Monday, 17 August 2026

Optimising thermal management strategy.

Molex has announced a strategic investment in CAEPlus, Inc., an early-stage company focused on the development of active liquid cooling technology designed to help data centres manage increasing heat loads driven by AI and High-Performance Computing (HPC) workloads. This investment advances Molex’s Data Center Thermal Management strategy by accelerating the innovation of CAEPlus’ BoundaryCool™ platform, a compact, active cooling architecture that addresses next gen GPU/ASIC thermal challenges.

“Advanced thermal management is becoming a critical enabler for the next wave of compute performance,” said Jairo Guerrero, VP and GM, Copper Solutions Business, Molex. “Our strategic investment in CAEPlus reflects Molex’s commitment to supporting innovations in liquid cooling while working with emerging technology leaders to help customers address rapidly evolving AI and compute-intensive data center requirements.”

The strategic collaboration will support continued advancements across the BoundaryCool platform, engineered to deliver significantly higher heat transfer performance and greater reductions in CPU/GPU/TPU chip temperatures compared to passive cold plate solutions while remaining compatible with legacy data centre architectures.

“CAEPlus was founded to address the rapid pace of change in data center cooling requirements by enabling an entirely new class of active liquid cooling solutions,” said Milad Bashirzadeh, founder and CEO, CAEPlus, Inc. “In addition to its investment, Molex brings deep engineering expertise and a strong track record of helping scale innovative technologies. We are excited to work together in advancing our proprietary cooling technology and meet unrelenting industry requirements for higher levels of performance and efficiency.”

The addition of CAEPlus technology to Molex’s comprehensive thermal management portfolio offers data centre customers a broader range of solutions engineered to address the most demanding computing requirements. As part of the agreement, Molex retains exclusive licensing to apply CAEPlus technology to the Molex portfolio of pluggable I/O solutions. 


@MolexConnectors  @NapierPR #CAEPlus #PAuto

Space age technology for rivers.

Satellite technology enhances river flow monitors.

A wireless, continuous river monitoring solution to meet the requirements of water managers and regulators such as the English Environment Agency (EA), has been developed by Nivus. Utilising satellite technology, the new Wireless Transit Time method avoids the requirement for invasive capital works on rivers.

Background.
River flow measurements underpin several of the EA’s core functions, including flood warning, modelling, forecasting and planning, as well as the management of water infrastructure and abstraction licenses. Flow monitoring also informs the EA’s work to monitor long-term indicators of change in catchments, and track the effects of climate change.

The EA operates around 7,000 hydrometric monitoring stations across England. This includes high-resolution data (mainly 15 minute) measurements of river flow, river level, groundwater and rainfall, as well as daily data.

"The measurement of river flow in England presents a particular set of challenges,” explains Sam Everitt, National Hydrometry Advisor at the EA. “We monitor everything from slowly responding lowland rivers to catchments that can experience rapid changes in flow during storm events. This means that flow monitoring technology has to be sufficiently robust and versatile to perform reliably across a wide range of river conditions."

The EA operates a variety of flow measurement techniques, and the Transit Time method has been employed for decades to monitor relatively clean rivers. Traditionally, the main drawback of the Transit Time method has been the necessity to install cabling across or under the river.

Transit time flow monitoring.
This standard flow measurement method (ISO 6416) relies on the highly accurate measurement of acoustic signals emitted upstream and downstream. Sensors are necessary on both banks of a river so that it is possible to exploit the characteristic of sound waves travelling faster in the direction of the flow than they do when travelling against it. One sensor acts as a transmitter sending a signal downstream, and the sensor (transmitter/receiver) on the opposite bank receives it. The process is then reversed to measure the upstream signal.

Highly accurate flow velocities are determined by calculating the difference between the upstream and downstream signal transmission times. This delivers a full velocity profile of the river, rather than spot velocity measurements that are utilised by some alternative methods.

In comparison with traditional methods like mechanical meters, Acoustic Doppler Current Profilers (ADCP), or tracer injections, the Transit Time method offers a number of important advantages. It provides continuous measurements; has less environmental impact; is not reliant on tracers, particles or bubbles; is less sensitive to localised turbulence and misalignment; offers highly reproducible total discharge volume measurements, and requires very low levels of maintenance.

Explaining the advantages of their Transit Time monitors, Nivus’s Alistair MacKinnon says: “We can apply this method to a wide range of channel sizes, and for rivers up to 200 metres wide. Deep water can also be accommodated with multiple sensors and signal paths. In addition, some of these signal paths can be redundant to account for fault conditions or obstructions.”

The potential disadvantages of the Transit Time method include unsuitability to high levels of suspended solids or weed, and to water with entrained air bubbles.

The Transit Time method involves very fast measurements (nanoseconds) between sensors, so it is necessary for the internal timing of the transmitter/receivers to be synchronised and extremely accurate. For this reason, the sensors on both banks have traditionally been connected by cross-river cabling, which significantly increases the cost of installation. Typically, this involves civil works and the installation of cross-ducting on the river floor – operations that can necessitate the damming or diversion of river flow. The installation of ducting can negatively impact river ecology, and once in place, ducting can present a hazard to human activities. In addition, the duct and cabling could be at risk during severe weather events.

Wireless Transit Time (WTT).
The Nivus WTT solution retains the accuracy of the Transit Time flow measurement method without the associated costs and disadvantages of the cabled version. The WTT sensors communicate across the river by Wi-Fi and maintain time accuracy by communicating with GPS satellites which employ atomic clocks.

Sustainability has been a key driver in the development of the Nivus WTT solution. The entire system is able to operate on solar power, providing an off-grid solution that can be deployed in any location. In addition, ground screws are used to anchor the bankside equipment, which avoids the need for concrete, and simplifies decommissioning.

Case Study: River Ouse (GB).

Ouse installation
A Nivus WTT system has recently been installed on the River Ouse at Barcombe Mills, close to the Barcombe Reservoir in East Sussex. The new system replaced an older Transit Time monitor that had failed.

The EA and its predecessor, the National Rivers Authority, have been monitoring river flow at the site for over 30 years. The previous system employed a cross-river duct that lay on the riverbed, weighed down by clay chimney pots. Theo Parfitt, from the EA’s regional Hydrometry & Telemetry team, explains the options: “It would be possible to bore a tunnel under the river, but this requires tunnelling to begin at some distance from the river to create the correct angle of bore. However, aside from the high cost, the proximity of the reservoir rendered this option redundant. Similarly, replacement of the cross-river ducting was disregarded because of cost and environmental issues. It was fortuitous therefore that our working partnership with Nivus had developed a beneficial solution.”

The Ouse is approximately 20m wide at Barcombe Mills, and it was estimated that the cost of a Nivus WTT system would be around 25% of the cost of a ducted system.

“The previous system included two sets of sensors in submerged racks on either bank, with 8 signal paths,” Theo explains. “Fortunately, these sensors could be utilised by the new WTT system, which also helped to lower costs.”

The future of WTT flow monitoring.
The EA already operates two WTT systems on North London and Yorkshire. Both of these Nivus installations are mains powered, so Barcombe Mills is the first to be fully solar powered.

Looking forward, Sam Everitt says: “This is a good example of the ways in which the EA can leverage its size and expertise, working with specialist partners, to develop innovative solutions that save money and enhance environmental protection. Given these advantages, we are looking to switch our existing Transit Time monitors to wireless versions as they come up for renewal. The new technology appears to be working very well, and has prompted interest


@_Enviro_News  @EnvAgency #Nivus #Environmemt #Wireless

Friday, 14 August 2026

One hundred times faster than standard.

Photon Design has published a white paper comparing the processing speed and accuracy of the company’s EigenMode Expansion (EME) simulation tools, with the more commonly used, Finite Difference Time Domain (FDTD) alternative. The white paper uses actual design examples to objectively benchmark both computational methods. 


It concludes that Photon Design’s EME results were equally rigorous as those of leading FDTD vendors, but simulations were completed in around 15 seconds, on a workstation PC, whereas FDTD simulations took many hours. Even with expensive, state-of-the-art cloud GPU, the FDTD simulation took 20 minutes for a 12um radius ring resonator, whereas Photon Design’s EME took just 11s for an even more demanding, 30um ring resonator example.

Dominic Gallagher, CEO of Photon Design, said: “FDTD is the most prevalent computational method used by photonic simulation CAD vendors, but it’s slow to process. The misconception within the industry that FDTD’s longer runtime leads to higher rigour, is clearly dispelled in our white paper. EME and FDTD deliver similar simulation results across a range of devices, however, EME achieves these results significantly faster.

“Processing speed is as important as simulation accuracy, when designing photonic devices. To achieve optimal results, engineers often run more than a hundred separate simulations during the photonic design process, whilst fine tuning a design. EME runtimes make this workflow practical, whereas one hundred FDTD simulations would take many days. To meet time restraints and project deadlines, engineers are often forced to produce a design with fewer iterations with FDTD, compromising the quality of the results.”

Processing speed and accuracy are both key when selecting photonics simulation software, which Photon Design’s EME-based tools provide.


@photond  #Design #Simulation #PAuto #OptimumPDM

Automation for Caspian Sea compression project.

Integrated control and safety systems provide process control, safety shutdown, fire and gas detection, and power management.

BP has awarded Emerson a multi-million-dollar contract to deliver automation technologies for the Shah Deniz Compression project off the coast of Azerbaijan (AZ).

“Emerson has served as the main automation contractor for the Shah Deniz development for over a decade, demonstrating how our proven, end-to-end execution model delivers well beyond the initial build,” said Ram Krishnan, chief operating officer of Emerson. “We are pleased to continue our collaboration with BP, deploying advanced systems to enable remote operations and significantly expand the production profile of Shah Deniz.”

Photo: BP
Emerson previously served as the main automation contractor for the Azeri Central East and Shah Deniz Stage 2 developments. Under the new contract, Emerson will provide integrated control and safety systems to enhance production, safety and reliability on the new offshore compression platform.

The $2.9 billion Shah Deniz Compression project, which includes an electrically powered, normally unattended offshore production platform, represents the next stage in developing the Shah Deniz field in the Caspian Sea. Designed to access low-pressure gas reserves and maximise overall recovery, the platform will be equipped with four 11MW compressors and serve as the central compression hub for gas from the Shah Deniz Alpha and Bravo platforms. The facility will operate remotely from BP's onshore Sangachal terminal, located 55 km south of Baku.

Emerson’s integrated solution includes its DeltaV™ Distributed Control System and DeltaV Safety Instrumented System, which provide process control, safety shutdown, fire and gas detection, and power management. Together, these systems deliver real-time visibility and control of critical operations remotely, helping to reduce operating costs, while improving efficiency, safety and platform availability.

Unlike approaches focused solely on upfront capital costs, Emerson optimises across the full project lifecycle, improving schedule predictability, reducing cost and complexity, and accommodating change when it matters most. Cloud engineering services and digital twin technology bring virtual testing, system integration and operator training together in one connected workflow.

The project is expected to enable approximately 50 billion cubic meters of additional gas and around 25 million barrels of condensate production and export. Construction is scheduled to be completed in 2029, with first gas compression expected from the Shah Deniz Alpha platform in 2029 and from the Shah Deniz Bravo platform in 2030.


@EmersonExchange @EMR_Automation @Emerson_News @HHC_Lewis #PAuto #Gas #Azerbaijan

Thursday, 13 August 2026

Inductive displacement sensor range expanded.

Inductive displacement sensors from HPK (Hottinger Brüel & Kjær) are now available with IO-Link or traditional industrial interfaces As industrial monitoring, quality assurance, production and assembly processes become increasingly connected, engineers need measurement solutions that can integrate easily into modern automation environments - while maintaining flexibility for existing systems.

To address this (HBK) has expanded the interface options available for its proven WI and WA inductive displacement sensor series, introducing models with an IO-Link interface, alongside existing industrial interface options.

These sensors have long been used successfully in monitoring, quality assurance, production and assembly applications – and in civil engineering.

The Miniature displacement sensors WI with measurement ranges from 2 mm to 10 mm are exceptionally compact, featuring an outer diameter of only 8 mm.

The WA series offers a wide variety of configurations, enabling adaptation to any measurement task. This includes pressure-resistant versions, probe-type sensors, loose plungers and several cable outlet options suited for different mechanical environments. The loose plunger variants are available with measuring ranges of up to 500 mm.

HBK’s three new inline amplifier modules come with 0–10 V, 4–20 mA, or IO-Link outputs. These amplifiers improve linearity to just 0.1% and provide fully calibrated measurement chains. The digital IO-Link versions transmit measurement values in millimeters immediately once connected to an IO-Link master. The versions with IO-Link interface featuring Bessel- or Butterworth filters and calibration results can be stored directly within the sensor if required.

The company’s passive sensor models will still supplied, without any restrictions.


@HBMmeasurement @BruelKjaerUK #PAuto #TandM

Robotics ban to hamper innovation!

"The future of robotics will be shaped by innovation, cooperation and common safety standards, not by trade barriers."

The VDMA (Verband Deutscher Maschinen- und Anlagenbau - German Engineering Federation) is warning of the consequences of the United States Federal Communications Commission’s (FCC) latest measure: new models of mobile robots, humanoid robot systems and inverters will no longer receive FCC certification unless they are manufactured in the US with at least 65 per cent American value added.

Thilo Brodtmann
“Strengthening technological sovereignty and protecting critical infrastructure are important and legitimate objectives. However, the measure that has now been adopted relies on isolation rather than cooperation and will therefore hamper innovation and competitiveness. Important products on which American industry itself relies will therefore no longer be able to be exported to the US,” said VDMA Executive Director Thilo Brodtmann.

From the perspective of the mechanical and plant engineering sector, the aim of building a strong domestic robotics industry in the US is understandable. At the same time, in the face of a skills shortage and international competitive pressure, American industry needs to boldly accelerate automation. Cooperation with European robotics and automation suppliers is of particular importance in this regard. The new market access restrictions will make this cooperation considerably more difficult.

The VDMA doubts that new national value chains can be established quickly enough in this way to support the US’s ambitious re-industrialisation targets. “The use of transatlantic synergies in AI-based robotics promises significantly greater benefits. Common standards, trustworthy partnerships and close cooperation between European and American technology providers increase resilience to cyber-attacks more effectively than local manufacturing quotas,” he emphasised.

The association also takes a critical view of the measure’s introduction at short notice and without prior warning. Whilst FCC-certified robot models may still be imported, this falls short of what is required. Innovation cycles for Ai-based, mobile and humanoid robot systems are exceptionally rapid, meaning that new model generations come onto the market at short intervals.

The import ban also applies to inverters, which will put European manufacturers under even greater pressure, as the corresponding export volumes are now expected to flood the European market. It is therefore all the more important that national and European policymakers consistently rule out potential cyber security risks to critical infrastructure posed by manufacturers from untrustworthy states.

The VDMA is calling on national and European policymakers to resolutely oppose this latest example of US protectionism and to champion open markets, fair competitive conditions and the strengthening of transatlantic innovation partnerships. “The future of robotics will be shaped by innovation, cooperation and common safety standards, not by new trade barriers. Europe and the US should pool their technological strengths rather than holding each other back,” says Brodtmann.


@VDMAonline @FCC #Robotics #Pauto #Ai #USA #Europe

Excellent members!

The International Society of Automation (ISA) has announced the 2026 ISA Celebrating Excellence award recipients. With this honours and awards program, ISA has an opportunity to formally showcase and celebrate the remarkable achievements and contributions of its members, partners and other automation professionals.

The Celebrating Excellence awards program was created to stimulate, enhance, encourage, acknowledge and reward outstanding contributions to the Society and the automation profession. It provides an avenue for individuals to compete for recognition within established categories.

Congratulations to these 2026 awardees on their outstanding achievements and this well-deserved recognition.

ISA Honours & Awards 2025
2026 Celebrating Excellence Honorees

Best-Selling Book

Measurement and Control Basics, Fifth Edition by Thomas A. Hughes

Enduring Society Service

Jagdish Shukla

Excellence in Education

Pappa Natarajan

Excellence in Mentoring

Dr. Swati Prashant Madhe

Excellence in Technical Achievement

Shahida Md Yusof

Excellence in Standards

Graham Nasby, P.Eng.

Pete Vande Visse

Best Selling Book

Section Excellence

Malaysia

Pune

Spain

Student Volunteers of the Year

Ana Medrano Valero

Ángela Blanco Pérez

Paula Francisca Moreno Prieto

Volunteers of the Year

Álvaro Raimúndez Martínez

Armando Gonzalez

H S Pansare

Phillip Swinson

This year’s award recipients will be honored at the Honours & Awards Gala as part of the ISA Automation Summit & Expo to be held 27-29 September 2026 in Lake Buena Vista, FL USA.


@ISA_Automation @automation_com #Pauto #Education #Training