Thursday, 8 October 2026

A peach job!

Automated fruit quality inspection processed: Peach by peach, 15 tons per hour!

At the Agrophoenix fruit processing plant in Greece, eight Stäubli SCARA robots do the opposite of cherry-picking: They pick peaches and select not the good ones, but the bad ones. The robots are part of the AI- and vision-based STAQ inspection system developed by Dutch startup QING. Eight parallel STAQ cells perform fruit grading at remarkable speed: During the season, they process 15 tons of peaches per hour (!), about 100,000 peaches, each cut in half.

Agrophoenix was founded in 2018 in Greece’s Imathia region as “not just another fruit processing company” with the aim of “creating something new and fresh,” says Lazaros Ioannidis, Partner and Project Manager. “We had the vision to create a company that differentiates itself from business models and standards not only in Greece but in our sector overall.”

This suggests that Agrophoenix uses packaging and processing formats beyond the typical canning. According to Lazaros Ionnaidis, “We have, for example, established a new production line for fruit balls in pouches, and we are able to pack aseptic diced fruit in 200-liter bins that we can use all year round for products in cups.”

Another innovation was implemented for grading peaches, with the primary goal of removing those with pit fragments. After the fruit is washed, steam-peeled, cut into halves and depitted, it is pre-inspected by a vision system, mainly for color. The peach halves then arrive at one of eight conveyors, each leading to a very compact cell containing an AI-assisted vision system and a food-grade Stäubli HE robot.

High-quality peach grading in next to no time.
In the cell, the camera captures every single peach half and inspects it in milliseconds. Immediately after screening, the robot picks the N.I.O. halves and places them on belts running to the right and left of the main conveyor, while the majority exit the cell for further processing.


Two things are especially worth noting here. First, QING, a Dutch startup that developed the STAQ system, uses AI to train the vision system. This means the user, in this case Agrophoenix, can easily determine and teach it the difference between acceptable and defective products, and adjust the parameters as needed.

Inspecting 15 tons of peaches an hour, one at a time.
Even more impressive is the speed and performance of the robot cells. “The robots can pick one peach half per second,” says Will Uijting, Commercial Director of QING. And since the N.I.O. rate is low because the fruits have already been graded, 15 tons of peaches can pass through the eight STAQ cells each hour.

The conversion of tons to peaches is not quite precise, since each fruit is different. As Lazaros Ioannidis explains, “We calculate in weight, not pieces. A peach weighs approximately 150 g, so 15 tons means 100,000 peaches per hour and 200,000 halves, more or less. And 3,600 of them can be rejected in that time.”

What happens with the rejected peaches? “At the moment, we only look for pits and pick them out in two channels: those with small pits and those with bigger ones,” says Will Uijting. “Those with bigger pits are directed to automated re-pitting, and the smaller ones go to manual inspection. Then both are fed back into the STAQ stations.”

An obvious choice: The robot.
In the STAQ cells, a Stäubli TS2-80 SCARA robot selects the N.I.O. peaches. Precision and durability played a role in choosing the robot, as did connectivity to the control system. A main criterion was, of course, hygienic compliance. Will Uijting: “It is a TS2-80 in the HE version, which means that it has washdown capabilities: The joints of the robot are well protected, all materials are corrosion-resistant, and an inner pressure prevents vapor, steam or water from entering the housing during cleaning.“ Further, QING opted for a filling of H1 oil – a logical choice because the robots are top-mounted over the conveyors carrying the peach halves.

The cells need frequent cleaning. Lazaros Ioannidis: “During the days of operation, every four hours the lines stop for 20 minutes and an automatic CIP-like cleaning starts. Each Sunday, a more intense cleaning with a food-grade detergent takes place.“ This is exactly what the Stäubli robots in the EHEDG-compliant HE version are designed for – frequent cleaning without compromising the longevity that Stäubli robots are known for. 

 The biggest challenge: Designing the gripper.
As for why it took two and not one season to get the eight QING cells production-ready, the answer is clear: It’s neither the AI, the software, nor the robots, but the gripper or, to be more precise, the material that comes into contact with the peaches. Will Uijting: “The peeled peaches are slippery, so we had to find a conveyor material on which the peaches hold their position. Even more difficult was the effective picking, grabbing, and releasing of the peaches with their cups upside down.” The engineers had to find the right vacuum gripper with the right contact material.

The next challenge: Robot-based removal of pit fragments.
In the end, they found the right combination, and the AI-based peach grading, with Stäubli HE robots picking the rejected peaches, successfully completed its first harvest season at the Agrophoenix plant. The collaboration with QING will continue in engineering, as Lazaros Ioannidis explains: “The next step is a difficult one, but we will try. Together with QING, we want to develop an automated system that is able to remove pit fragments from the peach halves – before or after the sorting. That’s our next big thing.”

STAQ by QING: More than robot-based inspection.
The cell with a camera and robot is only the visible part of the system that QING in Arnhem, Netherlands, has engineered. The complete solution is an automation framework called STAQ, developed specifically for the food industry. The acronym stands for See, Think, Act. Will Uitrijt, Commercial Director: “We look at the product with sensors or cameras, we determine what to do with it, and we act upon it. This works for different and difficult products, not only fruit like peaches, but also meat and biscuits. The software and the functions are always the same, while the grippers and the algorithms are adapted to the products and sorting parameters.” The cells are equipped with Stäubli HE (humid environment) SCARA robots to meet hygienic requirements in the food industry.


@StaubliRobots @PresseBox @UnnGmbh #Robotics #PAuto #Food #Greece

Wednesday, 7 October 2026

Meterlink-connected tools for field professionals.

New solutions for electrical, EV charging, and HVAC professionals combine advanced testing with connected mobile reporting.

Four new additions to Flir's test and measurement portfolio have been announced: the Flir EV86-NACS and EV86-T2 EV Charger Analyzers, Flir DM266 Compact Thermal Imaging Multimeter, and Flir EM57 Thermo-Hygrometer.

Designed for professionals across electrical, EV charging, HVAC, building diagnostics, and maintenance applications, these new tools combine specialised measurement capabilities with Flir Meterlink® connectivity for faster more efficient testing and reporting. This connectivity makes it easier to turn field measurements into actionable results.

“Professionals need tools that not only provide accurate measurements but also make it easier to turn those measurements into actionable information,” said Heliel Morales, Business Development Director for Condition Monitoring at Teledyne Flir. “These new products combine purpose-built testing capabilities with Meterlink connectivity to help simplify workflows from measurement through reporting.”

Connected EV charger testing.
The Flir EV86-NACS and EV86-T2 provide comprehensive safety and performance testing for AC EV charging stations in residential and commercial environments. The EV86-NACS supports Level 1 and Level 2 chargers with an integrated NACS socket, while the EV86-T2 supports Modes 1, 2 and 3 chargers with an integrated Type 2 socket.

Both models feature Protective Earth pre-testing, Control Pilot simulation and waveform analysis, CCID performance verification (EV86-NACS) RCD performance (EV86-T2), error simulation, and low-impedance measurement.

Smarter electrical troubleshooting.
The Flir DM266 Compact Thermal Imaging Multimeter with Meterlink combines True RMS electrical measurement with Infrared Guided Measurement (IGM™) and multi-spectral dynamic thermal imaging (MSX®) to help professionals quickly identify and diagnose electrical issues. VFD mode, an included remote control, integrated hands-free mounting, and IR Super Resolution up to 320 × 240 provide added flexibility for demanding inspections.

Environmental insight for HVAC Professionals.
The Flir EM57 Thermo-Hygrometer with Meterlink provides precise temperature and humidity measurements for HVAC service, commissioning, building inspections, and moisture-related applications. Instant dew point and wet bulb calculations help professionals evaluate comfort, HVAC performance, condensation risk, and humidity conditions.

Whether diagnosing electrical problems, testing EV charging infrastructure, or measuring environmental conditions, the new Flir Test and Measurement solutions combine purpose-built tools with Meterlink connectivity to simplify the workflow from measurement to report.


@flir  @mepaxIntPR  #TandM #HVAC#Automotive

Automating subsurface data workflows.

Improving interoperability, data management and collaboration across multi-well projects.

Logtek AS has selected AspenTech Geolog®, part of the AspenTech Subsurface Science & Engineering (SSE) portfolio, to modernise its subsurface workflows. By incorporating the software’s advanced automation and data capabilities, Logtek is better equipped to help upstream customers accelerate the discovery of new exploration & production (E&P) opportunities.

“Maximising the value of existing subsurface data has become essential for upstream operators navigating today’s industry challenges,” said Vikas Dhole, senior vice president of modelling and optimisation with Emerson’s Aspen Technology business. “Doing this well requires high-quality, exact data that can be used to uncover new exploration opportunities. Logtek’s industry leadership in ensuring access to high-quality petrophysical data, combined with Emerson’s advanced automation capabilities, will give Logtek customers an important advantage in using data to advance their business.”

Logtek conducts quality control, data management, regulatory reporting and petrophysical analysis for many of the major upstream operators across the Norwegian Continental Shelf, helping them interpret subsurface well data and ensure it is accurate, organised and effective for E&P decision-making. After an extensive technical evaluation, Logtek chose to replace one of its legacy third-party software systems with AspenTech Geolog to better integrate with in-house developed solutions and support more automated and streamlined work processes and custom scripts.

AspenTech Geolog will allow Logtek to deliver existing and new high-quality well log data with faster turnaround times and greater operational efficiency. With fewer reservoirs available for exploration worldwide, Logtek enables customers to accelerate new opportunity discovery through more effective analysis of existing data.

“Logtek upholds high-quality well data accuracy standards for its customers,” said Lars J. Fjell, chairman of the board at Logtek. “To successfully optimise our internal solutions, we needed a tool with the right balance of sophisticated technical features and flexibility, allowing us to continue delivering the high-quality data we are known for, with greater efficiency and automation. Working closely with Emerson will allow us to strengthen data precision and operational efficiency in a way that will help our customers with stronger E&P decision-making.”

In recent years, the OSDU® Data Platform has emerged as an important open-source reference architecture for the energy industry to manage and access data. Products in the AspenTech SSE portfolio, including AspenTech Geolog, are developed in alignment with the OSDU Data Platform, ensuring greater interoperability and data management across Logtek’s workflows.

Logtek, together with sister company Petroware, has performed proof of concept projects with many of the largest energy companies in Norway, focused on real-world examples of how the standard is implemented to streamline data management processes, enhance collaboration and drive operational efficiency. Uniquely equipped to handle large multi-well, multi-user data sets within one project, AspenTech Geolog supports data-driven decision-making and open data standards so Logtek can integrate with existing solutions to streamline project collaboration and delivery.


@EmersonExchange @AspenTech @Emerson_News @EMR_Automation  @HHC_Lewis #PAuto #Oil_Gas #Norway

Tuesday, 6 October 2026

Disinfecting process water.

One of the most effective means of disinfection of Process Water is chemical treatment. An accurate and dependable chemical metering pump, like Blue-White®’s FLEXFLO® Peristaltic Pumps, can help operators simplify this critical process. FLEXFLO Metering Pumps are built to handle the most demanding treatment environments, with no vapor lock and no loss of prime.

These "peri-pumps" deliver precision fluid metering and accurate dispensing with a wide range of control capabilities. Their gentle, nearly pulsation-free pumping action makes them ideal for difficult-to-pump fluids such as gaseous chemicals, shear-sensitive fluids, viscous slurries and solids, and fluids with low moisture levels.


@BlueWhiteInd #PAuto #Chemical

Monday, 5 October 2026

Automation company's new campus in France.

Sustainable building design reduces energy consumption by about 70 percent.

Endress+Hauser has inaugurated its new company campus in Cernay (F). The event was attended by customers, partners, company employees, and business and government representatives.  Endress+Hauser has been manufacturing flowmeters in Cernay for customers worldwide since 1991. With the relocation of around 140 employees from its former sales centre to Cernay, the company has now brought together production, sales and central functions at a single site.

“The new campus provides the optimal environment for closer collaboration between sales, service and production. It enhances our customer closeness, promotes innovation and supports our long-term growth,” says Peter Selders, CEO of the Endress+Hauser Group. Steven Endress, President of the Endress+Hauser Supervisory Board, added: “The campus combines our long-standing roots in Alsace with a renewed focus on the future. It is an investment that highlights our commitment to our employees, to this region and to the sustainable growth of our business.”

The new sales building houses modern workspaces and meeting areas across 5,700 square meters. The facilities include a customer experience center, a Process Training Unit (PTU) for hands-on training, numerous breakout spaces and common areas, and a 120-seat auditorium. The building meets the highest environmental standards and was developed in close coordination with local employees, who actively engaged with the planning and execution phase and had input into their new work environment’s design.

To avoid paving over additional land, Endress+Hauser demolished an existing building. In the process, 96 percent of the total 1,405 tons of material was reused or recycled. Trees on the site were preserved or replanted. Further, the new facility meets the requirements of France’s RE2020 environmental regulation for new buildings. It will consume about 70 percent less energy than the previous headquarters, thanks to geothermal energy, photovoltaic installations, green roofs, and energy-efficient heating and cooling systems.

Endress+Hauser’s long-standing ties to Alsace also played an important role in the project’s implementation, with 95 percent of the companies involved coming from the region.


@Endress_Hauser @Endress_UK @Endress_US @Endress_France #PAuto #France

New space chief.

The Supervisory Board has appointed Alexander Dahm as Chief Executive Officer of Rocket Factory Augsburg (RFA). He succeeds Prof. Dr. Indulis Kalnins and will be responsible for the company's continued development and its path to the maiden flight of the RFA ONE launch vehicle. Dr. Kalnins will remain associated with the company and contribute his expertise.

Alexander Dahm
Alexander Dahm has more than 30 years of leadership experience in the aerospace and defense industry. A graduate in aerospace engineering, he most recently served as Chief Operating Officer (COO) of HENSOLDT Sensors and was a member of the Group Executive Committee. In this role, he was responsible for the entire operational value chain, including production, procurement, quality, and logistics.

"I am delighted to welcome Alexander Dahm on board as the new CEO of Rocket Factory Augsburg. In him, we gain not only a proven space and industry expert, but also a leader who successfully brings complex programs to execution and can guide organizations through decisive growth phases. His experience from the Ariane 5 program, from senior roles at Airbus, and most recently at HENSOLDT will be of great value for the further development of RFA," says Jean-Jacques Dordain, Chairman of the Supervisory Board of RFA.

Alexander Dahm brings deep expertise from his numerous leadership positions at HENSOLDT, Airbus Defence & Space, Airbus Operations, and previously Astrium and DASA. His professional achievements include building and scaling complex industrial and defense programs, developing industrial production capacities, and leading large international organizations with several thousand employees. He also has extensive expertise in industrialization, ramp-up management, operational excellence, and space systems.

"I am very much looking forward to working with the RFA team. I am impressed by the grit, innovative strength, and passion with which a new generation of European launch vehicles is being developed here. Together, we will reach the next important milestones on the way to the maiden flight of RFA ONE and actively shape the company's future," says Alexander Dahm.

With Dahm's appointment, Rocket Factory Augsburg strengthens its industrial and operational expertise in order to successfully carry out the company's next phases of growth and development.


@rfa_space #Space, #Rocket

Long-range science camera improvement.

Delivers four times the pixels of standard VGA for long-range radiometric measurement.

The RS8480, launched by Teledyne FLIR, is the first smaller form-factor, high definition midwave infrared (HD MWIR) science camera in the RS lineup. It combines a new 1280 × 1024 HD MWIR sensor with the proven RS6780 chassis it brings increased detail and measurement capability to long-range science applications while retaining familiar optics, mounting, calibration, and FLIR Research Studio workflow.

Designed for large-scale and outdoor scientific research, including commercial aerospace and space launch sites as well as government and defense test ranges, the RS8480 enables users to detect, identify, and measure small or distant objects with more pixels. The innovative new camera fills the gap between the existing FLIR RS6780 and the larger, faster RS8500.

Four times the detail.
The RS8480's high definition sensor provides four times the pixels of a standard 640 × 512 video graphics array (VGA) detector, equivalent to twice the linear sampling across a target. This additional spatial detail supports temperature and radiometric measurements, as well as the resolution of test articles and spatial measurements at long distances.

“Long-range outdoor scientific research teams need measurement data per pixel, not simply a high-quality video they can watch,” says Roger Martinez, Senior Principal Systems Engineer, Teledyne FLIR. “The RS8480 combines the resolution needed to put more pixels on small, distant objects with the proven RS platform, optics, and workflows that users already know. It therefore provides a straightforward path to HD MWIR performance without the disruption associated with introducing an entirely new camera platform.”

Measurement-ready performance.
 Based on a FLIR hot MWIR strained-layer superlattice (SLS) detector operating at 120 K, the RS8480 delivers a 1280 × 1024 resolution image, 37 mK typical NETD, and 14-bit dynamic range across the 3.4 to 5.1 µm spectral range. Radiometric data is available from every pixel and frame for measurement and analysis, rather than simply display purposes.

Key capabilities include:

  • 50–250 mm continuous metric zoom, extendable to 150–750 mm using the optional 3× afocal multiplier for applications that need additional reach.
  • Full-frame rates of approximately 45 Hz via GigE Vision and 60 Hz via CoaXPress.
  • Fully adjustable integration times and frame rates, with windowing down to 32 × 4 for high-speed transient events.
  • Range-grade synchronisation, including IRIG-B, tri-level, and lock-in sync - plus TSPI-accurate timestamping.

The potential applications set to benefit from RS8480 are broad, spanning outdoor scientific campaigns, commercial space launch monitoring, aerospace test and evaluation, combustion research, high-temperature materials research, and defense range instrumentation. The cooler’s mean time between failure (MTBF) of 27,000 hours supports long-term operation in demanding outdoor environments.

Proven platform, simplified integration.
Of particular note, the new FLIR RS8480 retains the RS6780 electronics, chassis, mounting interface, continuous-zoom optics, factory calibration model, video interfaces, and rugged IP65 housing. For existing RS6780 users, the camera is purposely positioned as a detector and resolution upgrade rather than a complete platform change.


@flir  @mepaxIntPR  #PAuto #Laboratory