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Digital RF (DigRF) Test

Digital serial RF interface

Agilent’s protocol offerings include solutions for V3, V4 and a unique RDX (Radio Digital Cross-Domain) Solution. RDX is the ultimate solution for DigRF testing and characterization, the RDX platform provides a single test environment that helps you validate DigRF v4 protocols under real world conditions. With powerful emulation software and protocol-specific hardware test cards, you can quickly explore a broad range of test cases. The included protocol generation and analysis software interoperates with the industry-leading Agilent Signal Studio software and 89600 VSA analysis software to enable RF physical domain stimulus and analysis across an RF-IC chip.

Related products support DigRF 3G and DigRF v4.


Greater insight. Greater confidence. Accelerate next-generation wireless.

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RDX Test Solutions for DigRF - Data Sheet 
DigRF v4 is rapidly emerging as the next-generation serial interface between mobile baseband and RF chips. It is designed for use in high bandwidth mobile systems incorporating air interface standards such as LTE and WiMAX.

Data Sheet 2013-05-13

MIPI DigRF v4 (M-PHY) Protocol Triggering and Decode for Infiniium Series Oscilloscopes 
Extend you scope's capability with MIPI DigRF v4 (M-Phy) triggering and decode application.

Data Sheet 2011-09-16

PDF PDF 361 KB
Demonstration of Simultaneous Video Streaming and VoIP with a 4G LTE USB Modem 
Using the Agilent E6621 PXT, this video demonstrates simultaneous video streaming and VoIP with a 4G LTE (LTE-Advanced) USB modem.

Demo 2011-05-02

 
Demonstration of Streaming Video to a 4G LTE USB Modem 
This video demonstrates streaming video to a 4G LTE (LTE-Advanced) USB modem using an Agilent E6621 PXT.

Demo 2011-05-02

 
Demonstration of Handovers between LTE and eHRPD Cells (Inter-RAT) 
This video demonstrates how to accelerate time-to-market for LTE UE designs with handovers between LTE and eHRPD Cells (Inter-RAT) using the Agilent E6621 PXT.

Demo 2011-05-02

 
Demonstration of VoIP with a 4G LTE USB Modem 
This video demonstrates the use of the Agilent E6621 PXT Wireless Communications Test Set with VoIP with a 4G LTE (LTE-Advanced) USB modem.

Demo 2011-05-02

 
Fast Circuit Envelope Models for RFIC verification 
Fast Circuit Envelope Models for RFIC verification Learn to verify 4G/LTE wireless RFIC transceivers 1000x faster using the GoldenGate “Fast Circuit Envelope” models in SystemVue.

Demo 2011-04-18

 
Agilent Introduces Industry's First Digital Radio Frequency V4 Test Solution with Simultaneous Stimu 
Agilent Technologies Inc. (NYSE: A) today announced the industry's first digital radio frequency (DigRF) V4 test solution with dual-capture capability.

Press Materials 2011-03-02

 
Cross Domain test environment for DigRF based RF-IC and BB-Ics 
This video demonstrates how the DigRF integrated test environment from Agilent Technologies will assist you through the different phases of the development process of both your digital and RF subsystems,

Demo 2009-11-10

 
Testing of RF ICs with DigRF Interconnects 

Application Note 2009-09-11

DigRF Test Solutions Brochure 
Gain greater confidence in your DigRF designs.

Brochure 2009-09-11

PDF PDF 2.18 MB
Using the Agilent Infiniium Series Real-time Oscilloscope to Validate the DigRF 
The DigRF v3 standard presents new digital hardware validation challenges for mobile wireless development as the links between the baseband (BB) ICs and the radio frequency (RF) ICs transition from an analog interface to a digital interface.

Application Note 2009-05-27

Agilent Technologies Introduces Industry-First End-to-End DigRF V4 Measurement Solution for Mobile  

Press Materials 2008-10-01

 
Agilent DigRF v3 Products & Solutions 

Press Materials 2008-03-03

 
Agilent Solutions for the DigRF v3 Digital Serial Interface Used In Mobile Wireless Devices 
Rapidly deploy your DigRF v3-based designs using Agilent logic analyzer and RF tools for stimulus and analysis in the digital and RF domains.

Brochure 2007-01-30

PDF PDF 521 KB
Zigbee Demodulation 
This demonstration uses the Agilent 89600 Series vector signal analysis software to demodulate and measure a ZigBee 2.4 GHz, direct sequence, spread spectrum signal. The signal is demodulated using offset QPSK with the imported filter shape applied and results shown in constellation, EVM versus time, and eye diagrams.

Demo 2005-03-03

 
ZigBee Spectrum versus Time  
This demonstration uses the Agilent 89600 Series vector signal analysis software to show the power and spectrum characteristics of a ZigBee 2.4 GHz, direct sequence, spread spectrum signal. The video shows first the basic spectral shape of a real ZigBee device signal and the ease with which the occupied bandwidth may be measured. Then a spectrogram (spectrum versus time) highlights packet characteristics of the ZigBee signal and the amplitude versus time measurement.

Demo 2005-03-03