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ADL5350ACPZ-R2 数据表(PDF) 19 Page - Analog Devices |
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ADL5350ACPZ-R2 数据表(HTML) 19 Page - Analog Devices |
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19 / 24 page ![]() Preliminary Technical Data ADL5350 PrC | Page 19 of 24 2. Tune the LO port input network for optimum return loss. Typically, a bandpass network is used to pass the LO signal to the LOIN pin. It is desirable to block high frequency harmonics of the LO from the mixer core. LO harmonics cause higher RF frequency images to be down converted to the desired IF frequency, and result in a sensitivity degradation. If the intended LO source has poor harmonic distortion and spectral purity, it may be necessary to employ a higher order bandpass filter network. Figure 58 illustrates a simple L-C bandpass filter used to pass the fundamental frequency of the LO source. Capacitor C3 is a simple DC block, while the series-inductor (L3), along with the gate-to-source capacitance of the buffer amplifier, form a low-pass network. The native gate input of the LO buffer (FET) presents a rather high input impedance alone. The gate bias is generated internally using feedback that can result in a positive return loss at the intended LO frequency. If a better than −10 dB return loss is desired, it may be necessary to add shunt resistor to ground before the coupling capacitor (C3) to present a lower loading impedance to the LO source . 3. Design the RF and IF filter networks. Figure 58 depicts simple LC tank filter networks for the IF and RF port interfaces. The RF port LC network is designed to pass the RF input signal. The series LC tank has a resonant frequency at 1/(2π√LC). At resonance, the series reactances cancel, which presents a series short to the RF signal. A parallel LC tank is used on the IF port to reject the RF and LO signals. At resonance, the parallel LC tank presents an open circuit. It is necessary to accommodate for the board parasitics, finite Q, and self-resonant frequencies of the LC components when designing the RF, IF, and LO filter networks. Table 9 provides suggested values for initial prototyping. Table 9. Suggested RF, IF, and LO Filter Networks for Low-Side LO Injection RF Frequency L11 C1 L2 C2 L3 C3 450 MHz 8.3 nH 10 pF 10 nH 10 pF 10 nH 100 pF 850 MHz 6.8 nH 4.7 pF 4.7 nH 5.6 pF 8.2 nH 100 pF 1950 MHz 1.7 nH 1.5 pF 1.7 nH 1.2 pF 3.5 nH 100 pF 2400 MHz 0.67 nH 1 pF 1.5 nH 0.7pF 3.0 nH 100 pF 1 The inductor should have a self-resonant frequency greater than the intended frequency of operation. L1 should be a high Q inductor for optimum NF performance. |
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