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JOIN US AT IMS 2024
JOIN US AT IMS 2024
Walter E. Washington Convention Center
Washington, DC
June 16-20
Booth #1239
RF Innovation Accelerated at the Intelligent Edge
Join us in-person at the IEEE MTT-S International Microwave Symposium (IMS) 2024 where we will be showcasing the industry’s most complete, high-performance digitization and processing platform—Apollo MxFE! Experience first-hand how ADI’s latest RF, microwave, millimeter wave technologies, clocking, amplifier, and power solutions are working together to enable unprecedented system-level solutions for communications, instrumentation, aerospace, and defense customers.
If interested in becoming an Apollo MxFE premier adopter, please
opt in
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Executive Panel
|
MicroApps
|
Demos
Hear from Our Experts — Executive Panel
Bryan Goldstein
Vice President, Aerospace and Defense
Date:
Tuesday, June 18
Time:
4:00 pm to 5:00 pm
Location:
MicroApps Theatre
Sponsored by Raytheon
Moderator:
Sanjay Raman, Dean of Engineering, University of Massachusetts Amherst
Panelists:
Bryan Goldstein, Vice President, Aerospace and Defense
Nick Kolias, Principal Engineering Fellow at Raytheon
Executives from Qorvo, Integra, and Boeing
IMS Executive Forum: A&D Semiconductor to Systems Trends
This panel of RF/microwave device and system company executives will discuss current trends in semiconductor technology and how they affect system design and performance. New types of compound semiconductor technology, AI integration, RF digitization, heterogeneous integration, chiplets, 3D packaging, new thermal materials and other related topics will be discussed including how these advancements affect system architecture and improve SWaP-C.
Hear from Our Experts — Technical Session Keynote
Kevin Chuang
Senior Principal Engineer
We3H-1: Role of AI/ML in PA Linearization for Next G Wireless
Presenter:
Kevin Chuang, Senior Principal Engineer, RF Communications Systems
Date:
Wednesday, June 19
Time
: 1:30 pm – 1:50 pm
Location
: 151AB
Hear from Our Experts — Workshops
Noureddine Outaleb, PhD.
Director, Systems Design/Architecture Engineering
WSJ-5: MISO Load Modulated Power Amplifiers with Digital Predistortion
Presenter:
Noureddine Outaleb, PhD., Director, Systems Design/Architecture Engineering
Date:
Sunday, June 16
Time
: 8:00 am – 11:50 am
Location:
145AB
Anis BenArfi
Senior Engineer, Systems Design/Architect
WSB: Highly Reconfigurable Mixed-Signal RF Front-End Approaches for 5G and Beyond
Presenters:
Anis BenArfi, Senior Engineer, Systems Design/Architect
Date:
Sunday, June 16
Time
: 8:00 am – 11:50 am
Location:
144AB
Robert Dandaraw
Judy Chui
Kate Berry
Unlocking the Spectrum: Advancements in X-Band Radar, Electronic Defense, and Instrumentation with Analog Devices’ 20GSPS Apollo MxFE
Presenters:
Robert Dandaraw, Principal Engineer, Product Marketing, Judy Chui, Applications Engineer, and Kate Berry, Engineer, Product Applications
Date:
Wednesday, June 19
Time
: 8:00 am – 9:40 am
Location:
144C
Join us in this workshop as we delve deep into the unique capabilities of the 20GSPS Apollo MxFE designed to enable high performance applications in X-Band Radar, Electronic Defense, and Instrumentation. Learn how to leverage the on-chip hardened DSP feature set to add significant performance and lower power. We will move beyond theory and share real world performance data, link to specific applications, and demonstrate the tangible impact on your next generation design.
Hear from Our Experts — Microapps
Eamon Nash
Applications Engineering Director
TUMA16: Pulser Plus: A Complete Solution for Sequencing and Biasing GaN Radar Power Amplifiers
Presenter:
Eamon Nash, Applications Engineering Director
Date:
Tuesday, June 18
Time
: 2:00 pm – 2:15 pm
Location:
MicroApps Theater, Booth 2159
Sam Ringwood
System Platforms Manager
TUMA23: MATLAB and the Phaser Development Kit
Presenters:
Sam Ringwood, System Platforms Manager, Analog Devices and Robin Getz, MathWorks
Date:
Tuesday, June 18
Time
: 3:45 pm – 4:00 pm
Location:
MicroApps Theater, Booth 2159
This session delves deeply into the application of MATLAB connectivity for the simulation, analysis, and optimization of the Analog Devices CN0566 phase array Phased Array (Phaser) Development Platform. The integrated use of MATLAB with the reference design enables advanced signal processing, visualization, and algorithm development. The primary objective is to underscore the tangible benefits and potential applications of this integration within the specific domains of microwave and radar technologies, offering crucial insights for engineers and developers specializing in these technical areas.
Mike Jones
Product Line Manager, COTS Digitizers
WEMA8: A 4-Channel Transmit/Receive, 0.1-18GHz 3UVPX Tuner+Digitizer+Processor System on Module
Presenter:
Mike Jones, Product Line Manager, COTS Digitizers
Date:
Wednesday, June 19
Time
: 11:15 am – 11:30 am
Location:
MicroApps Theater, Booth 2159
A four-channel transmit, four-channel receive 3UVPX microwave tuner, digitizer and processor contained within a single 1-inch pitch chassis has been developed leveraging a multichannel high-speed digitizer integrated circuit (IC) which includes hardened digital signal processing (DSP) features. The system enables wideband digitization of 5GSPS per channel, covering a frequency tuning range between 0.1-18GHz, and is comprised of a Digitizer Base Card and a Microwave Personality Tuner. Digital offload options include on-board memory and optical Ethernet interfaces collocated with a multichannel digitizer IC on the Digitizer Base Card. Front-end networks leveraging new RFIC technology on the Microwave Personality Tuner are described.
Mark D’Amato
Instrumentation Systems Engineer
WEMA13: 6G FR3 Signal Chain for Wireless Test Systems
Presenter:
Mark D’Amato, Instrumentation Systems Engineer
Date:
Wednesday, June 19
Time
: 12:30 pm – 12:45 pm
Location:
MicroApps Theater, Booth 2159
The 5G cycle is still on-going, however investments in 6G R&D from academia, public and private sectors have begun. Test and measurement companies have started developing 6G proof of concepts that will help inform the 6G standardization over the next couple years. Current consensus is that 6G shall include the lower “FR3” band and a sub-THz band (90GHz+).
ADI has developed a FR3 Signal Chain for Wireless Test to accelerate our T&M customer’s development efforts. The design supports frequency from 6-18GHz utilizing ADI’s differentiated RF portfolio and ADI’s newest data converter, Apollo MxFE, that supports up to 8GHz bandwidths.
Aerospace and Defense
Instrumentation
Multi Market Power
Cloud and Communications
Preview Our Aerospace and Defense Demos
Apollo MxFE: Direct RF Sampling at 40GSPS
With the ever-increasing need for wideband scanning for Comms and EW, the Apollo MxFE positions itself as an excellent choice for these applications given the plethora of on-chip DSP functionality. Learn how on-chip FIR filters are leveraged to cancel image power across the Nyquist boundary. A 20GHz quadrature input into adjacent ADCs swept across the desired band of interest gives Apollo MxFE the phase and magnitude information it needs to reject images up to 4GHz iBW from 2-18GHz, effectively doubling the sample rate to 40GSPS. This allows for direct sampling from 2-18GHz, all in one Nyquist.
Nevis Narrowband Transceiver: Enabling Advanced Digital Signal Processing at the Edge
Learn how you can build a compact, low power, high performance RF front end ideal for narrow band radio applications like LMR, DMR, IoT and more. Its integrated system features simplify radio design, and its advanced architecture is suitable for congested or contested radio environments where interference tolerance is critical. With a customer programmable ARM core and suite of hardware accelerators, our latest introduction is the first ADI Narrowband Transceiver to enable advanced digital signal processing at the edge. See how you can reduce the size, power and cost of your next radio platform by utilizing a software defined modem.
Wideband RF Front-end Demo with Apollo
The Wideband RF Front-end Demo with Apollo addresses many wideband architectural challenges by showcasing a complete RF Front-end solution that utilizes new frequency conversion IC’s that extend operation up to 55GHz, tunable BPFs, gain-ranging SiPs, while leveraging the high sample rate of ADI’s Apollo MxFE to reduce system complexity, SWaP-C, and Time-to-Market.
Apollo MxFE: DSP Features for System Level Power Savings
Apollo MxFE offers power efficient on-chip digital signal processing to offload FPGA compute. Included are a spectrum sniffer, programmable FIR filter, complex FIR filter, coarse and fine decimation and interpolation filters with fast hopping NCOs, and a fractional sample rate converter. By leveraging Apollo’s on-chip DSP to handle the bulk of signal processing commonly performed in the fabric of the FPGA, the overall system power can be significantly reduced.
0.1-20GHz 4T/4R 3UVPX Tuner+Digitizer+Processor
ADSY1100 combines a four-channel transmit, four-channel receive digitizer, tuner, and processor into a single 1-inch pitch 3UVPX chassis. The system enables wideband digitization up to 5GSPS data rates per channel covering a 0.1-20GHz tuning range offered by the integrated RF tuner personality card. The digital-offload options enabled by the FPGA/SoC combination include optical and copper ethernet and PCIE. Additionally, the integrated AD9084 Apollo MxFE enables on-chip hardened digital signal processing (DSP) features such as low latency loopback, fast-frequency-hopping, on-chip FFT sniffing and dynamic decimation/interpolation reconfiguration.
16Tx / 16Rx X-Band Digital Phased Array Development Platform
The Quad-Apollo X-Band Digital Beamforming Development Platform is a 16-channel Tx, 16-channel Rx phased-array system enabling RADAR, SATCOM, multi-channel communications and some electronic warfare applications. Learn how four AD9084 Apollo MxFE digitizer ICs on a single board improve multi-chip synchronization and multichannel calibration methods. MATLAB user level software demonstrates how Apollo hardened DSP can be leveraged to correct digital & analog anomalies.
Low Power, High Dynamic Range, Multi-Channel GNSS Receiver
Low Power, High Dynamic Range, Multi-Channel GNSS Receiver ADI’s ultra-low power GNSS receiver technology enables next generation positioning systems to achieve faster times to first fix, higher location accuracy and improved GNSS availability. With 4 software defined receive channels,

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