Thursday, 6 February 2025

Industrial Ethernet innovations event.

Harting and experts from a range of global market leaders are participating in the fourth Industrial Ethernet Week. Their annual digital conference runs between the 25th and 27th February 2025 and features technical experts and digitalisation pioneers. Register now to discover solutions for driving industrial transformation via insightful user cases, discussions, talks and tech sessions.

Day one focuses on connecting the All Electric Society. ZVEI will be discussing how integrated energy systems can enable growth while decarbonising industry, whilst 1KOMMA5°, which offers technical support for renewables, will be showcasing their intelligent AI-based control and electricity storage solutions. The first day concludes with a panel discussion about how seamless data communication via Industrial Ethernet can improve efficiency.

Day two (February 26th) will spotlight on Single Pair Ethernet and smart farming. Technical experts from Harting will present sessions focused on SPE technology, including standardisation, applications and the connectivity infrastructure, including connectors, cabling and switches. Then experts from CLAAS and ANEDO will give you insights on new trends and possibilities in smart farming, including how digitalisation has improved the efficiency of farmers.

The week concludes with a spotlight on railway and automation applications. Product experts will discuss digitalisation on the railway, including the Digital Automatic Coupling (DAC) project for freight wagons, which is currently under standardisation. Sessions then focus on One Cable Connectivity, which reduces cabling complexity and drives standardisation in motion & drive applications.

Sessions run from 8:30am until 11am each day and registrands are encouraged to join all the events or selected talks. Every session will also be available as a recording afterwards.

Register here!


@HARTING_Group @HARTING #PAuto #Communications #Ethernet

Replacing DIY test rigs!

RTEC Engineering Ltd is on a mission to redefine accuracy standards for dynamometers amid the growing global interest in enhancing engine efficiency and performance. Their cutting-edge technology is grounded in a novel torque measuring technology.

Rob Langton, the Managing Director of RTEC Engineering Ltd and an engineering metrologist with over two decades of experience, sheds light on their innovative approach: "Our sub-division, RTEC Powertrain, is actively engaged in collaborative projects with B2B partners, concentrating on metrology solutions for the automotive industry, including ECM (engine control module) calibration and diagnostics."

Facing the challenge of obtaining a detailed performance profile for a specific engine within a constrained capital budget, Langton took matters into his own hands. Drawing on his extensive engineering expertise, he embarked on designing and manufacturing a dynamometer that replicates the accuracy and reliability of OEM or lab-grade systems but at a more accessible cost for small to medium-sized enterprises.

Striving to surpass the limitations of load cells and RPM sensors commonly found in traditional dynamometers, Langton turned to advanced technology. After researching specialised literature, he discovered Sensor Technology and their non-contact TorqSense transducer.

Engineers from Sensor Technology assessed Langton's requirements and recommended the SGR510/520 series TorqSense. This innovative transducer employs a full four-element strain gauge bridge. A rotor-mounted ultra-miniature microcontroller, powered by a non-contact inductive coil, measures strain values and transmits them digitally to the stator, providing high-precision torque measurements.

Langton highlights the benefits: "The inductive coils eliminate the need for wires with slip ring connections to the shaft, offering the ease of use we desire." 

He underscores TorqSense's remarkable 250% overrange capacity, enabling accurate measurement of sudden load spikes. Additionally, its immunity to noise and signal corruption, common in slip ring setups, along with a 4000/sec sampling rate, aligns seamlessly with their resolution requirements. With Sensor Technology's assistance, RTEC swiftly developed an ideal solution for manufacturing a high-performance dynamometer aligned with their design specifications. Recognising the potential broader applications, Langton explored the market's needs, leading to a realisation of a gap that RTEC aims to fill.

While calibration of elements like the load cell is typically carried out by UKAS accredited laboratories in larger organisations, RTEC identified a market gap for smaller entities. They are now working on a scalable, modular dynamometer design with TorqSense at its core. TorqSense's factory calibration to NPL standards and its self-contained nature, combined with a plug-and-play design, simplify exchanges during calibration, minimising downtime. RTEC's future projects include crafting bespoke test rigs tailored to users' exact specifications and retrofitting TorqSense into existing dynamometers and test rigs, spanning precision instrument drives to heavy vehicle power trains.


@sensortech #PAuto #Maintenance

Consistent quality in medical devices.

Wellell, a leading global brand in the medical industry, has adopted Anritsu's market-leading Internet of Things (IoT) wireless transmission testing technologies. Utilizing the MT8821C Radio Communication Analyser and MT8862A Wireless Connectivity Tester, Wellell has successfully performed IoT connectivity test for its respiratory therapy devices and pressure relief mattresses products. This collaboration ensures the quality and stability of IoT wireless transmissions and continues to drive the advancement of high-quality smart medical devices.

Ivan Chen, General Manager of Anritsu Taiwan declared: “Wellell’s dedication to excellence and innovation in the medical field, combined with Anritsu’s state-of-the-art testing solutions, has set a new standard for medical devices and opened up new possibilities for smart healthcare. Anritsu looks forward to strengthening our collaboration with Wellell, advancing IoT technologies for innovative applications in smart healthcare, and jointly driving industry development to deliver greater value to patients and healthcare institutions.”

The Anritsu MT8821C Radio Communication Analyzer supports LTE-Advanced, IoT and other cellular technologies in compliance with 3GPP RF testing standards. It ensures stable wireless connectivity even in high-loss environments, significantly reducing over-the-air (OTA) testing time and improving efficiency. Meanwhile, the MT8862A Wireless Connectivity Tester features RF testing capabilities for IEEE 802.11be 2x2 MIMO devices, supporting the 2.4 GHz, 5 GHz, and 6 GHz bands with a 320 MHz bandwidth. With signal control technology based on data rates, it enables RF evaluation for all data rates across major WLAN standards, including Wi-Fi 7.

By leveraging Anritsu’s wireless communication testing technologies, Wellell performs IoT functional tests on its high-quality medical devices, including the iX Series Continuous Positive Airway Pressure (CPAP) devices and the Optima/Procare Series Pressure Relief Mattresses. These products feature state-of-the-art IoT wireless communication technologies designed to deliver globally standardized connectivity quality. Through comprehensive IoT functional test for this series of products, Wellell is committed to ensuring that each product meets the highest quality standards, delivering safer and more reliable medical solutions for patients and healthcare providers.

“Wellell is committed to providing medical equipment that ensures peace of mind for both healthcare professionals and users,” said Danzel Lee, Senior Director of Wellell. “We selected Anritsu’s IoT wireless communication testing technologies because of their leadership and exceptional performance in the field of wireless testing. These solutions provide high-quality and stable testing capabilities, enabling us to ensure the stability and universality of our devices, further solidifying Wellell’s position as a global leader in the healthcare industry.”


@Anritsu @AnritsuEMEA @NapierPR #TandM #IoT #Medical

Co-operation to enhance experience in energy management.

Streamlined user experience through SmartThings and SmartThings Pro makes energy management accessible and convenient for users.

As part of their ongoing partnership, ABB and Samsung Electronics have announced the upcoming integration of ABB's InSite energy management system into Samsung's SmartThings and SmartThings Pro platforms, marking a significant advancement in smart building technology.

Building on the previous incorporation of the ABB-free@home® smart home system into SmartThings, this advancement allows users to easily visualize, control, and optimize energy consumption in residential, multi-apartment, mixed-use, and light commercial buildings.

Mike Mustapha, President of ABB's Smart Buildings division, said: “Integrating our state-of-the-art energy management system with Samsung's SmartThings and SmartThings Pro platforms highlights the power of collaboration in helping our customers outperform in an increasingly connected world. Our combined solution not only differentiates properties in a competitive market, but also addresses the rising importance of energy efficiency for homeowners, tenants, and landlords.”

This integrated solution extends load management capabilities, enabling SmartThings and SmartThings Pro users to manage the energy consumption of smart appliances and devices – such as dishwashers, air conditioners, vacuum cleaners, and lawn-mowing robots – using real-time and historical data collected by InSite. This is demonstrated at the Brobyholm residential development in Sweden, where ABB’s energy management system is integrated with SmartThings to contribute to a larger ecosystem of interconnected partner solutions, creating a replicable blueprint for energy-smart community projects.

Consolidating home automation, IoT devices, entertainment, EV charging, smart appliances, energy, gas and water consumption reduces “app overwhelm” and enables users to conveniently manage essential functions through a single user interface.

SmartThings Pro further enhances these capabilities by offering advanced energy analytics, predictive insights, and automated optimization for businesses, property managers, and energy-conscious homeowners seeking deeper control over their energy ecosystem. This professional-grade platform provides seamless integration with industrial-grade IoT devices, ensuring a more comprehensive approach to energy efficiency and sustainability.

Chanwoo Park, EVP B2B Solutions of Samsung Electronics, commented: “The future of energy management lies in intelligent, automated solutions that adapt to evolving regulations and business needs while also increasing the value of properties. SmartThings Pro offers advanced analytics, predictive automation, and industrial IoT integration, giving enterprises greater control over energy usage and sustainability efforts. By leveraging AI and machine learning, we empower businesses to proactively manage consumption, improve operational efficiency, and create smarter, more valuable buildings through energy-efficient innovations.”

Enhancing energy efficiency, the combined solution enables smarter energy decisions and increases property value, while also making energy management more accessible and transparent for users.


@ABBgroupnews @ABB_Energy @ABBelec @abb_automation @admiralpr #Energy #Sustainability

High-voltage, wide-bandwidth differential probe.

New probe supports the development of next-generation power electronics for automobiles and other applications.

The Yokogawa PBDH0400 series differential probe with a maximum input voltage of 2000 V and a frequency bandwidth of 400 MHz has just neen released. PBDH0400 series differential probes are able to deliver the measurements required for developing the next generation of higher speed power devices that can contribute to the realization of a sustainable society.

With growing emphasis on measures that will help to achieve decarbonization across all areas of society, there is a need to increase the energy efficiency of motors and inverters used in the transportation and renewable energy sectors.

This requirement is particularly acute in the power electronics industry, where the increase in applications for - and production of - next-generation power devices utilizing silicon-carbide (SiC) technology necessitates the ultra-precise measurement of high-voltage and higher speed signals.

This task requires performing measurements from an ungrounded (floating) potential, necessitating the use of differential probes rather than standard probes. Yokogawa Test & Measurement therefore set about developing wide-bandwidth differential probes capable of measuring high-voltage and high-speed signals. The new probes contribute to a more sustainable society through improved energy efficiency.

Main Features.
Initially, two models of the PBDH0400 series will be available: the 702922 model with a maximum input voltage of 2000 V, and the 702921 with a maximum input voltage of 1000 V.

1. High-voltage and wide-bandwidth measurement.
To perform the accurate waveform observation of faster-changing signals prevalent in electric vehicle (EV) and clean energy applications, PBDH0400 series differential probes measure voltages over 1000 V and offer a wide frequency range from DC to 400 MHz. This capability is particularly beneficial for developers of next-generation inverters, enabling the accurate observation of tiny changes in high-speed switching signals. In addition, excellent noise resistance allows the detection of events that can cause unexpected anomalies, including waveform overshoot and ringing.

2. Automatic power supply and attenuation setting.
The PBDH0400 series features the Yokogawa probe interface, saving both cost and installation space by eliminating the need for an external power supply when connected to a Yokogawa oscilloscope. Furthermore, the probe attenuation ratio is automatically set through the interface so that measurement can start immediately after connection to the instrument. Combining the PBDH0400 with Yokogawa’s 12-bit DLM5000HD or DLM3000HD oscilloscopes enables more accurate waveform measurements.


@Yokogawa, @Yokogawa_EU, @Yokogawa_Europe @NapierPR #Automotive #TandM

Innovation drives efficiency at Five Fords WwTW growth mitigation scheme.

Alison Miles from NIVUS explains why the choice of flow measurement technology unlocked the enormous benefits that have been achieved on a project in North Wales.

Alison Miles
Engineers working on a project in North Wales have employed innovative techniques to improve wastewater treatment efficiency at a fraction of the cost of traditional methods, saving an estimated £3.5 million.

Background. Owned and operated by Dŵr Cymru Welsh Water, Five Fords WwTW is a sewage works near Wrecsam in north-east Wales serving over 130,000 people. The site operates three ASP (activated sludge process) lanes.

As a Capital Delivery Partner and part of the Welsh Water Alliance, Mott MacDonald Bentley (MMB) was challenged to increase the treatment capacity of the ASP lanes in response to a growing population and increased demand from new anaerobic digestion plants.

The challenge.
The existing layout of the plant delivered wastewater to the ASP lanes at a different flow rate in each lane. This disparity was reflected by dissolved oxygen measurements within the lanes, which indicated that the lanes were not operating efficiently. “One of the lanes, for example, was operating in a super-critical condition, whilst another was sub-critical,” explains MMB’s Jack Jones. “As a consequence, from a process control perspective, the ASP lanes were difficult to manage effectively.”

The uneven distribution of flow between the ASP lanes was caused by a number of physical issues in the flow channels that fed them. In addition, a large 800mm relief pipe discharged a mixture of RAS (returned activated sludge) and overspill directly into the main inflow channel, which also affected the flow profile.

The ASP lanes were originally built with flumes to control flow, but these were replaced with weirs to increase capacity. The requirement for a further increase in capacity therefore meant that a return to flumes would not be practicable, and would not resolve the flow disparity in any case.

A flow split chamber with equal weirs was also not considered to be practicable because this would cause disruption to the operation of the plant, requiring significant temporary works and civil costs. The ASP lanes can receive up to 1200 l/s in full flow, so a weir-based solution would necessitate the hire of temporary pumps for the duration of the construction, which could be around 4 months, representing a substantial extra cost. This alternative was therefore disregarded.

In addition to resolving the flow disparity in the ASP lanes, it would be necessary to monitor flow in the relief pipe. This also represented a very significant potential cost, because traditional techniques such as electromagnetic flowmeters typically require a full pipe for accurate measurements and involve substantial installation costs and process downtime. A recent trial comparing the NIVUS insertion probe with a traditional ‘magflow meter’ demonstrated a 60% saving in cost and 95% saving in embodied carbon. The magflow option was therefore also disregarded.

The solution.
“Before making the final decision, a number of internal ‘surgeries’ were conducted involving hydraulic, mechanical and process engineers,” explains Josh Sparks, MMB Contracts Manager & EICA Regional Practice Lead. “As a company, we are always looking for innovative solutions that over-deliver on a number of fronts, and that is exactly what we managed to achieve at Five Fords.”

The preferred solution involved the deployment of three actuated penstocks that would be lifted into the first three channels. The fourth channel would be isolated, but could be made available if necessary, in the future. Effective control of the penstocks would depend heavily on the reliable measurement of flow in each channel downstream of the penstocks. “This was also a major challenge,” Josh explains. “Most traditional flow measurement methods were ruled out due to the physical constraints of the site, along with the cost of solutions involving significant civil works. As a result, we engaged with NIVUS and determined that their cross-correlation flow meters offered the best solution.”

NIVUS was contracted to install flow meters in the relief pipe, in the main inlet channel, and in each of the three ASP inlet lanes. All of these instruments are MCERTS and EX-rated and employ the NIVUS cross-correlation flow measurement method.

Two of their POA wedge sensors were fitted to L-shaped bed-mounted brackets – one on either side of the main inlet channel. These sensors were connected to a (NF750 M9) transmitter, to which the pipe insertion probe (velocity profiler and ultrasonic level) was also connected.

Each of the ASP lanes was fitted with a radar level sensor, working together with POA wedge sensors, which were also mounted on L-shaped bed-mounted brackets. Each of these sensors was connected to a single input transmitter (NF750). Cross correlation flow measurement method.
The ultrasonic cross-correlation method developed by NIVUS measures individual velocities continuously at different levels within the flow. This area velocity flow measurement technique provides a 3-dimensional flow profile that is calculated in real-time to provide reproducible and verifiable flow values in full or partially filled channels or pipes.

The method is based on the principle of ultrasonic reflection, in which reflectors such as particles, minerals or gas bubbles within the water body are scanned using an ultrasonic impulse with a defined angle. The resulting echoes are saved as images or echo patterns, and a further scan is conducted a few milliseconds later. This creates echo patterns which are compared with previously saved signals, and the positions of unambiguously identifiable reflectors are identified in order to determine velocity, by using the beam angle. This means that the particle velocity, which is equivalent to the wastewater flow velocity, can be calculated from the temporal shift of the reflectors. The method produces highly accurate readings without the need to perform additional calibration measurements.

A key advantage of this method is its ability to operate effectively in the most demanding and heavily polluted applications. Influencing factors such as flume shape, discharge behaviour and wall roughness are all accommodated within the flow computation.

Initial results.
The NIVUS flowmeters were installed before the penstock solution was implemented, so that flow variation could be observed both before and after the penstock installation. However, local engineers raised concerns about the potential for the penstocks going from fully open to a closed position too quickly or not opening quickly enough during a surge, causing backup in the channel. In addition, there were concerns that the penstocks might react too quickly causing intermittently variable flow rates.

“Happily, none of the initial concerns materialised,” Josh explains. “With the ability to optimise the ‘nudge and wait’ period, it became possible to ensure a smooth flow with an even split between the ASP lanes. As a result, the scheme sailed through the 28-day proving phase with no issues reported, and has performed problem-free for several months since that time.”

Key scheme outcomes.
The overall objective of the scheme was to equalise flow rates within the three ASP lanes so that treatment efficiency and capacity would be improved. This was achieved, but as Josh says: “The penstock control system worked extremely well. By adopting a scheme based on cross-correlation flow measurement for both the relief pipe and the ASP channels, we were able to avoid substantial civil works, which delivered dramatic financial cost and carbon savings, as well as almost no interruption to the operation of the plant.”

MMB has estimated that a conventional build solution involving modification of the channels with a new distribution chamber would have taken around 8 months and cost in excess of £4.5 million (€5.24m). In stark contrast, MMB’s solution, outlined above, was delivered at a cost of around £1 million (€1.19m).

As a Capital Delivery Partner and part of the Welsh Water Alliance, under the terms of its contract, MMB’s cost savings at Five Fords deliver financial benefits to both MMB and Dŵr Cymru Welsh Water. Consequently, the water company’s customers also benefit.

Looking forward.
MMB staff have been so impressed with the results of this project that they have since organised internal webinars with engineering colleagues from all over the world, explaining how they too can implement this technology to deliver cost and sustainability benefits.

The NIVUS cross-correlation flow measurement technology will be rolled out to future wastewater projects. However, it is also applicable to other applications such as pump management under AMP8, as well as in-pipe potable water flow measurement applications.

Summarising, Josh Sparks says: “The physical constraints at Five Fords forced us to widen our search for potential solutions, and we have obviously been delighted with the results. Cross-correlation flow measurement turned out to be the key that unlocked the financial, time and carbon savings that have been achieved, and we look forward to delivering similar benefits on future projects.”


@_Enviro_News  @DwrCymru #Nivus  #MCERTS #Wastewater #Environment

High resolution TFT display.

High-resolution displays designed for use in industrial applications. 

  JDI Taiwan Kaohsiung (JDIT-K) has announced the availability of a range of Full HD TFT display modules for industrial applications. The enhanced product line-up consists of a range of TFT display modules featuring Full HD, 1920 x 1080 pixels and 1920 x 1200 pixels, resolution with wide aspect ratios and IPS (In-Plane Switching) display technology that enables exceptional colour saturation and stable image performance.

Offering superior quality and clarity, their series of high resolution TFT display modules deliver display images that are bright, colourful and accurate, with contrast ratios of up to 1300:1, and high brightness white LED backlights, featuring a half-brightness lifetime of 70K hours, and brightness specifications of up to 1500cd/m². Integrated LED driver circuits allow a PWM input signal to provide easily controlled, flicker-free backlight dimming from 0% to 100%.

JDIT-K have enhanced the 7.0-inch, 10.2-inch, and 11.6-inch display modules to expand the Rugged Plus industrial display portfolio, which offers superior performance for demanding application environments. Additionally, the NTSC colour gamut of 7.0-inch and 15.6-inch modules has been increased, thereby enabling customer applications to benefit from highly accurate colour reproduction. JDIT-K have identified that higher display resolution and an increased colour gamut provides an excellent combination for delivering enhanced display images in both indoor and outdoor applications.

Benson Huang, marketing manager, JDIT-K said, “The enhanced line-up of Full HD TFT display modules can deliver the ideal display solution for use in a wide range of industrial-based systems and applications requiring a high-quality, high resolution display solution. Additionally, the optical performance and display image characteristics ensure display images exhibit high contrast and saturated colours which can be easily viewed in many diverse operating environments.”

All display modules feature a dual-channel LVDS interface, with integrated PCap touchscreens available on selected modules. The current line-up of FHD display modules is listed below:


The progressive development of the FHD product line-up ensures that JDIT-K remains fully committed to providing an extensive choice of high quality, technically advanced TFT displays for a wide range of vertical market applications.

The use of high resolution TFT displays with wide colour gamut can be essential for applications including colour-critical medical imaging, broadcast equipment, command and control systems, avionics systems, security and multimedia monitors.


#JDIT#PAuto #TFT @KOE_Europe