Intel and Google Cloud Announce Strategic Partnership to Accelerate Hybrid Cloud

Intel and Google Cloud to Develop Anthos Reference Design to Simplify Deployment Across On-Premise Data Centers and the Cloud

Intel and Google Cloud today announced a strategic partnership aimed at helping enterprise customers seamlessly deploy applications across on-premise and cloud environments. The two companies will collaborate on Anthos, a new reference design based on the 2nd-Generation Intel® Xeon® Scalable processor and an optimised Kubernetes software stack that will deliver increased workload portability to customers who want to take advantage of hybrid cloud environments. Intel will publish the production design as an Intel Select Solution, as well as a developer platform.

While organisations are embracing multi-cloud solutions to fuel their businesses, many companies remain challenged to find the right hybrid cloud solutions that enable seamless workload migration across clouds. The new Anthos reference design will address this challenge by delivering a stack optimised for workload portability, enabling deployment of applications across on-premise data centers and public cloud provider services.

“Google and Intel enjoy a long-standing partnership focused on delivering infrastructure innovation to customers,” said Urs Hölzle, senior vice president of Technical Infrastructure at Google Cloud. “Data centre environments today are complex, and hardware and software infrastructure is not ‘one size fits all.’ Our ability to collaborate with Intel and take advantage of their technology and product innovation to deliver Anthos solutions ensures that our customers can run their applications in the way that best suits them.”

“Our collaboration with Google in delivering the infrastructure and software optimisations required to advance their hybrid and multi-cloud solution is a natural fit with Intel’s vision for data-centric computing,” said Navin Shenoy, executive vice president and general manager of the Data Centre Group at Intel Corporation. “We’re delivering an Intel technology foundation for customers to take advantage of their data, and that requires delivery of architectures that can span across various operating environments. This collaboration will give customers a choice of optimised solutions that can be utilised both in the on-prem as well as cloud environments.”

This collaboration is an extension of a technology alliance between the two companies that already spans many infrastructure optimisations, collaboration on high-growth workloads like artificial intelligence, and integration of new technologies into the Google Cloud Platform, such as the 2nd-Generation Intel Xeon Scalable processors and Intel® Optane™ DC Persistent Memory.

The new reference design will be delivered by mid-year 2019 with expected solution delivery from OEMs and solutions integrators in market later this year.

Image –  Navin Shenoy, Intel executive vice president and general manager of the Data Centre Group, displays a wafer containing Intel Xeon processors during a keynote on Tuesday, April 2, 2019. In San Francisco on April 2, Intel Corporation introduces a portfolio of data-centric tools to help its customers extract more value from their data. (Credit: Walden Kirsch/Intel Corporation)

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Mini media converter is robust for security and transport applications

Mini media converters connect field-based equipment to Ethernet networks over long distances via fibre. The small form factor of the 9HMEC mini media converters mean they are small enough to be installed in the confined spaces provided by camera poles and street cabinets, and tough enough to operate in temperatures ranging from -40 to 70 degrees C, says AMG Systems.

The converters are rugged enough to withstand security and transport camera and device installations. They provide a 100Mbits per second or Gigabit Ethernet uplink across fibre via the SFP port, providing a hardened means of converting IP signals for transport over long distances across all types of fibre cabling. It is also cost-effective, says AMG.

Target applications are CCTV system is used for security applications, where it is essential that the video signal delivery. Another use is transport applications, which use monitoring cameras and critical signage.

The Mini media converters are DIN rail-mountable, so can be quickly installed and removed for maintenance. They are non-programmable so there is no need for any user configuration or computer-based set-up.

The converters offer an optional link fault forwarding (LFF) feature, which allows a pair of media converters to share their link status. Any associated subsequent copper or fibre link failure will result in both linked media converters disabling the copper links, ensuring that attached networking devices recognise the Link Fail status and thus do not forward data into what would otherwise be a data cul-de-sac.

AMG is a UK manufacturer, providing environmentally robust fibre, analogue, IP/Ethernet, wireless and hybrid communication transmission products. It can design and build a bespoke transmission system for a highly specialist application or manufacturing a complete range of ruggedised and hardened industrial Ethernet switches for the CCTV industry.

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Rohde & Schwarz provides test package for C-V2X protocol

Approval for Rohde & Schwarz’s cellular vehicle-to-everything (C-V2X) protocol conformance testing package, reassures customers that it fulfils the specification defined by the Global Certification Forum (GCF). The approval is based on tests executed using the CMW500 wideband radio communication tester and SMBV100A vector signal generator.

The GCF certifies the conformance of cellular handsets to ensure that handsets operate as specified with the wide range of base station hardware installed by network operators.

The organisation announced the inclusion of cellular (LTE) based vehicle-to-everything (V2X) and vehicle-to-vehicle (V2V) communication technologies within its certification program. This certification focuses specifically on LTE sidelink, an adaptation of core LTE standards (as defined in 3GPP Release 14) that allows communication between two or more nearby devices. It can be provided on any LTE band with the 5.9 GHz band allocated for intelligent transport system (ITS) services.

Rohde & Schwarz believes it is the first test and measurement equipment manufacturer to meet the GCF test platform approval criteria (TPAC) for C-V2V protocol conformance testing.

On the wireless communication side, the CMW500 wideband radio communication tester supports both LTE-A and WCDMA/HSPA+ technologies as well as performing LTE sidelink functionality testing on the communication link to the C-V2X module. It can be used in conjunction with the SMBV100A vector signal generator, which simulates the GNSS signals of global positioning services such as GPS, GLONASS, Galileo, and BeiDou. Implementation of the GCF-approved protocol tests are provided through the CMW-KK550 software package.

Rohde & Schwarz supports developers and engineers that are new to automotive C-V2X module testing and enables existing customers and test houses to leverage existing hardware to support C-V2X compliance testing through a simple software upgrade.

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eGaN FET family expands to include 3.8 milliOhm device

Efficient Power Conversion (EPC) has expanded it 100V eGaN® FET family, with the addition of the EPC2053. The 100V 3.8 milliOhm eGaN FET joins the EPC2045, EPC2052 and EPC2051 100V eGaN FETs.

The family is designed to offer 100V products suitable for a wide-range of power levels and price points to meet the increasing demands of 48V server, 48V automotive, and 54V data centre applications. The eGaN FET family includes single-stage 48V to load open rack server architectures, USB-C, precision motor drives, LED lighting, and lidar.

According to EPC, the latest generation of 100V GaN devices increase the efficiency, shrink the size, and reduce system cost for 48V power conversion.

GaN can be specified in artificial intelligence (AI), cloud computing, and advanced high-performance motor drives. In the automotive market, systems are moving from 12V distribution systems to 48V systems as autonomous vehicles integrate lidar, radar, camera, and ultrasonic sensors.

EPC adds that in all the topologies with 48V IN, the highest efficiency is obtained using GaN devices due to their lower capacitance and smaller size.

EPC believes that recent pricing decreases in GaN power transistors mean that the cost comparison with equivalent silicon-based converters “strongly favours the use of GaN devices in all leading-edge solutions”.

Two reference designs and five demonstration boards are available, including the EPC9138 demonstration board is a 400kHz switching frequency, 48V IN, 15A output current, buck converter featuring the 100V EPC2053. The EPC9141 demonstration board is a 400kHz switching frequency, 48V IN, 10A output current, buck converter featuring the 100V EPC2045.

Standard half-bridge development boards available to support easy in-circuit performance evaluation of each of the 100V family devices. The EPC9093 supports the EPC2053, the EPC9078 and EPC9205 support the EPC2045, the EPC9092 supports the EPC2052 and the EPC9091 supports the EPC2051.

All products and boards are available for order from Digi-Key.

http://www.epc-co.com

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