UTunnel VPN and ZTNA
UTunnel Secure Access offers solutions including Cloud VPN, ZTNA, and Mesh Networking to facilitate secure remote connections and reliable network performance.
ACCESS GATEWAY: Our Cloud VPN as a Service allows for the rapid deployment of VPN servers on either Cloud or On-Premise setups. By employing OpenVPN and IPSec protocols, it ensures secure remote connections complemented by policy-driven access controls, enabling businesses to establish a robust VPN network effortlessly.
ONE-CLICK ACCESS: The Zero Trust Application Access (ZTAA) feature revolutionizes secure interaction with internal business applications such as HTTP, HTTPS, SSH, and RDP. Users can conveniently access these services via their web browsers without the necessity of any client-side applications.
MESHCONNECT: This solution, combining Zero Trust Network Access (ZTNA) and mesh networking, offers detailed access controls tailored to specific business network resources and fosters the formation of secure, interconnected business networks for enhanced collaboration.
SITE-TO-SITE VPN: Additionally, the Access Gateway allows for the establishment of secure IPSec Site-to-Site tunnels, which facilitate connections between UTunnel's VPN servers and other network infrastructure components like gateways, firewalls, routers, and unified threat management (UTM) systems, thereby enhancing overall network security.
By integrating these features, UTunnel Secure Access is committed to providing comprehensive solutions that meet the evolving needs of modern businesses.
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PackageX OCR Scanning
The PackageX OCR API transforms any mobile device into a powerful universal label scanner capable of reading all types of text, including barcodes and QR codes along with other label information. Our advanced OCR technology stands out in the industry, employing unique algorithms and deep learning techniques to efficiently extract data from labels. With a training dataset comprising over 10 million labels, our API achieves an impressive scanning accuracy exceeding 95%. This technology excels even in low-light environments and can interpret labels from various angles, ensuring versatility and reliability. By developing your own OCR scanner application, you can significantly reduce paper-based inefficiencies. Our OCR capabilities extend to both printed and handwritten text, making it adaptable for various use cases. Furthermore, our software is trained on multilingual label data sourced from more than 40 countries, enhancing its global applicability. Whether it’s detecting barcodes or extracting information from QR codes, our OCR solution provides comprehensive scanning functionalities. The versatility and precision of our API make it an essential tool for businesses seeking to streamline their information capture processes.
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Scandy Pro
Scandy Pro for iOS enables users to create vibrant, full-color 3D scans directly from their devices. It supports various iPhone models, including the XS Max, XS, and XR, as well as the newer 2018 editions and subsequent versions of the iPad Pro. Users have the ability to save their scans or share them in multiple file formats, such as .ply, .stl, and .obj. Notably, all processing is conducted on the device itself, eliminating the need for registration or cloud storage. Each user is allowed one mesh save daily, while a subscription option offers unlimited saving capabilities. This makes it a flexible tool for both casual users and professionals looking for efficient 3D scanning solutions.
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Sony 3D Creator
The 3D Creator application allows users to perform scans of objects in three-dimensional space. Its latest update introduces five unique scanning features: selfie scan, face scan, head scan, food scan, and freeform scan. This app is preinstalled on a variety of Xperia smartphones, including the Xperia 1, Xperia XZ1, Xperia XZ1 Compact, Xperia XZ2, Xperia XZ2 Compact, Xperia XZ2 Premium, and Xperia XZ3. Moreover, individuals with the Xperia XZ Premium can utilize the 3D Creator following the upgrade to Android 8.0 (Oreo). The scanning process begins with a calibration phase, during which the camera captures images while you gently move around the target item, allowing an algorithm to pinpoint significant features. Using the camera's placement along with the gathered imagery, a basic point cloud is created, which initially lacks color information. Afterward, a mesh is built from this point cloud data, comprising numerous 3D points referred to as vertices. The algorithm then fine-tunes the mesh, leveraging the point cloud details to accurately mirror the scanned object's shape, culminating in a high-fidelity 3D model. This groundbreaking method not only enhances the accuracy of digital representations but also paves the way for exciting applications in various fields such as 3D printing and virtual reality.
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