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MAIA-007775-0001TR Datasheet(PDF) 3 Page - M/A-COM Technology Solutions, Inc. |
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MAIA-007775-0001TR Datasheet(HTML) 3 Page - M/A-COM Technology Solutions, Inc. |
3 / 14 page Receive I/Q Module Using High Barrier Schottky Mixers 850 - 960 MHz Rev. V4 MAIA-007775-000100 • North America Tel: 800.366.2266 • Europe Tel: +353.21.244.6400 • India Tel: +91.80.4155721 • China Tel: +86.21.2407.1588 Visit www.macomtech.com for additional data sheets and product information. M/A-COM Technology Solutions Inc. and its affiliates reserve the right to make changes to the product(s) or information contained herein without notice. 3 ADVANCED: Data Sheets contain information regarding a product M/A-COM Technology Solutions is considering for development. Performance is based on target specifications, simulated results, and/or prototype measurements. Commitment to develop is not guaranteed. PRELIMINARY: Data Sheets contain information regarding a product M/A-COM Technology Solutions has under development. Performance is based on engineering tests. Specifications are typical. Mechanical outline has been fixed. Engineering samples and/or test data may be available. Commitment to produce in volume is not guaranteed. Electrical Specifications (Demodulator): TA = 25°C, Z0 = 50Ω, VCC = +5.0V Parameter Test Conditions Frequency Units Min Typ Max LO Input Power - - dBm 2 - 8 Conversion Loss LO Drive = +4 dBm RF Input = -7 dBm FRF = FLO + 0.4 MHz 900 MHz 850-960 MHz dB dB 13 13.5 12 12.5 - - Amplitude Imbalance LO Drive = +4 dBm RF Input = -7 dBm FRF = FLO + 0.4 MHz 850-960 MHz dB - 0.1 0.2 Phase Imbalance3 LO Drive = +4 dBm RF Input = -7 dBm FRF = FLO + 0.4 MHz 850-960 MHz deg - 0.5 2.5 Input IP3 LO Drive = +4 dBm RF Input = -7 dBm (each tone) Tone 1 is 10 MHz above LO Freq Tone 2 is 11 MHz above LO Freq 850-960 MHz dBm 28.5 32 - 1 dB Compression Point LO Drive = +4 dBm FRF = FLO + 0.4 MHz 850-960 MHz dBm 14.5 15.5 - IF Bandwidth 850 MHz ≤ LO ≤ 970 MHz FRF = FLO + FIF; 0 ≤ FIF ≤ 65 MHz - MHz 65 - - LO Return Loss LO Drive = +4 dBm RF Input = -7 dBm FRF = FLO + 0.4 MHz 850-960 MHz dB - 8 - RF Return Loss LO Drive = +4 dBm RF Input = -7 dBm FRF = FLO + 0.4 MHz 850-960 MHz dB - 9 - Supply Voltage VCC - V 4.5 5.0 5.5 Supply Current ICC Typical @ 25°C mA 50 75 100 3. When the LO frequency is greater than the RF frequency, the “Q” output leads the “I” output by 90 degrees nominal. |
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