DVTest Inc.

db Series of RF enclosures was to use our years of experience in the wireless test industry to manufacture the most technically advanced RF and Thermal Test Enclosures. We understood that to make a truly great RF enclosure, many different factors need to be considered in addition to RF isolation. Our engineers have meticulously selected the highest performance materials that go into every single RF enclosure.

  • +1 (647) 726-0058
  • 2-1795 Ironstone Manor
    Pickering, ON L1W 3W9
    Canada

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Showing results: 31 - 35 of 35 items found.

  • Positioner HD

    DVTest Inc.

    The Positioner HD is a two-axis azimuth over elevation positioner, for precise angular positioning with full spherical coverage. Designed for antenna and RF device measurement, the positioner is built out of low-reflection materials, with additional RF shielding for minimal multipath and improved measurement accuracy. A slip ring is included to allow for continuous 360° rotation in both axes. This system is highly configurable, with options for RF rotary joints, slip rings for data communications, and custom sizing. An external motor controller is included by default with the Positioner HD. This motor controller connects to a computer via USB and includes an easy-to-use graphic interface. Other command options include automated macros, manual control knobs, Python, Matlab, or Labview interfaces, or direct control via ASCII commands. The controller also includes a digital I/O trigger system, for precise synchronization with other devices.

  • Positioner LD

    DVTest Inc.

    The DVTEST LD Positioner is a two-axis elevation over azimuth positioner, for precise angular positioning with full spherical coverage. The LD Positioner is designed for the precise characterization of lightweight devices. The positioner is constructed from a low-permittivity polymer, for minimal reflections and multipath. For increased accuracy, the motor is outfitted with an absolute encoder, and laser guided calibration. A USB controller is included, with the positioner operated via Python or Matlab software libraries.

  • Power Sensors

    RTP5006 - DVTest Inc.

    Providing the highest video bandwidth and fastest rise times, the 50 MHz to 6 GHz Power Sensor by Boonton is the ideal instrument for fast, accurate and reliable RF power measurements.This module is ideal for many different applications including Crest Factor and Peak to Average Power Ratio (PAPR) measurements for Power Amplifiers and RF components; Telecommunication & Satellite signals: W-CDMA, QAM, OFDM, LTE-FDD and LTE-TDD; WiFi signals: 802.11ac and legacy 802.11 a/g/n/b; RF and Microwave pulse modulated power measurements: RADAR, MRI, Particle Accelerators; General purpose scalar measurements such as gain and return loss using modulated and pulsed signals as well as CW; and Monitoring, Recording, ALC loops, transient phenomena.

  • Power Sensors

    RTP5518 - DVTest Inc.

    Providing the highest video bandwidth and fastest rise times, the 50 MHz to 18 GHz Power Sensor by Boonton is the ideal instrument for fast, accurate and reliable RF power measurements. This module is ideal for many different applications including Crest Factor and Peak to Average Power Ratio (PAPR) measurements for Power Amplifiers and RF components; Telecommunication & Satellite signals: W-CDMA, QAM, OFDM, LTE-FDD and LTE-TDD; WiFi signals: 802.11ac and legacy 802.11 a/g/n/b; RF and Microwave pulse modulated power measurements: RADAR, MRI, Particle Accelerators; General purpose scalar measurements such as gain and return loss using modulated and pulsed signals as well as CW; and Monitoring, Recording, ALC loops, transient phenomena.

  • Power Sensors

    RTP5540 - DVTest Inc.

    Providing the highest video bandwidth and fastest rise times, the 50 MHz to 40 GHz Power Sensor by Boonton is the ideal instrument for fast, accurate and reliable RF power measurements. This module is ideal for many different applications including Crest Factor and Peak to Average Power Ratio (PAPR) measurements for Power Amplifiers and RF components; Telecommunication & Satellite signals: W-CDMA, QAM, OFDM, LTE-FDD and LTE-TDD; WiFi signals: 802.11ac and legacy 802.11 a/g/n/b; RF and Microwave pulse modulated power measurements: RADAR, MRI, Particle Accelerators; General purpose scalar measurements such as gain and return loss using modulated and pulsed signals as well as CW; and Monitoring, Recording, ALC loops, transient phenomena.

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