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The 6G Upgrade in the 7-8 GHz Spectrum Range

The next generation of wireless technology is already being planned as the spectrum in the 7.125 – 8.400 GHz range is identified as a key enabler of future connectivity. The white paper outlines how the spectrum in the 7-8 GHz range would enable 6G to potentially provide up to 10-20 times increase in capacity compared to current 5G networks. This will enable higher data speeds and more efficient network management, making the deployment of advanced technologies like Artificial Intelligence (AI) and Extended Reality (XR) more feasible. 

As the industry prepares for the next era of 6G in the 2030 timeframe, the study emphasizes that the availability of 1.5-2 GHz of mid-band spectrum per market is essential for successful 6G deployment. The 7.125 – 8.400 GHz spectrum is emerging as a globally harmonized band, dubbed a “Golden Band of 6G,” crucial for achieving economies of scale and driving down costs for operators and consumers. 

‘The 6G Upgrade in the 7-8 GHz Spectrum Range: Coverage Capacity and Technology,’  covers the following key highlights: 

  • Spectrum Efficiency: The 7-8 GHz range combined with advanced antennas allows for four to five times higher spectral efficiency compared to current 5G bands leading to enhanced performance. 
  • Infrastructure Reuse: The new band enables the reuse of existing 5G base station sites, significantly reducing the cost of deployment. 
  • Technology Boost: Advanced beamforming, massive Multiple Input Multiple Output (mMIMO), and AI-driven algorithms will further enhance network capacity and coverage. 
  • Spectrum Sharing: While exclusive licensing is ideal, the report highlights that spectrum sharing may be necessary in certain regions, ensuring flexible and rapid access to the new band. 

With mobile data traffic expected to grow from three to fivefold in the next five years, driven by new applications that demand high-capacity, low-latency networks, the 7-8 GHz spectrum is critical. The band is currently home to several incumbent users in the United States, including federal and satellite services. As part of the transition to 6G, greater transparency, coordination, and repacking will be important in ensuring efficient use of the new spectrum. 

The paper also identifies that the success of 6G deployment relies on global collaboration to harmonize spectrum use to reduce manufacturing costs, streamline supply chains, and support international roaming, benefiting both operators and consumers. 

The 7-8 GHz band is pivotal for the future of 6G. It offers the capacity and efficiency we need to support the exponential data growth expected with emerging applications such as AR, VR, and advanced AI.

Executive Summary

As we prepare to usher in the new era of 6G in the 2030 timeframe, it is essential to make sure that the right spectrum—the lifeblood of any wireless technology—is in place. The spectrum must be available not only in sufficient quantity, but also in the frequency range to ensure commercial success. The industry projects that 400-500 MHz of mid-band spectrum per mobile operator will be necessary for 6G. Assuming there are 3-4 operators in a given market, the minimum spectrum need for a market will be 1.5-2 GHz. Furthermore, this spectrum should be available in the lowest possible frequency range in order to achieve the desired user experience at a reasonable cost point. This paper illustrates that the new spectrum block at 7.125 – 8.400 GHz is important for 6G radio deployments for providing 10-20 times more capacity and higher data rates while reusing existing base station sites. Advanced beamforming, higher order MIMO configurations in both base stations and user equipment, and higher amount of spectrum are all relevant for boosting radio coverage and capacity on the new spectrum blocks. High power exclusive usage of the new spectrum can provide greatest benefit in terms of radio performance while spectrum sharing scenarios are also considered for flexible and rapid utilization of the new spectrum.

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