DOCOMO Develops Solution to Create High-frequency Mobile Cells
January 18, 2022 | ACN NewswireEstimated reading time: 2 minutes
NTT DOCOMO, INC. announced that it has developed an antenna system capable of creating a high-frequency mobile communication cell when a small (roughly one cubic centimeter) piece of plastic is placed on top of a dielectric waveguide. The solid plastic cube serves as an antenna by creating a "leak" from the cable to propagate signals up to several tens of meters. DOCOMO successfully tested the system with an ultra-high-frequency 60 GHz radio signal, similar to those expected to be used in future 6G networks.
DOCOMO envisions its simple, low-cost solution being used to create instant mobile environments in indoor areas not reachable with highly directional high-frequency signals propagated by outdoor base stations.
This system, named "Drop-n-Prop Antenna," takes advantage of the physical phenomenon of radio waves leaking (propagating) from the contact point created by placing ("dropping") a small piece of plastic on top of a dielectric waveguide carrying the signal.
In the trial, DOCOMO constructed a communication area by running a rod-shaped dielectric waveguide made of polytetrafluoroethylene into an indoor area that was inaccessible to external mobile signals. The waveguide was embedded in a length of polystyrene-foam board with one side barely exposed to allow contact with antennas. Multiple communication cells were created simultaneously by placing antennas along various parts of the waveguide. Signal coverage and direction were controlled by changing the material, shape and positioning of the antennas.
Both millimeter waves (28 GHz) for 5G and higher frequencies (60 GHz, etc.) expected to be used for 6G travel in very straight (rectilinear) lines. It is difficult for such waves to reach devices not in a base station's direct line of sight, or if the signals are blocked by surrounding obstacles (walls, equipment, etc.). DOCOMO's simple, low-cost antenna system being announced today merely requires a rod-shaped dielectric waveguide to be run into an area and then embedded in the floors, walls, ceilings, furniture or work surfaces. Communication areas can be constructed easily and unobtrusively in offices, factories, etc. and reconfigured quickly and flexibly just by moving the antenna(s) as required.
The new antenna system also will help to lower energy use by efficiently propagating signals to desired areas only, thereby eliminating wasteful usage of power to propagate signals in areas where communication is not required.
DOCOMO will begin verifying a system using 28 GHz 5G radio signals in the first half of fiscal 2022 starting this April, aiming to introduce a commercial version of its new antenna system as soon as possible.
Suggested Items
Laird Thermal Systems Announces Max Kley as New CEO
04/18/2025 | Laird Thermal SystemsLaird Thermal Systems (LTS) is pleased to announce the appointment of Dr. Max Kley as its new Chief Executive Officer, effective April 1, 2025. Max Kley brings a wealth of international leadership experience to LTS, having successfully led and developed businesses across the USA, Europe, and Asia.
ViTrox Marks 25 Years of Innovation with Cutting-Edge Solutions at NEPCON China 2025 in Shanghai
04/18/2025 | ViTrox TechnologiesViTrox, which aims to be the World’s Most Trusted Technology Company, is proud to announce its participation in NEPCON China 2025, taking place from April 22–24, 2025, at Booth #1E45, Shanghai World Expo Exhibition & Convention Centre (SWEECC).
Hanon Systems Wins Third PACE Award for Visible-Light LED Photocatalyst Technology
04/18/2025 | PRNewswireHanon Systems, a leading global automotive thermal management supplier and subsidiary of Hankook & Company Group, has been named a winner of the 2025 PACE Awards. This marks the company's third win, making it the first Korean supplier to achieve this recognition.
Navigating Robotics Deployment Challenges with SINBON
04/18/2025 | PRNewswireIn spite of the potential for robotics technology to expand productivity, several implementation challenges continue to stand in the way of more widespread adoption.
Lam Research Donates Leading-Edge Etch System to Accelerate Nanofabrication R&D at UC Berkeley
04/17/2025 | PRNewswireLam Research Corp. announced the donation of its innovative multi-chamber semiconductor etching system to the Marvell Nanofabrication Laboratory at the University of California, Berkeley to advance research and development (R&D) for next-generation chip technologies.