Showing posts with label EU. Show all posts
Showing posts with label EU. Show all posts

Tuesday, 21 October 2025

Safety and compliance of 5G wireless devices.

The functions of Anritsu's new Radio RF Conformance Test System ME7873NR have been enhanced to support 5G wireless device conformance tests and compliance with the ETSI* EN 301 908-25 standard under the European Radio Equipment Directive (RED).

By using these enhanced functions, manufacturers can ensure regulatory compliance for 5G wireless devices sold in the EU and guarantee product quality and reliability. Anritsu is dedicated to supporting smooth market entry for products into the EU.

RED is an EU legal framework defining the safety, electromagnetic compatibility (EMC), radio-spectrum efficiency, and cybersecurity requirements of wireless devices in the EU. With the spread of wireless technologies, such as 5G, the ETSI EN 301 908-25 standard for 5G NR devices has been established based on 3GPP Release 15 regulating 5G specifications, and wireless products now sold in the EU must comply with this standard.

Through this latest enhancement, Anritsu continues to play a key role in deployment of commercial 5G services, helping create a 5G-empowered society.

Product overview.
The New Radio RF Conformance Test System ME7873NR is a 5G test platform compliant with 3GPP standards and is certified by both the Global Certification Forum (GCF) and PCS Type Certification Review Board (PTCRB).

In addition to supporting Frequency Range 1 (FR1, Sub-6 GHz), combining the system with an OTA (CATR) chamber*2 adds support for Frequency Range 2 (FR2, mmWave). The flexible configuration and customizable design provide an upgrade path from current ME7873LA systems, offering enhanced 5G compatibility at a lower capital cost.


ETSI European Telecommunications Standards Institute. A non-profit organization promoting international standardization of European information and communications technology.

@Anritsu @AnritsuEMEA @ETSI_STANDARDS @NapierPR #Communications  #TandM #EU

Tuesday, 10 June 2025

Major innovation and research for Irish region.

Connecting with industry for research and collaboration.

Technological University Dublin (TU Dublin) has launched a transformative €13.6 million initiative, ARISE – Amplifying Research and Innovation Supporting Enterprise, which aims to revolutionise the way Irish industry and small and medium-sized enterprises (SMEs) access research, innovation, and expert support. Funded by the European Union and the Government of Ireland, ARISE is designed to catalyse economic growth and competitiveness in the Eastern and Midlands Region by bridging the gap between academic research and real-world industry challenges.

The programme offers industry access to TU Dublin’s cutting-edge facilities, Ireland’s largest concentration of academic researchers in a technological university, and a team of innovation specialists who will help businesses improve processes, develop new products, and build resilient, future-proof operations. ARISE focuses on five key sectors that are crucial to Ireland’s innovation economy:

  • Biopharma, Life Sciences and Medical Technologies
  • Advanced Manufacturing and Engineering
  • Food, Agritech and the Bioeconomy
  • ICT and Financial Services
  • Audio-Visual, Creative and Cultural Industries.

ARISE will play a critical role in promoting regional economic resilience, especially in the Eastern and Midlands Region, which has a diverse mix of urban hubs and rural communities. By embedding innovation support in these regions, TU Dublin is helping to level the playing field for industry, particularly SMEs outside traditional tech clusters.


@WeAreTUDublin #Research #Innovation

Thursday, 15 August 2024

Industrial network security.

LAN Firewalls enable industrial operators to overcome networking challenges, ensuring both network security and uptime.

Because of their frequency, cyberattacks on critical infrastructure are no longer the sensational news they once were. However, these types of cyberattacks heavily impact communities and businesses closely tied to critical infrastructures, such as power substations, intelligent transportation, and water treatment.

To mitigate the impact of cyberattacks, governments worldwide are implementing laws and regulations to strengthen cybersecurity for critical infrastructure. For example, by October 2024, EU members are required to incorporate the NIS2 Directive into their national laws to strengthen cybersecurity for critical infrastructure. Therefore, industrial organizations need to adopt a comprehensive cybersecurity framework and implement robust solutions to meet these standards and regulations.

Defense-in-depth Strategies.
Typically, industrial cybersecurity standards and regulations recommend defense-in-depth strategies, which involve implementing multiple layers of protection to limit security risks for organizations. Industrial operators will concentrate on fortifying network boundaries and establishing security zones to minimize potential threats from external access.

However, addressing internal threats is just as critical because internal devices without protection can compromise an entire network. For instance, plugging in a portable storage device that carries malware can compromise a network and have it controlled by bad actors. Thus, protecting the network from internal and external threats is of utmost importance. Industrial firewalls effectively filter traffic to prevent potential threats from internal and external access. However, industrial operators usually have concerns about network performance when deploying industrial firewalls in LANs near critical assets.

here the focus on four concerns faced by various stakeholders— asset owners, chief information security officers (CISOs), system integrators, OT network administrators, and industrial network design experts—when implementing firewall solutions. Also highlighted is how next-gen industrial LAN firewalls overcome these challenges to strengthen network security and ensure uninterrupted network operation.

Four Worries When Implementing Firewall Solutions.
Although implementing firewall solutions increases the security level of industrial operations, these changes can affect current operations. Striking a balance between network security and performance is challenging. 

1: Adding New Devices Requires Changes to Existing Networks.
Deploying industrial firewall solutions into existing networks can lead to significant network topology changes. Redesigning the topology and reconfiguring IP subnets to integrate the new firewall solution into existing networks will demand substantial efforts and time from industrial engineers. This is particularly difficult for critical applications that cannot afford any network downtime. Therefore, industrial operators need a firewall solution that does not alter their present network configuration.
2: Adding New Devices Affects Network Performance and Services.
Seamless system operations rely on smooth network communications. The big worry when adding new devices to enhance cybersecurity is whether they meet current network performance standards, such as boot time, network latency, and operating environment needs. Furthermore, the addition of new devices raises the likelihood of network downtime caused by maintenance or device malfunctions. Therefore, a firewall solution must prioritize network performance and mitigate the risk of complete shutdown from a single point of failure.
3: Protecting Many Legacy Devices at Field Sites Is Challenging.
Standards such as IEC 62443 and frameworks like NIS2 require critical assets to protect against DoS attacks and maintain event logs during incidents. However, many critical assets in industrial applications are legacy devices that usually use older versions of operating systems and cannot be replaced right away to meet these network security requirements. To safeguard legacy devices from growing threats, a firewall solution is required that doesn’t require frequent system updates. Moreover, a significant number of legacy devices at field sites use diverse industrial communication protocols for different application needs. For improved communication security, a firewall solution needs to support these protocols and conduct detailed data analysis in industrial control networks.
4: Monitoring Networks and Cyberthreats Is Not So Simple.
To ensure the safety of networks, constant monitoring and management of network security is crucial. It requires a lot of time and effort for administrators to keep their eyes on the network status, making sure they receive real-time notifications when a network error or security event occurs. The absence of an effective monitoring mechanism for firewall solutions leads to delays in network error notifications and security event alerts, resulting in extended network downtimes and compromised operational performance.

Maximize Industrial Network Security and Uptime.
With Moxa EDF-G1002-BP Series LAN firewalls, industrial operators can overcome networking challenges, ensuring both network security and uptime. Operating in transparent firewall mode, the Moxa LAN firewall prioritizes safeguarding critical assets and facilitating secure east-west communication within the LAN.

Simplified Installation.
The nature of the LAN firewalls allows the deployment of firewalls without reconfiguring IP subnets. Such designs are perfect for those critical applications that cannot afford to change their existing network topology. To simplify network installations, these 2-port LAN firewalls allow bump-in-the-wire installations so that engineers can simply connect these LAN firewalls in front of critical assets without reconfiguring IP subnets. This way, the LAN firewalls ensure minimal disruption to existing configurations and enhance network security.

The Moxa EDF-G1002-BP Series
is an industrial-grade LAN firewall
Optimized Network Uptime.
It only takes 30 seconds of boot time to enable Moxa LAN firewalls. This quick boot time ensures that during a power outage and subsequent restoration the anomaly detection mechanism between the control center and terminal PLC equipment does not trigger mistakenly. Also, Moxa LAN firewalls have a LAN Bypass function that prevents hardware or software anomalies from causing the firewall to interrupt operational services. Both mechanisms aim to achieve uninterrupted operations.

Legacy Device Protection.
Making it easy to protect legacy devices is the core mission of Moxa LAN firewalls. They are designed for industry use, incorporating an intrusion prevention system (IPS) and deep packet inspection (DPI) technology to strengthen network security. Industrial-grade IPS designs ensure the security of legacy devices, including PLC and HMI. Moxa IPS functions safeguard legacy devices from current threats using virtual patches and pattern-based protection, allowing additional time to update systems. Moxa DPI technology provides greater control over the security of industrial communications. To maintain data integrity, rules can be defined that limit Modbus equipment to read-only access, for instance. Legacy devices can be safeguarded using different protocols and benefit from DPI technology’s support for multiple industrial protocols and advanced traffic filtering capabilities.

Simplified Network Management.
Using Moxa LAN firewalls to secure network and legacy devices will simplify network monitoring and security management, along with Moxa MXview One network management software and MXsecurity network security management software. MXview One software provides a holistic view of network security status and notifies users when a network error occurs. With MXsecurity software, users can effectively manage firewalls and monitor security events. Implementing firewall policies on a centralized platform minimizes manual errors in individual configurations. Furthermore, Moxa software notifies users of security events for quick responses and risk mitigation.

 


@Moxa_Europe @Cybersec_EU @DigitalEU @OConnellPR #PAuto #Cybersecurity #LAN

Monday, 27 November 2023

Components for Europe without hassle.

The Anglia Live eCommerce platform is being enhanced to serve the European Union (EU) marketplace, following a major investment in its logistics infrastructure and website. It will offer a standard two day service from its British distribution centre, DDP (Delivered Duty Paid) shipped by FedEx through its Paris hub, with invoicing available in multiple currencies. In the past 5 years Anglia has consistently grown faster than the market by offering exceptional service and stock levels. It aims to replicate this model in other EU countries via its Anglia Live service.

Karen Ward
Karen Ward, Commercial Director commented, “Anglia can compete on price, availability and delivery with any of our competitors, and we have identified there is a gap in the market for a Europe-wide digital distributor offering a competitive service from locally held inventory. Invited by major franchises to bring our service to Europe, it was an opportunity we simply could not say no to.”

She added, “We invest heavily in inventory supported by smart AI algorithms which have been developed by our team of in-house software engineers. Now customers throughout Europe can experience the benefits of our approach.”

Anglia’s premier delivery partner FedEx will deliver duty paid throughout Europe within two days offering a service with a lower climate impact. Customers can place orders in Euros or US Dollars. Orders placed before 17:00 (CET) Monday to Thursday and 12:30 (CET) on Friday will be despatched same day, there is no minimum order value and orders over €50/$60 will have free DDP delivery, orders below these values attract a €20/$30 service charge.

Customers will enjoy real-time visibility of stock and stock due in, which is not already committed – something which some competitors are unable to do. Other features are a comprehensive parametric search engine, industry standard cross-reference and all product change or termination notifications (PCN / PTN). Products have full lot traceability back to the manufacturer’s pack, even in broken pack quantities such as cut tape and ready reel formats.

Anglia currently supports more than 10K customers and its recently unveiled £2 million expansion of its British distribution centre will allow it to reach a further 150K customers. The new facility increases the overall inventory storage space by 40%. Anglia plans to hit £100 million turnover this year with a strategy to grow organically by 50% in the next five years, excluding of course any acquisitions.


@angliaComponent @NapierPR #PAuto #Components #Europe

Friday, 23 June 2023

DC energy meter for EVs.

LEM will use PCIM 2023 to give the global e-mobility market advance notice of its new DC energy meter for DC wallbox chargers of electric vehicles (EVs). Offering compliance to the latest metrology regulations, the DCBM 100 energy meter will be introduced to the EU market in Q3 this year.

Florent Balboni
“Rapid deployment of new products and technologies is crucial to meet the diverse demands of EV charging applications,"
says Florent Balboni, LEM Global Product Manager for energy metering solutions. "Ensuring fairness and transparency for all users, kWh-based billing is essential for technology acceptance. DC meters must therefore be tailored to EV charging applications such as DC wallboxes which will play a significant role in charging infrastructure and the development of advanced V2G services.”
 
With the continuous growth at a rapid rate of the e-mobility sector, the new DC energy meter is expected to be of particular interest to manufacturers of EV chargers to enable kWh-based billing when charging in public or semi-public areas. To allow for kWh-based billing of charging sessions, energy metering solutions must be integrated into destination DC chargers, following calibration laws. kWh-based payment is increasingly required and enforced because it promotes accessibility, fairness and transparency of prices for all users during the charging process of electric vehicles.

EVs have the option of being charged using either AC or DC power. DC charging through a wallbox offers several advantages over AC charging because it overcomes the power limitation of the on-board charger used in AC charging. This results in shorter charging times and enables easier access to services like vehicle-to-grid (V2G).

With destination charging applications, where the charging time is typically between one to two hours, an average charging power in DC in the range of 30kW is usually adequate to recharge most EVs. To meet this demand, DC wallboxes are a crucial component of the charging infrastructure and provide reasonable charging times at an acceptable cost for charging point operators (CPOs). 

With its powerful bi-directional energy metering enabling V2G, the DCBM 100 DC energy meter is designed to ensure full transparency and enable end-users to have confidence in the fairness of their kWh-based charging experience. The future-ready DCBM 100 has been developed specifically for 11kW to 30kW DC wallbox applications, delivering Class B accuracy and 1000V DC and 80A rating in temperatures from -40°C to +80°C. Charging cables can be directly connected to the new meter.

Also, the DCBM 100 provides in real time additional data (voltage, current, power, temperature) that will be essential to developing the kinds of predictive maintenance tools needed to minimise EV charger downtime. As part of LEM’s larger family of direct current billing meters, the DCBM 100 also ensures easy software integration and secure data handling using the latest Open Charge Metering Format (OCMF).

@LEM_Inc @NapierPR #PAuto #Electrical #Automotive


Friday, 27 March 2015

Are drive users breaking the law?

New legislation covering the export of high frequency (HF) drives could result in hefty penalties, including potential prison sentences, for machine builders and system integrators. EU Regulation No. 428/2009 and subsequent amendments covers the export of goods, software and technology normally used for civilian purposes but which may have military applications, or may contribute to the proliferation of weapons of mass destruction. With this in mind, the EU controls the export, transit and brokering of these items as a key instrument contributing to international peace and security.

The amended legislation came into force in the EU in December last year and, among other things, concerns the supply of HF capable drives, e.g. drives capable of producing an output frequency of greater than 600 Hz.  Regulations controlling the export of high frequency drives are already in force in the United States, and similar regulations were introduced to China earlier this year.

In order to comply with the new legislation, businesses which export goods or machines that incorporate goods that are controlled under the terms of the EU regulation to locations outside the EU must apply for the relevant export licences from their respective governments. The changes also have an effect on the documentation required in any transaction, as well as the measures which are taken to securely store the controlled goods.

Potential sanctions for failing to comply with the legislation range from financial penalties through to trade restrictions and even prison sentences for individuals.  Exporting controlled goods without suitable authorisation is a customs offence.

High frequency drives are used in a number of applications, including automotive testing, turbine test benches, grinding, where speeds in excess of those which can be achieved by a ´standard´ variable speed drive are required. However, as well as civilian applications, drives operating at higher output frequencies can also be used in the process of refining nuclear materials, hence the stricter export controls brought in with the amended legislation.

Emerson Industrial Automation is keen to advise OEMs and machine builders which incorporate HF drives in their designs that it is they, not the drives manufacturer, who are responsible for checking and evaluating whether or not their machines comply with, or contravene, the relevant legislation. It is also important for businesses to identify whether any existing machines and systems are affected by the directive, as it could affect their ability to export their machines.

Emerson is keen to help and will inform its customers if the drives they purchase appear on the controlled list, but is still advising people to educate themselves on the changes to the export regulations and the ways in which their businesses may be impacted.

The business took the step of limiting the frequency of the majority of its drives in anticipation of the new legislation. The Control Techniques Unidrive M range was limited to 550 Hz since its introduction in 2012, and older drive models were revised to be limited to 550 Hz. Servo and DC drives are not affected.

In anticipation of the new legislation, Control Techniques has specifically developed a range of HF drives to meet the requirements of the civilian applications that are an important part of its business.

Enrique Minarro Viseras, president of Control Techniques, added: "It is crucial businesses are aware of the amendments to the dual use legislation. We pride ourselves on our ability to make things as easy and trouble-free as possible for our customers, and have worked hard to ensure our products and processes comply with the new legislation.


"We would urge other businesses to investigate the extent to which they are liable and take the appropriate steps to ensure full compliance."