This site uses cookies to improve your experience. To help us insure we adhere to various privacy regulations, please select your country/region of residence. If you do not select a country, we will assume you are from the United States. Select your Cookie Settings or view our Privacy Policy and Terms of Use.
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Used for the proper function of the website
Used for monitoring website traffic and interactions
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Strictly Necessary: Used for the proper function of the website
Performance/Analytics: Used for monitoring website traffic and interactions
Figure 1: Robots represent multiple machines with identical components and software. The robots in the picture above are an example of a sophisticated machine. Each robot has the same components and the same software. This practice is not restricted to robots. Define a translation instance for each robot.
Examples are, mobile robots, AGV (automated guided vehicles), and manufacturing infrastructure. This blog is the first in a series, bringing a lens on robots and AGV, dissecting the application flow and a little detail on why the serving wireless medium must behave in a particular way to support it. Object Interactions.
Share Dallas-Fort Worth is rapidly becoming one of America’s premier hubs for manufacturing, driven by a strategic central location, a resilient economy, and rapid technological advancement. Manufacturers are increasingly investing in the Dallas-Fort Worth area to benefit from its robust infrastructure and proximity to major markets.
Articulated robots, along with the growing use of collaborative robots (cobots), are essential to modern manufacturing operations. Without robots, productivity and quality would be lower and costs would be higher. Without robots, productivity and quality would be lower and costs would be higher.
Share Long celebrated as the “Workshop of the World,” Philadelphia’s manufacturing spirit continues to evolve, innovate, and drive economic growth. Despite shifting global dynamics and economic pressures, the manufacturing sector here adapts with resilience and ingenuity.
Share Chicago has long stood as a cornerstone of American manufacturing, fueling the Midwests industrial rise and helping shape the national economy. The citys manufacturing sector characterized by resilience and adaptability worthy of Chicagos City of Big Shoulders nickname remains vibrant. billion in 2023 to $12.5
Share Although it may not receive as much attention as larger cities, Greenville, SC, is nevertheless a powerhouse when it comes to manufacturing in the Southeast. From its humble beginnings as a key hub for textiles and apparel, Greenvilles manufacturing landscape is much more diverse and forward-thinking.
Examples are, mobile robots, AGV(automated guided vehicles), and manufacturing infrastructure. This blog is the second in a series, bringing a lens on manufacturing logistics, dissecting the application flow and a little detail on why the serving wireless medium must behave in a particular way to support it.
Norwegian sea-drone systems developer and manufacturer Maritime Robotics got its procurement and inventory under control with the help of MRP software. A hi-tech company with […] The post Marine Drone Manufacturer Navigates Business Complexities with MRP Software appeared first on Blog for Manufacturers and Distributors.
I have more notes than will fit even a long-form blog post. End-to-end orchestration includes production logistics, operations management software, material handling, production logistics, and consulting expertise reimagine how material moves through manufacturing lines. I’m glad I made this trip. Next year in Chicago is a no-brainer.
Share From the early textile mills that dotted the landscape more than a century ago to the modern plants pumping out advanced wind turbines and more, manufacturing is in Charlottes blood. On its own, Charlotte hosts more than 3,500 manufacturers who employ more than 146,000 workers, according to the Charlotte Regional Business Alliance.
We’re in the midst of a decade of unprecedented transformation, driven in part by the global pandemic and geopolitical events that are fundamentally changing the way we manufacture and deliver goods, according to the International Federation of Robotics, or IFR. AI itself is not new to robotics. What does this mean in practice?
which yesterday retired the older version of its humanoid robot after 15 years of development and today showed a preview of its successor. based company showed that its robot could walk, open a door, and maintain its balance while being shoved by a person holding a hockey stick, all without a tether. By 2016, the Waltham, Mass.-based
Get your humanoid robot design right from the start Designing and building a humanoid robot is challenging enough. However, ensuring that it is manufacturable and marketable requires a new approach to creating multi-axis motion. Get your design right from the start with these three best practices.
Gearbox manufacturer SEAT Componentes needed to automate the unloading of 18,000 machined gears a day at its plant in Spain to guarantee the quality of the parts. The company integrated 10 collaborative robots from Universal Robots using only internal resources. UR collaborative robots at SEAT Componentes.
Machines need reliable, high bandwidth connectivity as businesses increase automation and connect more assets like autonomous robots and AGVs. Blog : Cut through the noise: find the best fit for your industrial wireless needs. The Cisco Catalyst IW9167 Series will be orderable in mid-2022. Additional Resources.
This blog looks at what AI has to offer industrial MRO. After discussing inventory optimization with AI, it looks at the bigger impact on operational efficiency, including robotics and cloud computing. Inventory management MRO inventory is more diverse and complex than that used for manufacturing. They can do the same in MRO.
yesterday showed off the latest abilities of its CL-1 humanoid robot in a new video. The robot can also move indoors and outdoors. LimX Dynamics said it expects its humanoid robots to eventually be deployed in business-to-business (B2B) and business-to-consumer (B2C) applications. LimX Dynamics Inc.
Share The usefulness of industrial robots has always been limited by the size of their work envelope. Integrators and manufacturers have tried to address this by mounting them overhead or on rails, and while that increases their versatility, they still aren’t free to roam around the factory where they’re needed.
Share While we think of robots as flexible automation, the reality is they just follow preprogrammed paths. AI for industrial robots promises to change that. The evolution of robotics in manufacturing Industrial robots have been around for more than seven decades. Using AI with robotics provides a solution.
Please welcome Dijam Panigrahi to 21st Century Tech Blog. In his first contribution to the blog site, he writes about the change that 5G is bringing to manufacturing. For manufacturing this is not an incremental improvement over previous communication protocols. Dijam is the Co-founder and COO of GridRaster Inc. ,
Please welcome back Ellie Gabel to the 21st Century Tech Blog. However, manufacturers struggle to reach sustainability goals and recycling rates continue to lag. Another option is the deployment of cobots, collaborative robots. These devices use cameras, robotic arms and conveyor belts to transport and stack materials.
More manufacturers than ever are drawing upon AI in production and other areas of the manufacturing process, taking advantage of technology that is more accessible than ever while understanding the need to keep pace with competitors and innovators who are setting today’s bar with the adoption of AI tools.
In this blog, we’ll explore some of the most critical factors to bringing business back to the States, like finding skilled labor and navigating infrastructure needs. The smooth flow of goods is essential to a thriving manufacturing base, but aging roads, congested highways, and outdated rail and port systems can become obstacles.
Next Post Work SamplingTechniquesin Manufacturing &Operations Management Resources Explore the latest industrial maintenance best practices, trends and news from ATS and learn from industry experts and leading manufacturers.
Demand for Advanced Recovery Solutions: Stricter regulations and zero-waste goals are driving investment in AI, robotics, and smart sorting technologies to boost recovery rates and operational efficiency. Growth Opportunities Across Global Markets Expanding Regional Markets: The MRF industry is projected to reach $39.82
Non-destructive testing (NDT) plays a pivotal role in ensuring the safety, reliability, and sustainability of critical infrastructure and manufactured products. AI , robotics , and digital twins are not only enhancing testing precision but also enabling faster, more efficient manufacturing and quality control processes.
Top row, from left to right: the Ella smart stroller, Soft Robotics’ food packer, and the TM25S. Source: NVIDIA Outside the glare of the klieg lights that ChatGPT commanded this past year, a troupe of autonomous machines nudged forward the frontiers of robotics, according to NVIDIA.
This blog explores the reasons and methods for doing so and provides a checklist for manufacturers seeking to upgrade their efforts. Types of industrial heat treatment furnaces High-volume manufacturers typically use continuous furnaces, while batch furnaces are used for smaller quantity work and special processes.
Share Machine vision in manufacturing protects customers from defective products, enables automation and reduces costs. This blog explores the role of machine vision in manufacturing and considers its relationship to industrial maintenance. The result is then sent to a PLC, robot or other computer. What is machine vision?
Examples are, mobile robots, AGV(automated guided vehicles), and manufacturing infrastructure. This blog is the third in this three-part series, bringing a lens on process automation monitoring, dissecting the application flow and a little detail on why the serving wireless medium must behave in a particular way to support it.
These factors drive manufacturers to reconfigure production lines and re-engineer production processes. What if demand shifts again before new manufacturing processes are fully implemented? Adaptive manufacturing appears to offer a solution. What is adaptive manufacturing? The problem is this is slow and expensive.
While the primary goal in maintenance strategy is to keep machines running, it also impacts larger corporate objectives such as lean manufacturing initiatives or overall equipment effectiveness (OEE). This starts with strategic alignment. For example, lean processes focus on reducing waste.
Share As industrial automation has advanced and expanded, the promise of true “lights-out” manufacturing has been one of the most consistent objectives that manufacturers cite in the benefits of this technology. These requirements draw from a range of automation technology, Industry 4.0
Motion Controls Robotics (MCRI), a leader in robotic integration solutions, is excited to announce the launch of its newly redesigned website. Robot Solutions & Applications : Get up close and personal with MCRI’s innovative robot systems and explore their capabilities in detail. About Motion Controls Robotics, Inc.
Share Artificial intelligence, predictive maintenance and digital twins are just some of the new things happening in manufacturing right now. Most, though, are still trying to make sense of this digital transformation in manufacturing. In this blog, we’ll examine the change that’s underway and the key technologies driving it.
kW to 1 kW) is perfect for precise applications like micro-machining and tiny robots. kW to 22 kW, the MR-J4 series broadens the scope and is suitable for more demanding applications such as assembly lines, high-performance robots, and conveyors. For instance, the MELSERVO-JN line of low-power drives (0.05 With drives ranging from 0.1
Manufacturing environments are dynamic settings where efficiency and productivity are paramount. In this blog post, we delve into the world of personal injury claims in manufacturing environments, shedding light on the importance of prioritizing safety, implementing basic […]
In addition to building Australia’s sovereign capability, leveraging low-cost clean energy, transforming the transport sector, and expanding export opportunities to position Australia as a global manufacturing powerhouse, the National Robotics Strategy must also prioritise allaying public concern about the rise of machines in our daily lives.
Currently, nanomaterials and products are mostly in the research stage, but some have made it out into the manufacturing world. This blog explores current and potential applications, with a particular emphasis on how nanotechnology can help maintenance. The result is that there’s more downtime than is necessary.
Share Safety holds a paramount place in industrial manufacturing operations for several reasons: primarily because protecting the well-being and health of employees is the right thing to do. RoboticsRobotics have long formed the underpinnings of automation technology, and this field continues to advance today. Industry 4.0
As a manufacturer, have you ever pondered the benefits and risks of outsourcing? As with any cost-saving endeavor, outsource manufacturing has its pros and cons. In the past, many companies were hesitant to outsource any of their manufacturing to an outside source. Outsource Manufacturing and Its Subsets. Why Outsource?
The time is now for manufacturers to start planning for their future. Technological advances, rapidly shifting market conditions, and an industry remaking itself in response to macro global trends mean that manufacturers’ very survival depends on their ability to adapt, innovate and endure. Trends shaping the future of manufacturing.
Read Our Blog. This transformation was caused due to the improvements in manufacturing technology, which has always welcomed new innovations. One of them is Artificial Intelligence in manufacturing industry 4.0. Why Do You Need AI Manufacturing? Impact of AI in manufacturing 4.0 technologies.
We organize all of the trending information in your field so you don't have to. Join 45,000+ users and stay up to date on the latest articles your peers are reading.
You know about us, now we want to get to know you!
Let's personalize your content
Let's get even more personalized
We recognize your account from another site in our network, please click 'Send Email' below to continue with verifying your account and setting a password.
Let's personalize your content