Emerson Electric Co (EMR), a longstanding player in industrial automation, has recently seen its stock enter a slight downturn, which has sparked discussion among investors. Despite this short-term dip, the company’s long-term transformation into automation and software solutions continues to unfold. With Wall Street divided on its future trajectory, investors must decide whether EMR is a reliable “safe harbor” or a maturing growth stock in need of fresh catalysts.
ABB and HDF Energy are scaling hydrogen fuel cells for large vessels. This article explores how megawatt-scale power, integrated automation, and DC grid technology are transforming maritime decarbonization, providing a roadmap from pilot programs to full industrialization by 2030.
Industrial automation is increasingly shaping how factories reduce emissions while keeping productivity stable. ABB’s Oiartzun factory in Spain offers a strong example. By combining renewable energy, factory automation, and digital control systems, ABB shows how legacy plants can reach zero operational emissions without sacrificing efficiency.
Honeywell and Dangote are set to double the Lekki refinery's capacity to 1.4M BPD by 2028. This article breaks down how advanced UOP catalysts, Oleflex technology, and integrated automation are transforming Africa’s largest refinery into a global petrochemical powerhouse and a model for energy security.
Industrial automation in food processing or manufacturing often requires tailored heating solutions, especially when different products require different temperatures for optimal results. A PLC-controlled conveyor oven system can automate and optimize the heating of various products in a single process, ensuring consistent quality and efficiency. This article delves into a PLC programming solution using Omron CX-Programmer, which controls the heating process for products on a conveyor system, adjusts the oven temperature based on product type, and counts products as they undergo heating.
Chemistry experiments, crucial for materials discovery and hypothesis testing, have traditionally been labor-intensive and often hazardous. A recent paper from the University of Toronto, Vector Institute, University of Waterloo, and Nvidia has proposed an innovative adaptive robotic framework aimed at automating chemistry labs. This framework enables robots to perform complex chemical experiments autonomously, leveraging existing lab tools. By integrating advanced task and motion planning, vision-based perception, and modular capabilities, this system could significantly reduce the workload on chemists while ensuring safety and efficiency.