QPB9320 High Power Switch LNA Module Product Overview The Qorvo QPB9320 is a highly integrated front-end module targeted for TDD macro or picocell base stations. The LNA switch module integrates RF functional blocks such as a pin-diode based high power switch capable of handling up to 52 W with an LTE signal (8 dB PAR) along with two LNA stages. Further integration is also implemented where the PIN diode driver and DC-DC converter circuits are implemented inside the module to enable only the need for an external 5 V power supply. The 16 Pin 8mmx8mm Leadless SMT Package control voltage for the switch and gain control. mode is with 3.3 V logic. The QPB9320 can be utilized across the 1.850-2.025 GHz Key Features range to provide 1.1 dB noise figure for operation in the 1.850-2.025 GHz frequency range receive mode and 0.5 dB insertion loss in the transmit Integrates a high-power switch, two LNA stages, PIN mode. The LNAs utilize Qorvos high performance diode driver circuits, and DC-DC converter E-pHEMT process while the switch allows for power levels up to 330 W peak power to be routed to an external load Ideal for TDD systems with an isolator termination. Only requires a 5 V supply with 3.3 V logic Ctrl. Max RF Input power: 52 W Pavg (8 dB PAR) The QPB9320 is packaged in a RoHS-compliant, compact 32.5 dB gain 8x8 mm surface-mount leadless package. The switch LNA 1.1 dB noise figure module is targeted for wireless infrastructure applications configured for TDD-based architectures. -1.0 dBm IIP3 (Rx mode) 0.5 dB Insertion Loss (Tx mode) Compact package size, 8x8 mm Functional Block Diagram Pin 1 Reference Mark Applications Package Topside 1 12 ANT RXOUT Wireless Infrastructure LNA Macro or picocell base stations 2 11 NC NC TDD-based architectures 10 T/R 3 CB LNA DC-DC Conversion 4 9 CA Vcc Ordering Information Exposed Backside Pad Part No. Description GND QPB9320TR13 2500 pcs on a 13 reel QPB9320SR 100 pcs on a 7 reel Top View QPB9320EVB Evaluation board Datasheet, April 5, 2018 Subject to change without notice 1 of 8 www.qorvo.com 5 16 LA TERM 6 15 LB NC 7 14 NC DA 8 13 NC DB QPB9320 High Power Switch LNA Module Absolute Maximum Ratings Recommended Operating Conditions Parameter Rating Parameter Min Typ Max Units Storage Temperature -50 to 150C VCC +4.75 +5 +5.25 V T/R Logic Low Voltage 0 0.8 V Max Operating Temperature +115C V +6 V T/R Logic High Voltage 2.00 3.6 V CC (1) T 40 +105 C RF at ANT (Tx Mode) +47.2 dBm CASE 6 (3) (2) Tj for >10 hours MTTF +190 C RF at ANT (Tx Mode) +44.2 dBm (2) Notes: RF at ANT (Rx Mode) +20 dBm 3. For R Mode operation X Notes: Electrical specifications are measured at specified test conditions. 1. 10s, 8 dB PAR, 88% duty cycle, +100C, 1CH LTE Specifications are not guaranteed over all recommended operating 2. Indefinitely, 8 dB PAR, 88% duty cycle, +100C, 1CH LTE conditions. Operation of this device outside the parameter ranges given above may cause permanent damage. Electrical Specifications Test conditions unless otherwise noted: VCC = +5.0 V, Temp.=+25C, 50 system Parameter Conditions Min Typ Max Units Operational Frequency Range 1850 2025 MHz Test Frequency 1900 MHz Gain Rx mode 32.5 dB Gain Flatness Rx mode 0.6 dB Noise Figure Rx mode 1.1 dB Rx mode, Pin/tone = -33dBm, f = 1MHz Input IP3 -1.0 dBm Rx mode Input P1dB -11.6 dBm Rx mode Input Return Loss (ANT) 20 dB Rx mode Output Return Loss (Rx Out) 34 dB Reverse Isolation Rx mode 54 dB Insertion Loss Tx mode 0.5 dB Input P0.1dB Tx mode 46.6 dBm Return Loss (ANT, TERM) Tx mode 20 dB Operating Current Rx mode 230 mA Operating Current Tx mode 140 mA Switching Time (ANT to Rx Out) 1.8 uS Reaching full RF output less 0.1dB after T/R command Switching Time (ANT to Term) 0.5 uS Reaching full RF output less 0.5dB Wakeup Time (ANT to Rx Out/Term) 0.5 s after DC turned on (5) (4) Rx Mode at Rx out with Pin = -49dBm In Band Spurious Emission -75 dBc (6) Rx Mode at Rx out from DC to 12275MHz Out of Band Emissions -85 dBm Rx mode Thermal Resistance 26.0 C/W Thermal Resistance Tx mode 20.7 C/W Notes: 4. Pin is a CW signal swept from 1.850 to 2.025GHz. Spec refers to any spurious mixing product that occurs from 1.850 to 2.025GHz. 5. Recommend to follow Qorvo EVB layout for lowest spur level. Any deviation can increase spur level. 6. Measure Pout with IBW = 4.5MHz over frequency range with no input power applied. Datasheet, April 5, 2018 Subject to change without notice 2 of 8 www.qorvo.com