Epicor Kinetic
With a legacy spanning over 50 years in manufacturing, Epicor Kinetic has built a reputation for providing tailored industry-specific solutions globally. Central to the Epicor approach are genuine, long-lasting partnerships, ensuring solutions adapt to dynamic business needs. Kinetic -- the global, AI-powered cloud ERP designed specifically for discrete, mixed-mode, and make-to-order manufacturers in the small and mid-market spaces -- not only addresses current demands but also steers businesses towards Industry 4.0 and smart manufacturing. This forward-thinking approach is complemented by the Epicor commitment to leadership in cloud solutions with unmatched security, simplicity, and support. The Epicor Kinetic user-friendly interface lets average users turn business data into actionable insights and create compelling reports that drive productivity. By leveraging the latest AI, ML, and IoT technologies, the Kinetic user experience facilitates a smooth shift to advanced manufacturing processes. Epicor Kinetic, while primarily cloud-based, also supports on-premises and hybrid models, offering versatile deployment options. Kinetic accelerates customer ambition with solutions for maximizing productivity, growth, and efficiency. That's what makes Epicor the essential partner for the world's most essential businesses.
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LogicalDOC
LogicalDOC empowers organizations all over the globe to take complete control of their document management. This premier document management system (DMS), which focuses on business process automation and quick content retrieval, allows teams to create, collaborate and manage large volumes of documents. It also stores valuable company data in one central repository. The system features include drag-and-drop document uploads, forms management, optical characters recognition (OCR), duplicate detection and barcode recognition, event logs, document archiving and integrated document workflow.
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Polaris-M
Polaris-M is an advanced software for optical design and polarization analysis, created by Airy Optics, Inc., that seamlessly merges ray tracing techniques with polarization mathematics, enabling 3D simulations, handling of anisotropic materials, and diffractive optics. This software, which has its roots in over ten years of research at the University of Arizona's Polarization Laboratory before being licensed to Airy Optics in 2016, boasts a vast library of more than 500 functions tailored for various optical tasks, including ray tracing, aberration evaluation, and the manipulation of polarizing elements and diffractive optics. To run Polaris-M, users must have Mathematica, which provides an extensive macro language and robust algorithms for tasks such as graphics rendering, computer algebra, interpolation, neural network functions, and numerical analysis. Comprehensive documentation accompanies the software, featuring accessible help pages that can be activated with the F1 key, guiding users through explanations, inputs, outputs, and practical examples. The user experience is further enhanced by this rich repository of resources, ensuring that users can effectively navigate and utilize the software's extensive capabilities.
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Paraxia-Plus-10
Paraxia-Plus-10 is an advanced optical design software tailored for Windows, specifically focused on applications involving laser resonators and the propagation of laser beams. Its intuitive drag-and-drop interface allows for immediate visualization of beam characteristics through the innovative “Digital Laser Workbench” mode. Laser engineers and designers benefit from unique access to beam data and analytical results that are typically not obtainable from conventional geometric optics codes that employ ray tracing. The software includes a comprehensive suite of tools such as optimization features, tolerance analysis, stability charts, and FFT-based rigorous propagation for arbitrary input beams. This functionality facilitates the simulation of diffraction phenomena as well as beam misalignments caused by components that are either decentered or have sustained damage from lasers. Additionally, waist dimensions and locations are provided in relation to each component, and users can track beam diameter and radius of curvature at any point along the beam's trajectory. The flexibility of the program allows users to incorporate custom code to further enhance its capabilities and enable scripting for more intricate calculations. Utilized globally by consultants, laser manufacturing firms, and government laboratories, many users operate multiple instances of this powerful software to meet their diverse needs. The program’s extensive features and adaptability make it an invaluable tool in the field of laser design and analysis.
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