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  1. DVTEST Summer dbSAFE X Savings

    DVTEST Summer dbSAFE X Savings

    DVTEST’s best-selling, most versatile RF enclosure with the industry’s largest I/O panels. The dbSAFE X Series advanced RF test enclosures are versatile for any wireless testing. Designed to operate between 300 MHz to 18 GHz, testing of wireless devices has never been more reliable and affordable. Each and every dbSAFE X enclosure provides ≥ 90 dB isolation* through the use of high quality durable broadband RF absorbers. In addition, the standard double layer sealed door cover ensures maximum performance and durability even after 50,000 operations.

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  2. Tektronix: Guide to RF Signals

    Tektronix: Guide to RF Signals

    Use this eGuide to help you understand what kinds of signals to expect to find, or to help you identify signals to separate legitimate signals from other signals.

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  3. Press Release: Testforce Announces Relationship with ViaLite and PPM Test to Help Customers Address Their RF over Fiber and Test and Measurement Requirements

    Press Release: Testforce Announces Relationship with ViaLite and PPM Test to Help Customers Address Their RF over Fiber and Test and Measurement Requirements

    Testforce announces its Authorized Distributor relationship with ViaLite Communications and PPM Test in Canada to serve a wide-ranging array of customers in SatCom, Mil/Aero, Cellular, EMC, and Advanced Telecommunications.

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  4. Anritsu: Making EIRP Measurements on 5G Base Stations

    Anritsu: Making EIRP Measurements on 5G Base Stations

    This application note highlights how the Anritsu Field Master ProTM MS2090A facilitates the "over-the-air" (OTA) measurement of EIRP on active base stations using an accessory dual polarized waveguide antenna. Measurements are performed according to 3GPP specifications and are ideal for product design verification and field installations.

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  5. Anritsu: Understanding 1914.3 (RoE) and eCPRI Transport Testing

    Anritsu: Understanding 1914.3 (RoE) and eCPRI Transport Testing

    Test equipment requires upgrading to meet new requirements as operators migrate from CPRI/OBSAI MFH networks to the recently standardized 1914.3 (RoE) or eCPRI MFH networks.

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  6. Anritsu: Understanding Key Real-Time Spectrum Analyzer Specifications

    Anritsu: Understanding Key Real-Time Spectrum Analyzer Specifications

    Spectrum analyzers are the fundamental instrument used by RF engineers to measure individual signals across a defined frequency band.

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  7. Anritsu: The Benefits of RF Testing Mission-Critical IoT Designs

    Anritsu: The Benefits of RF Testing Mission-Critical IoT Designs

    IoT can be described as the “wild west” of the RF world being that it is a relatively new frontier with a hugely diverse array of technologies, multiple standards from different organizations and not a whole lot of compatibility.

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  8. Copper Mountain Technologies: VNA Direct Receiver Access - What is it for?

    Copper Mountain Technologies: VNA Direct Receiver Access - What is it for?

    Some Vector Network Analyzers allow Direct Receiver Access. A VNA with this feature will usually be festooned with "loop" connections on the front panel which allows the user to directly access the receivers and bypass the directional bridge.

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  9. Anritsu: Fundamentals of Spectrum Analysis

    Anritsu: Fundamentals of Spectrum Analysis

    This webinar covers key spectrum analyzer concepts, architecture, behaviours, and applications. Critical specifications and how those specifications actually impact measurement capabilities will be discussed. Certain optional spectrum analyzer features, like tracking generators, zero span, gated sweep, and signal analysis will be further explored.

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  10. Anritsu: VNA Fundamentals Part III: IMD Measurements on a 70 GHz VectorStar

    Anritsu: VNA Fundamentals Part III: IMD Measurements on a 70 GHz VectorStar

    VectorStar provides a wide range of active device characterization including the highest performing pulse analysis, highest frequency noise figure measurements, and accurate IMD measurements utilizing non-linear transmission line (NLTL) samplers.

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