
Epicor Connected Process Control (CPC) enables manufacturers to digitize and standardize production processes through a flexible no-code/low-code manufacturing platform. Combining digital work instructions, operator guidance, process control, and real-time data collection, CPC helps teams improve execution, reduce errors, and maintain consistent production across assembly and manufacturing operations.
With support for connected equipment and shop floor devices, manufacturers can capture production and quality data directly from operations while gaining greater visibility into performance, defects, rework, and process compliance. Product traceability capabilities provide a detailed history of each product's build and inspection record, supporting quality initiatives and continuous improvement efforts.
CPC is well suited for manufacturers managing complex product variations, dynamically presenting operators with the appropriate instructions and process requirements for each build. By connecting people, processes, and production data within a single platform, manufacturers can improve quality, increase operational visibility, and drive more consistent outcomes across the shop floor.
Available on-premises or in the cloud, CPC scales from individual production areas to enterprise-wide manufacturing environments.
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Azore is a software tool designed for computational fluid dynamics (CFD) that focuses on the analysis of fluid movement and thermal transfers. By utilizing CFD, engineers and scientists can numerically tackle a diverse array of problems related to fluid mechanics, thermal dynamics, and chemical interactions through computer simulations. Azore excels in modeling a variety of fluid dynamics scenarios, encompassing air, liquids, gases, and flows containing particles. Its applications are vast, including the modeling of liquid flow through piping systems and assessing water velocity profiles around submerged objects. Furthermore, Azore is adept at simulating the behavior of gases and air, allowing for the exploration of ambient air velocity patterns as they navigate around structures, as well as examining flow dynamics, heat transfer, and mechanical systems within enclosed spaces. This robust CFD software can effectively model nearly any incompressible fluid flow scenario, addressing challenges associated with conjugate heat transfer, species transport, and both steady-state and transient flow conditions. With such capabilities, Azore serves as an invaluable asset for professionals in various engineering and scientific fields requiring precise fluid dynamics simulations.
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PV Elite
PV Elite® is a robust software solution designed for the design, analysis, and evaluation of pressure vessels and heat exchangers. Featuring an intuitive interface, it facilitates quick mastery, making it an ideal option for users who require immediate engagement and confidence in their safety code calculations. The program thoroughly examines the entire vessel to ensure adherence to all relevant wall thickness standards and stress analysis requirements for various configurations, such as vertical towers and horizontal units. Moreover, it offers tools for assessing and re-rating existing vessels, inclusive of Fitness for Service assessments. Leveraging PV Elite® enables users to develop equipment tailored for the most challenging applications efficiently, accurately, and profitably. The software streamlines the task of establishing pressure boundary conditions for vessels and exchangers, even when confronted with extensive data requirements for intricate load combinations. In addition, PV Elite improves the data input process by categorizing entries into coherent groups, enhancing the overall user experience and making the workflow more efficient. This organization of input not only aids in clarity but also significantly reduces the likelihood of errors during data entry.
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FloCAD
FloCAD® is an add-on module for Thermal Desktop®, providing a robust solution for thermohydraulic analysis that covers both fluid dynamics and heat transfer mechanisms. The methodology for developing fluid flow models in FloCAD is similar to that used for thermal models, enabling users to leverage a variety of shared commands across both categories. Users have the flexibility to construct FloCAD models through a free-form technique, which simplifies the representation of flow networks, or they can choose geometry-based modeling that integrates features such as pipe centerlines, cross-sections, and complex vessels, along with convection calculations associated with finite difference or finite element thermal frameworks. As a sophisticated tool for analyzing pipe flow, FloCAD proficiently addresses pressure losses in piping systems caused by factors such as bends, valves, tees, and changes in flow area. This extensive functionality positions FloCAD as an essential resource for engineers aiming to enhance their system designs and improve overall efficiency. Moreover, the ability to model various fluid dynamics scenarios makes it an indispensable tool for tackling diverse engineering challenges.
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