
IONOS offers GPU Servers that deliver a high-performance computing framework aimed at managing tasks that demand significantly more power than standard CPU systems can provide. This infrastructure features top-tier NVIDIA GPUs, including the H100, H200, and L40s, in addition to specialized AI accelerators like Intel Gaudi, facilitating extensive parallel processing for demanding applications. By utilizing GPU-accelerated instances, the cloud infrastructure is enhanced with dedicated graphical processors, enabling virtual machines to execute intricate calculations and handle data-heavy tasks at a much faster rate compared to traditional servers. This solution is especially well-suited for fields such as artificial intelligence, deep learning, and data science, where training models on extensive datasets or executing rapid inference processes is necessary. Furthermore, it accommodates big data analytics, scientific simulations, and visualization tasks, including 3D rendering or modeling, that necessitate substantial computational capacity. As a result, organizations seeking to optimize their processing capabilities for complex workloads can greatly benefit from this advanced infrastructure.
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PackageX OCR API turns any smartphone into an incredibly powerful universal label scanner. It can read every bit of text, including barcodes, QR codes and other information on the label.
Our OCR technology is the best in the industry. It uses proprietary algorithms and deep learning models to extract information from labels.
Our OCR API has been trained using information from more than 10 million labels. This allows for the highest scanning accuracy in the market, at over 95%.
Our technology can scan in low-light conditions and read labels from any angle.
Create your own OCR scanner app to eliminate pen-and-paper inefficiencies.
Our OCR scanner allows you to extract information from printed text or handwritten labels.
Our OCR software is trained using multilingual label data extracted in over 40 countries.
Detect and extract information from barcodes or QR codes.
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RENDERCAD
RENDERCAD is a modern AI rendering solution built to help architects, engineers, product designers, and creative professionals quickly convert CAD screenshots, hand drawings, and photos into high-quality photorealistic renders and animated videos. The platform removes much of the complexity associated with traditional rendering software by eliminating manual file exports, lighting adjustments, texture mapping, and GPU-intensive workflows. RENDERCAD supports over 800 CAD and design applications including SolidWorks, Revit, AutoCAD, SketchUp, Fusion 360, Rhino, Blender, Inventor, and CATIA, allowing users to generate renders from virtually any tool that can display designs on screen. The platform processes only screenshots or images rather than full CAD source files, helping maintain data privacy and reducing the risk of exposing sensitive project assets. Users can access more than 2,600 materials and hundreds of rendering environments to quickly customize product and architectural visualizations without advanced rendering expertise. RENDERCAD also supports AI-powered image-to-video generation, enabling orbit, pan, and zoom camera movements for dynamic presentations and marketing content. Cloud-based rendering infrastructure allows the platform to run on any device with a browser, including laptops, tablets, and mobile devices, without requiring high-performance hardware. Batch rendering and API integration features further support scalable workflows for studios, eCommerce businesses, marketing teams, and design organizations managing large rendering volumes.
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Kray
Kray stands out as a cutting-edge global illumination renderer that facilitates swift and precise scene rendering, especially in environments where indirect lighting is crucial. It incorporates the latest algorithms and enhancements, enabling it to efficiently generate comprehensive global illumination effects, including reflections, refractions, and caustics, on standard computing systems. The renderer boasts rapid global illumination techniques such as light/photon mapping, which, while biased, provides impressive speed with minimal dependency on ray recursion counts; path tracing, which is unbiased and employs various sampling optimizations; and irradiance caching, designed for fast, view-independent storage of reusable GI solutions, along with caustics management. It features diverse light models, including point, directional, line, area, background lights, HDR image-based lighting, and the ability to pre-sample lights. Additionally, it supports instancing, permitting the efficient reuse of the same geometry across multiple locations in the rendered scene with minimal memory usage. Remarkably, instanced geometry can even be instantiated further, allowing for self-cloning capabilities with a user-defined number of recursions, making Kray a versatile tool for advanced rendering tasks.
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