The E-Band Broadband Blueprint: Bridging the U.S.Broadband Gap with Proven Megascale Microwave

This technical whitepaper presents a proven framework for deploying E-band microwave (70/80 GHz) as a scalable, cost-effective solution to bridge the U.S. broadband connectivity gap. Drawing on the author’s direct experience leading the world’s largest E-band backhaul network deployment in Saudi Arabia (2020), the paper proposes a turnkey architecture for 5G backhaul and enterprise Dedicated Internet Access (DIA) in underserved U.S. markets. Key contributions include: a comparative analysis of broadband technologies demonstrating E-band’s superior throughput-to-deployment-speed ratio; a proven Active Network Sharing (MORAN) model that reduced capital expenditure by 30–40% per operator; and an enterprise DIA framework delivering 1–10 Gbps connectivity at 60–70% lower installation cost than fiber. The paper also presents a 36-month U.S. deployment roadmap aligned with BEAD program funding priorities and FCC light-licensing advantages. This work is directly relevant to U.S. national broadband policy, rural connectivity initiatives, and the Infrastructure Investment and Jobs Act ($65 billion) and BEAD program ($42.45 billion) implementation strategies. https://doi.org/10.5281/zenodo.22977616

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-26
DOI
https://doi.org/10.5281/zenodo.22977616
Primary Topic
Advanced Photonic Communication Systems
Type
article
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The E-Band Broadband Blueprint: Bridging the U.S.Broadband Gap with Proven Megascale Microwave

Syed Imran Raza Syed
Zenodo (CERN European Organization for Nuclear Research)
Advanced Photonic Communication Systems
article

The E-Band Broadband Blueprint: Bridging the U.S.Broadband Gap with Proven Megascale Microwave

Syed Imran Raza Syed
article en

Abstract

This technical whitepaper presents a proven framework for deploying E-band microwave (70/80 GHz) as a scalable, cost-effective solution to bridge the U.S. broadband connectivity gap. Drawing on the author’s direct experience leading the world’s largest E-band backhaul network deployment in Saudi Arabia (2020), the paper proposes a turnkey architecture for 5G backhaul and enterprise Dedicated Internet Access (DIA) in underserved U.S. markets. Key contributions include: a comparative analysis of broadband technologies demonstrating E-band’s superior throughput-to-deployment-speed ratio; a proven Active Network Sharing (MORAN) model that reduced capital expenditure by 30–40% per operator; and an enterprise DIA framework delivering 1–10 Gbps connectivity at 60–70% lower installation cost than fiber. The paper also presents a 36-month U.S. deployment roadmap aligned with BEAD program funding priorities and FCC light-licensing advantages. This work is directly relevant to U.S. national broadband policy, rural connectivity initiatives, and the Infrastructure Investment and Jobs Act ($65 billion) and BEAD program ($42.45 billion) implementation strategies. https://doi.org/10.5281/zenodo.22977616

Zenodo (CERN European Organization for Nuclear Research)
Industry, innovation and infrastructure
Openalex Percentile: Top 21%
Advanced Photonic Communication Systems
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