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ADMV1013ACCZ-R7 Datasheet(PDF) 28 Page - Analog Devices |
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ADMV1013ACCZ-R7 Datasheet(HTML) 28 Page - Analog Devices |
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28 / 39 page ![]() ADMV1013 Data Sheet Rev. A | Page 28 of 39 APPLICATIONS INFORMATION BASEBAND QUADRATURE MODULATION FROM LOW FREQUENCIES Figure 84 shows the I/Q mode performance at low baseband input frequencies. The measurements were performed at 28 GHz, −10 dBm input power, VCM = 0 V, Register 0x03, Bit 7 = 0, 0 dBm LO input power, and TA = 25°C. 0 5 10 15 20 25 30 35 40 45 1 10 100 1k 10k 100k 1M 10M 100M BASEBAND FREQUENCY (Hz) SIDEBAND REJECTION CONVERSION GAIN Figure 84. Conversion Gain and Sideband Rejection vs. Baseband Frequency PERFORMANCE AT DIFFERENT QUAD FILTER SETTINGS Figure 85 shows the conversion gain vs. RF frequency in IF mode at TA = 25°C and LO input power = 0 dBm for different QUAD_FILTERS settings. –10 –8 –6 –4 –2 0 2 4 6 8 10 12 14 16 18 20 22 24 23 25 27 29 31 33 35 37 39 41 43 45 RF FREQUENCY (GHz) QUAD FILTERS = 0 QUAD FILTERS = 5 QUAD FILTERS = 10 QUAD FILTERS = 15 Figure 85. Conversion Gain vs. RF Frequency for Four Different QUAD_FILTERS Settings, fIF = 3.5 GHz (Upper Sideband) Figure 86 shows the 4× LO to RF leakage vs. 4× LO frequency at different quad filter settings. –60 –55 –50 –45 –40 –35 –30 –25 –20 –15 –10 –5 0 16 18 20 22 24 26 28 30 32 34 36 38 40 42 44 46 48 4× LO FREQUENCY (GHz) QUAD FILTERS = 0 QUAD FILTERS = 5 QUAD FILTERS = 10 QUAD FILTERS = 15 Figure 86.4× LO to RF Leakage vs. 4× LO Frequency for Four Different QUAD_FILTERS Settings VVA TEMPERATURE COMPENSATION Figure 87 shows the conversion gain vs. RF frequency at two different Register 0x0A settings, the recommended setting (0xE700) and a setting for higher gain, and three different temperatures for IF mode. The recommended value suggested in the Start-Up Sequence section provides the least variation in conversion gain over temperature. If the priority is to increase the conversion gain, Register 0x0A can be set to 0xFA00. However, at this value, the conversion gain variation over temperature can increase by 2 dB. 0 2 4 6 8 10 12 14 16 18 20 22 24 26 23 25 27 29 31 33 35 37 39 41 43 45 RF FREQUENCY (GHz) –40°C, 0xFA00 +25°C, 0xFA00 +85°C, 0xFA00 –40°C, 0xE700 +25°C, 0xE700 +85°C, 0xE700 Figure 87. Conversion Gain vs. RF Frequency at Maximum Gain for Various Temperatures and Register 0x0A Settings (Recommended and Higher Gain Setting), fIF = 3.5 GHz |
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