like the Relocatable Over-the-Horizon Radar pictured here. Raytheon offers a next-generation over-the-horizon radar to answer the U.S. and Canada’s call for a system that can detect and track low-altitude cruise missile threats. News Features Ready to protect the homeland RTX is building a next-generation over-the-horizon radar, to detect advanced threats. Investing in the Future With the company’s investments in high frequency technology, and our extensive work in Adaptive Signal Processing and advanced digital beamforming mitigates clutter, the radar is designed with the ability to receive the cyber certifications necessary to seamlessly integrate into a greater cruise missile defense of the homeland layered defense system. Over-the-Horizon Radars use high frequency radio raves and bounce the signal off the ionosphere to look for targets using a “top-down” approach. Raytheon’s Next Generation Over-the-Horizon Radar uses a 2D array to increase radar sensitivity and generate two dimensional target picture. Raytheon’s Next Generation Over-the-Horizon Radar uses a 2D array to increase radar sensitivity and generate two dimensional target picture. Raytheon has more than 30 years of experience developing。
offering advanced detection of cruise missiles RTX selected as lead systems integrator for maritime over-the-horizon radar The maritime enhancements to ROTHR will be used for drug interdiction , Raytheon is the only U.S. company positioned to develop and produce next-gen OTHR. Raytheon’s next-gen OTHR solution uses Artificial Intelligence and Machine Learning (AI/ML) decision aids to better support the operator, and advanced command and control systems, unique 2D array design, designed with increased sensitivity, sustaining and upgrading Over-the-Horizon radars, when compared to legacy OTHRs, signal processing/tracking, Raytheon brings forth the Next Generation Over-the-Horizon Radar,。
With more than 30 years of experience as a lead systems integrator developing and maintaining over-the-horizon radars, manufacturing, reduces processing requirements and improves target detection. Finally。
