Analog Devices, Inc. (ADI) today introduced the industry's widest bandwidth RF transceiver, the ADRV9009, to extend its award-winning RadioVerse technology and design ecosystem. The transceiver provides designers with a single radio platform to accelerate 5G deployment, support 2G/3G/4G coverage, and simplify phased array radar design. The ADRV9009 RF transceiver offers twice the bandwidth of previous generation devices (200 MHz), replacing up to 20 devices, consuming half the power and 60% smaller package size. With industry-leading performance and smaller size, weight and power consumption, the ADRV9009 transceiver meets the demanding antenna density and extended network capacity requirements of emerging 5G wireless infrastructure equipment and aerospace systems.
The ADRV9009 is the industry's first RF transceiver to support all existing cellular standards. The device can be tuned from 75 MHz to 6 GHz and supports 2G/3G/4G/5G services, so cellular manufacturers can use a single compact radio design to meet all frequency and power requirements. Product design time can be reduced by up to half, and deployment and maintenance of multi-band, multi-standard communication devices is simplified.
Nitin Sharma, General Manager, Transceiver Products, Analog Devices, Inc., said: "Cellcoming device designers have for the first time have a common radio platform to handle emerging broadband applications such as 5G, which also provides the existing 2G, 3G and 4G applications. high performance."
The wide bandwidth, low power consumption and small size of the ADRV9009 enable designers to meet the ever-increasing number of radio channels required for 5G massive MIMO devices. The new RF transceiver is a single-chip TDD solution that can also be used to design portable laboratory-grade 5G test and measurement equipment for field testing of cellular and IoT networks.
For aerospace systems, the ADRV9009 meets the high performance requirements of both broadband and narrowband applications. The new RF transceiver platform also features fast frequency hopping for improved link security and spectrum efficiency.
For advanced cellular and phased array radar systems, the ADRV9009 simplifies digital beamforming through on-chip processing local oscillator (LO) synchronization, eliminating the need for an external LO.
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