

Cisco Meraki MV smart cameras are cloud-managed security solutions designed to simplify surveillance and enhance operational efficiency. These cameras integrate advanced analytics and storage capabilities, eliminating the need for separate servers or software. With features like motion detection, object recognition, and real-time alerts, they provide comprehensive monitoring and quick incident response. The primary value of the Meraki MV series lies in its ease of deployment and management, offering businesses a scalable and secure surveillance system that reduces complexity and costs.

Cisco Adaptive Wireless Intrusion Prevention System (IPS) offers advanced network security for dedicated monitoring and detection of wireless network anomalies, unauthorized access, and RF attacks. Fully integrated with the Cisco Unified Wireless Network, this solution delivers integrated visibility and control across the network, without the need for an overlay solution.

Bringing the power of hyperscaler technology to the enterprise, Cisco Hypershield is a groundbreaking security architecture designed to defend modern, AI-scale data centers.

Cisco AI Defense Benefits ● Enable secure, private, and safe AI-enabled app development with real-time validation of models and assets through algorithmic AI red teaming. ● Defense against sensitive data loss and advanced adversarial threats with leading threat intelligence and AI guardrails. ● Accelerate value with a single management plane for all AI and smooth integration with the Cisco Security Cloud. Primary AI Defense use cases ● Discover - Maintain continuous visibility into AI-related cloud traffic (ingress, egress, east-west) while automatically discovering AI assets like models and agents. ● Detect - Proactively test and validate all AI models-open-source and proprietary-to detect vulnerabilities early and safeguard your AI environment continuously. ● Protect - Protect your AI infrastructure, including agent-based AI workflows and retrieval augmented generation (RAG) applications from malicious prompts, data leakage, and adversarial attack. Core components and capabilities Securing AI requires a holistic approach that protects your enterprise AI-enabled applications. With AI becoming pervasive across your enterprise, legacy solutions leave critical gaps that threat actors can exploit. To mitigate AI risks, your security strategy must be comprehensive, scalable, and built for AI's unique challenges. As shown in Figure 1, a holistic AI security and safety program combats AI risk across the development of AI applications.

Cisco Multicloud Defense protects all of your cloud environments using a single software-as-a-service (SaaS) control plane, eliminating inefficient, complex, and costly point solutions. Simplify multicloud security Manage security across public and private clouds from one place. Create, enforce, and update policies across all your clouds in real time. Gain multidirectional protection Ingress, egress, and east-west protection stops inbound threats, blocks command and control, data exfiltration, and prevents lateral movement. Increase operational efficiency Automate underlying cloud network constructs and integrate with infrastructure as code (IaC) for greater agility, flexibility, and scale.

CPAR is a 3GPP-compliant AAA server software that offers scalability and extensibility. Using one common platform, efficiently serve a broad range of access technologies, users, and roaming partners for new subscriber services.

The Cisco Catalyst 9350 Series is a line of stackable, fixed-configuration switches engineered for small to medium-sized enterprise networks, branch offices, and edge deployments. These switches provide high-speed connectivity and are integrated with the Cisco Meraki cloud management platform, which facilitates centralized configuration, monitoring, and troubleshooting. The series supports various port densities and speeds, including 1G, 2.5G, 5G, and 10G, to accommodate diverse network requirements. Additionally, the switches feature Power over Ethernet (PoE) capabilities to power connected endpoints such as wireless access points, IP phones, and security cameras, thereby reducing the need for separate power infrastructure. The hardware supports physical stacking, allowing multiple switches to be managed as a single logical unit to increase port density and simplify administration. With built-in security features designed to protect network traffic, the Catalyst 9350 Series is intended for use in campus access layers, branch locations, and distributed office environments where cloud-based management is prioritized for operational efficiency.

Cisco Optical Transceivers in the 400G and 800G ranges, available in QSFP and OSFP form factors, are hardware components designed to facilitate high-bandwidth data transmission within networking infrastructure. These modules function by converting electrical signals into optical signals for transmission over fiber-optic cabling and performing the reverse conversion upon reception. They are engineered for integration with compatible Cisco switches, routers, and server platforms to provide the physical layer connectivity required for high-density data center environments, service provider backbones, and enterprise networks. By supporting these specific data rates and form factors, these transceivers enable the physical connectivity and throughput necessary for modern high-performance computing and networking applications.
Cisco Silicon One is a series of programmable networking chips, or Application-Specific Integrated Circuits (ASICs), that serve as the underlying processing architecture for various Cisco networking platforms. Unlike traditional ASICs that are often specialized for either routing or switching, the Silicon One architecture is designed to be unified and modular, allowing it to be deployed across a wide range of hardware, including core routers, data center switches, and edge devices. For users and network engineers, this architecture provides a consistent programming model and feature set across different network layers, which can simplify network management and software development. The chips are engineered to handle high-bandwidth traffic requirements while maintaining programmability, enabling organizations to adapt their network infrastructure to evolving protocols and traffic patterns without necessarily requiring a complete hardware overhaul.

Cisco delivers the critical infrastructure to help organizations thrive in the AI era. By fusing networking, security, observability, and collaboration, we power how people and technology work together.