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ADAR4002ACPZ-R7 Datasheet(PDF) 40 Page - Analog Devices

Part # ADAR4002ACPZ-R7
Description  0.5 GHz to 19 GHz, 1-Channel, Bidirectional True Time Delay Unit
PDF  66 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADAR4002ACPZ-R7 Datasheet(HTML) 40 Page - Analog Devices

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Data Sheet
ADAR4002
THEORY OF OPERATION
analog.com
Rev. A | 40 of 66
RF PATH
The ADAR4002 is a low power, broadband, bidirectional, single-
channel IC for use in applications requiring programmable time
delay and/or attenuation. Both the RF1 and RF2 ports are internally
matched to 50 Ω. The ADAR4002 is intended to operate over a
frequency range of 2 GHz to 18 GHz, but the device can operate
down to 500 MHz and up to 19 GHz with limited degradation in
performance. The DSA is connected to the RF1 port, while RF2 is
connected to the TDU. Driving the RF1 port allows improved P1dB
performance vs. DSA code, relative to driving RF2. See the Typical
Performance Characteristics section for more detail.
TDU AND DSA
The TDU has 7-bit resolution, with two selectable time delay rang-
es, 508 ps and 254 ps, which creates step sizes of 4 ps and 2 ps,
respectively. Time Delay Range 0 is recommended for applications
extending down to 2 GHz where 508 ps of time delay provides
approximately 365° of phase shift. While Time Delay Range 1 is
recommended for applications 4 GHz and above, where 254 ps of
time delay provides 365° of phase shift at 4 GHz. Range 1 also
provides less loss relative to Range 0, which is advantageous as
the ADAR4002 insertion loss increases with frequency. Table 9
shows a summary of the time delay control.
Table 9. Time Delay Control Summary
Range
Maximum Time Delay
Step Size
0
508 ps
4 ps
1
254 ps
2 ps
The DSA has 6-bit resolution with an attenuation range of 31.5 dB
and step size of 0.5 dB.
The DSA and TDU are digitally controlled by either the register and
on-chip sequencers (SPI mode) or the shift register mode. Both
modes clock data into and out of the chip via a shared set of digital
pins. The MODE pin controls the digital mode of the chip. See the
Digital Section for more details.



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