Thursday, February 11, 2016

AT&T Unveils 5G Roadmap - First Trials This Year

AT&T will begin 5G trials this year.  The first lab test with Ericsson and Intel will begin in Q2, followed by outdoor trials over the summer. 5G field trials to fixed locations in Austin will begin before the end of this year.

AT&T expects 5G to deliver speeds 10-100 times faster than today’s average 4G LTE connections. Customers will see speeds measured in gigabits per second, not megabits. 5G latency is expected to be in the range of 1 to 5 milliseconds.

“New experiences like virtual reality, self-driving cars, robotics, smart cities and more are about to test networks like never before,” said John Donovan, Chief Strategy Officer and Group President, AT&T Technology and Operations.

“These technologies will be immersive, pervasive and responsive to customers. 5G will help make them a reality. 5G will reach its full potential because we will build it on a software-centric architecture that can adapt quickly to new demands and give customers more control of their network services. Our approach is simple – deliver a unified experience built with 5G, software-defined networking (SDN), Big Data, security and open source software.”

AT&T said technologies such as millimeter waves, NFV, and SDN will be among the key ingredients for future 5G experiences. AT&T Labs has been working on these technologies for years and has filed dozens of patents connected with them.

Some additional notes:

Data traffic on AT&T’s wireless network grew more than 150,000% from 2007 through 2015, driven largely by video.
More than 60% of the data traffic on the AT&T network was video in 2015.
AT&T already has 14 million wireless customers on its virtualized network and will millions more this year.

http://about.att.com/story/unveils_5g_roadmap_including_trials.html

Qualcomm Announces First Gigabit Class LTE Modem

Qualcomm introduced its sixth-generation discrete LTE multimode chipset -- the Qualcomm Snapdragon X16 LTE modem, which is built on a leading-edge 14nm FinFET process -- and the Qualcomm RF Transceiver, WTR5975 - the world’s first single-chip RF IC supporting Gigabit Class LTE, LTE-U and LAA with 5 GHz unlicensed band support.

The Snapdragon X16 LTE modem represents the first instantiation of Qualcomm's new, advanced modem architecture and is the first commercially announced Gigabit Class LTE chipset designed to deliver fiber-like LTE Category 16 download speeds of up to 1 Gbps.  It supports up to 4x20 MHz downlink Carrier Aggregation (CA) across FDD and TDD spectrum with 256-QAM, and 2x20 MHz uplink carrier aggregation plus 64-QAM for uplink speeds up to 150 Mbps.

Qualcomm said this new architecture will enable it to rapidly evolve its modem product line to address a wide range of connected applications, ranging from ultra-fast mobile broadband to power-efficient connectivity for Internet of Things (IoT) devices.

The Snapdragon X16 LTE modem also supports Licensed Assisted Access (LAA), the global standard for LTE in unlicensed spectrum, becoming the mobile industry’s first commercially announced LTE Advanced Pro modem. LTE Advanced Pro, beginning with 3GPP Release 13, marks an important next phase for 4G that will expand the technology into new applications and usage models, establishing the foundation for unified and more capable connectivity platforms into the next decade.

The Snapdragon X16 LTE modem is designed to reach Gigabit Class LTE speeds using the same amount of spectrum as Category 9 LTE devices. By using carrier aggregation and 4x4 MIMO, the Snapdragon X16 LTE modem can receive 10 unique streams of data using only three 20 MHz carriers. Its support for 256-QAM boosts the peak throughput of each stream from ~75 Mbps to ~100 Mbps, with additional gains possible with modem data compression. Additionally, with support for LAA as well as LTE-U, this combination reduces the amount of licensed spectrum required – to 40 MHz or less – to vastly expand the number of operators that can deploy Gigabit Class LTE speeds around the globe.

In addition to the advanced connectivity feature sets, the new modem and transceiver support Snapdragon All Mode, including all major cellular technologies (LTE FDD, LTE TDD, WCDMA, TD-SCDMA, EV-DO, CDMA 1x, and GSM/EDGE), frequency bands, Carrier Aggregation band combinations, LTE dual SIM, LTE Broadcast, HD and Ultra HD Voice over LTE (VoLTE) with single radio voice call continuity to 3G and 2G.

“In addition to serving as a significant milestone for the mobile industry, the Snapdragon X16 LTE modem is a powerful testament to Qualcomm Technologies’ continued technology leadership in all things wireless,” said Cristiano Amon, executive vice president, Qualcomm Technologies, Inc., and president, QCT. “Not only does the Snapdragon X16 blur the lines between wired and wireless broadband, but marks an important step toward 5G as we enable deeper unlicensed spectrum integration with LTE and more advanced MIMO techniques to support growing data consumption and deliver an even faster and smoother user experience.”

Sampling is underway and the first commercial products are expected in second half of 2016.

https://www.qualcomm.com/news/releases/2016/02/11/qualcomm-announces-mobile-industrys-first-gigabit-class-lte-modem

IBM Cloud Receives DISA Impact Level 5 Authorization

The U.S. Defense Information Systems Agency (DISA) has authorized IBM Cloud services at the highest security levels – known as Impact Level 5 – for Controlled Unclassified Information as defined by the Department of Defense (DoD). This pavesthe way for DoD agencies seeking to take advantage of the innovations cloud can offer and manage sensitive data.

DISA has granted the company a Conditional Authority to Operate IBM Cloud services hosted at the Allegany Ballistics Laboratory (ABL) data center in West Virginia, which is owned by the Department of the Navy and leased by IBM.

IBM noted that it is the first cloud provider with a direct connection to the DoD's internal network known as the Nonsecure Internet Protocol Router Network (NIPRNet). The authorization granted by DISA will enable other DoD agencies the opportunity ultimately to streamline their authorizations by leveraging the thorough process DISA followed.

"Department of Defense agencies have the opportunity to embrace commercial cloud best practices and technology with the security of a government-owned facility," said Sam Gordy, General Manager for IBM Federal. "It will also provide DoD agencies with an ideal option to launch workloads in a hybrid cloud that can be easily integrated with their on premise systems. DoD is serving as a strong model to other cabinet level agencies in the federal government."

http://www.ibm.com

Qualcomm Shows Snapdragon Wear 2100 Processor

Qualcomm introduced its Snapdragon Wear 2100 processor for the next generation of wearable devices requiring always-on connectivity with low power usage for long battery life.

The processor is available in two versions: tethered (which uses Bluetooth and Wi-Fi) and connected. In the connected version, the processor’s next-generation LTE modem, which also includes low power Wi-Fi and Bluetooth, is engineered so users can stream music, answer calls, send messages, and much, much more, all directly via their wearable.

Some highlights:

  • CPU - Quad ARM Cortex A7 up to 800 1.2 GHz optimized for wearables
  • GPU - Qualcomm Adreno 304 GPU, OpenGL ES 3.0
  • DSP - Integrated modem DSP shared for modem, GNSS, sensor processing, keyword detection and audio
  • Audio - Fluence noise cancellation technology
  • Modem - X5 LTE
  • Global Mode - LTE FDD and TDD, WCDMA (DC-HSDPA, DC-HSUPA), TD-SCDMA, EV-DO and CDMA 1x, GSM/EDGE
  • Wi-Fi - 802.11n (2.4 GHz)


https://www.qualcomm.com/products/snapdragon/processors/wear-2100

Japan's Energia Comm Deploys G.fast with Nokia

Energia Communications (EneCom) is preparing the first commercial deployment of G.fast technology in Japan, initially in the Chugokua region starting in June 2016. The ICT service provider will use its existing copper networks to quickly deliver up to 1Gbps ultra-broadband access to residential subscribers.

The G.fast solution, developed by Nokia's Bell Labs, uses built-in vectoring technology to effectively reduce cross-talk interference that typically impacts data speeds over copper networks, enabling EneCom to achieve speeds close to 1Gbps.

The deployment includes:

  • The 7367 Intelligent Service Access Manager (ISAM) SX-16 which supports G.fast for multiple users and delivers 16 vectored G.fast ports in a climate-controlled and ruggedized housing unit
  • The 7368 ISAM CPE F-010G-P with non-blocking gigabit Ethernet connections for home devices
  • 5520 Access Management System which streamlines the management, configuration, maintenance and troubleshooting of the G.fast network 


http://www.nokia.com

Tokyo Institute of Tech and Fujitsu Labs Develop Very High-speed Wireless Transceiver

Tokyo Institute of Technology and Fujitsu Laboratories have developed a CMOS wireless transceiver chip that can process signals at high speeds with little loss across a broad range of frequencies, from 72 to 100 gigahertz (GHz). The researchers report record wireless speeds of 56 Gbps over a distance of 10cm.

Some highlights:

  • The high-speed wireless transceiver technologies use the millimeter-waveband (30-300 GHz), where there are few competing wireless applications, and which are capable of large-capacity communications. 
  • Tokyo Institute of Technology developed a technology for broadband, low-loss transceiver circuits in which data signals are split in two, with each converted to different frequency ranges, and then recombined (Figure 2). Each signal is modulated into a band 10-GHz wide, with the low-band occupying the 72-82 GHz range, and the high-band occupying the 89-99 GHz range. 
  • The technology enables modulation on an ultra-wideband signal of 20 GHz, with low noise and a similar range in the ratio between input and output power as existing 10 GHz band methods, which results in high-quality signal transmissions.
  • Fujitsu Laboratories and Tokyo Institute of Technology developed an interface between the circuit board and waveguide that uses a specially designed pattern of interconnects on the printed circuit board to adjust the impedance for the ultra-wideband range, enabling loss in the desired frequency range to be greatly reduced.

http://www.fujitsu.com/global/about/resources/news/press-releases/2016/0201-02.html

Nokia Reports Strong End to 2015, Market Uncertainty in 2016

Nokia reported Q4 2015 net sales of EUR 3.6 billion in Q4 2015, compared with EUR 3.5 billion in Q4 2014.  Full year 2015 sales were EUR 12.5 billion, compared with EUR 11.8 billion in full year 2014.

Rajeev Suri, President and CEO of Nokia, commented: "2015 was another year of dramatic transformation for Nokia and I am pleased that in the midst of all this change we were able to close the year with solid performances at both Nokia Networks and Nokia Technologies.

I was particularly pleased with our progress towards completing the Alcatel-Lucent transaction in the fourth quarter, culminating with the start of combined operations in early January. Our work as a combined company has gotten off to a strong start. Teams are preparing joint bids, we are working closely with our customers to ensure we can make fast and effective decisions about overlapping areas of our portfolio, and we are on target to deliver on our previously announced synergy savings.

While the competitive environment in Networks remained generally stable in the fourth quarter, we do expect some market headwinds in 2016 as 4G/LTE rollouts in China and some other markets start to slow. The first quarter, in particular, looks quite challenging as customers assess their CAPEX plans in light of increasing macro-economic uncertainty. In this environment, we will continue our sharp focus on operational and commercial discipline, ensure we deliver synergies as quickly as possible, and focus our energy on targeting the growth segments within the overall telecom market."

Some highlights:

Nokia Networks

  • 5% year-on-year net sales decrease in Q4 2015 and 3% net sales growth in full year 2015. On a reported basis, Greater China and Middle East & Africa were the strongest regions. On a constant currency basis, 12% year-on-year net sales decrease in Q4 2015 and 6% net sales decrease in full year 2015.
  • Non-IFRS gross margin of 39.6% in Q4 2015 primarily due to elevated levels of software in Mobile Broadband, partially offset by the absence of non-recurring intellectual property rights net sales which benefitted Q4 2014.
  • Non-IFRS operating margin of 14.6% in Q4 2015. Nokia Networks delivered full year financial results towards the high end of its original 2015 targets, with a non-IFRS operating margin of 10.9% in full year 2015, through strong operational performance and continued focus on execution excellence.

Nokia Technologies

  • 170% year-on-year net sales growth in Q4 2015 and 77% net sales growth in full year 2015. On a year-on-year basis, non-IFRS operating profit grew 318% in Q4 2015 and 102% in full year 2015, primarily related to the growth in net sales resulting from a settled arbitration. This was partially offset by higher non-IFRS operating expenses.

http://company.nokia.com/en/news/press-releases/2016/02/11/nokia-corporation-report-for-q4-2015-and-full-year-2015

Infinera is now on $1 Billion Annual Revenue Run Rate

Infinera reported Q4 2015 GAAP revenue of $260.0 million compared to $232.5 million in the third quarter of 2015 and $186.3 million in the fourth quarter of 2014. GAAP gross margin for the quarter was 44.5% compared to 44.2% in the third quarter of 2015 and 45.3% in the fourth quarter of 2014. GAAP net income for the quarter was $12.6 million, or $0.08 per diluted share, compared to $8.5 million, or $0.06 per diluted share, in the third quarter of 2015, and $8.4 million, or $0.06 per diluted share, in the fourth quarter of 2014.

GAAP revenue for the year was $886.7 million compared to $668.1 million in 2014.

"Our fourth quarter performance capped off an exceptional year of revenue and profitability growth, expansion of our product portfolio to serve the end-to-end market and the continuation of our commitment to deliver the Infinera Experience to our customers," said Tom Fallon, Infinera's Chief Executive Officer.

"With customers increasingly relying on optical transport as the foundation of their next generation networks, Infinera will continue to deliver the most innovative, scalable and programmable Intelligent Transport solutions in the industry. We exited 2015 on a $1 billion annual revenue run rate and are well positioned to address the significant future opportunities associated with this optical networking transformation."

http://investors.infinera.com/phoenix.zhtml?c=209747&p=irol-newsArticle&ID=2137819


CoreSite Posts 25% YoY Rise in Revenue for Data Center Services

CoreSite reported Q4 2015 revenue of $90.9 million, a 25.4% increase year over year and an increase of 5.3% on a sequential-quarter basis. CoreSite reported fourth-quarter net income attributable to common shares of $9.3 million, or $0.32 per diluted share.

Tom Ray, CoreSite’s Chief Executive Officer, commented, “We're pleased to report continued execution of our business plan in the fourth quarter, delivering solid growth and finishing out 2015 as another strong year for our company.” Mr. Ray continued, “In addition to our solid financial results for the fourth quarter, we finished 2015 and began 2016 with positive leasing momentum.

Some highlights:

  • CoreSite executed 155 new and expansion data center leases representing $8.9 million of annualized GAAP rent during the fourth quarter, comprised of 42,089 NRSF at a weighted-average GAAP rental rate of $211 per NRSF.
  • CoreSite’s fourth-quarter data center lease commencements totaled 54,329 NRSF at a weighted average GAAP rental rate of $172 per NRSF, which represents $9.3 million of annualized GAAP rent.
  • CoreSite’s renewal leases signed in the fourth quarter totaled $10.1 million in annualized GAAP rent, comprised of 49,561 NRSF at a weighted-average GAAP rental rate of $204 per NRSF, reflecting a 3.8% increase in rent on a cash basis and 6.7% increase on a GAAP basis. The fourth-quarter rental churn rate was 2.3%.


http://www.coresite.com

Infinera Appoints Head of Engineering

Infinera named Srikanth (Sri) Hosakote as senior vice president, head of engineering, responsible for leading the Infinera Systems Engineering organization.

Hosakote He has been involved in the development of industry-leading and disruptive products, including Cisco’s Carrier Routing System (CRS) core router and its Aggregation Services Edge Router ASR9000. Prior to joining Infinera, he was the executive vice president and general manager for cloud systems and solutions at Seagate. Prior to Seagate, Hosakote served in various leadership roles at Cisco Systems, including senior vice president for the switching business in the Data Center Group.

http://www.infinera.com


Wednesday, February 10, 2016

Cisco's ACI is on $2 Billion Annualized Run Rate

Cisco reported second quarter revenue of $11.9 billion, up 2% over the same period last year.  Net income (GAAP) was $3.1 billion or $0.62 per share, up 31% year-over-year.

"We delivered a strong Q2, and are managing the business extremely well in a challenging macro environment," said Chuck Robbins, Cisco chief executive officer. "We're managing the company on two fronts. We're focused on continued strong execution in the near term while investing in the innovation to lead our customers into the future."

Cisco's board of directors has also approved a $15 billion increase to the authorization of the stock repurchase program. Cisco's board had previously authorized up to $97 billion in stock repurchases.

Some highlights for the quarter:
  • ACI is on a $2 billion annual run rate.  Sales grew over 100% over the same quarter a year ago.
  • Product revenue growth was led by Security which increased 11%, and NGN Routing and Collaboration which increased 5% and 3%, respectively. Wireless was flat. 
  • Switching declined 4% to $3.483 billion
  • Data Center sales declined 3% to $822 million
  • Service Provider sales increased 5% while Enterprise sales declined 2%
  • There was double digit growth in cloud-based, SaaS businesses, including Webex, Meraki cloud networking, and security.
  • Service revenue growth was 3%. 
  • Revenue by geographic segment was: Americas and EMEA each up 1%, and APJC up 11%. 
  • Gross Margin -- On a GAAP basis, total gross margin and product gross margin were at 62.3% and 61.3%, respectively. 
  • Employee headcount was 71,657, compared to 70,112 a year earlier.

http://investor.cisco.com/investor-relations/overview/default.aspx

TeliaSonera IC Delivers 100G Internet to SUP46

TeliaSonera International Carrier (TSIC), in collaboration with Cisco Systems, is providing a 100 Gbps Internet connection to Stockholm-based start-up hub, SUP46.

TeliaSonera International Carrier owns and operates a top-two ranked Global IP backbone. Using a new generation Cisco ASR 903, SUP46 gets direct access to a 100 Gbps backbone router at the core of TSIC's global network, effectively turning their downtown Stockholm premises into a high-capacity Internet PoP (Point-of-Presence).

"We wanted to see what happens when you remove the limits on innovation," says Brendan Ives, CEO TeliaSonera International Carrier. "Innovation is already borderless thanks to the Internet. We wanted to see what happens when we also remove the limits on connectivity. We believe limitless connectivity will give big ideas the space to grow. Today's start-ups will be an important part of our customer base in the near future, so we are pleased to be able to support them now. It's all part of our mission to carry the big ideas of tomorrow."

http://www.teliasoneraic.com
http://www.sup46.com

KPN Deploys C-RAN for Small Cells

KPN has deployed a centralized radio access network (C-RAN) small cell solution from Ericsson at a bus stop on the Rembrandtplein in Amsterdam, Netherlands. The solution is equipped with Ericsson's new Radio 2203 offering and is fully integrated into the macro network using a centralized baseband deployment.

Ericsson said that using a common baseband provides optimal coordination between macro and small cells, and delivers the best-possible TCO, performance and spectrum utilization, which are key concerns when embedding small cells into an existing macro environment. Inter-site carrier aggregation is added between macro cells operating on 800MHz and small cells on 1800MHz. Seamless mobility is provided for users moving in and out of the small cell coverage area.

"The new 2203 is small and light and evolves the micro part of Ericsson's portfolio making it easier than ever to deploy small and efficient single and multi-band micro radio installations. This enables our customer to respond quickly to the growing demand for capacity from the consumers," Valter D'Avino, Head of Ericsson Western & Central Europe.

http://www.ericsson.com

Nokia Extends Mobile Fronthaul with 1830 WDM Solutions

Nokia has expanded its mobile fronthaul solution with new optical platforms designed to support large-scale centralized RAN architectures.

In centralized RAN architectures, baseband processing is separated from RF (radio frequency) equipment such as remote radio heads (RRHs) and run in a single location, allowing faster mobile broadband, increased capacity and lower operating costs. In addition to increased distance, the centralized RAN must designed to support massive bandwidth increases and much tighter latency requirements of future 5G networks.

Nokia's fronthaul rollout includes five new 1830 Versatile WDM Module (VWM) optical platforms optimized for latency/jitter requirements and designed to address a range of deployment scenarios:

  • 1830 VWM Photonic Managed Unit (PMU), an optical multiplexing unit for combining multiple wavelengths over a single fiber with management capabilities for Service Level Agreement (SLA) and demarcation.
  • 1830 VWM Translation Line Unit (TLU), a wavelength translation unit for colorizing non-WDM optical signals.
  • 1830 VWM Optical Supervisory Unit (OSU), an OAM unit for end-to-end network monitoring.
  • 1830 VWM TLU/PMU-4, a fully outdoor hardened unit combining multiplexing, colorizing and management functions for small cells.
  • Site Monitoring Module, provides proactive monitoring of alarms based on user-defined inputs at cell site locations with the ability to turn on/off appliances and devices.

Nokia said its solution increases fiber capacity by combining multiple wavelengths onto a single, reducing capital expenditures (CAPEX) by up to 32% compared to using dark fiber alone. The solutions support CPRI/OBSAI rates (CPRI 1-8 and OBSAI 1,2,4,8).

"Recognizing the need of mobile operators to move to centralized RAN architectures, we have been collaborating with some of the largest operators in the world to expand the 1830 VWM portfolio. Through 30-plus customer engagements, we've been able to develop a toolkit that will successfully tailor our fronthaul solution to fit any number of deployment scenarios. With this expansion of the 1830 family of optical products, Nokia further solidifies its Mobile Transport leadership with the industry's most comprehensive fronthaul and backhaul solutions," stated Sam Bucci, Senior Vice President and General Manager of Optical Networking at Nokia.

http://www.nokia.com

BT Trials Cloud RAN Fronthaul over G.fast

BT is testing G.fast technology to deliver a ‘Cloud Radio Access Network’ (C-RAN) cellular network service over copper, in an experiment believed to be a world first.

Researchers at BT’s Adastral Park Labs, in collaboration with Cavium, have demonstrated that they can use G.fast technology to deliver cellular data over copper lines at speeds of 150 – 200Mbps.

BT said the conventional view has been that fiber would be required in C-RAN architecture for connecting cellular base stations to a central facility in the core network. This approach uses G.fast over copper for the fronthaul connection.

Dr Tim Whitley, MD for Research & Innovation at BT said: “Using G.fast to deliver a cellular network is an exciting breakthrough for C-RAN and yet another world first for our team of researchers at Adastral Park.

“These technologies will play a key role in 4G networks and will be fundamental to 5G architectures. The trials are another step towards a fixed and mobile network which will support customers’ increasing demands for data.”

“We are very excited to collaborate with BT, using Cavium OCTEON Fusion-M basestation and ThunderX server processor technology to validate this new class of Radio Access application with G.fast technology.” said Raj Singh, General Manager of Cavium’s Wireless Broadband Group.

As well as exploring the role that G.fast may play in helping operators to roll out their 4G/5G networks, Openreach, BT’s local access network division, is also trialling G.fast as an access technology in Huntingdon and Gosforth, alongside a further BT technical trial in Swansea. G.fast is significant because by building on current Fibre-to-the-Cabinet (FTTC) technology, it allows Openreach to bring ultrafast speeds to a wide footprint far more rapidly and without the expense and disruption of running fibre directly into a home or business.

http://www.btplc.com/news/#/pressreleases/bt-trials-cloud-ran-over-g-fast-in-step-towards-5g-1312992

Arctic Wolf Offers Security Operations Center (SOC)-as-a-Service

Arctic Wolf Networks, a start-up based in Sunnyvale, California with offices in Ontario, Canada, is launching a Security Operations Center (SOC)-as-a-Service aimed at mid-sized companies.

The Arctic Wolf service provides a cloud-based security incident and event management (SIEM) application combined with a team of expert security engineers committed to the client's operational requirements.

The company said that for less than the salary of a single security engineer, its turnkey service can provide a fully operational cyber-SOC to mid-market companies and give them the peace of mind that comes from vigilant cybersecurity. Each customer is assigned a dedicated security engineer, who analyzes logs, weeds through the all alerts to eliminate false positives and conducts any necessary security forensics to definitively identify any breach or attack.  The AWN cloud, with its proprietary SIEM, expedites the process using its advanced machine learning capabilities and automated user behavioral analytics and integrates data from external threat feeds to proactively identify suspicious behavior.

“While working with nearly every Fortune 500 company as the CEO of Blue Coat, I saw first hand how large enterprises combatted cyber attacks with some of the most advanced SOC operations in the world and realized that this was what every company needed,” said Brian NeSmith, co-founder and chief executive officer at Arctic Wolf.  “AWN cyber-SOC is based on this experience and is specifically designed to deliver affordable, enterprise-class SOC services to companies of any size.”

http://arcticwolf.com/

  • Arctic Wolf Networks has raised $27.2 million and is backed by Lightspeed Venture Partners and Redpoint.
  • Arctic Wolf is headed by Brian NeSmith, who previous was CEO of Blue Coat Systems. Before that, he was the CEO of Ipsilon Networks (acquired by Nokia). 

Wave2Wave Launches Robotic Optical Switches for Data Centers

Wave2Wave Solution introduced a line of robotic optical switches for automating physical fiber connections in high-density data centers.

The Wave2Wave "ROME" Robotic Optical Management Engine platforms, which are offered in three sizes, enable full control of physical fiber connections, allowing changes to be made automatically, remotely, quickly, and without manual intervention.  The robotic systems are designed in 19-inch chassis. The company said its system can be integrated with Software-Defined Networking (SDN) or network management software.

“Today’s digital trends are putting pressure on data centers, and even more pressure on the network architects who design and upgrade them,” said David Wang, founder and CEO of Wave2Wave. “ROME is a game-changing tool. It reduces the physical cabling in the traditional data center infrastructure by more than 10 times, allowing flexibility, intelligence and control that never existed before.”

ROME 500 is now available worldwide, and ROME 1000 and 2000 will become available in the second half of 2016.

http://www.wave-2-wave.com/

Verizon to Test SpiderCloud's LTE-U

Verizon will trial SpiderCloud Wireless' LTE-U system for delivering capacity over unlicensed spectrum in high-density indoor environments.

LTE-U (LTE-Unlicensed) uses the unlicensed 5GHz band to increase throughput via carrier aggregation with licensed bands.

SpiderCloud said its LTE-U Enterprise Radio Access Network (E-RAN) can deliver LTE capacity over licensed and unlicensed spectrum to thousands of subscribers in high-density venues such as multi-tenant business offices, shopping malls, hospitals, university campuses and concert halls. Its centralized co-existence manager self-organizing network (SON) software enables its system to coexist with hundreds of ad-hoc Wi-Fi access points. Verizon will trial SpiderCloud’s LTE-U system in the third quarter of 2016.

http://www.spidercloud.com

Hortonworks Sees Q4 Revenues Rise 196%

Hortonworks reported revenue of $37.4 million for the fourth quarter of 2015, an increase of 196 percent compared to the fourth quarter of 2014. Gross billings were $52.1 million for the quarter, a 63 percent increase over gross billings of $31.9 million in the same period last year. There was a GAAP gross profit of $21.7 million for the fourth quarter of 2015, compared to gross loss of $46.2 million in the same period last year.

"We are pleased with our fourth quarter performance, which was highlighted by support subscription revenue growth of 146% year-over-year," said Rob Bearden, chief executive officer and chairman of the board of directors of Hortonworks. "We more than doubled our customer base in 2015 and exited the year with over 800 customers. As evidenced by our 159% dollar-based net expansion rate over the trailing four quarters, we are excited to serve as the preferred IT partner during this transformational period in the data management industry."

http://www.hortonworks.com

Tuesday, February 9, 2016

Coriant Offers Converged IP-Optical for Mobile Backhaul

Coriant is introducing an IP-Optical solution for mobile backhaul evolution in LTE and LTE-A networks.

Specifically, Coriant is combining its 8600 Smart Router Series, which is widely deployed in Tier 1 mobile networks, with optical layer capabilities to deliver an enhanced multi-layer solution with SDN programmability features.

The company said tighter coupling between the IP and optical domains will enable mobile operators to address key challenges as LTE/LTE-A networks evolve over time to support the stringent performance requirements of 5G. These challenges include an approximately 20-fold increase in end-user data rates (up to 10Gpbs) compared to LTE/LTE-A, ultra-low latency of 1msec round trip, and ultra-dense deployments that will set unprecedented requirements for synchronization of cells sites as small and overlapping cell sites proliferate.

Some highlights of the Coriant multi-layer solution include:

  • Synchronization – optimized for ultra-dense small cell architectures and CoMP/MIMO transmission environments, Coriant’s suite of integrated synchronization capabilities (frequency, time-of-day, phase) supports the stringent end-to-end synchronization demands of LTE-TDD, LTE-A, and 5G-ready networks.
  • Enhanced IP-Optical Layer Optimization – to support cost-efficient scalability in evolving backhaul networks, Coriant is extending the reach and cost/performance benefits of optical layer transmission with the introduction of colored interfaces on its 8600 Smart Routers. In addition, the 8600 Series is designed to support interworking with Coriant’s newly introduced Pluggable Optical Layer.
  • LTE-A/5G-optimized Scalability – from cell site access at 10G to multi-terabit switching and transport in aggregation and metro core applications, the Coriant IP-Optical Solution delivers optimal capacity-, space-, and power-efficient scalability across the mobile backhaul network. By extending optical layer connectivity closer to the mobile edge and maximizing lowest cost-per-bit optical transport, the Coriant multi-layer solution can help network operators cost-efficiently address current LTE-A capacity and performance demands, while creating the scalable foundation for the massive scalability requirements of future 5G services and a world of highly distributed Internet of Things (IoT) applications.
  • Multi-layer SDN Automation – powered by the Coriant Transcend SDN Solution, which includes a recently introduced SDN packet controller, the Coriant IP-Optical Solution enables multi-layer and multi-domain SDN automation and control for optimal utilization of network resources, improved reliability, and simplified end-to-end provisioning. 

“Recent industry research has reinforced the critical challenge that mobile backhaul networks face as they brace for the new scalability, latency, and synchronization requirements of 5G,” said Mikko Hannula, Director of Product Management, Coriant. “Optimizing the value of both the IP and optical layers with purpose-built solutions and ensuring world-class synchronization will enable network operators to scale cost-efficiently as they transform mobile backhaul networks to support a new era of mobile broadband and cloud connectivity.”

http://www.coriant.com