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GRF5607 Datasheet(PDF) 6 Page - Guerrilla RF, Inc. |
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GRF5607 Datasheet(HTML) 6 Page - Guerrilla RF, Inc. |
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6 / 18 page ![]() GRF5607 High Linearity Power Amplifier 703 to 748 MHz PRELIMINARY DATA SHEET Guerrilla RF Proprietary Information. • ©2022 Guerrilla RF, Inc. • All rights reserved. • September 19, 2022 6 www.guerrilla-rf.com • (336) 510-7840 • sales@guerrilla-rf.com • 1196 Pleasant Ridge Road, Suite 5, Greensboro, NC 27409 Nominal Operating Parameters – General The following conditions apply unless noted otherwise: Typical Application Schematic using the 703 to 748 MHz tuning set, M5 = 2500 Ω, M9 = 4550 Ω, VSHDN = LOW, VCC = 5 V, ICCQ = 210 mA, 50 Ω system impedance, POUT = +25 dBm, FTEST = 725 MHz, TPKG HEAT SINK = 25 °C. MIN/MAX specifications listed in italics are guaranteed via production test screening. All other parameters are guaranteed by design and characterization. Evaluation board losses are included within the specifications. Parameter Symbol Specification Unit Condition Min. Typ. Max. Supply Quiescent Current ICCQ 210 mA ICCQ1 + ICCQ2. No RF Applied Supply Current with RF Applied ICC TBD mA ICC1 + ICC2. RF Applied with POUT = 25dBm. Enable Current 1 IENABLE1 1.9 mA VCC = 5V, T PKG HEAT SINK = 25 °C Enable Current 2 IENABLE2 1.4 mA VCC = 5V, T PKG HEAT SINK = 25 °C Operating Temperature Range TPKG HEAT SINK -40 +85 °C Measured on Package Heat Sink Logic Input Low VIL 0 0.9 V Applies to VSHDN Input Logic Input High VIH 1.7 VCC V Applies to VSHDN Input Logic Current Low IIL 1.3 nA Applies to VSHDN Input, VIL = 0.9V Logic Current High IIH 65 µA Applies to VSHDN Input, VIH = 1.8V 285 Applies to VSHDN Input, VIH = 3.3V Switching Rise Time TRISE 500 ns Applies to VSHDN Input Switching Fall Time TFALL 500 ns Applies to VSHDN Input Disabled Mode Supply Quiescent Current ICCQ-SHDN 15 µA VCC = 5 V, VSHDN/VEN1/VEN2 = HIGH Enable Current 1 IENABLE1-SHDN 2.8 mA VCC = 5 V, VSHDN/VEN1/VEN2 = HIGH Enable Current 2 IENABLE2-SHDN 2.2 mA VCC = 5 V, VSHDN/VEN1/VEN2 = HIGH Thermal Data (Stage 1 and Stage 2) See plot of Die Temp vs. Output Power TBD On Standard Evaluation Board |
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