Fujitsu Develops World's First Single-Panel Antenna
November 29, 2018 | Fujitsu Laboratories LtdEstimated reading time: 4 minutes

Fujitsu Laboratories Ltd. has developed the world's first equipment technology to enable simultaneous communications to four users with a single antenna panel in the 28-GHz band, in the world's most compact structure. The equipment delivers high-speed communications in excess of 10 Gbps, as required by 5G mobile communication formats. The use of 5G is premised on deployment of base stations with comparatively small coverage areas placed every few tens of meters. Given this, it will be necessary to have equipment of a compact size that can be deployed anywhere. Conventional 5G system structures require use of an antenna panel for each terminal when simultaneously transmitting to multiple terminals. Now, by controlling with high accuracy the phase (angle) of signals separately emitted from 128 antenna elements, Fujitsu Laboratories has suppressed the interference between signals. This enables simultaneous communications in four directions using only one antenna panel. Moreover, the company can vary signals in both horizontal and vertical directions, successfully expanding the communications area. With these developments, components can now be fit on a single 13 cm2 printed circuit board, instead of two or more antenna panels required with conventional technology. This will enable the deployment of compact base stations and high-speed 5G communications in locations where many people gather, such as around train stations and in stadiums.
Development Background
The spread of smartphones, 4K image resolution, and VR has raised demand for high-speed wireless communication. Meanwhile, problems like transmission delays and poor connections due to insufficient wireless communications capacity are occurring in urban centers, stadiums, and event venues, and anywhere many people gather. To remedy these shortcomings, the development of 5G, which uses the millimeter wave band to secure a wide frequency band, is being carried out globally, with the goal of commercial deployment around 2020. While 5G can provide high-speed, high-capacity communications in excess of 10 Gbps, its radio waves are very one-directional and blocked by obstacles. As such, the use of a method called small cells, in which base stations are deployed every few tens of meters, is anticipated. Commercialization also requires compact equipment that can be easily installed in any location.
Issues
5G base stations make use of a technology called beam-forming, which controls the phase of signals emitted from the multiple antenna elements on the antenna panel and concentrates the radio waves in the desired direction. This divides and multiplexes beams, to handle simultaneous communications with multiple users. Currently, to avoid radio wave interference during communications with multiple users at once, base stations have been configured to use a number of antenna panels corresponding to the number of concurrent users. To miniaturize the equipment so that it can be deployed anywhere, the best option is to provide multi-directional transmissions from a single antenna panel.
About the Newly Developed Technology
Fujitsu Laboratories developed a phased array chip using a technology (patent registered) that can regulate the phase of a signal propagated from an antenna element with accuracy of one degree or less, and built into the panel one phased array chip per eight antenna elements. The company also uses circuitry that detects the differences in phase between phased array chips, which enables highly accurate phase control for any size antenna panel that has between 64 and 256 antenna elements. As a result, by holding the difference in undesired emissions intruding between one radio wave communicating with a device and another radio wave with another device to 20dB or more, it makes it possible for a single antenna panel to carry out high-capacity communications of 10 Gbps or more. Detecting the phase differences from the signals produced by each antenna element and controlling the phase with high accuracy to concentrate the signal in the desired direction, these technologies successfully led to compact equipment that transmits to four users simultaneously with just one antenna panel. The compact equipment propagates radio waves on two axes, including horizontal and vertical directions, enabling wide-area communications with users.
Effects
These technologies led to the prototyping of a 13 cm2 antenna panel equipped with 128 antenna elements and 16 phased array chips. Accordingly, Fujitsu Laboratories confirmed that a single antenna panel can deliver high-speed transmissions of 2.5 Gbps per person, for a total of 10 Gbps, and carry out beam multiplexing in four directions. By using this antenna panel, it will be possible to build small, energy efficient 5G base stations.
Future Plans
Fujitsu Laboratories will continue to raise the performance and reliability of this technology, and aim for commercialization around 2021.
About Fujitsu Laboratories
Founded in 1968 as a wholly owned subsidiary of Fujitsu Limited, Fujitsu Laboratories Ltd. is one of the premier research centers in the world. With a global network of laboratories in Japan, China, the United States and Europe, the organization conducts a wide range of basic and applied research in the areas of Next-generation Services, Computer Servers, Networks, Electronic Devices and Advanced Materials.
About Fujitsu Ltd
Fujitsu is the leading Japanese information and communication technology (ICT) company, offering a full range of technology products, solutions, and services. Approximately 140,000 Fujitsu people support customers in more than 100 countries. We use our experience and the power of ICT to shape the future of society with our customers. Fujitsu Limited (TSE: 6702) reported consolidated revenues of 4.1 trillion yen (US $39 billion) for the fiscal year ended March 31, 2018.
Testimonial
"We’re proud to call I-Connect007 a trusted partner. Their innovative approach and industry insight made our podcast collaboration a success by connecting us with the right audience and delivering real results."
Julia McCaffrey - NCAB GroupSuggested Items
SAMI Advanced Electronics Company Launches “Remal” Computer Manufacturing Project in Partnership with HP and Foxconn
10/15/2025 | SAMI-AECSAMI Advanced Electronics Company (SAMI-AEC), a wholly owned subsidiary of Saudi Arabian Military Industries (SAMI), proudly announced the launch of the “Remal” project for computer manufacturing, in strategic partnership with HP and Foxconn.
The Right Approach: Electro-Tek—A Williams Family Legacy, Part 1
10/15/2025 | Steve Williams -- Column: The Right ApproachThere is no bronze bust in the lobby or portrait in the conference room of Electro-Tek's founder—my Dad, Charles “Chuck” Williams—so with the facility closing last year after 56 years, I feel it is time to tell the story. Chuck Williams founded Electro-Tek in 1968 in our basement, eventually moving into the second floor of an old 1913 building in downtown Milwaukee that is still standing (the first of three eventual facilities).
LPKF Joins productronica’s 50th Anniversary, Showcasing Laser Technology for Electronics Manufacturing
10/10/2025 | LPKF Laser & ElectronicsLPKF Laser & Electronics invites visitors to productronica 2025 in Munich from November 18 to 21. At booth 305 in hall B2, the company will present its portfolio of modern laser technologies for the electronics industry live – from prototyping systems and high-performance depaneling to laser plastic welding for electronic housings and thin glass processing for advanced packaging.
Marco Pieters Appointed ASML Chief Technology Officer
10/09/2025 | ASMLASML Holding NV (ASML) announced the appointment of Marco Pieters as Executive Vice President and Chief Technology Officer, reporting to President and Chief Executive Officer, Christophe Fouquet.
Advanced Rework Technology Inspires Students at National Manufacturing Day 2025
10/08/2025 | A.R.T. Ltd.Advanced Rework Technology Ltd. (A.R.T.), a leading independent IPC-accredited training provider, joined forces with Jaltek, a UK-based electronics manufacturer with over 35 years’ experience in designing and producing high-quality electronic products, to deliver hands-on workshops for students during National Manufacturing Day 2025.