October- 2026 | Manufacturing Technology Insights

Manufacturing Technology Insights: Specials Magazine

Donaldson [NYSE:DCI]

Filtration Designed Around What Comes Next

Industrial liquid filtration is often judged by what a filter removes. In production, the more consequential measure is what it prevents downstream, including membrane fouling, unstable flow, premature maintenance or contamination reaching a critical process stage. The filtration strategy has to distribute that burden across the line rather than leave one element to absorb it all. Donaldson [NYSE:DCI] builds its liquid filtration systems around that sequence. Rather than treating filtration as a single cartridge decision, the company combines staged filtration with application-specific housings, high-flow systems and process monitoring. Each stage is selected according to the contaminant load it should remove and the equipment or product it needs to protect downstream. The value of staged filtration extends beyond the particles removed at each stage. A prefilter can extend the life of a finer element. By handling higher flow rates, a high-flow stage helps protect reverse-osmosis equipment. At the final stage, the membrane can maintain product requirements after earlier filters have removed the larger contaminant burden. Make Each Stage Protect the Next A fine filter becomes unnecessarily expensive when it is asked to remove contamination that could have been captured upstream. Donaldson’s modular liquid filtration systems allow several stages to be configured around the needs of the process. Depending on the application, a system can combine coarse prefiltration with progressively finer elements before the liquid reaches its final treatment stage. Parallel configurations can also be used where redundancy or continuous operation is required. Each filter should remove the contamination best suited to its design while leaving the next stage with a more manageable load. Donaldson’s LifeTec portfolio supports that progression with filtration grades suited to different points in the process. Coarser polypropylene elements can be positioned upstream, while finer membrane elements handle more demanding final filtration requirements. The result is a filtration train in which performance is distributed across the system instead of concentrated in the most expensive element. This approach also changes maintenance economics. Extending the service life of a final filter can reduce replacement frequency while keeping differential pressure from rising prematurely.

Rubber and Tire Tech

Cryogenic Systems & Parts

Engineering Consistency into Deflashing

Jeffrey Walter, CEO

Hand trimming can seem like a simple finishing step until inconsistency, labor and scrap add up. Parts trimmed on Monday may not look the same as those trimmed on Friday, making it difficult for manufacturers to maintain quality while keeping pace with production. Cryogenic Systems & Parts was built to address that challenge, using cryogenic deflashing equipment to make part finishing more predictable. The company primarily serves rubber manufacturers whose customers span industrial manufacturing, government, military, medical and household products. Its machines are designed around different part sizes and production volumes, allowing manufacturers to replace a labor-intensive manual process with a more controlled one. For CEO Jeffrey Walter, equipment is only part of what makes the company valuable to its customers. His approach is shaped by nearly two decades in equipment manufacturing and a belief that supporting customers is as important as building the machine itself. For CEO Jeffrey Walter, equipment is only part of what makes the company valuable to its customers. His approach is shaped by nearly two decades in equipment manufacturing and a belief that supporting customers is as important as building the machine itself..

Manufacturing Automation Solution

CA Engineering (CAE)

Bringing Wireless Products to Life with Security and Precision

Jim Stout, CTO

Advances in manufacturing technologies have significantly simplified the process of building most electronic products. Manufacturing devices that incorporate radio frequency (RF) technology, however, present a particular set of challenges, the resolution of most of which begins after the devices are assembled, when secure connectivity, precise RF calibration, and unique digital credentials must be managed in interference-heavy environments. These hurdles demand an expert hand to resolve—one with skill and experience that goes beyond standard manufacturing expertise. CA Engineering (CAE) steps in to provide that expert hand, guiding clients and manufacturers through the additional layers of testing, calibration, and security that make wireless devices perform reliably in real-world applications. Over the past several years, CAE has managed QA and testing for nearly two million wireless devices. Its proprietary CAIMAN™ system serves both as a quality assurance framework and a management platform, providing clients with full oversight of their product across the entire production cycle. “The CAIMAN™ system has evolved over more than 15 years. A dedicated team of engineers, with some working on it full-time for over a decade, are continuously refining it to meet the growing demands of wireless product manufacturing,” says Jim Stout, CTO. Through technology built for accelerating manufacturing tests, CAE ensures complex electronics, like RF-integrated PCBAs, move from production to performance faster and more reliably. The company enables manufacturing speed by crafting custom test fixtures and providing best-practice recommendations that ensure consistent high-quality output. These fixtures and manufacturing processes are fully integrated into the CAIMAN™ system, providing a holistic approach to ensure that every device meets rigorous operational, security and performance standards, giving clients confidence in both the reliability and readiness of their products. While the initial focus is on manufacturing speed and quality, CAE goes further by tackling one of the trickiest challenges in wireless devices: security. Vulnerabilities in wireless communication devices extend beyond the manufacturing site, into the silicon and individual components themselves. Most contract manufacturers focus primarily on IPC-A-610 standards or ISO 9001 quality inspection. CAE, through the use of its CAIMAN™ system, confirms that the manufacturing quality of each device satisfies these standards by, among other things, measuring, calibrating and testing each device’s transmitters and receivers. But the system goes far beyond that, helping to ensure that each device also receives correctly signed firmware, with appropriate MAC IDs, tokens, and keys securely installed, none of which is addressed by IPC-A-610 or ISO 9001. The system also enables the registration of devices with cloud services (if needed), permits real-time management of all test parameters, and records and maintains the results of each test that is run, providing clients with complete visibility and control.

IN MY OPINION

Prototype Engineering

Today's Manufacturers Could Really Use a Strategist

Austin Daniels, Vice President of Strategy & Optimization, Mitsubishi Power Americas

LAST WORD

Smart Factory

Factory Simulation - The Key to Scaling

Paul Guerrier, Manufacturing Engineering Manager, Moog Inc

IN FOCUS

Centralized Lubrication Systems Improving Equipment Performance and Maintenance Efficiency

Centralized lubrication systems automate lubricant delivery, reduce equipment wear, improve reliability, lower maintenance costs and increase productivity.

Learn more

Cryogenic Deflashing Equipment Manufacturing: Accelerating Industrial Transformation

Cryogenic deflashing equipment manufacturing helps improve product quality, increase production efficiency and enhance manufacturing productivity.

Learn more

EDITORIAL

Precision and Intelligence Driving Modern Manufacturing

Manufacturing is entering a period where filtration, finishing, automation and intelligence increasingly shape how efficiently production systems perform. This issue of Manufacturing Technology Insights explores that shift through industrial liquid filtration, cryogenic deflashing and applied intelligence, supported by perspectives on thermal management and connected automation.

Our cover story recognizes Donaldson [NYSE:DCI] as the Top Industrial Liquid Filtration Solutions Provider 2026. Its staged filtration approach distributes contaminant loads across prefilters, finer elements and final treatment stages, helping protect downstream equipment and manage maintenance requirements. Its High Flow Skid, LifeTec media and application-specific housings demonstrate how filtration can be designed around flow, process chemistry and production needs rather than micron rating alone.

The issue also features Cryogenic Systems & Parts as the Top Cryogenic Deflashing Equipment Manufacturer 2026. Its basket and belt-style machines help rubber manufacturers replace inconsistent manual trimming with repeatable processing. Recipe storage, sample testing, training, contract deflashing and technical support extend the value beyond the equipment itself, while its continued servicing of older machines reflects an emphasis on long-term customer support.

Vibrant Capital, recognized as the Top Industrialize Intelligence Solutions 2026, brings an operator-led perspective to applied AI. Its approach connects trusted data, model selection and governance with enterprise workflows while encouraging organizations to treat AI agents as accountable digital workers. Its Growth Partners network and CIO Fellows Society further connect AI founders with experienced technology leaders.

Contributor insights broaden the issue. Jon Urquhart, Director, Global Applications Engineering at PVA, examines liquid thermal interface materials and the fluid-system considerations required for reliable dispensing. Ron Gulbransen, Technical Product Manager, Auxiliaries, explores robotics, unified controls, workcell safety and IoT-enabled monitoring through automation.

Together, these stories illustrate how manufacturing progress increasingly depends on systems that connect precision, reliability and intelligence. From filtration and finishing to automation and AI, the focus remains on making advanced technology practical within real production environments.