Close Menu
Meteorological Technology International
  • News
    • A-E
      • Agriculture
      • Automated Weather Stations
      • Aviation
      • Climate Measurement
      • Data
      • Developing Countries
      • Digital Applications
      • Early Warning Systems
      • Extreme Weather
    • G-P
      • Hydrology
      • Lidar
      • Lightning Detection
      • New Appointments
      • Nowcasting
      • Numerical Weather Prediction
      • Polar Weather
    • R-S
      • Radar
      • Rainfall
      • Remote Sensing
      • Renewable Energy
      • Satellites
      • Solar
      • Space Weather
      • Supercomputers
    • T-Z
      • Training
      • Transport
      • Weather Instruments
      • Wind
      • World Meteorological Organization
      • Meteorological Technology World Expo
  • Features
  • Online Magazines
    • January 2026
    • April 2025
    • January 2025
    • September 2024
    • April 2024
    • Archive Issues
    • Subscribe Free!
  • Opinion
  • Videos
  • Supplier Spotlight
  • Expo
LinkedIn X (Twitter) Facebook
  • Sign-up for Free Weekly E-Newsletter
  • Meet the Editors
  • Contact Us
  • Media Pack
LinkedIn Facebook
Subscribe
Meteorological Technology International
  • News
      • Agriculture
      • Automated Weather Stations
      • Aviation
      • Climate Measurement
      • Data
      • Developing Countries
      • Digital Applications
      • Early Warning Systems
      • Extreme Weather
      • Hydrology
      • Lidar
      • Lightning Detection
      • New Appointments
      • Nowcasting
      • Numerical Weather Prediction
      • Polar Weather
      • Radar
      • Rainfall
      • Remote Sensing
      • Renewable Energy
      • Satellites
      • Solar
      • Space Weather
      • Supercomputers
      • Training
      • Transport
      • Weather Instruments
      • Wind
      • World Meteorological Organization
      • Meteorological Technology World Expo
  • Features
  • Online Magazines
    1. January 2026
    2. September 2025
    3. April 2025
    4. January 2025
    5. September 2024
    6. April 2024
    7. January 2024
    8. September 2023
    9. April 2023
    10. Archive Issues
    11. Subscribe Free!
    Featured
    November 27, 2025

    In this Issue – January 2026

    By Hazel KingNovember 27, 2025
    Recent

    In this Issue – January 2026

    November 27, 2025

    In this Issue – September 2025

    August 11, 2025

    In this Issue – April 2025

    April 15, 2025
  • Opinion
  • Videos
  • Supplier Spotlight
  • Expo
Facebook LinkedIn
Subscribe
Meteorological Technology International
Radar

EWR introduces a low-profile, solid-state weather radar system

EWRBy EWRSeptember 29, 20232 Mins Read
Share LinkedIn Facebook Twitter Email
Share
LinkedIn Facebook Twitter Email

* Sponsored content

EWR has introduced a low-profile, solid-state weather radar system, named the E800LP Series.

Ultra-compact, fully integrated, rugged design
The E800LP is a rugged, low-profile, solid-state weather radar system specifically designed for mobile and stationary applications that require a narrow beam width and compact size. The E800LP is available in both X and C band frequencies.

EWR understands what it takes to build radar systems that withstand the rigors of mobile and fixed deployment for continuous operation in the world’s harshest environments.

The solid advantage
Many other radars use tube transmitters that require frequent maintenance, high voltage and are prone to failure in difficult environments such as those found in mobile applications. EWR uses long-life solid-state GaN transmitters, which are virtually maintenance-free and consume far less power. EWR Solid State transmitters are frequency adjustable and can be tuned by the user to avoid interference.

The latest E800LP transmitter uses a proprietary multi-amplifier design that incorporates multiple “next-generation” high-power amplifiers to provide an extra measure of redundancy in this critical subsystem. This, combined with EWR’s Hybrid Pulse Technology, which virtually eliminates the blind range associated with other solid-state radars, results in a system that outperforms all other solid-state radars on the market today.

The WeatherScout Workstation provides all of the user interface and control functionality of the radar. The E800LP includes the most complete suite of meteorological products available.

Ultra-compact, rugged design makes the E800LP the ideal solution for complex mobile applications that require narrow beam widths.

Key advantages

  • Ultra-compact, fully integrated, rugged design enables the E800LP to meet challenging mobile requirements
  • Simultaneous dual polarization standard
  • Multiple high-resolution beam width options
  • Next-generation EWR field proven solid-state GaN transmitters
  • Proprietary multi-amplifier design
  • Wideband user-adjustable transmit frequency
  • Industry-leading signal processing
  • Hybrid pulse technology eliminates the radar blind range associated with other solid-state radars
  • Ultra-low power consumption and operating costs
  • The most complete suite of meteorological products available
  • Perfect for complex mobile applications
  • Virtually maintenance-free, long life design utilizing factory-sealed gearboxes and bearings
  • 24/7 365 day help desk support

Previous ArticleFEATURE: How the commercial aviation industry is leveraging weather intelligence to navigate extreme weather events and associated costs
Next Article The world’s most important meteorological event of the year – opens next week!

Read Similar Stories

Climate Measurement

The Weather Company updates Storm Radar app with AI features

April 1, 20262 Mins Read
Aviation

Met Office launches platform to support needs of evolving aviation industry

March 24, 20262 Mins Read
Data

Bureau of Meteorology to install temporary weather radar to restore network coverage in Wyndham, Western Australia

March 20, 20262 Mins Read
Latest News

Northumbria University secures £4m to study Earth’s radiation belts

April 16, 2026

AI model improves real-time prediction of wildfire spread

April 16, 2026

Study identifies atmospheric trigger behind flash droughts in Puerto Rico

April 15, 2026

Receive breaking stories and features in your inbox each week, for free


Enter your email address:


Supplier Spotlights
  • ZX Lidars
Getting in Touch
  • Contact Us / Advertise
  • Meet the Editors
  • Media Pack
  • Free Weekly E-Newsletter
Our Social Channels
  • Facebook
  • LinkedIn
© 2026 UKi Media & Events a division of UKIP Media & Events Ltd
  • Cookie Policy
  • Privacy Policy
  • Terms and Conditions
  • Notice and Takedown Policy

Type above and press Enter to search. Press Esc to cancel.