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ADL5350ACPZ-R7 Folha de dados(PDF) 20 Page - Analog Devices

Nome de Peças ADL5350ACPZ-R7
Descrição Electrónicos  LF to 4 GHz High Linearity Y-Mixer
PDF  24 Pages
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Fabricante Electrônico  AD [Analog Devices]
Página de início  http://www.analog.com
Logo AD - Analog Devices

ADL5350ACPZ-R7 Folha de dados(HTML) 20 Page - Analog Devices

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ADL5350
Rev. 0 | Page 20 of 24
Figure 63 depicts a crossover filter network approach to provide
isolation between the RF and IF ports for a downconverting
application. The crossover network essentially provides a high-
pass filter to allow the RF signal to pass to the RF/IF node (Pin 1
and Pin 8), while presenting a low-pass filter (which is actually
a band-pass filter when considering the dc blocking capacitor,
CAC). This allows the difference component (fRF − fLO) to be
passed to the desired IF load.
RF/IF
GND2
LOIN
NC
RF/IF
NC
VPOS
3.8nH
100pF
C2
1.8pF
L2
1.5nH
CAC
100pF
C1
1.2pF
LO
100pF
2.2nH
RF
3V
IF
GND1
ADL5350
12
3
4
87
6
5
L1
3.5nH
4.7µF
ALL
INDUCTORS
ARE 0302CS
SERIES FROM
COILCRAFT
Figure 63. 3.3 GHz to 3.8 GHz RF Downconversion Schematic
When designing the RF port and IF port networks, it is
important to remember that the networks share a common
node (the RF/IF pins). In addition, the opposing network presents
some loading impedance to the target network being designed.
Classic audio crossover filter design techniques can be applied
to help derive component values. However, some caution must be
applied when selecting component values. At high RF frequencies,
the board parasitics can significantly influence the final optimum
inductor and capacitor component selections. Some empirical
testing may be necessary to optimize the RF and IF port filter
networks. The performance of the circuit depicted in Figure 63
is provided in Figure 64.
30
25
20
15
10
5
0
14
2
4
6
8
10
12
3300
3800
3700
3600
3500
3400
RF FREQUENCY (MHz)
IIP3
IP1dB
LOSS
Figure 64. Measured Performance for Circuit in Figure 63
Using Low-Side LO Injection and 800 MHz IF



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