Secure and efficient use of cloud technologies requires more than simply moving systems to the cloud. Connectivity, access, workloads, and security policies must be managed consistently across all environments. At Pure7, we address on-premises infrastructure, private clouds, and public cloud platforms through a unified security approach, making complex environments more visible, controllable, and scalable.
The growing number of users, devices, and applications on campus networks can create coverage, performance, and management challenges. We address wired and wireless infrastructure together with security, capacity, and user experience requirements. Through centralized management, high availability, and end-to-end visibility, we build scalable, easily managed campus networks that adapt to changing needs.
Users and devices connecting to corporate networks without adequate control may increase the risk of unauthorized access and lateral threat movement. We make every connected asset visible based on identity, device type, and security posture, and restrict access for devices that do not comply with corporate policies. We manage guest, personal device, and IoT access through separate policies to apply an appropriate level of trust to each asset.
Traditional branch networks can create operational complexity due to connectivity costs, performance fluctuations, and fragmented management. We bring WAN, LAN, and wireless management together in a centralized structure aligned with application priorities and security requirements. By continuously monitoring link quality and application experience, we route critical traffic over the most suitable connection and enable more flexible, secure, and efficient branch operations.
We build high-speed, predictable network infrastructures for latency-sensitive workloads such as financial transactions, high-performance computing, and real-time analytics. We optimize traffic flows and network resources according to application performance expectations, reducing latency and packet-loss risks. Continuous monitoring of telemetry and capacity data helps identify performance deviations before they affect workloads.
Fragmented connectivity and inconsistent policies between on-premises infrastructure and multiple cloud platforms can create visibility gaps and management complexity. We address routing, segmentation, encryption, and performance requirements together to provide secure, uninterrupted communication across environments. By aligning network and security policies under a common approach, we establish consistent control and end-to-end visibility across clouds.
Overly broad communication permissions between workloads can allow a threat to spread through the infrastructure. We restrict traffic among applications and workloads based on business need, identity, and authorization level. Dynamic policies aligned with application dependencies reduce the attack surface and securely isolate critical systems.
We provide visibility into risks across cloud accounts, services, user permissions, and security settings. By helping identify misconfigurations and excessive privileges early, we support continuous improvement of the security posture. We prioritize risks by severity and business impact so teams can focus quickly on the most critical issues.
We protect virtual machines, containers, and cloud-based application components throughout their lifecycle. By making security risks, suspicious activity, and potential attacks visible, we help critical systems operate more securely. We evaluate vulnerabilities, misconfigurations, and runtime behavior in a common context to deliver continuous protection from development through production.
End-of-life technologies, complex configurations, and changing business needs can undermine network performance and manageability. We simplify existing networks and make them centrally managed, automation-enabled, and compatible with next-generation technologies, preparing organizations for future workloads. We create a phased transformation plan that protects existing investments and reduces the risk of service disruption.
We build modern data center networks that provide the high performance, low latency, and uninterrupted access required by critical applications. We address intra- and inter-data-center connectivity together with traffic routing and redundancy needs to support defined business continuity objectives. We design testable failover and disaster recovery scenarios so services can continue within expected targets during disruptions.