Wednesday, 12 August 2026

Advanced lasers for Datacentres.

Femtosecond lasers, from LITILIT, are used to manufacture components for Ai data centre equipment, including parts used in advanced optical connections that speed up data transfer. Femtosecond lasers emit extremely short pulses, lasting quadrillionths of a second, that allow manufacturers to process next-generation materials with minimal heat damage.

The Ai data centre boom is projected to more than double Ai infrastructure capital expenditure in the next five years, while the market for optical connections that speed up data transfer will increase nearly 400 times, reports from Goldman Sachs and TrendForce show. According to experts at femtosecond laser company LITILIT, the Ai boom is also increasing the demand for advanced lasers that can process materials with high precision and minimal heat.

This Goldman Sachs report estimates that annual Ai infrastructure capital expenditure will grow from $765 billion in 2026 to $1.6 trillion by 2031, driven by surging demand for compute power, data centre construction, and energy infrastructure. The report also warns that power, labor and equipment bottlenecks could lengthen the time between capital commitments and operational data centres.

Nikolajus Gavrilinas CEO LITILIT
According to Nikolajus Gavrilinas, CEO of femtosecond laser manufacturer LITILIT (pictured right), one of the less visible bottlenecks could be the precision tools needed to manufacture components for next-generation data centre equipment.

“Many advanced Ai components, from semiconductor packages, glass substrates, to optical interconnects and advanced PCBs, require manufacturing technologies that can process materials without introducing heat damage. Femtosecond lasers are becoming one of the key enabling tools for this transition, and we believe demand will grow rapidly as Ai manufacturing scales,” Gavrilinas says.

Currently, one of the biggest issues in making data centres more efficient is speeding up data transfers. TrendForce recently forecast that the market for co-packaged and near-packaged optics - optical connections that speed up data transfer - will grow from around $100 million in 2025 to over $39 billion by 2030.

According to Gavrilinas, femtosecond lasers are increasingly used to make components for equipment that enables faster data transfer. For example, they can be used to make glass interposers – wiring layers used in advanced Ai hardware and data centre equipment to help connect chiplets. The laser drills microscopic holes through the glass, which are then filled with copper and turned into tiny vertical connections.

“A normal laser or mechanical drill heats the material as it cuts, and glass can crack or chip when heated unevenly. A femtosecond laser fires pulses so short – quadrillionths of a second – that the surrounding glass has almost no time to heat up. The same precision is also used to manufacture other data centre equipment wherever something needs to be cut, trimmed, or fixed with almost no heat,” Gavrilinas explains.

He notes that despite surging demand, producing femtosecond lasers at industrial volume remains difficult, as most femtosecond laser systems evolved from scientific systems and can deliver strong performance, but are difficult to automate and depend on qualified specialists.

To narrow the adoption gap, LITILIT developed a new technology based on a few patented inventions (link to patent 1, link 2), made by LITILIT co-founders Kęstutis Regelskis, Nerijus Rusteika, and Gavrilinas, in close collaboration with the Centre for Physical Sciences and Technology (FTMC) in Vilnius (LT). The technology allows to manufacture femtosecond lasers with purpose-built design, reduced component complexity and high level of automation.

In June 2026, LITILIT started the construction of a laser factory in Vilnius, and later plans to replicate the model together with international partners.


@SensusPr #Litilit #Datacentres #Ai #Lithuania



Protection from high-altitude electromagnetic pulse interference.

For control panels and communication equipment and high-current facility power distribution systems.

A range of EMI powerline filters designed to protect sensitive electrical and electronic equipment against High-Altitude Electromagnetic Pulse (HEMP) and conducted Electromagnetic Interference (EMI/RFI) resulting from high-energy electromagnetic events, including nuclear-induced electromagnetic disturbances and lightning-related transients have been introduced by EMIS.

EMIS SMF913 and TMF913HEMP EMI Power Line Filters provide single phase and three phase configurations, and suitable for a wide range of AC and DC facility power applications. With current ratings from 6 A to 3000 A, they are ideal for supporting applications ranging from control panels and communication equipment to high-current facility power distribution systems. The EMIS HEMP filter design features Integrated 80 kA peak surge-current protection (8/20μs) which provides protection against lightning-induced surges and power switching transients.

Standard Performance models provide 100 dB insertion loss from 30 MHz to 18 GHz, followed by 90 dB attenuation up to 40 GHz. Extended-performance models provide 100 dB attenuation from 14 kHz to 40 GHz, offering enhanced protection against both low-frequency conducted interference and high-frequency electromagnetic disturbances. Built-in discharge resistors safely dissipate energy stored in internal capacitors after power is switched off, improving operator safety and reducing maintenance hazards

The EMIS HEMP filters are designed in accordance with the requirements of MIL-STD-188-125-1/2 and MIL-PRF-15733J, supporting HEMP-hardened facility and high-performance EMI/RFI protection applications and tested in accordance with MIL-STD-188-125-1/2 to withstand specified E1 Short Pulse and E2 Intermediate Pulse current injection levels under common-mode and line-to-ground conditions, with E1 residual current limited to ≤10 A and no damage to the filter during E2 testing

EMIS HEMP filters help to prevent equipment malfunction, reduce communication and control errors, minimise system downtime and enhance the reliability and service life of connected equipment.

Applications include:

  • EMP Shielded Mobile Shelters: Provides HEMP and EMI protection at power entry points, safeguarding critical electronic and communication in mobile and rapidly deployable facilities.
  • EMP Racks: Protects sensitive equipment within EMP-protected racks by suppressing conducted HEMP, EMI/RFI and power-line transients.
  • Command and Control Centres: Protects mission-critical communication, surveillance, command, and control systems from HEMP and conducted electromagnetic disturbances, ensuring reliable operation.
  • Data Centres: Protect critical servers, networking equipment, UPS systems, and other IT infrastructure against HEMP, EMI/RFI, and power-line disturbances, helping maintain continuous operation.
  • Combat / Tracked Vehicles: Protect vehicle power systems against HEMP and EMI, supporting reliable operation of communication, navigation, electronic warfare and other mission-critical electronic equipment.
  • Radar Power Supplies: Provides protected and low-noise power to radar systems, minimizing conducted electromagnetic interference and supporting reliable signal processing and operational performance.
  • Communication & Electronic Warfare Systems: Protect sensitive communication, surveillance and electronic warfare equipment against conducted HEMP and EMI disturbances on power lines, enhancing system reliability in demanding electromagnetic environments.
  • Critical Infrastructure: Protect facility power systems and connected electronic equipment in telecommunications, utilities, transportation, and other mission-critical facilities against HEMP, EMI/RFI, and power-line disturbances, supporting reliable and continuous operation.

EMIS aims to offer an end-to-end solution to meet industry’s ongoing EMI Challenges. With a robust global supply footprint across eight industry segments, EMIS is continuously investing in technology and skills to deliver its promise of efficiency with seamless customer support.



@proactivefleet #EMIS #PAuto #Electronics

IIoT enablement software platform.

Brings Ai and advanced analytics to industrial edge devices.

PACEdge™ version 3.0, the latest advancement to Emerson's IIoT enablement software platform, helping to bring Ai capabilities and frictionless application deployment to edge devices. Enhancements to the PACEdge platform empower teams in life sciences, oil and gas, packaging, food and beverage and many other industries to more intuitively secure, deploy and standardise edge applications to drive the most efficiency and productivity from their operations.

Modern manufacturers are increasingly leveraging the rich data available from their IIoT devices to feed Ai vision applications, inference and analytics tools. These new workflows support the advanced operational decisions necessary to secure competitive advantage. However, the required data is often siloed across many disparate IIoT technologies, making it hard to turn that data into actionable information. PACEdge version 3.0 builds upon the platform’s ability to aggregate data from a wide variety of technologies and easily deploy it into containerised applications such as AI-based analytics, vision systems and intuitive visualisation.

“Amidst increasing competition, workforce shortages and the rise of AI, deploying software in the most performant and cost-effective way is a critical enabler of competitive advantage,” said Seán Saul, vice president of product for Emerson’s process systems and solutions business. “The PACEdge 3.0 software platform provides a suite of tools and services to make it easier for teams to deploy or build their own analytics, AI and machine learning applications, dashboards, graphics and data visualisations as close as possible to where work is performed. This version release helps customers realise operational value from edge applications faster through a simpler, more scalable deployment experience.”

The latest enhancements to the PACEdge platform introduce a group manager for more intuitive device management. The group manager feature empowers teams to remotely manage groups of devices across the facility or enterprise. Aided by an intuitive graphical interface, users can deploy new features such as updated dashboards, security updates, operating system updates and more.

Improved app marketplace integration also makes it easier for users to run containerised workloads at the edge in a secure environment. Users will have a single repository for the apps available in the PACEdge marketplace and can browse or search for apps designed to support their unique operations with low-touch deployment.


@EmersonExchange @EMR_Automation @Emerson_News @HHC_Lewis #PAuto #Ai #IIoT

Tuesday, 11 August 2026

Imaging in life sciences.

Delivers low-noise, high-throughput performance for life sciences and precision measurement.

The Falcon4-CLHS™ M8200-Scientific has been announced by Teledyne DALSA. This is a new 67 MP model in its Falcon4-CLHS area scan camera family. Optimised for life sciences, scientific imaging, and precision measurement applications, the camera combines ultra-high resolution with exceptional image quality, sensitivity, and measurement accuracy.

Built on a customised version of Teledyne e2v's Emerald™ 67 MP CMOS image sensor, the camera delivers approximately 3 e⁻ read noise, up to 64 dB dynamic range, 70% quantum efficiency at 550 nm, and pixel-level factory calibration to support demanding low-light and quantitative imaging applications.

Designed for high-resolution, larger-format imaging applications, the Falcon4-CLHS M8200-Scientific addresses the needs of whole-slide imaging, genomics, and spatial omics, fluorescence microscopy, high-content screening, automated cell analysis, imaging cytometry, and light-sheet microscopy. Its combination of low noise, high sensitivity, wide dynamic range, and factory-calibrated image quality also makes it well suited for precision metrology, semiconductor inspection, materials analysis, and other advanced scientific and industrial imaging applications where measurement accuracy, throughput, and image consistency are critical.

"Life science and scientific instrument developers require both exceptional image quality and high throughput," said Manny Romero, Senior Product Manager at Teledyne. "The Falcon4-CLHS M8200-Scientific extends the Falcon4-CLHS platform into demanding quantitative imaging applications, delivering true 67 MP resolution along with enhanced sensitivity, dynamic range, image consistency, and measurement accuracy."

The camera's 8,192 × 8,192 square sensor format with 2.5 µm pixels maximises usable imaging area for microscopy applications, while operation at up to 65 fps supports high-throughput imaging workflows. Combined with Teledyne's imaging ecosystem, including sensors, frame grabbers, and software, the camera provides a complete end-to-end solution from a single supplier. This is particularly well suited for OEM developers building next-generation life science, scientific, semiconductor, and industrial imaging systems that demand performance, reliability, and long-term product stability.


@TeledyneDALSA  #PAuto #Life_Sciences

Launching a new car company!

Importance of engineering reliability from the beginning.

HBK's Design for Reliability (DfR) approach helps electric vehicle manufacturers build sustainability and customer confidence into every stage of development Launching a new car company is a monumental task; launching one dedicated to sustainability and adventure adds another layer of complexity.*

As a new EV manufacturer, Hottinger Brüel & Kjær’s (HBK) customer needed to deliver exceptionally durable vehicles and charging products, proving their long-term reliability without historical data, and building brand trust in a competitive market.

The customer’s Design for Reliability (DfR) department decided to implement HBK’s ReliaSoft suite for test design, lifetime predictions using test and customer fleet data, and comprehensive system reliability modeling across all vehicle and charging hardware.

This proactive DfR program provided 9% improvement in product development efficiency by accelerating product maturation, provided early insights into lifetime performance, optimised designs for durability, and built deep-seated confidence in the reliability of their innovative electric vehicle ecosystem.


* The full case study is available to read on HBK’s website: A DfR Approach for Electric Vehicles.

@HBMmeasurement @BruelKjaerUK #PAuto #Automotive

Monday, 10 August 2026

Reducing moisture mapping with accuracy and speed.

By combining advanced thermal imaging with workflows directly connected to the company’s moisture assessment platform, Onterris (formerly CTEH) has reduced moisture mapping costs by upwards of 40% while improving accuracy and speed. The iXX Series from Flir,  enables faster inspections, real-time collaboration, and more efficient data integration, transforming both field performance and client delivery.

Operating across the United States, Canada and Australia, the Onterris Resilience and Recovery Team specialises in helping return buildings to safe, functional conditions after issues such as water damage, contamination, or environmental hazards. Their teams handle a wide range of building science challenges from indoor air quality and ventilation assessments to disaster response, chemical impacts, and post-remediation verification. A key element of this work is the need to quickly understand what’s happening inside structures, often under time pressure and in complex environments. Moisture migration, hidden damage, and contamination risks must be identified early to ensure effective remediation and reduce long-term costs.

Thermal imaging and structured workflows in practice.
Thermal imaging is a key part of Onterris’ inspections, helping teams quickly spot temperature differences that reveal moisture paths, hidden leaks, and other issues not visible to the eye. It also supports airflow checks, identification of potential biological growth, and detection of chemical leaks. Combined with moisture meters, hygrometers, and iPads running the company’s proprietary Moisture Assessment Survey Tool (MAST®) along with LiDAR scanning and integrated data capture, this setup allows teams to efficiently map conditions, document findings, and deliver clear, client-ready reports that support remediation decisions.

Choosing the iXX-Series.
Before adopting the Flir iXX Series, Onterris used a mix of Flir Ex and Cx-Series cameras. The move to iXX was driven by the need for higher accuracy and field efficiency, enabling teams to reliably detect even subtle issues, work comfortably through long inspections, and efficiently cover larger or elevated areas. Key selection criteria included:

  • High-resolution imaging for better anomalydetection
  • Ease of use and ergonomics for long days in the field
  • Open API compatibility to integrate directly with internal software
  • Built-in teleconferencing capabilities for real-time expert support

The ability to connect thermal images directly with the company’s MAST® platform was particularly valuable, eliminating manual steps and reducing the risk of errors.

Faster, more accurate, and more cost-effective.
The transition to the iXX Series has delivered measurable improvements across operations:

  • Average cost per square foot reduced by upwards of 40%
  • Improved detection accuracy, with fewer overlooked areas
  • Reduced downtime thanks to longer battery life

This translates to more efficient inspections and better outcomes for clients, without increasing operational complexity. In practice, the iXX cameras have helped Onterris identify problem areas earlier and with greater confidence, increase responder productivity in the field, simplify training and deployment, and deliver more consistent and reliable inspection results. The cost reduction alone demonstrates how improved imaging capability and seamless data integration can directly impact profitability and scalability.

Tangible benefits and looking to the future.
The expansion of the iXX across Onterris has been driven by clear, practical advantages, strengthening both operational efficiency and brand reputation and positioning the business for continued growth. These include:
  • Immediate access to expert input via live communication
  • Higher-quality deliverables for clients
  • Reduced need for follow-up analysis after site visits

This allows teams to resolve issues faster and with greater confidence, while improving overall client satisfaction. The adoption of the iXX-Series has also delivered benefits beyond field performance, improving team morale and confidence in equipment, enabling faster turnaround times for clients, and providing stronger data quality and reporting.

Looking ahead, the biggest opportunity is deeper digital integration: automatically linking thermal images to inspection data, reducing manual work and errors, and speeding up reporting. The iXX already supports this with built-in connectivity, enabling real-time collaboration and faster decisions on-site. Future enhancements, such as automatic logging of environmental and psychrometric data with each thermal image, and consolidation of tools into a more integrated inspection ecosystem could further streamline workflows. These improvements would continue to reduce equipment load while increasing data quality and usability.


@flir @onterris @mepaxIntPR #Moisture #PAuto #TandM


Robotics and medicine.

At Medical Technology Ireland, attendees will have the opportunity to experience Stäubli’s technologies firsthand and discover the transformative role they are playing in medical device manufacturing.

Medical Technology Ireland is one of Europe’s leading trade shows for medical device development and manufacturing. Taking place this year on September 23-24 at Galway Racecourse, the event will feature Stäubli Robotics and its comprehensive portfolio of innovative automation solutions for the medical technology industry.

The range of medical devices is vast, spanning everything from orthodontic braces and CT scanners to prosthetic devices. As diverse as these products are, all must comply with rigorous industry standards—and increasingly, they must do so amid ongoing innovation and industry trends, such as connected and wearable devices and personalized products, which are making manufacturing more complex and placing greater demands on traceability.

Automation offers solutions. “In the medical world, the rising demand for single-use devices like surgical staplers, which require precise assembly and testing, increasingly involves automation and robotics to meet high production volumes and stringent medical device requirements,” says Sébastien Lagarde, Global Leader, Life Robotics at Stäubli Robotics.

Robots and mobile robotic systems can make medical device manufacturing as efficient, reliable, cost-effective, and streamlined as possible. Of course, robots used in medical applications must meet the most stringent hygiene requirements. They must also withstand intensive cleaning and decontamination procedures, and only specially designed robots can do so over the long term without being damaged.

Forty years of expertise in the medical technology industry.
For nearly four decades, Stäubli Robotics has partnered with OEMs and system integrators to automate demanding medical technology applications. Drawing on its extensive expertise, the company offers a comprehensive range of robotic solutions for virtually any application. Whether used in assembly, machining, laser cutting, polishing, sandblasting, quality inspection, or injection molding operations, Stäubli robots support every stage of medical device production.

Stäubli offers hygienic, cleanroom-ready four- and six-axis robots across a wide range of payload capacities. Specialized models designed for life science applications comply with the most stringent GMP and FDA requirements and are adapted for operation in aseptic environments. Stäubli’s portfolio also includes the Access series, a dedicated product line that provides an affordable entry point for many medical device manufacturing applications while maintaining Stäubli’s high quality and performance standards.

Another key advantage for medical device manufacturers is Stäubli’s extensive quality and process expertise. The company is certified to ISO 13485, confirming that it meets the requirements of the internationally recognized standard for quality management systems for medical devices. This certification helps manufacturers comply with regulatory requirements by significantly reducing the validation effort involved in integrating automation solutions. Through documented processes, rigorous quality standards, and a consistent focus on industry requirements, Stäubli offers its customers greater assurance when implementing demanding production projects.

For highly flexible process integration and material handling, Stäubli offers a range of mobile robotic solutions, including platform AGVs, autonomous forklifts, and the unique Sterimove mobile robot— the world’s first Grade A/B-compatible mobile robot.

Automation delivers significant user benefits.
With proven expertise and flexible solutions, Stäubli continues to set new industry benchmarks, helping manufacturers optimize scalability, process reliability, and productivity. Stäubli’s solutions are designed to meet all regulatory requirements in the medical technology sector, allowing medical device manufacturers to improve throughput and product quality while increasing efficiency and profitability. Automation also helps reduce human error, enhance transparency through real-time data collection, and create more flexible manufacturing processes—all essential capabilities for meeting the growing demand for personalized medical products.

The venue for Medical Technology Ireland - Galway Race Course

@StaubliRobots @MedicalTechIre @PresseBox @UnnGmbh #Robotics # Medical #PAuto #Ireland