AssetSonar is a comprehensive IT asset management platform that provides real-time visibility into your entire digital infrastructure. Track and optimize hardware, software, and license management to reduce risks, control IT spend, and improve compliance.
AssetSonar is an IT asset management and IT service management platform that provides real-time visibility across your entire digital infrastructure. With native ITSM capabilities, AssetSonar helps track and optimize hardware, software, licenses, and service workflows, reducing risks, controlling IT expenditures, and enhancing compliance.
The platform features real-time asset context via its IT Graph, which links tickets, assets, software, and users, enabling faster issue resolution and improved decision-making. With integrated patch management, software governance, and automated workflows, AssetSonar streamlines IT operations, enhances service delivery, and supports more efficient offboarding processes.
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Altium Develop is a collaborative platform for modern electronics engineering teams that connects requirements management, PCB design, systems engineering, and manufacturing workflows.
Built on Altium Designer and Altium 365, the platform provides a centralized environment for design collaboration, requirements traceability, BOM management, supply chain visibility, and engineering change management.
Altium Develop helps hardware organizations maintain alignment between requirements, design decisions, and manufacturing outcomes while supporting distributed engineering teams through cloud-based collaboration.
Core Features:
• PCB design collaboration
• ECAD-MCAD co-design workflows
• Component and supply chain visibility
• BOM and engineering change management
• Design review and approval workflows
• Cloud-native team collaboration
• Requirements management and traceability
Used by electronics teams building complex PCB-based products, Altium Develop is frequently evaluated alongside Cadence OrCAD, Cadence Allegro, Autodesk Fusion Electronics, KiCad, Siemens Xpedition, and SOLIDWORKS PCB for organizations seeking greater collaboration and lifecycle visibility across hardware development programs.
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VelocityDB
VelocityDB stands out as a unique database engine, renowned for its ability to store data more quickly and efficiently than any competing solutions while being significantly more affordable. Unlike traditional databases that rely on mapping to tables, JSON, or XML, it retains .NET objects in their native format. Complementing this is VelocityGraph, an open-source property graph database that seamlessly integrates with the VelocityDB object database. As a C# .NET noSQL object database, VelocityDB is enhanced by VelocityGraph, making it one of the fastest, most scalable, and flexible database options available today. Bugs that are reported along with reproducible test cases are typically resolved within a week, showcasing the responsiveness of the development team. The primary advantage of using this database system lies in its remarkable flexibility, enabling developers to tailor their applications to meet even the most specific requirements. With VelocityDB, you have the freedom to select the most suitable data structures for your needs, granting you control over the persistent placement of data, as well as how it is indexed and accessed. This level of customization sets VelocityDB apart in the realm of database technology.
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Ansys VeloceRF
Ansys VeloceRF accelerates the design process by significantly cutting down the time required to synthesize and model intricate spiral devices and transmission lines. Compiling the geometry of inductors or transformers takes just a matter of seconds, while modeling and analyzing them can be completed in just a few minutes. This software seamlessly integrates with top EDA platforms, creating layouts that are ready for tape-out. With Ansys VeloceRF, users can synthesize devices that tightly pack multiple components and lines, resulting in a more efficient silicon floorplan. Furthermore, analyzing the coupling effects among various inductive devices prior to detailed layout can decrease the overall design size and potentially eliminate the need for guard rings. The dimensions of inductors, along with crosstalk between them, can significantly influence the size of the die. Ansys VeloceRF assists in designing smaller devices by applying optimization criteria and geometry constraints, leading to enhanced performance. Additionally, it assesses the coupling between any number of inductors, optimizing both silicon area and inductor performance within the circuit context, ultimately contributing to a more efficient design process. By streamlining these aspects, Ansys VeloceRF empowers engineers to achieve their design goals more effectively.
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