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HomeCommunitySubjectAD9361 RF Agile Transceiver: 70 MHz to 6.0 GHz RF Chip, AD9361 CSPBGA and Datasheet

AD9361 RF Agile Transceiver: 70 MHz to 6.0 GHz RF Chip, AD9361 CSPBGA and Datasheet

RF Transceiver ICs ANALOG DEVICES AD9361BBCZRF TRANSCEIVER, 70MHZ-6GHZ, CSP_BGA-144

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Nov 23, 2021

Rock Christy

AD9361 RF Agile Transceiver

 

RF Transceiver ICs ANALOG DEVICES AD9361BBCZRF TRANSCEIVER, 70MHZ-6GHZ, CSP_BGA-144

The AD9361 is a high-performance, highly integrated radio frequency (RF) Agile Transceiver™ designed for use in 3G and 4G base station applications. This article is going to explain details about the AD9361 rf transceiver.

AD9361BBCZ

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What is AD9361?

The AD9361 is a high-performance, high-integration radio frequency (RF) Agile Transceiver for 3G and 4G base station applications. It is suited for a wide range of transceiver applications because of its programmability and wideband capability. The device combines an RF front end with a flexible mixed-signal baseband section and built-in frequency synthesizers, making design-in easier by offering a customizable digital interface to a CPU.

The AD9361 operates in the 70MHz to 6.0GHz range, covering most licensed and unlicensed bands. Channel bandwidths from less than 200 kHz to 56MHz are supported. The AD9361 is packaged in a 10mm × 10mm, 144-ball chip-scale package ball grid array (CSP_BGA).

 

AD9361 Functional Block Diagram

AD9361 CAD Model

AD9361 Symbol

AD9361 Footprint

AD9361 3D Model

Specifications

Analog Devices Inc. AD9361BBCZ technical specifications, attributes, parameters and parts with similar specifications to Analog Devices Inc. AD9361BBCZ.

AD9361BBCZ Tech Specifications

Analog Devices Inc. AD9361BBCZ technical specifications, attributes, parameters and parts with similar specifications to Analog Devices Inc. AD9361BBCZ.

Product Attribute Attribute Value
Lifecycle StatusPRODUCTION (Last Updated: 2 weeks ago)
Factory Lead Time8 Weeks
Contact PlatingCopper, Silver, Tin
MountSurface Mount
Mounting TypeSurface Mount
Package / Case144-LFBGA, CSPBGA
Number of Pins144Pins
Operating Temperature-40°C~85°C
PackagingTray
JESD-609 Codee1
Pbfree Codeno
Part StatusActive
Moisture Sensitivity Level (MSL)3 (168 Hours)
Number of Terminations144Terminations
ECCN Code5A991.B
Product Attribute Attribute Value
TypeTxRx Only
Terminal FinishTin/Silver/Copper (Sn96.5Ag3.0Cu0.5)
Terminal PositionBOTTOM
Terminal FormBALL
Peak Reflow Temperature (Cel)260
Number of Functions1Function
Supply Voltage1.3V
Terminal Pitch0.8mm
Depth10mm
Frequency70MHz~6GHz
Time@Peak Reflow Temperature-Max (s)NOT SPECIFIED
Base Part NumberAD9361
Pin Count144
Operating Supply Voltage1.3V
ProtocolLTE
Product Attribute Attribute Value
Power - Output8dBm
RF Family/StandardCellular
Serial InterfacesSPI
Current - Receiving175mA~445mA
Current - Transmitting240mA~820mA
Number of Receivers2Receivers
Noise Figure2.5 dB
Height1mm
Length10mm
Width10mm
REACH SVHCNo SVHC
RoHS StatusROHS3 Compliant
Lead FreeContains Lead
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AD9361 Features

  • RF 2 × 2 transceiver with integrated 12-bit DACs and ADCs

  • 70MHz to 6.0GHz Band

  • Supports TDD and FDD operation

  • <200 kHz to 56MHz Tunable channel BW

  • 6 Differential or 12 single-ended inputs dual receivers

  • Superior receiver sensitivity with a noise figure <2.5dB

  • Real-time monitor and control signals for manual gain control

  • Independent automatic gain control

 

AD9361 Application

  • Point to point communication systems

  • Femtocell/picocell/microcell base stations

  • General-purpose radio systems

 

AD9361_TX Analog Devices Transmitter

AD9361_TX  Analog Devices Transmitter

 

There are three steps to the transmitter model:

 

  • Filters for digital up-conversion (DUC Filters TX)

  • (Analog Filters TX) Analog filters

  • (RF TX) RF front end

 

 

The transmitter model can be used to imitate the following behaviors:

 

  • Attenuation that can be adjusted

  • Noise in the phase of the oscillator

  • Noise floor based on carrier

  • Attenuation and carrier-dependent nonlinearities such as output-referred third-order intercept are examples of attenuation and carrier-dependent nonlinearities (OIP3)

  • Gain imbalance due to attenuation

  • Carrier leak in a local oscillator (LO) that is attenuation dependent

 

 

AD9361_RX Analog Devices Receiver

 

There are three steps to the transmitter model:

 

  • Filters for digital up-conversion (DUC Filters TX)

  • (Analog Filters TX) Analog filters

  • (RF TX) RF front end

 

 

The transmitter model can be used to imitate the following behaviors:

 

  • Attenuation that can be adjusted

  • Noise in the phase of the oscillator

  • Noise floor based on carrier

  • Attenuation and carrier-dependent nonlinearities such as output-referred third-order intercept are examples of attenuation and carrier-dependent nonlinearities (OIP3)

  • Gain imbalance due to attenuation

  • Carrier leak in a local oscillator (LO) that is attenuation dependent

AD9361 Dimensions

 AD9361 Dimensions

AD9361 Manufacturer

Analog Devices (NASDAQ: ADI) is a world leader in the design, manufacture, and marketing of a broad portfolio of high-performance analog, mixed-signal, and digital signal processing (DSP) integrated circuits (ICs) used in virtually all types of electronic equipment. Since our inception in 1965, we have focused on solving the engineering challenges associated with signal processing in electronic equipment. Used by over 100,000 customers worldwide, our signal processing products play a fundamental role in converting, conditioning, and processing real-world phenomena such as temperature, pressure, sound, light, speed, and motion into electrical signals to be used in a wide array of electronic devices.

Datasheet PDF

Download datasheets and manufacturer documentation for Analog Devices Inc. AD9361BBCZ.

AD9361BBCZ Documents

Download datasheets and manufacturer documentation for AD9361BBCZ

Frequently Asked Questions

What is the use of AD9361?
The AD9361 RF Agile Transceiver was designed for programmable radio applications that operate over a wide range of modulation schemes and network specifications that require best-in-class performance, high integration, wideband operation, and flexibility.
What is agile transceiver?
The device combines an RF front-end with a flexible mixed-signal baseband section and integrated frequency synthesizers, simplifying design-in by providing a configurable digital interface to a processor.
How does AD9361 work?
The device combines an RF front end with a flexible mixed-signal baseband section and integrated frequency synthesizers, simplifying design-in by providing a configurable digital interface to a processor or FPGA. The AD9361 chip operates in the 70 MHz to 6 GHz range, covering most licensed and unlicensed bands.
FAQ
What is the use of AD9361?
The AD9361 RF Agile Transceiver was designed for programmable radio applications that operate over a wide range of modulation schemes and network specifications that require best-in-class performance, high integration, wideband operation, and flexibility.
What is agile transceiver?
The device combines an RF front-end with a flexible mixed-signal baseband section and integrated frequency synthesizers, simplifying design-in by providing a configurable digital interface to a processor.
How does AD9361 work?
The device combines an RF front end with a flexible mixed-signal baseband section and integrated frequency synthesizers, simplifying design-in by providing a configurable digital interface to a processor or FPGA. The AD9361 chip operates in the 70 MHz to 6 GHz range, covering most licensed and unlicensed bands.

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