
NetCrunch is commercial, self-hosted, agentless network and IT infrastructure monitoring software for Windows Server. It monitors network devices, servers, virtualization platforms, cloud services including AWS, Azure, and Google Cloud, applications, websites, logs, telemetry, and custom data using technologies such as SNMP, WMI, REST APIs, and scripts.
NetCrunch supports 680+ monitoring targets and provides 270+ ready-to-use Monitoring Packs for devices, applications, and operating systems. Policy-based monitoring automatically applies monitoring settings, Monitoring Packs, thresholds, and alerts to matching devices and systems. Licensing is based on monitored nodes and network interfaces rather than individual sensors, checks, or metrics.
Real-time dashboards and automatic Layer 2 and routing topology maps provide visibility into network status and performance. NetCrunch supports event correlation, dependency-aware alert suppression, predictive thresholds, escalation, and 40+ automated response actions, including script execution, notifications, webhooks, and integrations with external IT and collaboration tools.
NetCrunch also provides hardware and software inventory, network device configuration backup and change tracking, bandwidth monitoring, and network traffic analysis using NetFlow, sFlow, IPFIX, and other flow technologies. Distributed Monitoring Probes extend monitoring to remote and isolated locations, while REST APIs support integration and automation with external systems.
NetCrunch is self-hosted on Windows Server and can monitor on-premises, air-gapped, cloud, and hybrid IT environments.
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Google's Compute Engine, which falls under the category of infrastructure as a service (IaaS), enables businesses to create and manage virtual machines in the cloud. This platform facilitates cloud transformation by offering computing infrastructure in both standard sizes and custom machine configurations. General-purpose machines, like the E2, N1, N2, and N2D, strike a balance between cost and performance, making them suitable for a variety of applications. For workloads that demand high processing power, compute-optimized machines (C2) deliver superior performance with advanced virtual CPUs. Memory-optimized systems (M2) are tailored for applications requiring extensive memory, making them perfect for in-memory database solutions. Additionally, accelerator-optimized machines (A2), which utilize A100 GPUs, cater to applications that have high computational demands. Users can integrate Compute Engine with other Google Cloud Services, including AI and machine learning or data analytics tools, to enhance their capabilities. To maintain sufficient application capacity during scaling, reservations are available, providing users with peace of mind. Furthermore, financial savings can be achieved through sustained-use discounts, and even greater savings can be realized with committed-use discounts, making it an attractive option for organizations looking to optimize their cloud spending. Overall, Compute Engine is designed not only to meet current needs but also to adapt and grow with future demands.
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Inuvika OVD Enterprise
Inuvika OVD Enterprise offers a robust desktop virtualization platform that allows users to securely access their applications and virtual desktops from any location. Adhering to the zero-trust principle, Inuvika guarantees secure access while ensuring that no data is stored on user devices. This solution simplifies administrative tasks and can lower the overall total cost of ownership by up to 60% when compared to alternatives like Citrix or VMware/Omnissa Horizon.
OVD Enterprise can be implemented either on-premises or through any private or public cloud service provider, and it is also available as a Desktop as a Service (DaaS) offering via its network of Managed Services Providers.
The installation and management of OVD are straightforward, and it seamlessly integrates with popular enterprise standards, including various directory services, storage systems, and hypervisors such as Proxmox VE, vSphere, Nutanix AHV, and Hyper-V.
Key Features include:
- Compatibility with any device, including macOS, Windows, Linux, iOS/Android, Chromebook, Raspberry Pi, or any HTML5 web browser.
- Support for multi-tenancy.
- Integrated Two-Factor Authentication for enhanced security.
- An Integrated Gateway that allows secure remote access without the need for a VPN.
- A single web-based admin console for simplified management.
- Deployment on Linux, which means that most Microsoft Windows server and SQL server licenses are unnecessary.
- Hypervisor agnosticism, supporting platforms like Proxmox VE, Hyper-V, vSphere, KVM, Nutanix AHV, and more.
With its extensive range of features and capabilities, OVD Enterprise is designed to meet the diverse needs of modern businesses while providing a secure and efficient virtual desktop experience.
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TSplus Remote Access
TSplus Remote Access serves as an excellent substitute for Citrix or Microsoft RDS, providing efficient solutions for remote access, desktop connections, and web application delivery.
Key features of TSplus Remote Access include:
- Remote desktop accessibility
- Application delivery capabilities
- Secure connections available from any device or browser
- A customizable web portal
- No requirement for Terminal Service CALs
This solution is both dependable and scalable, enabling users to web-enable any Windows applications. With TSplus's built-in HTML5 support, users can effortlessly access Windows desktops and applications via any browser on a variety of devices, including PCs, Macs, smartphones, and tablets. TSplus Remote Access also offers an array of connection clients and configurations, allowing for the establishment of a secure remote environment tailored to specific needs, which can adapt and expand alongside your business.
You can explore TSplus products by taking advantage of a complimentary 15-day trial!
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