Monday, December 12, 2022

Orange to provide landing in Marseille for Medusa Mediterranean cable

Orange will offer a high-performance interconnection solution to all partner operators of the new Medusa Submarine Cable System -- the first and longest submarine cable to connect the main Mediterranean countries. 

Medusa is an 8,760 km subsea system linking the North African countries and six EU member states (Portugal, Spain, France, Italy, Greece, and Cyprus). 

Medusa is an open system that includes 16 landing points around the Mediterranean Sea. The cable will have segments withup to 24 fiber pairs with a capacity of 20 Tbps per fiber pair. Its festoon architecture gives it a unique design. 

It is expected Medusa cable reaches Marseille during the last quarter of 2024. The system will be ready for service end of 2024 for the West Med region and first half of 2025 for the East Med region.

Orange is building submarine cable landing infrastructure in Marseille to make France more attractive as a digital gateway for global exchanges.

Construction includes new urban infrastructure to increase the resilience and diversity of access and landing points in Marseille while connecting all the city’s data centers.

Orange will handle all the technical, regulatory, security, and environmental aspects, enabling its partners to enjoy a prime position in Marseille and strengthening France’s attractiveness

"We are particularly pleased to welcome the Medusa cable to Orange's infrastructure in the heart of the Mediterranean hub of Marseille, as part of a strategic and ambitious project. By combining our submarine cable landing stations with our new urban infrastructure, we are strengthening Marseille's attractiveness as a digital gateway to Europe, and beyond that, France's sovereignty," explains Michaël Trabbia, interim CEO of Orange Wholesale & International Networks.

Norman Albi, CEO of Medusa, stresses the importance of this agreement: “Marseille has always been a strategic Mediterranean interconnection point and joining forces with Orange means we can offer a cutting-edge service, against a background of growing needs in the digital economy. With this agreement, all Medusa landings in the western Mediterranean are totally secure and ready to be implemented.” 

https://newsroom.orange.com/medusa-submarine-cable-system-chooses-the-new-orange-infrastructure-in-marseille-to-land-a-new-strategic-route-connecting-southern-europe-and-north-africa/?lang=en

https://medusascs.com/

Coherent partners with Korea's ETRI and KAIST

Coherent Corp. signed a memorandum of understanding with two Korean institutions, the Electronics and Telecommunications Research Institute (ETRI) and the Korea Advanced Institute of Science & Technology (KAIST), to foster collaboration on advanced electronic and photonic devices, with a focus on the Korean market.

The partnership covers a broad range of innovations in devices, leveraging silicon carbide, gallium arsenide, and indium phosphide technology platforms. The collaboration will address applications in power electronics for electric vehicles, industrial applications, and optical and wireless networks.

“Korea continues to be a strategic market for Coherent, and we really look forward to expanding our relationship with such well-respected partners as ETRI and KAIST,” said Dr. Julie Sheridan Eng, Chief Technology Officer, Coherent Corp. “We will begin by reviewing our respective technology roadmaps and identifying areas of synergistic interest where we can advance the state of the art and accelerate technology development in Korea.”

https://www.coherent.com/news/press-releases/coherent-partners-with-etri-and-kaist?utm_campaign=general_news&utm_source=twitter&utm_medium=social&utm_content=coherent_etri_kaist 

Deutsche Telekom selects Juniper for Magenta Business SD-X

Deutsche Telekom has selected Juniper Networks as the first network technology partner for Magenta Business Networks SD-X. 

SD-X is a cloud-based, virtualized and automated platform that will provide a rapid, simplified and cost-effective transition from MPLS to software-defined network services.

Juniper is providing DT with advanced technologies to create a secure, software-driven network fabric that uses AI to provide actionable insights on real-time performance coupled with automated mitigation. 

The Juniper solution provides client-to-cloud service levels with AI-driven intelligence to optimize and maintain the best user experiences. With AI-driven insight, problems are proactively discovered and addressed via recommended actions and/or self-driving network operations. 

“DT has fully embraced the powerful value of intelligent networks with SD-X. This highly-scalable business model is more cost-effective than traditional approaches, while providing the agility and ease of use customers demand. In turn, these customers can use SD-X as the foundation for an experience-driven digital business for their own customers and employees. We look forward to working with DT to roll out more managed services across SD-X to deliver a game-changing networking experience,” states Manoj Leelanivas, Chief Operating Officer, Juniper Networks.

T-Mobile US advances deployment of 1900 MHz mid-band

 T-Mobile has achieved its year-end goal of covering 260 million people with Ultra Capacity 5G weeks ahead of schedule. In addition, T-Mobile has now deployed an additional, new layer of 1900 MHz mid-band Ultra Capacity 5G spectrum nationwide.

The operator has also begun lighting up three-carrier aggregation — combining three channels of mid-band 5G spectrum — which in tests produced peak speeds topping 3 Gbps on T-Mobile’s 5G standalone network. Customers with the Samsung Galaxy S22 are leveraging the capability in parts of the network now. Three-carrier aggregation will expand nationwide, and be accessible by additional devices, in the near future.

"We’re rapidly executing on our vision to deliver the highest capacity network this country has ever seen,” said Neville Ray, President of Technology at T-Mobile. “We’ve led in 5G coverage from the beginning, delivering a massive 5G footprint that continues to grow. And with Ultra Capacity 5G, it’s undeniable that T-Mobile customers have access to the most powerful 5G network around.”

https://www.t-mobile.com/coverage/4g-lte-5g-networks

Sunday, December 11, 2022

Blueprint: Why CSPs need to shift to support root-cause analyses

by Stephanie Sculley, Head of Analytics Practice, Advanced Consulting Services West at Nokia

Today’s networks are complex to say the least. Because of that, it can be difficult to determine the underlying cause of an issue that’s hindering the customer experience. 

For some communications service providers (CSPs), chasing the wrong suspect can result in wasted time and effort while the true criminal runs free continuing to frustrate customers. 

This unproductive cycle is prevented with root-cause analysis, which identifies the actions that are needed to solve problems, minimizes churn and keeps customers happy, or at least happier. Not only does this save time, but it also helps CSPs keep their decisions customer-focused.

Nonetheless, there are three areas where CSPs often get stuck when trying to conduct root-cause analysis to address these problems, but fortunately, switching up one’s mindset can help to mitigate these common errors. Let’s find out how.

You Don’t Know If You Don’t Ask…a Lot: How to Solve the Problem with Meaningful Questions 

A cold has similar symptoms as an allergy, the flu or even a more serious diagnosis. So, if someone says they have a cough or a runny nose, the doctor needs to ask the right questions to come to an accurate diagnosis. This may even involve doing research or even consulting other professionals, who may have experience in other areas.  

While not the exact same scenario, this is a similar situation to what CSPs face when trying to determine the cause of network issues. Performance and service-related issues can originate from various sources from device manufacturers, content or app providers, user behavior, device manufacturers, or even the network itself, making it near impossible to figure out the cause of problems on one’s own.

Thus, it’s critical that CSPs ask the right questions to determine the cause of lagging key performance indicators (KPIs), growing customer complaints and churn.

Finding a true root cause can be like peeling an onion; there are many layers of investigation. With each new layer exposed, it’s vital to analyze and inspect the relevant details as moving too quickly with a possible solution could result in breaking KPIs in other areas. 

To assist in the root-cause analysis process, many turn to artificial intelligence and machine learning (AI/ML). However, while excellent and essential, these tools also require deep, hands-on experience and the correct data to generate conclusive solutions — ultimately bringing back up the importance of asking the right questions. 

Finding a Needle in a Needle Stack: How to Work with Data

Aside from asking the right questions, CSPs looking for the root cause of customer experience issues can also get hung up on vast amounts of data. 

Most CSPs have invested significant time, resources and energy into integrating sensors and devices throughout their operations with the aim to collect meaningful data. But instead, the data often has the opposite effect as CSPs are left with massive amounts of information that area struggle to sort through and generate value and actionable insights off of. 

To truly capitalize on their data and the findings it uncovers, CSPs need specialized tools along with industry expertise and advanced domain insight. Fortunately, telco data consultants who have worked with various CSPs in different industries can utilize the best practices and lessons learned from these experiences to truly investigate the large pool of data and uncover the most meaningful insights to determine the correct root cause and best course of action. 

The Customer Really Comes First: How to Start Making Customer-Centric Decisions

The last area where CSPs get stuck is with their decision-making process. Commonly, CSPs focus on a performance-driven approach to decision-making. This puts additional emphasis on areas such as the quality and capabilities of segments of their network. However, this narrow focus on just the radio access network (RAN) or the core can have a net negative impact on the business’s operations when it does not simultaneously better customer experience.

By focusing on the customer end-to-end in the decision-making process, CSPs can ultimately keep customers happy instead of causing their eyes to wander to competitors. But doing so requires a deep understanding and knowledge of the true cause of service complaints to properly address issues affecting the customer experience.

Take the example of customers complaining about dropped calls. At a surface level, it may seem like a solution to invest in optimizing network performance in their area, even if it may risk increasing consumer costs. However, the customer may still be affected by the end-to-end service path, which means that the isolated optimizations might not even improve their experience. Even worse, these increased costs, which may be portrayed as higher service fees as a result of the optimization, could cause the customer to ultimately choose a different provider. 

As a general principle of end-to-end customer-focused decision-making, an investment isn’t effective if it doesn’t better the customer experience. And as a part of that, it’s crucial to uncover and act on true root causes. 

And if issues continue to be unclear or complicated, it may be worthwhile to collaborate with an external partner, who can provide expertise and perspective when investigating root causes. 

Not only would an external provider supply broad industry insight based on ongoing work with various global CSPs, but they also have the domain knowledge and AI/ML expertise needed to ask the right questions, analyze data and uncover the true root cause of any issue – improving end-to-end customer experience by ensuring the customers’ needs are addressed head-on.


Verizon deploys its first Ericsson VRAN cell site

Verizon activated its first Ericsson virtualized cell site (also referred to as Ericsson Cloud RAN), with support from Intel and RedHat providing the processing and cloud-native orchestration functions. 

Ericsson provided its commercial 5G Cloud RAN solution, consisting of a virtualized Central Unit (vCU), a virtualized Distributed Unit (vDU), and radio units. This software-based 5G Cloud RAN solution spans across all of Verizon’s frequency bands, utilizing both FDD and TDD 5G spectrum assets, including Massive MIMO support for C-band and interconnecting previously deployed equipment to enable Ericsson Spectrum Sharing between LTE and NR carriers. The Ericsson Cloud RAN solution offers Verizon efficiency and in network deployment and operational management transformation.

Intel provided its 3rd Gen Intel Xeon Scalable processor, Intel vRAN Dedicated Accelerator ACC100 and Intel Ethernet Network Adapter E810 to deliver the processing, acceleration and connectivity requirements.

Red Hat provided Red Hat OpenShift and Red Hat Advanced Cluster Management for Kubernetes to manage their fleet at scale in collaboration with Red Hat Consulting. As part of the solution, Red Hat Advanced Cluster Management delivers cloud-scale manageability by configuring the 5G RAN using a Distributed Unit (DU) profile, which deploys real-time OS kernel optimizations to run vRAN and other cloud-native application workloads from a single console. Red Hat OpenShift also incorporates zero-touch provisioning to enable distributed deployment at scale required to operate a large scale RAN.

Verizon said Radio Access Network virtualization enables it to rapidly respond to customers’ varied latency and computing needs. 

Virtualizing the far edge of the RAN – the cell sites closest to the customer - is a function of decoupling the hardware and software associated with a cell tower and transitioning the software so that it’s not just stored in the cloud, but is designed for a cloud-native architecture and operation.

Verizon recently confirmed that irecently it has 8,000 cell sites already virtualized in its network with an eye towards virtualizing 20,000 sites.

https://www.verizon.com/about/news/verizon-expands-vran-leadership-position

Verizon begins C-band rollout with Ericsson and Samsung

Verizon confirmed that the installation of C-band equipment from Ericsson and Samsung Electronics Co. is now underway. Ericsson is providing its Antenna-Integrated Radio (AIR) product, which features a massive Multiple Input Multiple Output (MIMO) architecture with Ericsson Uplink Booster and advanced beamforming technology.  Samsung is also supplying Massive MIMO radios and fully virtualized RAN (vRAN) solutions.Verizon secured an...

Verizon completes fully virtualized 5G data session

Verizon recently completed an end-to-end fully virtualized 5G data session in a live network. Verizon's demonstration of virtualization in the Radio Access Network tested technology from several partners, including: Samsung provided its commercial 5G virtualized RAN solution, consisting of a virtualized Central Unit (vCU), a virtualized Distributed Unit (vDU), and radio units. The solution can provide mobile operators with improved efficiency,...


Dell'Oro: Total PON equipment revenue up 27% Y/Y

Total global revenue for the Broadband Access equipment market increased to $4.7 B in 3Q 2022, up 17 percent year-over-year (Y/Y), according to a new report from Dell'Oro Group. Spending on PON equipment continues to fuel the overall market, with revenue for PON OLTs breaking last quarter’s record of $1.3 B in the quarter.

“Thanks to a robust competitive environment and ongoing subsidization efforts, investments in new fiber broadband networks and equipment continue to grow,” said Jeff Heynen, Vice President with Dell’Oro Group. “It will be interesting to see if this momentum and resilience will carry into the fourth quarter and 2023, given the macroeconomic headwinds,” explained Heynen.

Additional highlights from the 3Q 2022 Broadband Access and Home Networking quarterly report:

  • Total XGS-PON ONT unit shipments exceeded 1 M for the second straight quarter, reaching 1.5 M worldwide.
  • Total cable access concentrator revenue was flat Y/Y at $259 M. Remote PHY devices and remote OLTs both reached record levels in the quarter, as cable operators continue to expand their DAA and fiber initiatives.
  • Total cable CPE units increased 5 percent Y/Y, as vendors were once again able to fulfill orders that had been backlogged for multiple quarters. Total revenue was up 9 percent Y/Y as higher-end DOCSIS 3.1 gateways are the percentage of total unit shipments.

https://www.delloro.com/news/

Dell'Oro: Double-Digit growth in N America’s Service Provider router market

Growth in North America and the Caribbean and Latin America (CALA) regions continued accelerating in 3Q 2022 leading the worldwide Service Provider (SP) Router and Aggregation Switch market 5 percent year-over-year growth, according to Dell'Oro Group.

“North America’s continued upward trend in 3Q22 was driven by SPs upgrading networks to gain the advantages of 400 Gbps technologies and expanding their networks to accommodate growing traffic. Demand for network capacity continues to increase, driven by 5G, IoT, pervasive video, and other technology trends,” said Ivaylo Peev, Senior Analyst at Dell’Oro Group. “From a worldwide perspective, solid revenue growth in the combined SP Edge Router and Aggregation Switch segment was partially offset by flat performance in the SP Core Router segment. The fast-growing adoption of Edge Router and line cards based on the newest ASICs, which support 400 Gbps connections and offer the highest available bandwidth, was the key reason for the Edge Router segment growth in 3Q 2022,” added Peev.

Additional highlights from Dell’Oro Group’s 3Q 2022 Service Provider Router and Switch Report:

  • High (double-digit) revenue growth in North America and CALA was diminished by declines in Europe, Middle East and Africa (EMEA), and Asia Pacific (APAC).
  • Market growth was strong in the SP Edge Router and Aggregation Switch segment, while the Core Router segment trended flat.
  • Supply chain constraints eased somewhat in the quarter, improving access to components and enabling SP Router vendors to work through some of their order backlogs.
  • Among the top five SP Router Suppliers, Cisco and Juniper recorded solid revenue growth, while Huawei and ZTE declined. Nokia had a strong quarter based on revenue reported in Euros (EUR), but the adverse exchange rate from EUR to U.S. dollars (USD) resulted in a revenue decline in USD.

Marvell launches secure 1.6T Ethernet PHY

Marvell Technology has begun sampling a 5nm 1.6T Ethernet PHY with 100G I/O capability, featuring built-in Media Access Control security (MACsec) and full support for Precision Time Protocol (PTP).

MACsec allows data center operators to enable hardware-based link-layer security and PTP enables Ethernet networks to support ultra-reliable timing- critical services. The X9340P and the previously announced Alaska C X93160 PHY together provide a pin-compatible, flexible platform for retiming, gearboxing, encryption and timing applications for speeds up to 800GbE.

Marvell's new "Alaska" X9340P is built on the company's PAM4-based 112 Gbps SerDes technology and delivers 40% lower power-per-bit compared to PHYs using 56Gbps PAM4-based SerDes technology. The Alaska C X9340P PHY incorporates the IEEE 802.1AE 256-bit MACsec capability in the PHY, providing for flexible encryption deployment while eliminating the cost and power burden of including this functionality in the switch ASIC. Marvell is supporting the Switch Abstraction Interface (SAI) driven by the Open Compute Project (OCP) on both the X9340P and X93160 devices to enable the vendor-independent control of networking equipment elements demanded by leading cloud data center customers.  

The new PHY also integrates support for PTP for timing-critical use cases in 5G and telecom applications. The stringent timing requirements of 5G networks and applications served by them are driving the timing accuracy that needs to be delivered by networks supporting these services. The inclusion of Class C PTP timestamping enables the support of sub-microsecond end-to-end clock synchronization accuracy needed for 5G Ultra-Reliable Low-Latency Communications (URLLC) services that enable mission-critical use cases such as industrial automation.

“100G PAM4 I/Os and 800 Gigabit Ethernet are the next leap forward for the industry,” said Venu Balasubramonian, vice president of product marketing, High Speed Connectivity and PHY Business Unit at Marvell. “Our newest 1.6T Alaska C PHY solidifies Marvell’s position as the silicon provider with one of the broadest and most advanced high-speed Ethernet PHY portfolios for cloud data center and carrier markets.

https://www.marvell.com/company/newsroom/marvell-extends-5nm-data-infrastructure-leadership-with-launch-of-secure-16t-ethernet-phy-for-cloud-and-5g-markets.html

Marvell intros 400G/800G PAM4 DSPs for Active Electrical Cables

Marvell introduced its Alaska A PAM4 DSP family for Active Electrical Cables (AECs) designed for data center interconnects by hyperscale customers.The new Alaska 400G/800G DSPs, fabricated in 6nm process, leverages Marvell’s PAM4 DSP technology to improve signal integrity in copper, short reach AECs to address emerging 100G/lane adoption in cloud data center interconnect architectures. The new Alaska 400G/800G DSPs add to Marvell’s comprehensive...

Marvell's Matt Murphy appoint chair of Global Semiconductor Alliance

 The Global Semiconductor Alliance (GSA) Board of Directors appointed Matt Murphy as its new chair.

Matt Murphy is President and Chief Executive Officer of Marvell Technology. He has led the company since joining in July 2016 and also serves as a member of its Board of Directors. Prior to joining Marvell, Matt worked for Maxim Integrated, where he advanced through a series of business leadership roles over two decades. Most recently, he served as Executive Vice President of Business Units and Sales & Marketing, overseeing all product development and go-to-market activities.

“I am honored to become Chair of GSA’s Board of Directors and look forward to partnering with my fellow Board members and other partners to further advance the global semiconductor ecosystem,” said Matt Murphy. “Semiconductors have proven to be an indispensable part of the global economy and there has never been a more important time for the entire ecosystem to come together and collaborate on a global level. The semiconductor industry continues to be a catalyst for technological progress and the world is counting on this group to fuel innovation like never before.”

https://www.gsaglobal.org/


Thursday, December 8, 2022

Joint Warfighting Cloud contracts for AWS, Google, Azure, Oracle

The U.S. Department of Defense awarded Joint Warfighting Cloud Capability (JWCC) contracts to Amazon Web Services (AWS), Google Support Services, Microsoft, and Oracle. 

JWCC is a multiple-award contract vehicle that will provide the DoD the opportunity to acquire commercial cloud capabilities and services directly from the commercial Cloud Service Providers (CSPs) at the speed of mission, at all classification levels, from headquarters to the tactical edge. 

This Indefinite-Delivery, Indefinite-Quantity (IDIQ) contract vehicle offers commercial pricing, or better, and streamlined provisioning of cloud services. With JWCC, warfighters will now have the opportunity to acquire the following capabilities under one contract:

  • global accessibility
  • available and resilient services
  • centralized management and distributed control
  • ease of use
  • commercial parity
  • elastic computing, storage, and network infrastructure
  • advanced data analytics
  • fortified security 
  • tactical edge devices 

https://www.hacc.mil/Blogs/Blog-Display/Article/3240370/joint-warfighting-cloud-capability-jwcc-contract-awarded/

U.S., Australia, Canada and U.K. seek Open RAN diversity

The governments of the United States, Australia, Canada and the United Kingdom issued a joint statement expressing their commitment to ensuring the security and resilience of  telecommunications networks, including by fostering a diverse supply chain and influencing the development of future telecommunications technologies such as 6G. 

The four nations further announced the endorsement of the Open RAN Principles, published by the United Kingdom in April 2022. 

The Open RAN Principles are consistent with the 2021 Prague Proposals and seek to help guide industry towards the characteristics that governments want Open RAN to deliver in order to maximise the benefits that it will bring. The four principles are:

  • Open disaggregation, allowing elements of the RAN to be sourced from different suppliers and implemented in new ways.
  • Standards-based compliance, allowing all suppliers to test solutions against standards in an open, neutral environment.
  • Demonstrated interoperability, ensuring disaggregated elements work together as a fully functional system - at a minimum matching the performance and security of current solutions.
  • Implementation neutrality, allowing suppliers to innovate and differentiate on the features and performance of their products.

The U.S. government plans to invest $1.5 billion to enable carriers to replace Huawei equipment and boost the adoption of Open RAN.

 Kristian Toivo, executive director, Telecom Infra Project, states “Operators and vendors are already deploying Open RAN equipment across the States, and this investment will incentivise wider scale deployments. Open RAN gives carriers more choice, innovation opportunities and improved economics, and will be vital for rural operators as they look to close the digital divide."

 “This funding helps tackle one of the hurdles of ripping out and replacing equipment. The next step is to provide MNOs with blueprints for how Open RAN can be deployed in different scenarios and use cases, to ensure that effective investments are made. TIP is already seeing significant demand and encouraging signs of collaboration within the industry to support MNOs across regions to realise the benefits of Open RAN."

https://www.ntia.doc.gov/press-release/2022/joint-statement-between-united-states-america-australia-canada-and-united

 FCC Chairwoman Jessica Rosenworcel notified Congress that providers have initially requested approximately $5.6 billion from the Secure and Trusted Communications Networks Reimbursement Program to cover the costs of removing, replacing, and disposing of insecure equipment and services in U.S. networks.“Last year Congress created a first-of-its kind program for the FCC to reimburse service providers for their efforts to increase the security...

Key provisions of the CHIPS and Science Act of 2022

The U.S. House of Representatives voted 243-187 to pass the CHIPS and Science Act of 2022. The legislation was approved by the U.S. Senate last week. President Biden is now expected to sign it into law.The principal aim of the CHIPS Act is to onshore domestic manufacturing of semiconductors. It will also substantially increase government funding for science and technology development programs impacting the networking and telecommunications fields. The...


Marvell samples its Spica Gen2 800Gbps PAM4 in 5nm

Marvell Technology has begun sampling its Spica Gen2 800Gbps PAM4 electro-optics platform.

The highly integrated Spica Gen2 platform is built on advanced 5nm process technology with companion transimpedance amplifiers (TIAs) and driver to deliver power savings and advance the transition to 800Gbps networking inside the data center. 

Key features of Spica Gen2 include:

  • Support for 1x800G, 2x400G, 8x100G Ethernet traffic with breakout
  • 25% power savings enabling <12-Watt 800G
  • CMIS compliant with advanced diagnostic features
  • Integration of enhanced optical modulator driver

Spica Gen2 Linear TIAs:

The IN5660TA is a 56GBaud octal channel, linear TIA for PAM4 optical modules. The IN5665TA and IN5669TA are each 56GBaud quad channel, linear TIA offerings. 

Features of the Spica Gen2 linear TIAs include:

  • Wide dynamic range to meet the different link requirements for optical applications
  • Best-in-class linearity, low noise for optimized platform performance
  • Low-power and in bare die form

Spica Gen2 Linear Driver:

The IN5614DV is a 56GBaud quad-channel, linear VCSEL driver for PAM4 optical modules. 

Features include:

  • VCSEL multimode fiber for AOC and transceiver
  • Excellent linearity, high bandwidth, adjustable gain to optimize the PAM4 system performance
  • Low-power driver in bare die form

Marvell said its Spica Gen2 extends the company’s leadership in 800G PAM4 DSPs, building on its Spica DSP announced in 2020 in 7nm as part of the industry’s first 800Gbps PAM4 electro-optics platform. Since that time, the Spica platform has been ramping in artificial intelligence (AI) applications as the demand for higher bandwidth networking infrastructure continues to increase. 

“There is an ever-increasing need for higher bandwidth, lower latencies, and reduced complexities in managing data center infrastructure,” said Xi Wang, vice president of product marketing, Optical Connectivity at Marvell. “With the introduction of the Spica Gen2 5nm optical PAM4 DSP, Marvell is continuing to innovate and enhance the power efficiency with the 800G electro-optics platform while increasing bandwidth in the data center, which is crucial to achieving green and efficient data center architectures. Spica Gen2 enables lower latencies, higher levels of integration, and simplifies switch port management for next-gen cloud data center optical interconnects.”

“Demand for optical technology is expected to grow 14% per year through 2027, primarily driven by the projected sales of 800G and 1.6T transceivers as cloud providers and carriers enhance their infrastructures to meet customer expectations,” said Vlad Kozlov, founder and CEO of Light Counting Market Research. “Spica Gen2 is part of Marvell’s effort to raise the bar in terms of performance, power and TCO to allow clouds to scale.”


Ciena reports sales of $3.63 billion, supply chain improvements

Ciena reported revenue of $971.0 million for its fiscal fourth quarter ended October 29, 2022, as compared to $1.04 billion for the fiscal fourth quarter 2021. Ciena's GAAP net income for the fiscal fourth quarter 2022 was $57.6 million, or $0.39 per diluted common share, which compares to a GAAP net income of $103.5 million, or $0.66 per diluted common share, for the fiscal fourth quarter 2021.

For fiscal year 2022, Ciena reported revenue of $3.63 billion, as compared to $3.62 billion for fiscal year 2021.

"Our strong fiscal fourth quarter financial results were better than expected as we benefited from some favorable supply chain developments in the second half of the quarter," said Gary Smith, president and CEO of Ciena. "Looking ahead, we expect to deliver outsized revenue growth in fiscal 2023 given our significant backlog and continued signs of gradual supply improvement. And, we remain confident that the durability of secular demand drivers and our strategic investments to expand our addressable market position us to deliver strong revenue growth over the next several years."

Some highlights:

  • Non-telco represented 38% of total revenue in fiscal Q4 2022
  • Routing and Switching revenue increased 39% YoY in fiscal Q4 2022, reflecting strong contribution from the recently acquired Vyatta platform and organic portfolio enhancements
  • Platform Software and Services increased 8% YoY in fiscal Q4 2022, representing 7% of total revenue.
  • GAAP R&D investment was approximately 17.2% of total revenue in fiscal Q4 2022
  • There were 776 100G+ total customers, which includes 17 new wins on WaveLogic Ai and 15 new wins on WaveLogic 5 Extreme


Broadcom reports Q4 revenue of$8.9 billion, infrastructure silicon remains strong

Broadcom reported Q4 revenue of $8.930 billion, up 21% from $7.407 billion for the same period a year earlier. Earnings per common share - diluted amounted to $7.83, compared with $4.45 a year earlier.

  •  Semiconductor solution sales amounted to $7.092 billlion compared with $5.634 billion a year earlier
  • Infrastructure software sales amounted to $1.838 billion compared with $1.773 billion a year earlier

"Broadcom's fiscal year 2022 revenue grew 21% year-over-year to a record $33.2 billion, as a result of strong demand from hyperscale, service providers, and enterprise," said Hock Tan, President and CEO of Broadcom Inc. "This growth was driven by our strong partnerships with customers and accelerated adoption of our next generation technologies. As we look into fiscal 2023, our increased R&D investments during the preceding years position us to extend our leadership in next generation products within the end markets we address."

"In fiscal 2022 we achieved record adjusted EBITDA margin of 63%, generating $16.3 billion in free cash flow or 49% of revenue, demonstrating our stable and focused business model," said Kirsten Spears, CFO of Broadcom Inc. "Consistent with our commitment to return cash to shareholders, we will resume our authorized share repurchase programs for the remaining $13 billion, and we are increasing our quarterly common stock dividend by 12 percent to $4.60 per share for fiscal year 2023. The target fiscal 2023 annual common stock dividend of $18.40 per share is a record, and the twelfth consecutive increase in annual dividends since we initiated dividends in fiscal 2011."

Cash from operations of $4,583 million for the fourth quarter, less capital expenditures of $122 million, resulted in $4,461 million of free cash flow, or 50 percent of revenue.

https://investors.broadcom.com/news-releases/news-release-details/broadcom-inc-announces-fourth-quarter-and-fiscal-year-2022

SpaceX carries OneWeb 1 mission to orbit

SpaceX launched 40 OneWeb satellites to low-Earth orbit from Kennedy Space Center in Florida using a Falcon 9 rocket.

The mission added 40 satellites to OneWeb’s 648 LEO satellite fleet, almost 80% of its first-generation constellation that will deliver global wholesale connectivity for its partners. This milestone mission marks OneWeb’s first time launching from Florida, where its satellites are also produced by OneWeb Satellites – a joint venture between OneWeb and Airbus. 

The launch will enable the company to significantly expand service and initiate additional connectivity solutions soon for partners across the U.S., Europe and much of the Middle East and Asia, representing all points north of the 35th parallel. The expansion of the OneWeb fleet will also enable coverage between the South Pole and the 35th parallel south, opening up connectivity services in Southern Australia, South Africa and parts of South America.

OneWeb’s connectivity solutions are already active in Alaska, Canada, the UK, Greenland and wider Arctic area to provide internet connectivity to unserved and underserved rural and remote communities and businesses.

OneWeb said it is on track to deliver global coverage in 2023.

The first stage SpaceC Falcon 9 booster previously launched CRS-24, Eutelsat HOTBIRD 13F, and one Starlink mission. Following stage separation, the first stage landed on Landing Zone 1 (LZ-1) at Cape Canaveral Space Force Station.

SGP picks Nokia's IP/MPLS for Grand Paris Express metro network

Société du Grand Paris (SGP) has selected Nokia's 5G-ready IP/MPLS multiservice, mobile core and radio access network (RAN) solutions to support the implementation of four automated train lines that link 200 kilometers of Paris and up to two million passengers a day. 

The Grand Paris Express, the future metro of Greater Paris, is the largest metro rail project in Europe. With 200 kilometres of rail network, the project includes the creation of four new lines (15, 16, 17 and 18) around Paris, the extension of line 14, the construction of 68 new metro stations and the development of new neighbourhoods around these future urban centres.

The Nokia solutions include a state-of-the-art, multi-service IP/MPLS high-speed network to support all Grand Paris Express operational and maintenance requirements. The private mobile radio solution is designed for operational communications and indoor/outdoor connectivity across all Grand Paris Express stations, lines and depots. Mission-critical application requirements across the four lines will be supported by the multi-service IP/MPLS network.

The contract builds on Nokia’s relationship with SGP following the deployment of an LTE network across three of the new Paris metro lines.

Matthieu Bourguignon, Vice President Enterprise Europe Sales at Nokia, said: “These projects provide critical high-speed connectivity and performance at all points within the new Grand Paris metro and its operations, giving SGP the highest levels of confidence in its end-to-end Nokia network. We are incredibly proud to be selected by SGP as a supplier and excited to deploy our world-leading wireless access, IP/MPLS routing and mobile core solutions as a part of this ambitious project to digitally transform one of Europe’s largest rail systems.”

https://www.societedugrandparis.fr

https://www.nokia.com/about-us/news/releases/2022/12/08/nokia-ip-and-private-wireless-chosen-by-societe-du-grand-paris-to-power-one-of-europes-largest-metro-rail-projects/

ADVA launches optical cesium clock for resiliency

ADVA launched its latest optical cesium atomic clock designed to protect synchronization networks from satellite signal interruptions while providing stability and lifetime holdover margins.

The Oscilloquartz OSA 3350 SePRC is a super ePRC that leverages optical pumping technology to deliver full high-performance frequency stability. When used with enhanced primary reference time clocks (ePRTCs), it delivers holdover of 100 nanoseconds for a minimum of 45 days and typically 55 days. In order to achieve the same performance with the market’s current solutions, users would need multiple magnetic cesium clocks. 

ADVA said its OSA 3350 SePRC provides optimum stability for ten years, a substantially longer lifespan compared with all other high-performance magnetic cesium clocks. 

“Across all nations, our well-being and safety are more dependent than ever on critical networks using satellite-derived synchronization. At the same time, this infrastructure has never been more exposed to risk. Mitigating this risk is a fundamental part of a PNT framework. That’s why we’ve created a solution that offers a new level of protection by holding accurate timing for far longer than any other available technology,” said Gil Biran, GM of Oscilloquartz, ADVA. “With the industry-leading holdover of our Oscilloquartz OSA 3350 SePRC™, operators can ensure that even when timing networks come under sustained GNSS cyberattack, the essential services we all depend on will continue to function.”

http://www.adva.com

CyrusOne aims for carbon neutrality by 2030

CyrusOne has pledged to become climate neutral by 2030, moving up its previous 2040 commitment by a decade.

To achieve this milestone, CyrusOne will continue to improve the energy efficiency of its new and existing data centers, procure renewable electricity at an accelerated rate to power the facilities, and investigate zero-carbon alternatives to traditional diesel backup generators. These efforts build upon the progress CyrusOne has already made, including achieving 100% renewable electricity across its full European portfolio starting in 2021.

“Our customers’ commitments to reduce their carbon footprints has inspired us to quicken our efforts,” said Kyle Myers, Vice President of Environmental Health, Safety, and Sustainability at CyrusOne. “It is becoming more and more evident that our previous target of climate neutral by 2040 was ambitious for its time, but is no longer ambitious enough. We not only plan to reach carbon neutrality by the end of this decade, but to do so while decreasing our water consumption in vulnerable regions.”

https://www.cyrusone.com

Keysight intros 5G automated service assurance probe

Keysight Technologies introduced a set of 5G solutions for automated service assurance, end-to-end quality of experience (QoE) and quality of service (QoS) verification, and active testing in private and public 5G networks. 

Keysight's solutions for maintaining QoE and QoS in 5G networks includes its Nemo Industry Probe, which supports early detection of issues such as interferences originating from multiple sources. Accumulated, these interferences in the network lead to QoS issues that adversely impact the efficiency of an operation.

Keysight combines the new Nemo Industry Probe with Nemo Cloud and Nemo Analyze to provide advanced capabilities that enable network operators to remotely monitor and visualize key performance indicators (KPIs) such as latency, data connection quality, voice and video quality, and data throughput. These measurements take into account issues such as interferences introduced by wideband noise from machinery and other radio frequency (RF) signals that user equipment (UE) may encounter in highly complex environments.

Keysight also introduces the new Keysight Nemo Active Probe, an advanced 5G network active remote monitoring solution that is ideal for large-scale deployments in fixed and mobile locations such as airports, stadiums, shopping malls, and train stations. The monitoring solution enables wireless service providers and national regulators to assure 24/7 operational network service, meeting service level agreements (SLAs) established to ensure adequate 5G connectivity levels.


In addition, Keysight offers a cohesive, software-focused portfolio of private 5G network lifecycle management solutions for advanced network visibility, end-to-end performance, and security assurance as well as network optimization across the protocol and application stack.


Matti Passoja, Head of Nemo Wireless Solutions at Keysight, said: "Keysight's new Industry 4.0 compliant active monitoring solution offers enhanced visibility into the state of a 5G private network from the perspective of the user equipment (UE). These new capabilities enable private 5G network operators to maintain continuous mission-critical levels of cellular connectivity in harsh indoor environments."