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ADRF6806ACPZ-R7 数据表(PDF) 32 Page - Analog Devices

部件名 ADRF6806ACPZ-R7
功能描述  50 MHz to 525 MHz Quadrature Demodulator with Fractional-N PLL and VCO
PDF  36 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADRF6806ACPZ-R7 数据表(HTML) 32 Page - Analog Devices

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ADRF6806
Data Sheet
Rev. B | Page 32 of 36
CHARACTERIZATION SETUPS
Figure 50 to Figure 52 show the general characterization bench
setups used extensively for the ADRF6806. The setup shown in
Figure 50 was used to do the bulk of the testing. An automated
Agilent VEE program was used to control the equipment over the
IEEE bus. This setup was used to measure gain, input P1dB, output
P1dB, input IP2, input IP3, IQ gain mismatch, IQ quadrature
accuracy, and supply current. The evaluation board was used to
perform the characterization with a Mini-Circuits TCM9-1+ balun
on each of the I and Q outputs. When using the TCM9-1+ balun
below 5 MHz (the specified 1 dB low frequency corner of the
balun), distortion performance degrades; however, this is not
the ADRF6806 degrading, merely the low frequency corner of
the balun introducing distortion effects. Through this balun, the
9-to-1 impedance transformation effectively presented a 450 Ω
differential load at each of the I and Q channels. The use of the
broadband Mini-Circuits ADTL2-18+ balun on the input provided
a differential balanced RF input. The losses of both the input and
output baluns were de-embedded from all measurements.
To do phase noise and reference spur measurements, the setup
shown in Figure 52 was used. Phase noise was measured at the
baseband output (I or Q) at a baseband carrier frequency of
50 MHz. The baseband carrier of 50 MHz was chosen to allow
phase noise measurements to be taken at frequencies of up to
20 MHz offset from the carrier. The noise figure was measured
using the setup shown in Figure 51 at a baseband frequency
of 10 MHz.



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