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Blogs •
Spot never stops learning new tricks. We’re adding two new capabilities to Spot’s toolkit so your fleet can work even harder.
Over the past few years, we’ve worked with hundreds of companies to tackle their biggest challenges. They’re looking for ways to increase reliability and uptime in their plants. They have lofty energy and sustainability goals. Labor shortages challenge them to do more with less. And on top of everything, they are trying to figure out how to make artificial intelligence work for them.
They’re using Spot to automate their most mundane tasks and deliver data that helps them make more informed decisions across all levels of the business. Across all industries—from breweries to paper mills—we’re seeing our customers’ investment in robotics pay off faster than they ever imagined.
Today, we’re announcing updates that build on this foundation. We’ve added new capabilities that enable you to do more with Spot. We’re making it easier to manage missions and data. And we’re constantly improving hardware and systems to best meet the demands of dynamic, complex facilities.
Over 1,500 Spot robots have been deployed around the world to proactively monitor industrial equipment for signs of failure. One of the biggest ways companies are realizing value with Spot today is acoustic leak detection—with typical customers seeing return-on-investment in two years or less. Operators collect data using Spot and the Fluke SV600 acoustic imager to perform predictive maintenance—avoiding unplanned downtime and reducing costly inefficiencies.
That’s why today, we’re excited to add another powerful capability to Spot’s toolkit: acoustic vibration inspection.
Manufacturing plants and logistics centers are full of conveyor systems and other rotating equipment—which in turn are full of thousands of bearings. These small parts are essential to keep equipment moving. Unplanned downtime has a massive financial impact, so catching signs of degradation early is crucial.
Now, Spot can perform ultrasonic inspections of rotating equipment using the Fluke SV600. This enables operators to detect early indicators of bearing failures before they cause a breakdown. Capture more data without installing more inline sensors or requiring more contact sensors.
Spot is your four-in-one tool to uncover your maintenance priorities: from air leaks, to equipment running hot, to out-of-range gauges—and now, potential bearing failures.
via GIPHY
Industrial facilities are dynamic environments where tracking change, predicting issues, and planning for what’s next are persistent challenges. To manage this complexity, companies are building digital twins—living virtual models of a facility and its assets that reflect, predict, and control the current state of their physical counterparts.
Spot already captures data about equipment health. Now, we’ve added a laser scanning integration to Orbit that enables you to plan reality capture missions in the same way you plan inspection missions. Record missions using the Leica BLK ARC payload. Then edit, schedule, and monitor from Orbit. As missions are completed, simply process the data and continue working in your preferred software.
This 3D data supports factory design, equipment installation, and change management.
Spot supports increased capture frequency without increased costs. Unlike manual scanning methods, Spot performs routine, repeatable scans completely autonomously. And since missions are managed remotely from Orbit, you have complete visibility and control without being on site.
Spot and the BLK ARC can also be used to document hazardous environments like underground mines from a safe distance. Please contact our sales team to learn more.
Spot operators and asset managers use Orbit to manage their fleet of robots, view and analyze data, and pipe that data into legacy systems. Together, Orbit and Spot surface urgent issues for today and deliver predictive intelligence for tomorrow. This release includes several updates that make integrating them into your world easier.
You can now support autonomous missions over longer distances by arranging multiple docks along Spot’s route. As needed, Spot can recharge at the nearest dock before continuing on its mission. Multi-docking enables large sites to extend the range of autonomous missions and maximize Spot’s inspection time since the robot is no longer confined to one docking location.
In addition to a new look to the Orbit interface, this release introduces new ways to process alerts in Orbit so you can quickly surface critical issues where assets require attention and group, triage, and dismiss alerts in a single click. Now, all active alerts are displayed in the Site Map until they are reviewed and cleared. Get details about each inspection with one click. Then, when appropriate action has been taken—like opening a work order in response to an anomaly—dismiss single point-in-time alerts or as a batch for each inspection. Have confidence that time-sensitive alerts are highly visible and that the data sent to downstream business systems is clean and usable.
We’ve supported customers through thousands of deployments, bringing the best practices we’ve learned from the field into software features. In this release, we’ve made several updates to authoring workflows to streamline the deployment experience. Whether you’re planning missions on your own or with support from our team, you’ll notice a number of improvements to recording and testing processes.
Cloud-based Orbit is now available in Australia, Brazil, EU, Korea, Japan, North America, and Singapore (previously US only). This is the preferred deployment option for enterprises looking to scale quickly and integrate with existing SaaS products.
Cloud-based Orbit streamlines deployment because it does not require installation of a physical server and it auto-connects to Spot via Wi-Fi or LTE. It also helps users stay current with optional in-app updates and enables flexible extension hosting options outside the confines of a physical server.
If the cloud isn’t for you, Orbit can still be deployed on-premise via the Site Hub. Both versions offer the same visibility and control for your robot fleet.
Spot is more prepared than ever for dynamic industrial facilities. In addition to moving objects, Spot can now detect and avoid even more common hazards like carts, wires, and ladders. This release improves how Spot “sees” the world by integrating visual semantic context to its navigation system. These improvements are only available with the Spot Core I/O.
This release also enhances Spot’s ability to navigate around objects in its path. Spot now perceives a wider area so it can identify more options for alternative paths when it encounters larger obstacles.
Lastly, Spot has always been good at climbing stairs, but this release builds additional checks into its navigation system for even safer ascent and descent.
This release includes several enhancements to the Spot robot, payloads, and accessories, addressing commonly received user feedback.
We’re introducing a new set of joysticks for the tablet used to operate Spot. This custom set of joysticks offers a more ergonomic experience operating Spot, with a lightweight design, larger buttons, and additional controls. It’s built to withstand challenging environments and tough tasks. Recessed joysticks are more protected from regular wear and tear and the ethernet cable locks into its port to avoid inadvertent dislodging. Battery life, Wi-Fi, and radio range are all extended. And lastly, we’ve enabled USB-C to HDMI data pass-through so you can easily mirror the tablet screen to nearby monitors.
The operating temperature of Spot and many Spot payloads including the Spot CAM+IR, Core I/O, EAP2, and GXP have increased to 55C (formerly 45C). Spot is capable of withstanding more extreme heat due to hardware changes. Payloads were tested at higher temperatures to validate performance in these conditions.
We’ve upgraded the antenna on the Core I/O to improve range and reliability.
Update your software: Spot v4.1.0 Release Notes
Register for our upcoming webinar: Acoustic Vibration Detection for Predictive Maintenance
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