Robotics and Automation

Micropsi Industries’ AI Software MIRAI Now Compatible with FANUC Robots, Enabling Increasingly Flexible Automation

Micropsi Industries News
Micropsi Industries today announced that its artificial intelligence (AI)-based software MIRAI is now compatible with numerous robots produced by FANUC, a leading supplier of robotics and factory automation in Japan, and its U.S. subsidiary FANUC America. With MIRAI, FANUC customers can now add valuable hand-eye coordination to multiple FANUC industrial and collaborative robots (cobots) to handle difficult-to-automate functions such as cable plugging and assembly.

Using AI, the MIRAI controller generates robot movements directly and in real-time. Robot skills are trained, not programmed, in a few days through human demonstration, without requiring knowledge of programming or AI. To train a robot, a human repeatedly demonstrates a task by manually guiding the robot by the robot’s wrist. The recorded movements are then transformed into a skill.

“MIRAI is a game changer, For the last 20 years I’ve heard companies ask for this kind of dynamic path augmentation technology repeatedly, so seeing it work is really amazing. What’s even more amazing is how affordable it is to add this kind of automation-enabling technology to any of our robots or collaborative cobots. I’ve already showed this technology to large and small manufacturers that are asking us to implement flexible robot automation faster, and unanimously, they are very interested in implementing MIRAI.”

-Jerry Perez, executive director of global accounts, FANUC America.

That’s because while robots can work tirelessly and precisely with high repeatability, they are limited in their ability to perform complex motorized processes. The required hand-eye coordination is just not present in a robot. If the robot falters due to variances or deviations, employees must intervene, and are sometimes burdened with unergonomic tasks. This inhibits the performance of manufacturing companies who are already struggling with the prevailing shortage of skilled workers.

Cable plugging, which can now be automated quickly and intelligently is just one example of MIRAI's further automation potential. Micropsi Industries plans additional automation projects that will expand the range of applications for FANUC’s industrial robots. The medium- and long-term goal: to revolutionize industrial work from the ground up.

"Cable plugging applications such as flat ribbon cables for the electronics industry or industrial automotive connectors typically require a high degree of flexibility to accommodate shape instability, making it a difficult task for any robot. MIRAI makes this type of application possible, Grabbing a flexible part, guiding it and placing it accurately into a socket may be a trivial task for humans, but it has been basically impossible to complete for industrial robots.Micropsi Industries working with FANUC’s robots will break new ground by making automation possible where it has never been before, In this strategic relationship, our MIRAI intelligent controller meets the world's largest portfolio of industrial robots. Together, we are tapping into the nearly unlimited possibilities of task-specific machine learning for robotics. In doing so, we are making it accessible to even more industries and users, ensuring greater flexibility under real production conditions."

-Prof. Dominik Bösl, chief technology officer, Micropsi Industries.

About Micropsi Industries:
Micropsi Industries provides artificial intelligence-based software for industrial and collaborative robots (cobots). MIRAI, its flagship product, allows these robotic arms to be controlled in real time, in direct response to sensor information. This is made possible by AI that enables the robots to learn from humans and deal with variances so they can more easily and cost-effectively operate in dynamic environments. With offices in Berlin, San Francisco and Los Angeles, Micropsi Industries is working to make task-specific machine learning a reality in industrial automation. The company’s vision is to reliably automate work processes while reducing the effort required.

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MaxLinear Launches Product Design Kit for Active Electrical Cables Using Keystone PAM4 DSP

MaxLinear | February 02, 2024

MaxLinear, Inc. a leading provider of high-speed interconnect ICs enabling data center, metro, and wireless transport networks, announced the availability of a comprehensive product design kit (PDK) to optimize performance and accelerate the time to market for high-speed Active Electrical Cables (AEC) using MaxLinear’s 5nm PAM4 DSP, Keystone. The PDK is a cost-cutting and time-saving tool for cable manufacturers who want to quickly integrate Keystone into their active electrical cables. MaxLinear’s Keystone PAM4 DSP offers a significant power advantage in AEC applications, which is increasingly becoming a critical factor for hyperscale data centers. The use of 5nm CMOS technology enables designers and manufacturers to build high-speed cables that meet the need for low power, highly integrated, high performance interconnect solutions that will drive the next generation of hyperscale cloud networks. Manufacturers taking advantage of MaxLinear’s PDK to optimize cable designs using Keystone PAM4 DSP will gain a distinct advantage over competitor solutions when trying to maximize reach and minimize power consumption. The PDK makes Keystone easy to integrate with strong applications support, multiple tools to optimize and monitor performance, and reference designs (SW and HW) to accelerate integration. Sophisticated software allows for quick design optimization for the lowest possible power consumption and maximizing cable reach. Cable designers can constantly monitor performance, route signals from any port to any port, and take advantage of hitless firmware upgrades. “MaxLinear is focused on providing not only industry-leading interconnect technologies but also a comprehensive suite of tools to support our manufacturing and design partners,” said Drew Guckenberger, Vice President of High Speed Interconnect at MaxLinear. “Our development kit for our Keystone products provides them with a path to take products to market more quickly and more cost-effectively.” Active electrical cables (AECs) are revolutionizing data center connections. Unlike passive cables, they actively boost signals, allowing for longer distances (up to 7 meters for 400G), higher bandwidth, and thinner, lighter cables. This makes them ideal for high-speed applications like top-of-rack connections (connecting switches to servers within the same rack); direct digital control (enabling flexible interconnectivity within racks and across rows); and breakout solutions (splitting high-speed connections into multiple lower-speed channels). The high-speed interconnect market – which includes active optical cables, active electrical cables, direct attach copper cables, and others – is expected to grow to $17.1B by 2028, up from $10.7B in 2021 according to a market forecast report from The Insight Partners. The Keystone Family The Keystone 5nm DSP family caters to 400G and 800G applications, featuring a groundbreaking 106.25Gbps host side electrical I/O, aligning with the line side interface rate. Available variants support single-mode optics (EML and SiPh), multimode optics and Active Electrical Cables (AECs), offering comprehensive solutions with companion TIAs. Host side interfaces cover ethernet rates of 25G, 50G, and 100G per lane over C2M, MR, and LR host channels. The line side interfaces, tailored for 100G/λ DR, FR, and LR applications, also support these rates. These devices boast extensive DSP functionality, encompassing line-side transmitter DPD, TX FIR, receiver FFE, and DFE. With exceptional performance and signal integrity, these DSPs occupy a compact footprint (12mm x 13mm), ideal for next-gen module form-factors like QSFP-DD800 and OSFP800. Additionally, they are available as Known Good Die (KGD) for denser applications, such as OSFP-XD. About MaxLinear, Inc. MaxLinear, Inc. is a leading provider of radio frequency (RF), analog, digital, and mixed-signal integrated circuits for access and connectivity, wired and wireless infrastructure, and industrial and multimarket applications. MaxLinear is headquartered in Carlsbad, California. MaxLinear, the MaxLinear logo, any other MaxLinear trademarks are all property of MaxLinear, Inc. or one of MaxLinear's subsidiaries in the U.S.A. and other countries. All rights reserved.

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