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ADRV9006
  • ADRV9006
  • ADRV9006

ADRV9006

RECOMMENDED FOR NEW DESIGNS

Dual Narrow-Band and Wideband RF Transceiver

Analog Devices ADRV9006 Product Info

10 February 2026 5

Features

  • 2 × 2 highly integrated transceiver
  • Center frequency range of 30 MHz to 6000 MHz
  • Transmitter and receiver bandwidth from 12 kHz to 40 MHz
  •  2 fully integrated, fractional-N, RF synthesizers
  • LVDS and CMOS synchronous serial data interface options
  • Low power sleep modes
  • Frequency hopping
  • Fully programmable via a 4-wire SPI
  • 12 mm × 12 mm, 196-ball CSP_BGA

Part details & applications

The ADRV9006 is a highly integrated RF transceiver that has dual-channel transmitters, dual-channel receivers, integrated synthesizers, and digital signal processing functions.

The ADRV9006 is a high performance, highly linear, high dynamic range transceiver designed for performance vs. power consumption system optimization. The device is configurable and ideally suited to demanding, low power, portable and battery powered equipment. The ADRV9006 operates from 30 MHz to 6000 MHz and covers the UHF, VHF, industrial, scientific, and medical (ISM) bands, and cellular frequency bands in narrow-band (kHz) and wideband operation up to 40 MHz. The ADRV9006 is capable of both TDD and FDD operation.

The transceiver consists of direct conversion signal paths with state-of-the-art noise figure and linearity. Each complete receiver and transmitter subsystem includes DC offset correction, quadrature error correction (QEC), and programmable digital filters, which eliminate the need for these functions in the digital baseband. In addition, several auxiliary functions, such as auxiliary analog-to-digital converters (ADCs), auxiliary digital-to-analog converters (DACs), and general-purpose inputs/outputs (GPIOs), are integrated to provide additional monitoring and control capability.

The fully integrated phase-locked loops (PLLs) provide high performance, low power, fractional-N frequency synthesis for the transmitter, receiver, and clock sections. Careful design and layout techniques provide the isolation required in high performance personal radio applications.

All voltage-controlled oscillator (VCO) and loop filter components are integrated to minimize the external component count. The local oscillators (LOs) have flexible configuration options including various power modes.

The transceiver includes configurable power saving modes that extend battery life of portable devices by reducing power consu

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