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     234  0 Kommentare D/A Converter Offers More Accuracy in a Smaller Footprint for Diverse Applications Ranging from Radar to Smartphone Testing

    Analog Devices, Inc. (ADI) today introduced the AD9164 D/A converter that brings high resolution radar images for designers of military and commercial radar while reducing solution component count. Additionally, for designers of precision instrumentation equipment, such as smartphone testers, the new device ensures improved accuracy as well as speed of test, contributing to faster market-ready time while significantly decreasing tester complexity and size. Thanks to its audio to 6 GHz frequency coverage, the AD9164 D/A converter moves the tester market one step closer to a universal wireless test platform.

    This Smart News Release features multimedia. View the full release here: http://www.businesswire.com/news/home/20160808005014/en/

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    D/A Converter Offers More Accuracy in a Smaller Footprint for Diverse Applications Ranging from Rada ...

    D/A Converter Offers More Accuracy in a Smaller Footprint for Diverse Applications Ranging from Radar to Smartphone Testing (Photo: Business Wire)

    The AD9164 D/A converter delivers:

    • Highest linearity in ADI’s D/A converters portfolio
    • 100 to 1,000 times improved spectral purity versus previous generation ADI solutions (20-30 dB better)
    • Higher agility with frequency change time now a 100 times shorter than traditional ADI phased locked loop (PLL) systems

    The reduction in solution component count and thus size enables element level digital beamforming advanced radar solutions. With the same performance specifications as the already released AD9162, the AD9164 D/A converter also includes an on-chip direct digital synthesizer (DDS) that ensures phase-coherent fast frequency hopping of less than 300 ns for up to 32 different frequencies. This makes the AD9164 D/A converter well-suited for testing anything from AM broadcast band or Japanese FM band to 5.8 GHz UNII band.

    The AD9164 converter features a 2x interpolator (FIR85), which enables configurability for lower data rates and converter clocking to reduce overall system power and ease filtering requirements. In mix-mode operation, this D/A converter can be configured to reconstruct RF carriers in the 2nd and 3rd Nyquist zones up to 7.5 GHz while maintaining exceptional dynamic range.

    The AD9164 also comes with a unique remote evaluation tool, allowing designers to “test-drive” the D/A converter’s performance. The remote tool is available at http://labs.analog.com/ad916x.

     

    Product Specifications

    Product  

    DDS
    Frequency
    Hopping

     

    Update
    Rate

     

    Direct RF
    Synthesis

     

    Baseband
    Mode

     

    Normal
    Mode

      Mix-Mode
    AD9164   <500 ns   12 GSPS   6 GSPS  

    DC to 2.5
    GHz

     

    DC to 6
    GHz

     

    1.5 to 7.5
    GHz

               
           

    Pricing and Availability

    Product  

    Sample
    Availability

     

    Full
    Production

     

    Price Each
    Per 1,000

      Packaging
    AD9164 Now Now

    $295

    8 mm x 8 mm CSP-BGA

    11 mm x 11 mm CSP-BGA

               

    $334

     

    11mm x 11mm CSP-BGA SnPb

     

    About Analog Devices
    Analog Devices (NASDAQ: ADI) designs and manufactures semiconductor products and solutions. We enable our customers to interpret the world around us by intelligently bridging the physical and digital worlds with unmatched technologies that sense, measure and connect.

    EngineerZone is a registered trademark of Analog Devices, Inc.

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    Read and subscribe to Analog Dialogue, ADI’s monthly technical journal, at: http://www.analog.com/library/analogDialogue/.




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    D/A Converter Offers More Accuracy in a Smaller Footprint for Diverse Applications Ranging from Radar to Smartphone Testing Analog Devices, Inc. (ADI) today introduced the AD9164 D/A converter that brings high resolution radar images for designers of military and commercial radar while reducing solution component count. Additionally, for …