QPB9329
Dual-Channel Switch LNA Module
®
Product Overview
The QPB9329 is a highly integrated front-end module
targeted for TDD base stations. The switch LNA module
integrates a two-stage LNA and a high power switch in a
dual channel configuration. The second stage LNA has a
bypass mode. Power down and bypass capability for the
LNAs can be controlled with control pins on the module.
44 Pin 7ꢀmmꢀxꢀ7ꢀmm leadless SMT Package
The QPB9329 can be utilized across the 3.8 – 6.0 GHz
range to provide 1.8ꢀdB noise figure for operation in the
receive mode and 1.1ꢀdB insertion loss in the transmit mode
at 4.5 GHz. The LNAs utilize Qorvo’s high performance E-
pHEMT process while the SOI technology based switch
supports input RF power signals of up to 8W average power
assuming 8ꢀdB PAR. The product only needs a +5V supply
to operate the high-power switch and the LNAs.
Key Features
• 3.8ꢀ–ꢀ6.0 GHz Frequency Range
• Dual Channel
• Second LNA has bypass mode
• Max RF Input power: 8W Pavg (8 dB PAR), TX mode
• 1.8 dB NF at 4.5 GHz (Rx mode)
• 31.5 dB Gain (Rx mode, High Gain state)
• 16.5 dB Gain (RX mode, Low Gain state)
• +33 dBm OIP3 (Rx mode, High gain state)
• 1.8V TTL logic compatibility
The QPB9329 is packaged in a RoHS-compliant, compact
7ꢀmm x 7ꢀmm surface-mount leadless package. The switch
LNA module is targeted for wireless infrastructure
applications
configured
for
TDD-based
MIMO
architectures. The module can be used for next generation
5G or pre-5G solutions or small cell base-station
applications.
• 3ꢀ–ꢀ5V operation for switch and LNAs
Functional Block Diagram
Applications
• Wireless Infrastructure
• Small cell BTS
1
2
3
4
5
6
7
8
9
33
32
31
30
29
28
27
26
25
GND
ANT_M
GND
GND
AMP2VDD_M
RXOUT_M
GND
• Pre-5G / 5G Massive MIMO systems
• TDD-based architectures
VCT_M
GND
BP_M
GND
SW_VDD
BP_D
GND
VCT_D
GND
GND
AMP2VDD_D
RXOUT_D
24
10
11
ANT_D
GND
23 GND
Ordering Information
Part No.
Description
QPB9329EVB-01
QPB9329SR
QPB9329TR13
Evaluation Board
100 pcs on a 7” reel
2500 pcs on a 13” reel
Top View
Data Sheet, September 20, 2018 | Subject to change without notice
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