industry news
Subscribe Now

Akoustis Secures WiFi 6E Reference Design with Third SoC Maker

Company Continues to Capitalize on Early Mover Position in WiFi 6E BAW Micro Filters

Charlotte, N.C., May 17, 2021 (GLOBE NEWSWIRE) — Akoustis Technologies, Inc. (NASDAQ: AKTS) (“Akoustis” or the “Company”), an integrated device manufacturer (IDM) of patented bulk acoustic wave (BAW) high-band RF filters for mobile and other wireless applications, announced today that its patented XBAW® filters are being included in a new WiFi 6E reference design by a leading system-on-chip (SoC) maker. This is the third SoC reference design partner for WiFi 6E announced by Akoustis since March as its WiFi 6E coexistence solution continues to gain adoption in the market.

The 5.5 GHz filter module covers the UNII 1-3 spectrum of the WiFi 6E standard, while the 6.5 GHz filter module covers the entire UNII 5-8 spectrum. The SoC vendor is building a MU-MIMO reference design for next generation routers and other connected devices. The reference design is already available for WiFi OEMs and ODMs to build cutting-edge WiFi 6E devices. The SoC reference design model enables a one-customer to many-customers sales opportunity as Akoustis benefits from inclusion on the bill-of-materials of leading baseband chipset suppliers.

Jeff Shealy, founder and CEO of Akoustis, stated, “It is increasingly apparent that WiFi 6E is one of the most compelling near-to-intermediate term market opportunities for Akoustis as enormous momentum for the planned adoption of the new WiFi 6E spectrum continues to build worldwide.” Mr. Shealy continued, “As our new and growing product portfolio of 6E filters is now able to target routers, cable set top boxes and other CPE markets as well as the future 5G-enabled mobile device market, the demand for our WiFi 6E XBAW® filters is robust given our superior selectivity performance and smaller form-factor as an early mover in this rapidly-developing market for high frequency BAW micro filters.”

In April 2020, the FCC announced the approval of 5.9 to 7.1 GHz for unlicensed use, which is the largest spectrum addition since the FCC allocated unlicensed spectrum for WiFi in 1989. The next generation of WiFi that is expected to use these new frequency bands is called WiFi 6E. This approval will create another significant new band, or combination of bands, over the next several years. Since the FCC’s April announcement, governments around the world have begun allocating the same or similar spectrum for future WiFi use. As spectrum is scarce, many nations are limited in the amount of new, available unlicensed spectrum above 6 GHz. This is driving great demand for high-performance coexistence filters that allow the use of all available spectrum.

Akoustis is actively delivering volume production of its WiFi 6 tandem filter solutions, shipping multiple 5G small cell XBAW® filter solutions, delivering initial designs of its new 5G mobile filter solutions to multiple customers and is now entering the market with its new WiFi 6E coexistence XBAW® filter solutions.

Given the rapidly growing sales funnel activity as well as ongoing interaction with customers regarding expected ramps in both 5G mobile and WiFi 6E in calendar 2022, the Company plans to increase the annual production capacity at its New York fab by the end of calendar 2021 to approximately 500 million filters per year.

Akoustis currently has 15 commercial XBAW filters in its product catalog, and recently introduced 5.6 GHz and 6.6 GHz WiFi 6E coexistence filter modules, which when qualified, will bring the number of catalog products to 17. Current product catalog filters include a 5.6 GHz WiFi filter, a 5.2 GHz WiFi filter, a 5.5 GHz WiFi-6E filter, a 6.5 GHz WiFi 6E filter, three small cell 5G network infrastructure filters including two Band n77 filters and one Band n79 filter, a 3.8 GHz filter and five S-Band filters for defense phased-array radar applications, a 3.6 GHz filter for the CBRS 5G infrastructure market and a C-Band filter for the unmanned aircraft systems (UAS) market. The Company is also developing several new filters for the sub-7 GHz bands targeting 5G mobile device, network infrastructure, WiFi CPE and defense markets.

About Akoustis Technologies, Inc.

Akoustis® (http://www.akoustis.com/) is a high-tech BAW RF filter solutions company that is pioneering next-generation materials science and MEMS wafer manufacturing to address the market requirements for improved RF filters – targeting higher bandwidth, higher operating frequencies and higher output power compared to incumbent polycrystalline BAW technology deployed today. The Company utilizes its proprietary XBAW® manufacturing process to produce bulk acoustic wave RF filters for mobile and other wireless markets, which facilitate signal acquisition and accelerate band performance between the antenna and digital back end. Superior performance is driven by the significant advances of high-purity, single-crystal and associated piezoelectric materials and the resonator-filter process technology which drives electro-mechanical coupling and translates to wide filter bandwidth.

Akoustis plans to service the fast growing multi-billion-dollar RF filter market using its integrated device manufacturer (IDM) business model. The Company owns and operates a 120,000 sq. ft. ISO-9001:2015 registered commercial wafer-manufacturing facility located in Canandaigua, NY, which includes a class 100 / class 1000 cleanroom facility – tooled for 150-mm diameter wafers – for the design, development, fabrication and packaging of RF filters, MEMS and other semiconductor devices. Akoustis Technologies, Inc. is headquartered in the Piedmont technology corridor near Charlotte, North Carolina.

Leave a Reply

featured blogs
Apr 24, 2024
Diversity, equity, and inclusion (DEI) are not just words but values that are exemplified through our culture at Cadence. In the DEI@Cadence blog series, you'll find a community where employees share their perspectives and experiences. By providing a glimpse of their personal...
Apr 23, 2024
We explore Aerospace and Government (A&G) chip design and explain how Silicon Lifecycle Management (SLM) ensures semiconductor reliability for A&G applications.The post SLM Solutions for Mission-Critical Aerospace and Government Chip Designs appeared first on Chip ...
Apr 18, 2024
Are you ready for a revolution in robotic technology (as opposed to a robotic revolution, of course)?...

featured video

MaxLinear Integrates Analog & Digital Design in One Chip with Cadence 3D Solvers

Sponsored by Cadence Design Systems

MaxLinear has the unique capability of integrating analog and digital design on the same chip. Because of this, the team developed some interesting technology in the communication space. In the optical infrastructure domain, they created the first fully integrated 5nm CMOS PAM4 DSP. All their products solve critical communication and high-frequency analysis challenges.

Learn more about how MaxLinear is using Cadence’s Clarity 3D Solver and EMX Planar 3D Solver in their design process.

featured paper

Designing Robust 5G Power Amplifiers for the Real World

Sponsored by Keysight

Simulating 5G power amplifier (PA) designs at the component and system levels with authentic modulation and high-fidelity behavioral models increases predictability, lowers risk, and shrinks schedules. Simulation software enables multi-technology layout and multi-domain analysis, evaluating the impacts of 5G PA design choices while delivering accurate results in a single virtual workspace. This application note delves into how authentic modulation enhances predictability and performance in 5G millimeter-wave systems.

Download now to revolutionize your design process.

featured chalk talk

Gas Monitoring and Metering with Sensirion SFC6000/SFM6000 Solutions
Sponsored by Mouser Electronics and Sensirion
In this episode of Chalk Talk, Amelia Dalton and Negar Rafiee Dolatabadi from Sensirion explore the benefits of Sensirion’s SFM6000 Flow Meter and SFC Flow Controller. They examine how these solutions can be used in a variety of applications and how you can get started using these technologies for your next design.
Jan 17, 2024
13,929 views