Monday, 24 August 2026

Connect the future of data.

Delivering fibre optic transceivers proven in industrial, defence and networking environments.

Anglia Components has signed a new franchise agreement with Taiwanese manufacturer OptoMedia, expanding its offering to include a comprehensive range of fibre optic transceivers for industrial defence and video applications.

“OptoMedia has the products and technologies to deliver massive, reliable data transmission across long distances, in applications such as Industrial automation, communication networks, IoT, Cloud, Edge computing and AI," said John Bowman, Marketing Director at Anglia. "We are delighted to be able to offer these innovative products to customers across the UK and Europe through Anglia Live.”

Allen Ho, CEO at OptoMedia added: “Our products are a perfect fit for many customers in this region. We chose Anglia as our partner, because they have demonstrated they can provide the perfect combination of innovative 21st Century online supply chain management, hands on technical support, and traditional, personal customer service.”

OptoMedia is a specialist in high-performance optical communication solutions, supplying robust, cost-effective transceivers designed for demanding environments across industrial, video, defence and data infrastructure fibre communication markets. The product portfolio includes a wide range of transceivers including SFF, SFP, Mini-SFF, and SDI data modules, alongside optical converters, HDMI, and KVM solutions. With a strong focus on performance and reliability, OptoMedia products are well suited to demanding environments and are already widely used across defence, industrial, professional broadcast and networking markets. OptoMedia is also a member of both the Profibus & Profinet (PI) and CC-Link organisations and actively works with other members around the world to ensure its solutions are inter-operable with those from other global leaders.


@angliaComponent @Opto_Media @angliaLive @BWW_Comms #Electronics #Fibreoptics #PAuto 

Flow in water and energy applications.

Accurate flow measurement supports more efficient management of water, heat and process energy.

The SFC3000 Flow Computer from EX-i Flow Measurement, has many applications across the water, utilities and process industries, where accurate measurement of liquid and steam flows is increasingly important for managing both resources and energy. Water is a critical resource in many parts of the world, and in industrial applications it can also be considered an effective means of transporting energy in the form of heat. From power generation and industrial processes to cooling systems and district heating, monitoring the movement of water and steam can provide valuable information for improving efficiency, reducing waste and identifying opportunities for energy recovery.

The SFC3000 provides a flexible platform for flow measurement and calculation, making it suitable for applications where flow data needs to be accurately monitored, recorded and integrated into wider process-control systems. In power generation and industrial processing, for example, water and steam flows can represent significant quantities of energy. Hot water may be used to transfer excess process heat, while steam generated as a by-product can potentially be recovered or redirected for other applications. Accurate measurement of these flows is essential when assessing energy balances and determining where efficiency improvements can be made.

Cooling towers provide another important application. While essential to many industrial processes, cooling systems can represent a significant source of energy and water consumption. Monitoring make-up water, circulation and discharge flows can help operators understand system performance, identify losses and assess opportunities to reduce water and energy consumption.

The same principles apply to water treatment and distribution networks. Accurate flow measurement enables operators to monitor consumption, manage distribution and identify potential inefficiencies. In regions where water is a particularly precious resource, reliable measurement can play an important role in supporting responsible management. The SFC3000 can also support applications involving steam and other process fluids, providing a common measurement platform for facilities where water, steam and energy flows are closely interconnected.

By providing reliable flow calculation and monitoring, the SFC3000 enables engineers and operators to turn flow data into actionable information – helping them understand where water and energy are being consumed, where losses may occur and where opportunities exist for recovery and improved efficiency.

EX-i Flow Measurement Ltd specialises in flow measurement solutions for demanding industrial applications. The SFC3000 Flow Computer provides a flexible solution for monitoring and calculating flow in applications ranging from water and process industries to energy and steam measurement.


 @ExiFlow @proactivefleet #PAuto #Water #Energy

Simulating ring resonators - a first.

The multi-topology MT-FIMMPROP photonic simulation tool from Photon Design, which uses its unique, patented and well respected, EigenMode Expansion (EME) computational method, can now simulate ring resonator designs - a first in the photonics industry. The company quantified the performance of its new EME capability in a recent white paper. It concluded that EME delivered equivalent accuracy to industry-standard, Finite Difference Time Domain (FDTD) tools, but was over 100 times faster using a workstation PC, with no cloud processing necessary. Engineers run many simulations to fine-tune photonics designs, so the shorter runtimes provided by EME enable practical, iterative workflows. In addition, the efficiency of the MT-FIMMPROP software itself, also plays a valuable part in engineers achieving optimal, photonic design results.

Dominic Gallagher, CEO of Photon Design, said: “Photon Design’s MT-FIMMPROP is the only EME-based simulation tool to successfully model ring resonators. Our EME delivers the accuracy of FDTD at far faster simulation speeds and without the need for expensive, pay-per-simulation, cloud computing; often needed for FDTD.

“Our recently published white paper showed that MT-FIMMPROP can process a typical 30um-radius ring resonator in just 11 seconds, on a laptop PC. By comparison, FDTD took four hours for a much smaller and simpler, 12um-radius ring resonator, using a workstation PC. FDTD is slower because it requires more than 11 trillion calculations to process the 12um example, with its computational load increasing eight-fold every time the device size doubles. Had FDTD been used for the 30um ring resonator, the simulation would have taken 15 times longer again.

“MT-FIMMPROP is an efficient computational modeller. Unlike FDTD, which processes the entire device bounding box, EME only processes the ring-resonators’ computational regions, which typically make up less than 5% of the device volume. It also enables engineers to combine and reuse repeated computational regions to avoid both design and process duplication. This simplifies the design process, reduces runtimes and actively supports an iterative photonic design approach.”


@photond  #Design #Simulation #PAuto

Low voltage grid status.

The true state of the Low-Voltage Grid - turning feeder data into actionable grid intelligence.

Corinex has announced the launch of the Grid Intelligence Node (GIN), bringing near-real-time measurement and event detection to low-voltage feeders. GIN provides high-precision insight into actual network conditions, creating a grid-truth layer that helps distribution system operators identify constraints, assess available capacity and verify whether grid actions delivered the intended result.

GIN combines high-performance broadband powerline communications with integrated current, voltage, and power-quality monitoring. Installed in secondary substations, street cabinets, and lateral branches, it gives utilities a clearer view of loading and operating conditions across the low-voltage network.

"Electrification is placing new demands on low-voltage grids, but utilities lack the information needed to see or predict where constraints are emerging," said Sam Shi, Chief Technology Officer at Corinex. "GIN tells the DSO when, where and how much control is needed. It provides the evidence for intervention."

Key technical capabilities include:

  • Three-phase voltage and current measurement with RMS error ≤0.5%
  • Measurement of power, power factor, frequency and energy
  • Harmonic monitoring up to the 51st harmonic and total harmonic distortion
  • Detection of voltage sags and swells, overloads and phase imbalance
  • One-minute operational snapshots, 15-minute energy aggregates and optional one-second reporting
  • Support for split-core CT or Rogowski coil sensors
  • Direct connection to 230/400 V networks and MQTT data transmission
  • An operating temperature range of −25°C to +70°C, with an IP67-rated enclosure option

The node combines high-precision metering for secondary substations with BPL communications, allowing feeder-level measurements and power-quality data to be transmitted through the existing low-voltage network. Monitoring up to the 51st harmonic, alongside the detection of voltage sags and swells, overloads and phase imbalance, helps utilities identify operational issues where they emerge and verify the impact of grid interventions.

Building more accurate digital twins.
GIN measurements can feed directly into Corinex Plexigrid Intelligence, connecting near-real-time field data with advanced grid modelling and optimization.

Corinex technology observes conditions across the physical grid, while Plexigrid software reconstructs, models and optimizes the network. Together, they give DSOs a digital representation that more closely reflects actual loading, voltage and power-quality conditions.

This enhanced digital twin helps utilities:

  • Improve low-voltage state estimation and grid model accuracy.
  • Assess available capacity for electric vehicles, heat pumps, and photovoltaic systems.
  • Determine whether constraints should be addressed through flexibility or physical reinforcement.

The result is greater certainty about grid assets and operating conditions, with less reliance on planning assumptions, delayed meter data, and estimated load profiles.

"Digital twins are only as reliable as the information behind them," Shi added. "GIN grounds the model in near-real-time measurements from the physical grid, helping utilities understand available capacity and make better-informed decisions as electrification grows."

Add intelligence without rebuilding the network.
GIN gives utilities a practical way to expand low-voltage visibility through infrastructure already in place. Designed for retrofit installations, it combines Corinex BPL repeater and Ethernet functionality while adding advanced measurement and event detection.

Existing low-voltage power lines carry both communications and measurement data. GridValue™ manages the Corinex BPL network and connected devices, while measurement data can support Corinex Plexigrid Intelligence, ADMS, SCADA and other digital-grid platforms. Utilities can gain a clearer view of network conditions without deploying a separate communications layer or installing revenue-grade meters at every monitoring point.

Its compact, IP67-rated enclosure is designed for demanding grid environments, while split-core current transformer and Rogowski coil options support different conductor sizes and cabinet layouts. GIN provides one-minute operational snapshots and 15-minute energy aggregates, with integration through Ethernet, Modbus RTU, and Modbus TCP.

The Corinex Grid Intelligence Node is available for utility evaluations, pilot projects, and commercial deployments.


@CorinexCorp @PRNewswire #Power #Energy #PAuto

Certification for commercial products procured by US.

ISASecure®, a wholly owned subsidiary of The International Society of Automation (ISA), is partnering with the United States National Security Agency (NSA) to develop a new certification scheme for commercial operational technology (OT) components sold by manufacturers and procured by the US government for use within National Security Systems (NSS). With a common goal of securing high criticality OT systems, the new certification scheme is intended to increase confidence in the security of commercial components.

ISA developed a set of security levels (SL) with specific cybersecurity requirements for OT components in the international OT cybersecurity standard ISA 62443-4-2. In addition, six new technical security requirements were developed and published by NSA’s Operational Technology Assurance Partnership (OTAP) Program in the NSA/CSS Cybersecurity Technical Report titled "Operational Technology Assurance Partnership: Smart Controller Security within National Security Systems" (April 2025).

In response to the need, ISASecure is developing a separate High Criticality Component Security Assurance (HCSA) certification scheme derived from the well-established Component Security Assurance certification scheme (CSA). Upon completion and the OTAP program office's acceptance of the ISASecure HCSA scheme, the NSA will use the scheme as an approved certification mechanism in the evaluation process of adding OT OEM components to the NSS OT Product Compliant List (PCL).

“This is a major achievement in the history of ISASecure,” said Dr. Mark P. DeAngelo, program manager of ISASecure. “The NSA recognizes the importance of the ISA 62443 standard and the ISASecure program, which independently evaluates a product's conformity to the ISA 62443 standard. ISASecure's reputation and commitment to robust OT security precedes the NSA's decision to partner with us. Our CSA product certification set the foundation for HCSA."

An ISASecure HCSA certificate provides a product manufacturer with essential evidence in consideration of that product's inclusion on the NSA's NSS OT PCL. In other words, ISASecure certification is an important step before a smart controller can be purchased and installed within an NSS.

Manufacturers interested in developing smart controllers are encouraged to join ISASecure to be part of the HCSA development. Stakeholders include manufacturers of components, accreditation bodies and certification bodies.


@ISA_Automation  @automation_com @NSAGov #Cybersecurity #PAuto

Vision leader expansion in India.

LMI Technologies (LMI)plans the relocation and expansion of its India operations into a brand-new workspace in Bengaluru. Strategically aligned with LMI's long-term geographic expansion objectives, this new facility will be shared with the Allied Vision team, fostering closer collaboration and synergy between the TKH group entities.

New Location.
LMI Technologies Pvt Ltd
No. 49, Spatium Aranya, Shilpa Vidya,
1st Main Road, JP Nagar Industrial Area Road,
Sarakki Industrial Layout, JP Nagar 3rd Phase,
Bengaluru, Karnataka, India - 560078.

This strategic transition marks a significant upgrade from LMI's previous regional layout and is designed to act as a robust foundation for scaling local system integrator business, engineering support, and regional application capabilities.

By co-locating with Allied Vision, LMI expands its regional infrastructure to effectively combat local low-cost competition in the factory automation sector across the APAC market. The new office underscores LMI’s commitment to operating as a high-value solution partner—delivering advanced 2D and 3D vision technologies, comprehensive integration assistance, and optimized inline workflows directly to manufacturers in the region.

"Our geographic expansion into this brand-new workspace is a pivotal step in strengthening our regional presence and technical infrastructure," said Len Chamberlain, Chief Commercial Officer. "Sharing this facility with Allied Vision enables us to leverage shared expertise, deepen our local partnerships, and deliver an elevated level of hands-on support to our customers as manufacturing capacity continues to shift and scale within India."

The state-of-the-art office will establish a stronger hub for FactorySmart® sensor training, product demonstrations, and localized inspection feasibility testing.


@lmi3d @UnnGmbh @PresseBox #PAuto #India

Maximising battery revenues for battery portfolio.

Ai-driven optimisation, forecasting and Qualified Scheduling Entity services.

Commercial optimisation for 29.7 MW of front-of-the-meter battery storage assets in Texas has been commenced by GridBeyond. This provides Ai-driven optimisation, forecasting and Qualified Scheduling Entity (QSE) services for SmartestEnergy’s South Texas battery portfolio in the USA.

SmartestEnergy's "Texas Ten" PPA portfolio has begun with three 9.9 MW battery energy storage systems located in Cotulla, Palmview and Edinburg, now actively participating in ERCOT’s real-time and day-ahead energy markets under GridBeyond’s optimisation and QSE representation.

The announcement comes as battery storage operators adapt to ERCOT’s Real-Time Co-Optimisation plus Batteries (RTC+B) market design, which went live in December 2025 and has changed how batteries participate in real-time energy and ancillary services markets. With energy and ancillary services now co-optimised in real time, and battery state of charge explicitly considered in market operations, asset owners require more sophisticated forecasting, bidding and dispatch capabilities to compete effectively.

Through its technology platform, GridBeyond combines AI-driven battery optimisation, energy price forecasting, automated bidding and QSE scheduling. This full-stack approach enables each asset to be dispatched into the right market at the right time, maximising revenue opportunities while managing degradation, state of charge and operational constraints.

GridBeyond's proprietary Bid Optimizer is purpose-built for this environment, leveraging advanced Ai to simultaneously optimise across energy and ancillary service products, aligning market price forecasts with battery state-of-charge simulations. This helps battery owners and investors respond to market volatility, capture stacked revenue opportunities and improve long-term asset performance.

Sean McEvoy, US President & Chief Product Officer at GridBeyond, said: "Battery storage is becoming significantly more sophisticated. Success in ERCOT is no longer determined simply by market participation, but by the ability to make thousands of optimisation decisions across multiple value streams while respecting asset constraints. Bringing these three BESS projects into commercial operation in ERCOT demonstrates the strength of our platform and our ability to deliver full-service solutions across multiple US ISO markets. Our team in Austin delivers real-time optimisation, market forecasting, and QSE services to help asset owners capture greater long-term value in one of the world’s most dynamic power markets."

Gavin Baker, VP Trading and Origination, SmartestEnergy US, said, "As ERCOT's market continues to evolve, having the right optimisation strategy and market expertise is critical to maximising the value of battery storage assets. Our continued collaboration with GridBeyond reflects our shared commitment to delivering innovative, data-driven solutions that help assets perform in an increasingly sophisticated market."

Across the U.S., GridBeyond provides optimsation and market access services across CAISO, ERCOT, PJM, MISO, and SPP, managing a rapidly growing portfolio of utility-scale battery storage, large flexible loads, and renewable generation assets. With 5+ GW under management globally and 900+ MW of battery storage, the company continues to expand its North American footprint to meet rising demand for intelligent, technology-led asset management.


@GridBeyond_  @SmartestEnergy  #PAuto #Energy #USA #Ai