
Sutton is a manufacturing and distribution ERP platform that combines core operations management with AI-driven automation and customizable applications. The software centralizes inventory, warehousing, sales, purchasing, production, fulfillment, traceability, and compliance in one system. Inventory capabilities include real-time stock visibility, multi-location management, demand forecasting, shipping workflows, and monitoring of materials that may run out. Production features support shop-floor control, production scheduling, work centers, materials, jobs, and operational tracking. Sutton’s intelligence layer analyzes operational data to surface business health, identify exceptions, recommend next steps, and help users act on those recommendations. AI agents can prepare purchase orders, respond to changing production requirements, generate shipping documents, and handle other repetitive operational tasks across modules. Sutton Studio allows users to create custom apps, reports, forms, and workflows by describing what they need in plain English, with the resulting tools operating directly on existing Sutton data and permissions. The platform also includes an AI-assisted onboarding process that can reformat data, map fields, make bulk edits, and configure the system for migration. Sutton integrates with ecommerce, accounting, and sales channels such as QuickBooks, Shopify, WooCommerce, Amazon, and eBay and provides flexible API access for connecting additional systems.
Learn more
Azore is software for computational fluid dynamics. It analyzes fluid flow and heat transfers. CFD allows engineers and scientists to analyze a wide range of fluid mechanics problems, thermal and chemical problems numerically using a computer. Azore can simulate a wide range of fluid dynamics situations, including air, liquids, gases, and particulate-laden flow. Azore is commonly used to model the flow of liquids through a piping or evaluate water velocity profiles around submerged items. Azore can also analyze the flow of gases or air, such as simulating ambient air velocity profiles as they pass around buildings, or investigating the flow, heat transfer, and mechanical equipment inside a room. Azore CFD is able to simulate virtually any incompressible fluid flow model. This includes problems involving conjugate heat transfer, species transport, and steady-state or transient fluid flows.
Learn more
PowerMill
Fusion 360, along with PowerMill® CAM software, delivers advanced CNC programming solutions tailored for intricate 3- and 5-axis production processes. Users can now benefit from enhanced access to Fusion 360, its collaborative features through Fusion 360 Team, and a suite of advanced manufacturing tools available via Fusion 360 extensions. PowerMill boasts an extensive library of programming strategies that help streamline CNC operations. The software also significantly cuts down on programming times by enabling swift toolpath calculations. Users can simulate, verify, and optimize the movements of CNC machines and industrial robots effectively. With Fusion 360, users are equipped with tools for 3D modeling, generative design, simulation, and electronics, fostering enhanced collaboration and creativity. Additionally, there are specialized modeling tools designed to facilitate the preparation of complex geometries, which ultimately leads to superior CAM programming outcomes. The simulation capabilities further aid in refining plastic part designs and enhancing the mold tools necessary for their production. A prominent manufacturer in the United States leverages a combination of Autodesk Moldflow, PowerMill, and PowerShape to design and produce top-tier injection molds, illustrating the practical applications of these integrated technologies in achieving high-quality manufacturing results. This integration not only boosts efficiency but also elevates the overall quality of the finished products.
Learn more
Ansys Motor-CAD
Ansys Motor-CAD serves as a specialized tool for the design of electric machines, facilitating rapid multiphysics simulations throughout the entire torque-speed operating range. It allows design engineers to assess various motor configurations and concepts to create designs that maximize performance, efficiency, and compactness. With its four integrated modules—EMag, Therm, Lab, and Mech—Motor-CAD enables quick and iterative multiphysics calculations, significantly reducing the time from initial concept to finalized design. This efficiency in calculations and streamlined data input processes provides users with the opportunity to investigate a broader array of motor topologies and thoroughly evaluate the effects of advanced loss mechanisms in the early phases of electromechanical design. The latest release boasts enhanced capabilities for design optimization, multiphysics analysis, and system modeling tailored specifically for electric motors, ensuring that engineers have the tools they need for cutting-edge development. Ultimately, Motor-CAD's fast multiphysics simulation capabilities across the full torque-speed range empower engineers to innovate and refine electric motor designs with unprecedented efficiency.
Learn more