Brainboxes LLC

Clearwater,  FL 
United States
https://www.brainboxes.com/
  • Booth: 6648

Overview

Whether you want to optimise production line efficiency, master machine monitoring, or reliably collect data from some of the world’s most extreme environments, Brainboxes simple and secure industrial connectivity lets you stay focused on what matters most to you. At Brainboxes, Trusted Connectivity lasts a lifetime, and so does our support. Every Brainboxes product comes with our support. Every Brainboxes product comes with our simple Built for Life Warranty: no limits, no fees, no hidden catches - just expert guidance whenever it’s needed.


  Press Releases

  • Structural Health Monitoring (SHM) plays a vital role in ensuring the safety and longevity of critical infrastructure such as bridges. Integrating Brainboxes industrial Ethernet and PoE modules into monitoring systems allows engineers to continuously collect and analyse data from embedded sensors. This enables them to detect early signs of structural degradation and respond before failures occur.

    Structural Health Monitoring

    SHM environments present significant challenges. Systems must handle high-frequency data streams, often thousands of samples per second, while operating in harsh, bandwidth-constrained conditions. These data streams include strain gauge readings, accelerometer measurements, vibration patterns, wind speed, and temperature. Maintaining reliable data transmission is essential for accurate structural analysis and decision-making.

    Accolade Measurement, a company specialising in precision load testing and structural health monitoring, provides assurance through modern solutions. By integrating high-speed acquisition systems with networked sensors, they enable seamless, cloud-based monitoring. Their systems sample data at rates of up to 100 kHz and transmit event-driven insights over 4G networks. As a result, engineers can record bridge parameters, validate modelling, and guarantee safety across complex infrastructure projects.

    Brainboxes SW-504 and ES-511 in situ bridge monitoring

    On a large span motorway river crossing, a two-and-a-half metre anti-climb steel barrier began experiencing structural issues. These issues were linked to vibration behaviour previously identified in similar aluminium barrier systems. Wind striking the barrier at certain angles caused resonance, resulting in vibration-related fatigue and failing welds. Accolade Measurement deployed a high-frequency monitoring system incorporating accelerometers and wind measurement equipment to quantify the local conditions. Crucially, the system depended on reliable communication between multiple devices and real-time data transmission over a 4G network.

    To meet these demands, Accolade uses Brainboxes Ethernet switches for DIN rail cabinet installations and Ethernet to Serial devices. The compact design and DIN rail compatibility allow for easy installation within industrial enclosures, while their 24V support matches the client’s existing electrical setup. The devices deliver stable, low-power operation in the challenging roadside environment with minimal configuration required. This helps engineers stream vibration data in real time. Additionally, the devices enable the team to accurately link wind conditions with structural behaviour, supporting root-cause analysis and informing remediation strategies.

    “Brainboxes devices just work and if something just works, then you don’t notice it. That’s a testament in itself.” – Alex Whittaker, Head of Engineering & Technology at Accolade Measurement

    On an ageing cast iron railway bridge, strain gauges were installed to monitor structural behaviour under operational loads. Due to the extremely high sampling rates, even brief communication interruptions can lead to significant data gaps, potentially masking signs of stress or fatigue. In a live railway environment, missing or corrupted data can compromise engineers’ ability to accurately assess bridge performance under load. This can make it difficult to identify emerging defects or validate maintenance decisions.

    To mitigate this, the team implemented a resilient network architecture using Brainboxes industrial switches. The network switches provide continuous connectivity between sensing equipment and on-site processing units to ensure critical monitoring data could be captured without interruption. Their plug-and-play design assists with rapid deployment within the existing cabinet infrastructure, avoiding complex configuration work in a restricted rail environment. Integrating the switches enables engineers to confidently analyse how the bridge behaves under repeated operational loads. Additionally, Brainboxes connectivity devices help them to make more informed decisions about ongoing inspection requirements.

    One of the most challenging projects involved Accolade Measurement working on a historic bridge. Their clients required combined structural and visual monitoring to understand how surface cracking was developing over time. Their goal was to remotely monitor cracks while maintaining dependable connectivity. PoE cameras were used to simplify installation, allowing power and data to be delivered over a single Cat6 cable. This made it possible to position cameras flexibly across the bridge, with the cable runs extending up to 100 metres without compromising performance. However, delivering reliable power and connectivity over these distances requires a robust and centralised PoE infrastructure.

    To support this system, Brainboxes PoE devices and unmanaged switches supply constant power and stable network distribution from a single control enclosure. This setup ensures that cameras remain operational in an exposed environment, supporting uninterrupted visual monitoring. Engineers can now remotely observe crack development in real time. The PoE modules equip the team with a comprehensive understanding of how defects evolve, supporting faster and more informed maintenance decisions.

    As infrastructure continues to age and monitoring requirements become more complex, the demand for high-performance SHM systems is increasing. By combining advanced sensing technologies with resilient industrial networking from Brainboxes, Accolade Measurement delivers accurate, real-time structural insights for their clients. This integrated approach helps engineers to capture high-frequency data, improve diagnostic accuracy, and make informed decisions that extend the life of critical infrastructure.

  • Hundreds of metres beneath the ocean, subsea systems operate in the harshest conditions on Earth. Extreme pressure, fluctuating temperatures, and unstable connections disrupt critical communication. Data interruptions can impact operational efficiency, inspection accuracy, and performance.

    Subsea robotics extreme environments

    TSC Subsea, a leader in robotic inspection, deploys underwater vehicles in these challenging conditions. Whether navigating the deep-sea or coordinating tasks, robotic operations depend on accurate communication between sensors, controllers, and third-party equipment. As industrial processes become data-driven, engineers require networking solutions that combine reliability with flexible design.

    To preserve communication in harsh subsea environments, TSC Subsea relies on Brainboxes’ industrial Ethernet switches and Remote I/O modules. The team transmits data from cameras, sensors, and control systems. The switches provide a simple, robust network framework for continuous data flow.

    Certain inspection tasks require high-resolution imaging to detect fine structural defects, such as hairline cracks. TSC Subsea uses Brainboxes Gigabit network switches to ensure real-time high-bandwidth transmission without loss or delay. These switches reinforce resilient networks that support accurate monitoring and automated decision-making in demanding underwater surroundings. Their rugged, lightweight design maintains performance under vibration, humidity, and fluctuating power. This reliable data flow enables predictive maintenance, remote monitoring, and precise coordination between multiple automated processes.

    robotics in extreme environmentsIn subsea operations, sensor signals are often distributed across separate wiring runs. This makes data collection slow, fragmented, and difficult to manage in environments exposed to high pressure, corrosion, and sealed thermal conditions. To solve this, TSC Subsea uses Brainboxes Remote I/O devices to consolidate dispersed sensor inputs into a single, networked interface. This provides instant access to critical signals, allowing engineers to respond to changes in sensor readings. Consequently, improving safety and reducing downtime. The Remote I/O modules transformed complex and disconnected wiring into a cohesive, responsive network supporting fast decision-making and precise operational control.

    Next-generation subsea vehicles are packed with advanced sensors, control systems, and communication modules. These sensors are sealed within enclosures where every cubic centimetre of space and watt of power is tightly constrained. In these environments, efficient use of physical footprint and energy is critical to operational performance and thermal stability. To meet these demands, TSC Subsea has deployed Brainboxes Pure Embedded Ethernet Switch range into their technologies.

    The devices provide high-speed Gigabit performance and ultra-low power consumption in a compact form factor, allowing engineers to add networking capability without sacrificing space. More functionality can be delivered within a smaller form-factor, supporting compact and capable subsea robotics platforms.

    From automated production lines to deep-sea inspection vehicles, challenges differ, but dependable communication remains constant. By combining robust connectivity with adaptable solutions, Brainboxes enables organisations to scale automation and respond to the growing demands of the industry.

  • The agriculture industry is under pressure to enhance food production while adapting to technological advancements. Modern farming requires innovative solutions to enhance efficiency, improve productivity, and promote eco-friendly practices. To meet future demands, farms are expected to deploy smart solutions into their infrastructure.

    Smart farming

    At one point in history, around 45 out of every 50 people were involved in agriculture, mainly subsistence farming. Today, due to technological advancements, that number has dropped to about 12 in 50 globally. It has even dropped to just 1 in 50 in some parts of the Western world. Despite this shift, agriculture remains one of the world’s oldest and most essential industries. It has shaped civilisations and economies while sustaining global populations with food and vital resources.

    Transforming Agriculture with Smart Connectivity

    A leading company in the agricultural sector needed a smart farming system that would optimise their operation. Their goal was to stay competitive in an increasingly tech-driven industry. By employing smart technology for tasks such as crop health monitoring, precision resource management, and yield forecasting, they were able to increase productivity. The technology also helped them to reduce waste, and make more informed decisions. Using digital tools allowed the business to operate more efficiently and sustainably, improving profitability and operational stability.

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    Brainboxes’ range of Hero Ethernet 16 Port switches were central for transforming their workflow. The switches facilitated reliable communication between sensors and environmental control equipment. Farmers could connect devices such as soil moisture sensors and irrigation pumps across expansive fields. This created the infrastructure necessary for a fully connected smart agriculture system.

     

     

     

    Seamless Integration with Legacy Equipment

    The farm previously relied on legacy systems to manage critical agricultural processes. These included PLC-based controllers for livestock feeding management, standalone grain storage and drying units with limited data output, and manual irrigation control panels. Connecting newer digital control and monitoring devices with these older systems was difficult and costly. The Hero Ethernet switches’ versatile connectivity options eliminated the need for costly equipment upgrades or replacements. This allowed farmers to create a unified network that seamlessly connected older machinery with modern sensors, automated control units, and cloud-based dashboards. The easy integration of the switches not only improved real-time visibility and control, but also extended the lifespan of existing equipment.

    Fibre-optic Uplinks for Long Distance Reliability

    brainboxes-ed-593-8-thermocouple-inputs-factory-floor-process-control-andtaining reliable data transmission across expansive farmland presented logistical challenges due to long distances between weather stations, sensors, and control units. Traditional copper cabling has limitations such as a total span length (of 100m) and susceptibility to electromagnetic noise.

    Brainboxes developed the SW-7617 and SW-7717, which have an SFP uplink to extend network reach with fibre optics. This helped the farmers to deliver stable, long distance, high-speed data transfer across the site. By installing Brainboxes Hero Ethernet switches into their smart farming system, the company enabled farmers to remotely monitor field conditions and automate responses based on live sensor data. The uninterrupted exchange of data supported precise environmental tracking and faster, data-driven decision-making in the field across agricultural operations of any scale.

    Scalable Networking for Growing Agricultural Demands

    As the operation grew, expanding the network to accommodate additional sensors and control units became increasingly complex. With their scalable design and SFP options, the Hero Ethernet switches provided the flexibility needed to add additional devices and network segments. The inclusion of SFP ports allows for fibre optic integration, enabling long-distance, high-speed connections across large or remote areas of the farm. This makes the system inherently futureproof as the farms grow or their networking needs change.

    Additional devices and network segments can be added without needing a complete infrastructure overhaul. The higher port count of the switches allowed for a flexible network layout and device placement, simplifying expansion across the farm. This helped the farmers expand the smart farming system with minimal disruption.

    To support the development of a cutting-edge smart farming solutions, Brainboxes supplied Hero Ethernet 16 Port switches to a leading agricultural company. These switches were integrated into the company’s smart agricultural system. This enabled their customers, farmers, to connect existing legacy structure with digital tools, improving their workflow and resource management. The scalability and flexibility of the switches also allowed the company to expand its smart system without costly redesigns, increasing profitability. As a result, the farmers gained real-time insights, automated key farming processes, and improved overall resource efficiency.


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