock new SERIN data into the shift register as CLK is
masked to prevent the attenuator value from changing if LE is kept
high. See Figure 25, Table 2, and Table 7 for additional information.
Using SEROUT
The ADRF5473 also features a serial data output (SEROUT).
SEROUT outputs the serial input data at the 8th clock cycle and can
control a cascaded attenuator using a single SPI bus.
Figure 26 shows the serial out timing diagram.
When using the attenuator in a daisy-chain operation, 8-bit SERIN
data must be used due to the eight clock cycle delay between
SERIN and SEROUT. The SEROUT pad does not support high
impedance mode. A tristate buffer can be used to interface a
shared bus.
Figure 25. Serial Control Timing Diagram
Figure 26. Serial Output Timing Diagram



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