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spectrum Analyzer and PSG E8257D Signal Generators. NF is measured using Agilent’s N8975A NF Analyzer
measured Agilent MXA N9020A spectrum Analyzer and PSG E8257D Signal Generators. NF is measured using
network analyzer. Input IP3 is measured Agilent MXA N9020A spectrum Analyzer and PSG E8257D Signal Generators. NF is measured using Agilent’s N8974A NF Analyzer Conditions (Down Converter): 1.
Analyzer and PSG E8257D Signal Generators. NF is measured using Agilent’s N8975A NF Analyzer. Conditions
E4448A spectrum Analyzer and PSG E8257D Signal Generators. NF is measured using Agilent’s N8975A NF
Splitter /Combiner S OUT1 OUT2 Agilent E8257D Signal Generator Agilent E8257D Signal Generator Agilent E8257D Signal Generator 10dB BW-E10-1W653+ TB-MDB-54H+ BW-E10-1W653+ 10dB3dB RF LO IF BW-E3-1W653+ Signal Generator Agilent E8257D Signal Generator BW-E3-1W653+ ZVA-02443HP+ VDD = 15V IDD= 300mA 3dB
network analyzer. Input IP3 is measured Agilent MXA N9020A spectrum Analyzer and PSG E8257D Signal Generators. NF is measured using Agilent’s N8975A NF Analyzer Conditions (Down Converter): 1. Conversion
analyzers and E8257D PSG signal generators. Conditions (Down Converter): 1. Conversion Loss, Isolations
signal generators E8527D and Spectrum analyzer N9020A. Conditions: 1. Gain and Return loss: Pin= operate in linear region in the presence of strong interfer- ing signals. Medium Noise Figure: 4.7-5.3 needed to feed DC bias without loss of RF signal due to the bias connection, as shown in “Recommended signal due to the bias connection, as shown in “Recommended Application Circuit”, Fig 2 GND 2,3,6,7 &
in the presence of strong interfer- ing signals. Medium Noise Figure: 3.5-3.7 dB typical Together of RF signal due to the bias connection, as shown in “Recommended Application Circuit”, Fig 2 RF IN, operation. An RF choke is needed to feed DC bias without loss of RF signal due to the bias connection, for characterization of Gain, IP2, IP3 of push-pull amplifier. Measured using Agilent’s signal generators E8527D and Spectrum analyzer N9020A. Conditions: 1. Gain and Return loss: Pin= -25dBm 2. Output