Struggling to choose between SnarlSNMP and Net-Policy? Both products offer unique advantages, making it a tough decision.
SnarlSNMP is a Network & Admin solution with tags like snmp, monitoring, network-management.
It boasts features such as Network mapping and topology visualization, Bandwidth monitoring and traffic analysis, SNMP monitoring and management, Alerting and notifications, Customizable dashboards and reporting, Device auto-discovery, Event logging and pros including Open source and free, Easy to install and configure, Intuitive web-based interface, Cross-platform support, Customizable dashboards, Wide range of monitoring capabilities, Alerting and notification system.
On the other hand, Net-Policy is a Network & Admin product tagged with policy, automation, firewall, routing, switching.
Its standout features include Centralized policy management, Firewall, routing, and switching configuration policy creation and deployment, Network infrastructure modeling, Automated policy changes across diverse networks, Compliance and change management reporting, and it shines with pros like Streamlines network policy management, Reduces manual configuration errors, Improves security and compliance, Enhances visibility and control over network infrastructure.
To help you make an informed decision, we've compiled a comprehensive comparison of these two products, delving into their features, pros, cons, pricing, and more. Get ready to explore the nuances that set them apart and determine which one is the perfect fit for your requirements.
SnarlSNMP is an open source network monitoring and management software. It provides network mapping, bandwidth monitoring, SNMP tools, and alerting features for managing switches, routers, servers, and other network devices.
Net-Policy is a network policy management software that allows organizations to centralize the creation, modification, and deployment of firewall, routing, and switching configuration policies. It provides tools to model network infrastructure and automate policy changes across diverse networks.