Industry’s first Grandmaster to provide high-speed network interfaces up to 25 Gbps

The operators of critical infrastructure market segments such as 5G telecommunications, power utilities and transportation need to continuously upgrade their networks with technology capable of delivering higher processing speeds and highly accurate time sources that are not dependent on the Global Navigation Satellite System (GNSS) constellations like GPS, GALILEO and QZSS. To provide network operators a terrestrial alternative for distributing very accurate time, Microchip has announced the new TimeProvider 4500 grandmaster, a hardware timekeeping platform that provides high-speed network interfaces up to 25 Gbps and enables precise time accuracy of less than one nanosecond.

The TimeProvider 4500 grandmaster is capable of supporting very-high-capacity Precision Time Protocol (PTP) transactions. The innovative hardware platform enables higher IEEE-1588 scalability for thousands of clients. In network locations where range and capacity need to be balanced, namely in C-band 5G deployments, it is critical to be able to serve thousands of gNodeB from a single grandmaster. Depending on the specific sites, the grandmaster could serve very few or a large number of gNodeB base stations. This results in cost-effective and flexible deployments for operators regardless of scale.

The TimeProvider 4500 grandmaster offers the flexibility to connect to various generations of network elements, which helps to preserve operators’ infrastructure investments. The TimeProvider 4500 clock is the first 1588 grandmaster with 25 Gbps support. A customer can connect the TimeProvider 4500 clock to various network devices using a choice of 1 Gbps, 10 Gbps or 25 Gbps network links. High-speed bandwidth is essential as network element upgrades are migrating towards equipment that requires a minimum of 10 Gbps and, in some cases, up to 100 Gbps.

The extremely high time accuracy of the TimeProvider 4500 grandmaster is particularly important as operators are trying to deploy alternative solutions to GNSS.

A terrestrial option is often considered an attractive solution that can leverage existing optical network deployments to avoid the reliance on GNSS, thus providing a cost-effective way of transferring highly accurate time over long distances. The need for long-distance transfers translates into a requirement for ever- increasing accuracy needs at the source and regeneration of the time signal.

The TimeProvider 4500 grandmaster features new hardware assist enhancements, such as the latest generation of digital synthesiser and Microchip’s PolarFire SoC FPGA. These platform enhancements enable the system to move into the picosecond time accuracy realm.

“Microchip continues to develop new and innovative time and frequency solutions for critical infrastructure. We designed the TimeProvider 4500 clock to deliver tighter timing accuracy on existing optical network environments without the need for costly upgrades or dedicated dark fiber,” said Randy Brudzinski, vice president of Microchip’s frequency and time systems business unit. “This solution is also the first grandmaster with high-speed data processing up to 25 Gbps, enabling connectivity with the newest network elements in deployments.”

The advanced hardware platform of the TimeProvider 4500 clock supports all the features of the TimeProvider 4100 clock to ensure that operators deploying the new product can also benefit from their investments in the TimeProvider 4100 series. TP4500 adds specific capabilities above and beyond TP4100 due to its enhanced hardware platform.

The TimeProvider 4500 grandmaster is integrated with the TimePictra synchronisation management solution that enables operators to monitor and track real-time troubles and threats with visibility across their entire network. Other key functions of the TimePictra platform include comprehensive Fault, Configuration, Accounting (Inventory), Performance and Security (FCAPS) management functions; geographical topology and domain navigation; user preference dashboard customisation, intuitive web GUI for easy management and more.

https://www.microchip.com

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New 10A relays from Omron, with high dielectric strength and extended safety certification

Omron has extended its relay portfolio with the introduction of its G6RN-E, for heat pumps, smart building, factory automation and energy applications. The latest model provides current load to 10A, with extended dielectric strength to 6000VAC, high sensitivity with 220mW coil power consumption.

The new G6RN-E relays provide greater safety, conforming glow-wire test requirements for household and similar electrical appliances to IEC/EN60335-1 and conforming to explosion-proof certification IEC/EN60079-15. Fulfilling international safety standards for resistance to ignition. This makes them ideal to ensure the safety of air conditioning equipment such as air conditioners and heat pumps.

G6RN-E relays introduce a flux protection housing, offering 6000VAC dielectric voltage between coil and contact. Further features include a high insulation with an 8mm insulation distance, robust impulse withstand voltage of 10kV between coil and contacts, high sensitivity with 220mW coil power consumption, and ambient operating temperature of 85°C and the standard model conforms to UL, VDE standards. Conformity to recommended building and factory automation applications extend to heat pump controllers and inverters, as well as gas boilers, temperature controllers and PLC. Terminal arrangement and contact ratings are the same as existing Omron G6RL relays with same pin.

https://www.omron.com

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Nexperia introduces Energy Balance Calculator for enhanced battery life optimisation

Nexperia have announced the release of the Energy Balance Calculator. A powerful web-based tool designed to assist battery management engineers in maximising the battery life of their applications. The calculator facilitates the integration of Nexperia’s Energy Harvesting PMICs into their systems by providing engineers with precise data for informed decision-making.

At the core of Nexperia’s Energy Harvesting PMICs is the Maximum Power Point Tracking (MPPT) algorithm, enabling efficient energy harvest from the environment for various consumer electronics and IoT devices. To utilise these PMICs at their full potential, the calculator works with real-world technical parameters. It calculates the energy delivered to the load and the energy compensation. Thus, offering insights into potential battery life extension or achieving energy autonomy. Engineers can furthermore visualise system efficiency and precision through an efficiency curve provided by the tool.

“We are proud to introduce the Energy Balance Calculator, reaffirming our commitment to empowering engineers in enhancing system efficiency and combating battery waste. This tool allows engineers to make informed decisions ensuring optimal utilisation of our energy harvesting solution and extending the lifespan of electronic devices,” says Javed Ahmad, Senior Director of Product Management for IC Solutions at Nexperia.

Nexperia’s energy harvesting solutions system enable engineers to rethink their designs for wireless IoT nodes, wearables, smart tags, and electronic shelf labels to be more environmentally sustainable, economical energy harvesting from various ambient sources in applications consuming up to several milliwatts of power.

https://www.nexperia.com/energy-balance-calculator

Written by Annie Shinn

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Kontron announces KISS Rackmount PC in 1U format with high performance and energy efficiency

Kontron has announced the KISS 1U V4 ADL Rackmount PC, a compact member of the KISS product family for demanding industrial applications. The robust and space-saving 1U industrial computer scores with a motherboard developed and manufactured in Germany based on 12th/13th generation Intel Core processors and thus with more performance, increased reliability and better energy efficiency. This makes it particularly suitable for use in demanding industrial environments, as well as for high-end image processing and SCADA/MES applications, but also in person-related areas such as control technology and medical environments.

The powerful systems of the KISS V4 ADL series are based on Kontron motherboards with Intel Core i9/i7/i5/i3 processors of the 12th/13th generation with up to 24 cores. Two GbE ports, one with up to 2.5 Gb/s and eight external USB ports including USB-C ensure high data throughput and connectivity. Two DIMM sockets, each with up to 64 GB, provide sufficient RAM. Equipped with DDR5 UDIMM memory, a significant increase in performance is also achieved. A wide range of internal and hot-swappable external storage media enables customized systems for any application.

A particularly compact and powerful system is now available for the industrial automation, video surveillance and medical technology markets in particular, which opens up a new dimension in graphics applications with its four DisplayPort interfaces. Powerful power supply units are also available for AI and machine learning applications, allowing the installation of high-end GPU cards.

Like all members of the new KISS family, the KISS 1U V4 ADL also supports the highest security standards and allows real-time applications for control tasks in the control cabinet or data consolidation in the local cloud thanks to TSN features.

The entire KISS product family meets high requirements in extreme environments: Thanks to the effective cooling concept, the rackmount system can withstand ambient temperatures from 0 °C to +50 °C during 24/7 continuous operation. The high shock and vibration resistance also predestines the KISS V4 ADL series for robust industrial applications.

Customer-specific adaptations, such as individual front covers, can be implemented quickly and cost-effectively thanks to the modular concept, even for small and medium quantities.

https://www.kontron.com/en/products/kiss-1u-v4-adl/p183444

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